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Mônica Petti - Academia.edu

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id="ProfileCheckPaperUpdate-react-component-fe3c1a66-2aca-47ac-af92-44ccc6ff4df2"></div> <div class="DesignSystem"><div class="onsite-ping" id="onsite-ping"></div></div><div class="profile-user-info DesignSystem"><div class="social-profile-container"><div class="left-panel-container"><div class="user-info-component-wrapper"><div class="user-summary-cta-container"><div class="user-summary-container"><div class="social-profile-avatar-container"><img class="profile-avatar u-positionAbsolute" border="0" alt="" src="//a.academia-assets.com/images/s200_no_pic.png" /></div><div class="title-container"><h1 class="ds2-5-heading-sans-serif-sm">Mônica Petti</h1><div class="affiliations-container fake-truncate js-profile-affiliations"></div></div></div><div class="sidebar-cta-container"><button class="ds2-5-button hidden profile-cta-button grow js-profile-follow-button" data-broccoli-component="user-info.follow-button" data-click-track="profile-user-info-follow-button" 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js-tab-pane tab-pane active" id="all"><div class="profile--tab_heading_container js-section-heading" data-section="Papers" id="Papers"><h3 class="profile--tab_heading_container">Papers by Mônica Petti</h3></div><div class="js-work-strip profile--work_container" data-work-id="18498016"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" rel="nofollow" href="https://www.academia.edu/18498016/_p_class_Title_Soft_bottom_polychaetes_from_the_Brazilian_harbors_of_Mucuripe_and_Pec%C3%A9m_state_of_Cear%C3%A1_and_Santos_state_of_S%C3%A3o_Paulo_p_"><img alt="Research paper thumbnail of &lt;p class=&quot;Title&quot;&gt;Soft-bottom polychaetes from the Brazilian harbors of Mucuripe and Pecém (state of Ceará) and Santos (state of São Paulo)&lt;/p&gt;" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" rel="nofollow" href="https://www.academia.edu/18498016/_p_class_Title_Soft_bottom_polychaetes_from_the_Brazilian_harbors_of_Mucuripe_and_Pec%C3%A9m_state_of_Cear%C3%A1_and_Santos_state_of_S%C3%A3o_Paulo_p_">&lt;p class=&quot;Title&quot;&gt;Soft-bottom polychaetes from the Brazilian harbors of Mucuripe and Pecém (state of Ceará) and Santos (state of São Paulo)&lt;/p&gt;</a></div><div class="wp-workCard_item"><span>Check List</span><span>, 2015</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498016"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498016"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498016; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=18498016]").text(description); $(".js-view-count[data-work-id=18498016]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 18498016; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='18498016']"); 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wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/13514552/INFLUENCE_OF_SEDIMENT_QUALITY_ON_THE_BENTHIC_COMMUNITIES_OF_ADMIRALTY_BAY_KING_GEORGE_ISLAND_ANTARCTICA">INFLUENCE OF SEDIMENT QUALITY ON THE BENTHIC COMMUNITIES OF ADMIRALTY BAY, KING GEORGE ISLAND, ANTARCTICA</a></div><div class="wp-workCard_item wp-workCard--coauthors"><span>by </span><span><a class="" data-click-track="profile-work-strip-authors" href="https://unifesp.academia.edu/CristinaNakayama">Cristina Nakayama</a> and <a class="" data-click-track="profile-work-strip-authors" href="https://independent.academia.edu/M%C3%B4nicaPetti">Mônica Petti</a></span></div><div class="wp-workCard_item"><span>INCT-APA Annual Activity Report</span><span>, 2015</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a 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ANTARCTICA","translated_title":"","metadata":{"grobid_abstract":"Marine benthos is widely used in environmental impact studies, especially in coastal areas. A monitoring program of Admiralty Bay has been undertaken since 2008 (and, in the summer of 2010, three areas of Martel Inlet and one area of Mackellar Inlet were sampled in order to verify the environmental status of the area in front of the Ferraz Station (CF) in comparison to reference areas. Sediment was collected to analyse their characteristics and quality and to evaluate the meiofauna and macrofauna communities. Meiofauna densities were in the range of those found in previous studies in the bay and did not differ significantly between the sampling sites. Nematodes were the dominant group. On the other hand macrofauna densities were significantly higher in Mackellar Inlet, when comparing with some sites of Martel Inlet. Polychaetes, oligochaetes and bivalves were the dominant macrofauna taxa. Correlation analysis showed different sediment characteristics responsible to explain the abundance of the meiofauna or the macrofauna groups. 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href="https://www.academia.edu/18498015/Temporal_variation_of_polychaetes_from_Picinguaba_and_Ubatumirim_bights_southeastern_Brazil_">Temporal variation of polychaetes from Picinguaba and Ubatumirim bights (southeastern Brazil)</a></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="5cac0d286080cba109622e204911e875" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:40096113,&quot;asset_id&quot;:18498015,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/40096113/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper 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Maximum densities, biomass and richness of polychaetes were recorded in late spring (November) and summer (January). The lowest values were observed in winter (July) and early spring (September). The surface dwelling species of the families Spionidae, Cirratulidae, Pilargidae, Poecilochaetidae and Paraonidae were the main indicators of the temporal variability observed in the macrofauna community structure. The temporal distribution patterns were associated to the hydrodynamic processes present in the study area. The occurrence of cold fronts, more intense and frequent in winter, resulted in bottom re-suspension and extensive mortality of the surface life forms from shallow areas. Under these conditions, burrowing infaunal species or carnivorous species can predominate. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498014"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498014/Monitoring_the_impact_of_human_activities_in_Admiralty_Bay_King_George_Island_Antarctica_preliminary_results_of_the_meiofauna_community"><img alt="Research paper thumbnail of Monitoring the impact of human activities in ­Admiralty Bay, King George Island, Antarctica: preliminary results of the meiofauna community" class="work-thumbnail" src="https://attachments.academia-assets.com/40096183/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498014/Monitoring_the_impact_of_human_activities_in_Admiralty_Bay_King_George_Island_Antarctica_preliminary_results_of_the_meiofauna_community">Monitoring the impact of human activities in ­Admiralty Bay, King George Island, Antarctica: preliminary results of the meiofauna community</a></div><div class="wp-workCard_item"><span>INCT-APA Annual Activity Report</span><span>, 2010</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="5f69c7ceb73e99eb51c787d3fa31068b" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:40096183,&quot;asset_id&quot;:18498014,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/40096183/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498014"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498014"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498014; 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A monitoring program of Admiralty Bay has been underway since 2008 (INCT-APA/CNPq), and in the summer of 2010, the meiofauna and the phytodetritus were sampled at two sites in three areas of Martel Inlet (CF, UP, BP) and at one area in Mackellar Inlet (RE). Densities were in the range of those found in previous studies in the bay and did not differ significantly between the eight sampling sites. Nevertheless lower densities (\u003c3,000 inds. 4.9 cm 2 ) were found at one site in front of the Brazilian Station (CF1), under the influence of the sewage outfall, and at other three sites. Higher densities (\u003e5,000 inds. 4.9 cm 2 ) were found at Ullmann Point (UP) and at one site in Botany Point (BP1). Nematodes were the dominant meiofauna group. A change in the meiobenthic community structure was detected at the site under the sewage outfall influence (CF1: low density, different composition), suggesting some influence of human activities on the benthic system in front of the Brazilian Station.","publication_date":{"day":null,"month":null,"year":2010,"errors":{}},"publication_name":"INCT-APA Annual Activity Report","grobid_abstract_attachment_id":40096183},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498014/Monitoring_the_impact_of_human_activities_in_Admiralty_Bay_King_George_Island_Antarctica_preliminary_results_of_the_meiofauna_community","translated_internal_url":"","created_at":"2015-11-17T03:19:00.796-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096183,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096183/thumbnails/1.jpg","file_name":"Monitoring_the_impact_of_human_activitie20151117-22381-krmb7l.pdf","download_url":"https://www.academia.edu/attachments/40096183/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Monitoring_the_impact_of_human_activitie.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096183/Monitoring_the_impact_of_human_activitie20151117-22381-krmb7l-libre.pdf?1447762023=\u0026response-content-disposition=attachment%3B+filename%3DMonitoring_the_impact_of_human_activitie.pdf\u0026Expires=1732999857\u0026Signature=NMgjo6GjjJJCZDtTG~oRcIM-Gb8glztbCNSPy~kOY9sKTFFVVTFYDAOw6nWjLo2IaofVNaI9cbKRNsXUlH3rzPFtdWrVHncVaiaK-l1nMTgqTIJF9VIxtFueKz0qulxU3PHn8bY9qGQhob~KjyMn124U-T3C0JiJ6bhIYa1mm9rmrqvnvsp3bxkvwXcDmwj-y6K9sLkeX3GTV5HpEFe8UO9onVa4RPxFIMTeM7i5EBgf7bkP7tbZGgJc-62eVkCOT5oWrOMxyr-8DUGBvEaYhcLiAetiNXDBWmbwSYzuPqVVnzQHJXfyXY3RzSA~5hD-mUJ7PoYb5RYpiiF7l1ch1Q__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Monitoring_the_impact_of_human_activities_in_Admiralty_Bay_King_George_Island_Antarctica_preliminary_results_of_the_meiofauna_community","translated_slug":"","page_count":5,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":40096183,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096183/thumbnails/1.jpg","file_name":"Monitoring_the_impact_of_human_activitie20151117-22381-krmb7l.pdf","download_url":"https://www.academia.edu/attachments/40096183/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Monitoring_the_impact_of_human_activitie.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096183/Monitoring_the_impact_of_human_activitie20151117-22381-krmb7l-libre.pdf?1447762023=\u0026response-content-disposition=attachment%3B+filename%3DMonitoring_the_impact_of_human_activitie.pdf\u0026Expires=1732999857\u0026Signature=NMgjo6GjjJJCZDtTG~oRcIM-Gb8glztbCNSPy~kOY9sKTFFVVTFYDAOw6nWjLo2IaofVNaI9cbKRNsXUlH3rzPFtdWrVHncVaiaK-l1nMTgqTIJF9VIxtFueKz0qulxU3PHn8bY9qGQhob~KjyMn124U-T3C0JiJ6bhIYa1mm9rmrqvnvsp3bxkvwXcDmwj-y6K9sLkeX3GTV5HpEFe8UO9onVa4RPxFIMTeM7i5EBgf7bkP7tbZGgJc-62eVkCOT5oWrOMxyr-8DUGBvEaYhcLiAetiNXDBWmbwSYzuPqVVnzQHJXfyXY3RzSA~5hD-mUJ7PoYb5RYpiiF7l1ch1Q__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[],"urls":[]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498013"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498013/Long_Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_King_George_Island_Isotopic_Analysis_of_C_and_N"><img alt="Research paper thumbnail of Long-Term Monitoring of Anthropogenic Impacts from the Brazilian Antarctic Station Comandante Ferraz (King George Island): Isotopic Analysis of C and N" class="work-thumbnail" src="https://attachments.academia-assets.com/42253792/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498013/Long_Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_King_George_Island_Isotopic_Analysis_of_C_and_N">Long-Term Monitoring of Anthropogenic Impacts from the Brazilian Antarctic Station Comandante Ferraz (King George Island): Isotopic Analysis of C and N</a></div><div class="wp-workCard_item"><span>INCT-APA Annual Activity Report</span><span>, 2013</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="a0ca0d465762476c4dafd7ae80fb0f23" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:42253792,&quot;asset_id&quot;:18498013,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/42253792/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498013"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498013"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498013; 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dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "a0ca0d465762476c4dafd7ae80fb0f23" } } $('.js-work-strip[data-work-id=18498013]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":18498013,"title":"Long-Term Monitoring of Anthropogenic Impacts from the Brazilian Antarctic Station Comandante Ferraz (King George Island): Isotopic Analysis of C and N","translated_title":"","metadata":{"grobid_abstract":"Stable isotopic analysis has been used for assessing anthropogenic in uence in marine communities. e variation of stable C and N isotope signatures in sources of organic matter and benthic invertebrates was investigated at the nearshore zone in front of the Brazilian Antarctic Station (EACF -Estação Antártica Comandante Ferraz) (Martel Inlet), to attend a long-term monitoring program. Suspended organic matter (SPM), the algae Desmarestia, sediment, and selected invertebrates of di erent trophic levels (suspensivore, depositivore, grazer and carnivore) were sampled in the subtidal zone (up to 25m) in three summers since 2000/01. e δ 13 C values for consumers ranged from -26.70 (Laternula elliptica) to -12.34‰ (Nacella concinna), and the δ 15 N from 2.86 to 10.71‰ (L. elliptica and Parborlasia corrugatus, respectively). Linear regression lines tted to the data (R \u003e 69%), and there were di erences between the sampling periods. e results suggested some in uence of the sewage organic matter on benthic communities in the coastal area near the Brazilian Station, mainly in the rst summers analysed, and a slight increase towards the end of the summer.","publication_date":{"day":null,"month":null,"year":2013,"errors":{}},"publication_name":"INCT-APA Annual Activity Report","grobid_abstract_attachment_id":42253792},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498013/Long_Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_King_George_Island_Isotopic_Analysis_of_C_and_N","translated_internal_url":"","created_at":"2015-11-17T03:19:00.616-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":42253792,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/42253792/thumbnails/1.jpg","file_name":"Long-Term_Monitoring_of_Anthropogenic_Im20160206-14055-15i4l31.pdf","download_url":"https://www.academia.edu/attachments/42253792/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Long_Term_Monitoring_of_Anthropogenic_Im.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/42253792/Long-Term_Monitoring_of_Anthropogenic_Im20160206-14055-15i4l31-libre.pdf?1454819120=\u0026response-content-disposition=attachment%3B+filename%3DLong_Term_Monitoring_of_Anthropogenic_Im.pdf\u0026Expires=1732999857\u0026Signature=IHoxtq~wW2G2im4ffVf~5EG~-b9nLrC7nrzsNyAeurET9kqdNGlEIAjqRw405172RpU~eLchdyI0Xms8WtXDRQvugCUzwaePsbhnl4XhBZniq5YByH94xgWbW7XWe0v9TpMj1jTBpzvK~c56pwYrzMrKYYJmecotSjhPxCD~Ces33f5ToG2EaScSko5BaYDwY925ryG82uFkmATrtLuqldRUVG2GDO4eXIAzHQybWM4zW8n9c5kI9ZbBaJJODe5zWx6GuZpfRuqKxMsMyXNmEYmYjzwAh-yhFPbLRK2ULA584IwMv8jzm4gfKdMhGEuZmgnV8l~VbaxfMural6xk2w__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Long_Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_King_George_Island_Isotopic_Analysis_of_C_and_N","translated_slug":"","page_count":4,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":42253792,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/42253792/thumbnails/1.jpg","file_name":"Long-Term_Monitoring_of_Anthropogenic_Im20160206-14055-15i4l31.pdf","download_url":"https://www.academia.edu/attachments/42253792/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Long_Term_Monitoring_of_Anthropogenic_Im.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/42253792/Long-Term_Monitoring_of_Anthropogenic_Im20160206-14055-15i4l31-libre.pdf?1454819120=\u0026response-content-disposition=attachment%3B+filename%3DLong_Term_Monitoring_of_Anthropogenic_Im.pdf\u0026Expires=1732999857\u0026Signature=IHoxtq~wW2G2im4ffVf~5EG~-b9nLrC7nrzsNyAeurET9kqdNGlEIAjqRw405172RpU~eLchdyI0Xms8WtXDRQvugCUzwaePsbhnl4XhBZniq5YByH94xgWbW7XWe0v9TpMj1jTBpzvK~c56pwYrzMrKYYJmecotSjhPxCD~Ces33f5ToG2EaScSko5BaYDwY925ryG82uFkmATrtLuqldRUVG2GDO4eXIAzHQybWM4zW8n9c5kI9ZbBaJJODe5zWx6GuZpfRuqKxMsMyXNmEYmYjzwAh-yhFPbLRK2ULA584IwMv8jzm4gfKdMhGEuZmgnV8l~VbaxfMural6xk2w__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[],"urls":[{"id":6485579,"url":"https://www.researchgate.net/profile/Paula_Gheller/publication/274893359_Long-Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_(King_George_Island)_Isotopic_Analysis_of_C_and_N/links/552bcf810cf2e089a3aa7eb9.pdf"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498012"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" rel="nofollow" href="https://www.academia.edu/18498012/Admiralty_Bay_trophic_relationships_a_summary_of_results_from_isotopic_analysis"><img alt="Research paper thumbnail of Admiralty Bay trophic relationships: a summary of results from isotopic analysis" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" rel="nofollow" href="https://www.academia.edu/18498012/Admiralty_Bay_trophic_relationships_a_summary_of_results_from_isotopic_analysis">Admiralty Bay trophic relationships: a summary of results from isotopic analysis</a></div><div class="wp-workCard_item"><span>INCT-APA Annual Activity Report</span><span>, 2010</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498012"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498012"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498012; 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498011"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498011/Role_of_meteorological_events_on_the_macrofauna_community_and_sediment_composition_of_the_shallow_waters_of_martel_inlet_Admiralty_Bay_Antarctica_"><img alt="Research paper thumbnail of Role of meteorological events on the ­macrofauna community and sediment ­composition of the shallow waters of martel inlet (Admiralty Bay, Antarctica)" class="work-thumbnail" src="https://attachments.academia-assets.com/40096115/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498011/Role_of_meteorological_events_on_the_macrofauna_community_and_sediment_composition_of_the_shallow_waters_of_martel_inlet_Admiralty_Bay_Antarctica_">Role of meteorological events on the ­macrofauna community and sediment ­composition of the shallow waters of martel inlet (Admiralty Bay, Antarctica)</a></div><div class="wp-workCard_item"><span>INCT-APA Annual Activity Report</span><span>, 2010</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="8ab424393f4d0a529808fe515bcd44b6" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:40096115,&quot;asset_id&quot;:18498011,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/40096115/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498011"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498011"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498011; 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Three replicates of sediment samples were obtained by a van Veen grab (0.0275 m²) at 20 m depth, in six periods from 1 st February to 7 th March. Macrofaunal densities and sediment composition varied during this period and were correlated to the wind field. Annelids (Polychaeta and Oligochaeta) were the most abundant group with density values ranging from 202 ind.0.0275m -² to 330 ind.0.0275m -² followed by Mollusca and Crustacea. The Principal Component Analysis (PCA) showed that the main sediment components that distinguish the samples were the percentage of gravel, silt and clay. These variations may be influenced by many factors and the climatic conditions play an important role in the local hydrodynamics that affect the benthic community, mainly the organisms with swimming capacity. Meteorological events may influence differently the sediment composition and the macrofauna community. Additional analysis is ongoing to better understand the short-term variability of the macrofauna, including the identification of the polychaetes. Moreover, studies concerning the local hydrodynamics and the interaction between wind, water and sediment in Admiralty Bay are needed. Objective This study aims to evaluate the wind influence on the short-term variation of the macrofaunal community and sediment composition during the austral summer of 2008 at the shallow coastal area, closer to the Brazilian Antarctic Station (Figure 2a). Methodology Six samples (three replicates each) of sediment were obtained using a van Veen grab (0.0275 m²) (Figure 2b) at 20 m depth almost weekly, from 1 st February to 7 th March 2008. In laboratory, the sediment volumes were measured and then washed through sieves of 0.5 mm mesh size. The","publication_date":{"day":null,"month":null,"year":2010,"errors":{}},"publication_name":"INCT-APA Annual Activity Report","grobid_abstract_attachment_id":40096115},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498011/Role_of_meteorological_events_on_the_macrofauna_community_and_sediment_composition_of_the_shallow_waters_of_martel_inlet_Admiralty_Bay_Antarctica_","translated_internal_url":"","created_at":"2015-11-17T03:19:00.394-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096115,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096115/thumbnails/1.jpg","file_name":"Role_of_meteorological_events_on_the_mac20151117-22386-1mut2bc.pdf","download_url":"https://www.academia.edu/attachments/40096115/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Role_of_meteorological_events_on_the_mac.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096115/Role_of_meteorological_events_on_the_mac20151117-22386-1mut2bc-libre.pdf?1447762034=\u0026response-content-disposition=attachment%3B+filename%3DRole_of_meteorological_events_on_the_mac.pdf\u0026Expires=1732999857\u0026Signature=Du~xiQSgeZF6pSWkyhEhqz-g11fO9bLgFEtIx~MkzW2icJyZ1mZE4kEix2OO6a9v0ZFDtev5UHl3Inuxe3SnLuU~58nY35cWF3f~w1u~oBHfTzR1EC2xXGTy6jzkW~5QZZlfiOu1YINuKzXyqs3a5mUIx4Vabu4Pww47Nx5uDTbTC5KYUhH2GCRd57ZjKgqBYXo3JTNcmsyJp3z6JKLgz15VIRAZD-um287ZXix0g3ayRtfF8RBMulx0iyQkL4AYJJM5ghLzsGn6gBhP68eYQFjmaUY4eFyIIKniYhKQFc7MXESFMjMUmXzVKi7RJxrVKZZ3Lbl1x2Y5NVP1FgHYfw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Role_of_meteorological_events_on_the_macrofauna_community_and_sediment_composition_of_the_shallow_waters_of_martel_inlet_Admiralty_Bay_Antarctica_","translated_slug":"","page_count":6,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":40096115,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096115/thumbnails/1.jpg","file_name":"Role_of_meteorological_events_on_the_mac20151117-22386-1mut2bc.pdf","download_url":"https://www.academia.edu/attachments/40096115/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Role_of_meteorological_events_on_the_mac.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096115/Role_of_meteorological_events_on_the_mac20151117-22386-1mut2bc-libre.pdf?1447762034=\u0026response-content-disposition=attachment%3B+filename%3DRole_of_meteorological_events_on_the_mac.pdf\u0026Expires=1732999857\u0026Signature=Du~xiQSgeZF6pSWkyhEhqz-g11fO9bLgFEtIx~MkzW2icJyZ1mZE4kEix2OO6a9v0ZFDtev5UHl3Inuxe3SnLuU~58nY35cWF3f~w1u~oBHfTzR1EC2xXGTy6jzkW~5QZZlfiOu1YINuKzXyqs3a5mUIx4Vabu4Pww47Nx5uDTbTC5KYUhH2GCRd57ZjKgqBYXo3JTNcmsyJp3z6JKLgz15VIRAZD-um287ZXix0g3ayRtfF8RBMulx0iyQkL4AYJJM5ghLzsGn6gBhP68eYQFjmaUY4eFyIIKniYhKQFc7MXESFMjMUmXzVKi7RJxrVKZZ3Lbl1x2Y5NVP1FgHYfw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[],"urls":[]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498010"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498010/Trophic_structure_of_benthic_communities_in_the_Cabo_Frio_upwelling_system_southeastern_Brazilian_shelf_a_temporal_study_using_stable_isotope_analysis"><img alt="Research paper thumbnail of Trophic structure of benthic communities in the Cabo Frio upwelling system (southeastern Brazilian shelf): a temporal study using stable isotope analysis" class="work-thumbnail" src="https://attachments.academia-assets.com/40096116/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498010/Trophic_structure_of_benthic_communities_in_the_Cabo_Frio_upwelling_system_southeastern_Brazilian_shelf_a_temporal_study_using_stable_isotope_analysis">Trophic structure of benthic communities in the Cabo Frio upwelling system (southeastern Brazilian shelf): a temporal study using stable isotope analysis</a></div><div class="wp-workCard_item"><span>Marine Ecology Progress Series</span><span>, 2014</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="4dcd28a56b6a4ae86ceb8f3c7c5e8ad3" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:40096116,&quot;asset_id&quot;:18498010,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/40096116/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498010"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498010"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498010; 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This region is exposed to moderate seasonal Ekman-driven upwelling that brings cold water with increased nutrient levels nearshore and is more frequent and intense during the austral spring and summer, primarily due to the prevalence of northeasterly winds. Our aim was to verify the influence of this upwelling on the benthic trophic structure of the inner and outer shelf off Cabo Frio through measurements of stable nitrogen (δ 15 N) and carbon (δ 13 C) isotopes. We identified 1 main pathway of organic matter (OM) transfer from the base to the top of the food web, as observed from the tendencies of the δ 13 C and δ 15 N values. The isotopic signatures of benthic consumers exhibited temporal and spatial variability, with no interaction between them. As the result of a time lag, only consumers (mostly decapod carnivores) appeared to reflect the assimilation of 15 N-depleted and 13 C-enriched OM produced and deposited during strong upwelling that occurred 4 mo earlier. Therefore, the intensity and period of the upwelling phenomenon were important for detecting upwelling in benthic food webs. Lighter nitrogen and heavier carbon isotopes were found on the inner shelf. Consumers may have exploited OM of different quality on the inner and outer shelf due to differences in sediment, hydrodynamics, mineralisation and assimilation of 13 C-enriched microphytobenthos. Nevertheless, 4 trophic levels were estimated in the benthic communities of the continental shelf off the Cabo Frio upwelling system, independent of period or area.","publication_date":{"day":null,"month":null,"year":2014,"errors":{}},"publication_name":"Marine Ecology Progress Series","grobid_abstract_attachment_id":40096116},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498010/Trophic_structure_of_benthic_communities_in_the_Cabo_Frio_upwelling_system_southeastern_Brazilian_shelf_a_temporal_study_using_stable_isotope_analysis","translated_internal_url":"","created_at":"2015-11-17T03:19:00.049-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096116,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096116/thumbnails/1.jpg","file_name":"Trophic_structure_of_benthic_communities20151117-22381-1pn7ezx.pdf","download_url":"https://www.academia.edu/attachments/40096116/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Trophic_structure_of_benthic_communities.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096116/Trophic_structure_of_benthic_communities20151117-22381-1pn7ezx-libre.pdf?1447762033=\u0026response-content-disposition=attachment%3B+filename%3DTrophic_structure_of_benthic_communities.pdf\u0026Expires=1732999857\u0026Signature=N9ZgzjtYfHa3aGI9USBWaO49vZdPvTbKagXqBDGAuuz223PIAY8Pxwvgm1ooGiEwLNRfxXALMat1GC8m74au-O0A77J9FsxZy4PEQ3wDcAN6KjMaxQqc6ej0juzI~1S~fxxgvnqgjBel7xomNZELGB12ECgPtp8O6msPigJigApSNYytNkqO1OW30RaThxhBT9yGXzIlUKiiGirQtHEQSaAdgmhkqr~-UyLua0wbn5q1fX8llSzHfqlruPC6ns~qJdiAsQFpllChic6z~syri5NBTHtL7qGy21oW7d9Wh7cTdk1~YY7RXkYHT0wkkFKFKNb9pNukKnkQAlQv2UL8MQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Trophic_structure_of_benthic_communities_in_the_Cabo_Frio_upwelling_system_southeastern_Brazilian_shelf_a_temporal_study_using_stable_isotope_analysis","translated_slug":"","page_count":16,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":40096116,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096116/thumbnails/1.jpg","file_name":"Trophic_structure_of_benthic_communities20151117-22381-1pn7ezx.pdf","download_url":"https://www.academia.edu/attachments/40096116/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Trophic_structure_of_benthic_communities.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096116/Trophic_structure_of_benthic_communities20151117-22381-1pn7ezx-libre.pdf?1447762033=\u0026response-content-disposition=attachment%3B+filename%3DTrophic_structure_of_benthic_communities.pdf\u0026Expires=1732999857\u0026Signature=N9ZgzjtYfHa3aGI9USBWaO49vZdPvTbKagXqBDGAuuz223PIAY8Pxwvgm1ooGiEwLNRfxXALMat1GC8m74au-O0A77J9FsxZy4PEQ3wDcAN6KjMaxQqc6ej0juzI~1S~fxxgvnqgjBel7xomNZELGB12ECgPtp8O6msPigJigApSNYytNkqO1OW30RaThxhBT9yGXzIlUKiiGirQtHEQSaAdgmhkqr~-UyLua0wbn5q1fX8llSzHfqlruPC6ns~qJdiAsQFpllChic6z~syri5NBTHtL7qGy21oW7d9Wh7cTdk1~YY7RXkYHT0wkkFKFKNb9pNukKnkQAlQv2UL8MQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":173,"name":"Zoology","url":"https://www.academia.edu/Documents/in/Zoology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"}],"urls":[]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498009"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498009/Biomagnification_of_mercury_through_the_food_web_of_the_Santos_continental_shelf_subtropical_Brazil"><img alt="Research paper thumbnail of Biomagnification of mercury through the food web of the Santos continental shelf, subtropical Brazil" class="work-thumbnail" src="https://attachments.academia-assets.com/40096114/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498009/Biomagnification_of_mercury_through_the_food_web_of_the_Santos_continental_shelf_subtropical_Brazil">Biomagnification of mercury through the food web of the Santos continental shelf, subtropical Brazil</a></div><div class="wp-workCard_item"><span>Marine Ecology Progress Series</span><span>, 2014</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="b1b68913ec337c00263e7af8b6611277" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:40096114,&quot;asset_id&quot;:18498009,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/40096114/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498009"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498009"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498009; 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This region harbours a large industrial plant and the largest port in Latin America, both of which release pollutants into the Santos−São Vicente estuarine system. High levels of Hg have been reported in sediments and fish from the estuaries and Santos Bay; however, data for the biota in offshore waters are scarce, and the biomagnification of Hg across the food web here has never been assessed. In this study, the trophic structure of the Santos shelf was addressed through the carbon and nitrogen stable isotope compositions of different species across a trophic gradient. We determined the total Hg levels (THg, dry weight) of invertebrates and fish to estimate the rate of biomagnification of this metal in the benthic and pelagic food webs. The lowest mean THg levels were found in zooplankton (0.006 µg g −1 ) and surface-depositivore polychaetes (0.011 µg g −1 ); the highest THg levels were found in the largest fishes: Patagonian flounder (0.825 µg g −1 ), fat snook (0.714 µg g −1 ), and lesser guitarfish (0.639 µg g −1 ). Overall, the Hg concentration in fish was below the recommended limit for human consumption. The THg and δ 15 N were positively correlated in both food webs; however, the rate of biomagnification was higher and the basal Hg was lower in the pelagic food web. These differences may be related to the differing bioavailability of mercury in water and sediment, the higher diversity of prey and more complex feeding interactions in the benthic food web, and metabolic differences among different taxa.","publication_date":{"day":null,"month":null,"year":2014,"errors":{}},"publication_name":"Marine Ecology Progress Series","grobid_abstract_attachment_id":40096114},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498009/Biomagnification_of_mercury_through_the_food_web_of_the_Santos_continental_shelf_subtropical_Brazil","translated_internal_url":"","created_at":"2015-11-17T03:18:59.905-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096114,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096114/thumbnails/1.jpg","file_name":"Biomagnification_of_mercury_through_the_20151117-18315-1ijnnvz.pdf","download_url":"https://www.academia.edu/attachments/40096114/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Biomagnification_of_mercury_through_the.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096114/Biomagnification_of_mercury_through_the_20151117-18315-1ijnnvz-libre.pdf?1447762033=\u0026response-content-disposition=attachment%3B+filename%3DBiomagnification_of_mercury_through_the.pdf\u0026Expires=1732999857\u0026Signature=ROC1g4X4ueNi8e~TUX4kpGtw2Y-snPNoGoLTJt3eT8SiZ-JTnzhphV26xCU1~O7y4egHqETIJGhZ8PTwU095XQn4tBrjmE9LKeaipGa225~iKPlDorerBYLesNP9doOHGlLt~0Jiyn981954qUw96mAz5UrAGZFehP7djor20bPIluIC6E1p4bFU3G3bOAVyE9ANU03fKBzR6ubjeMxT2~k8weXLkemJczTACrgGOswoYHHZKYcn-6sl-N6otsHOdYR2aa0Kox5glY0LQSRsjddrt8D~W-lsLaWhjJWpoWVxqZgHFbgTY0cFDHIdRUBHeOB6Dq6KGglRrF3FbsJ8iw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Biomagnification_of_mercury_through_the_food_web_of_the_Santos_continental_shelf_subtropical_Brazil","translated_slug":"","page_count":15,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":40096114,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096114/thumbnails/1.jpg","file_name":"Biomagnification_of_mercury_through_the_20151117-18315-1ijnnvz.pdf","download_url":"https://www.academia.edu/attachments/40096114/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Biomagnification_of_mercury_through_the.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096114/Biomagnification_of_mercury_through_the_20151117-18315-1ijnnvz-libre.pdf?1447762033=\u0026response-content-disposition=attachment%3B+filename%3DBiomagnification_of_mercury_through_the.pdf\u0026Expires=1732999857\u0026Signature=ROC1g4X4ueNi8e~TUX4kpGtw2Y-snPNoGoLTJt3eT8SiZ-JTnzhphV26xCU1~O7y4egHqETIJGhZ8PTwU095XQn4tBrjmE9LKeaipGa225~iKPlDorerBYLesNP9doOHGlLt~0Jiyn981954qUw96mAz5UrAGZFehP7djor20bPIluIC6E1p4bFU3G3bOAVyE9ANU03fKBzR6ubjeMxT2~k8weXLkemJczTACrgGOswoYHHZKYcn-6sl-N6otsHOdYR2aa0Kox5glY0LQSRsjddrt8D~W-lsLaWhjJWpoWVxqZgHFbgTY0cFDHIdRUBHeOB6Dq6KGglRrF3FbsJ8iw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":173,"name":"Zoology","url":"https://www.academia.edu/Documents/in/Zoology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"}],"urls":[]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498008"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498008/Meiofauna_and_microphytobenthos_of_Martel_Inlet_Admiralty_Bay_King_George_Island_Antarctica_"><img alt="Research paper thumbnail of Meiofauna and microphytobenthos of Martel Inlet (Admiralty Bay, King George Island, Antarctica)" class="work-thumbnail" src="https://attachments.academia-assets.com/40096112/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498008/Meiofauna_and_microphytobenthos_of_Martel_Inlet_Admiralty_Bay_King_George_Island_Antarctica_">Meiofauna and microphytobenthos of Martel Inlet (Admiralty Bay, King George Island, Antarctica)</a></div><div class="wp-workCard_item"><span>INCT-APA Annual Activity Report</span><span>, 2010</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="85ca78b48c0ba45763a8de37555b00ed" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:40096112,&quot;asset_id&quot;:18498008,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/40096112/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498008"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498008"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498008; 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In these environments, inherent factors such as freezing of the intertidal and upper sublittoral zones, iceberg scouring and formation of anchor ice greatly influence the faunal distribution and comnmunity structure. The aim of this study is to investigate the structure of the polychaete assemblages in a shallow soft bottom environment in the Antarctic and to assess the relationships with bottom type and ice effects. The samples were taken in December 1994 along a transect comprising four sampling stations ranging from 6-25 m depth, adjacent to the Brazilian Antarctic Station \"Comandante Ferraz\" at Martel Inlet, Admiralty Bay. Two additional stations were established at a depth of 18 m in order to study the effect of ice-scouring. Five replicates per station were samnpled with corers taken by SCUBA divers. The polychaete distribution showed a distinct zonation pattern as a fuiction of depth induced mainly by sedimentary differences and ice-scouring. The polychaete density, biomass and species diversity increased with depth. In the area affected by ice-scouring, these structural parameters were more variable. A total of 31 species in 18 families was recorded across the sampling area. Four species accounted for 80% of the total abundance: Apistobranchus gudrunae, Tharyx cf. cincinnatus, Leitoscoloplos kerguelensis and Ophryotrocha notialis. Certain tube-dwelling polychaetes, such as Leaena cf. collaris and Asvchis aniphiglypta, occurred only at the 18 and 25 m stations where the ice-effects are less than at the shallower stations. Conversely, some species, notably those belonging to taxa known to be opportunistic in life-style, such as Ophryotrochl notialis and Microspio cf. moorei, were more abundant at the shallow stations.","publication_date":{"day":null,"month":null,"year":2000,"errors":{}},"grobid_abstract_attachment_id":40096111},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498005/Polychaete_distribution_in_the_near_shore_zone_of_Martel_inlet_admiralty_bay_King_George_island_Antarctica_","translated_internal_url":"","created_at":"2015-11-17T03:18:58.969-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096111,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096111/thumbnails/1.jpg","file_name":"Polychaete_distribution_in_the_near-shor20151117-18316-c2zw58.pdf","download_url":"https://www.academia.edu/attachments/40096111/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Polychaete_distribution_in_the_near_shor.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096111/Polychaete_distribution_in_the_near-shor20151117-18316-c2zw58-libre.pdf?1447762034=\u0026response-content-disposition=attachment%3B+filename%3DPolychaete_distribution_in_the_near_shor.pdf\u0026Expires=1732999857\u0026Signature=WhJCOfUaepITXpxHqZicwn9nx8bF7ENGNpYohD~Z2u0t2Qr7SHRuY9EiqVkemSBTEdCsga~rtUnPEHVPznLhO6TaK4cqIfQFBtqVTktB44I4Zay5czt4Wea~eN6MFS2qnt9kiVlDOmHMQqr-AuDkjv52dUxBxTshoFDqIGEF9O3DOe68HbmI2A8T6PeHKspn6YiJ4kb7GQYaEkku3ZL6TdbmIv1Rqx5CYg2qeL9B8WsI5U4cRhb7l7Kb1vGq6Xk4uDOwSwNAdd4ayNOPvDAqfvAZs4MoTQ9VeQjMFECgwi5FDF3CjEgL847HBTgHMS3PdAx-m7kIlyP-b-ak62hO3g__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Polychaete_distribution_in_the_near_shore_zone_of_Martel_inlet_admiralty_bay_King_George_island_Antarctica_","translated_slug":"","page_count":15,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":40096111,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096111/thumbnails/1.jpg","file_name":"Polychaete_distribution_in_the_near-shor20151117-18316-c2zw58.pdf","download_url":"https://www.academia.edu/attachments/40096111/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Polychaete_distribution_in_the_near_shor.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096111/Polychaete_distribution_in_the_near-shor20151117-18316-c2zw58-libre.pdf?1447762034=\u0026response-content-disposition=attachment%3B+filename%3DPolychaete_distribution_in_the_near_shor.pdf\u0026Expires=1732999857\u0026Signature=WhJCOfUaepITXpxHqZicwn9nx8bF7ENGNpYohD~Z2u0t2Qr7SHRuY9EiqVkemSBTEdCsga~rtUnPEHVPznLhO6TaK4cqIfQFBtqVTktB44I4Zay5czt4Wea~eN6MFS2qnt9kiVlDOmHMQqr-AuDkjv52dUxBxTshoFDqIGEF9O3DOe68HbmI2A8T6PeHKspn6YiJ4kb7GQYaEkku3ZL6TdbmIv1Rqx5CYg2qeL9B8WsI5U4cRhb7l7Kb1vGq6Xk4uDOwSwNAdd4ayNOPvDAqfvAZs4MoTQ9VeQjMFECgwi5FDF3CjEgL847HBTgHMS3PdAx-m7kIlyP-b-ak62hO3g__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":400,"name":"Earth Sciences","url":"https://www.academia.edu/Documents/in/Earth_Sciences"},{"id":47884,"name":"Biological Sciences","url":"https://www.academia.edu/Documents/in/Biological_Sciences"},{"id":58054,"name":"Environmental Sciences","url":"https://www.academia.edu/Documents/in/Environmental_Sciences"}],"urls":[]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498004"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498004/On_the_taxonomy_of_Apistobranchus_species_Polychaeta_Apistobranchidae_from_the_Antarctic"><img alt="Research paper thumbnail of On the taxonomy of Apistobranchus species (Polychaeta: Apistobranchidae) from the Antarctic" class="work-thumbnail" src="https://attachments.academia-assets.com/40096107/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498004/On_the_taxonomy_of_Apistobranchus_species_Polychaeta_Apistobranchidae_from_the_Antarctic">On the taxonomy of Apistobranchus species (Polychaeta: Apistobranchidae) from the Antarctic</a></div><div class="wp-workCard_item"><span>Zootaxa</span><span>, 2007</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="95805ef4a1f79f8c7b37f1ee029f6fff" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:40096107,&quot;asset_id&quot;:18498004,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/40096107/download_file?st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498004"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498004"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498004; 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Two species were later described: Apistobranchus glacierae Hartman, 1978 and Apistobranchus gudrunae Hartmann-Schröder \u0026 Rosenfeldt, 1988, which differed from A. glacierae mainly by having compound setae. Subsequently, ecological studies in Antarctica have identified both of these species. On the status of Antarctic Apistobranchus, we concluded that there is up to now, only one valid species, A. glacierae. The character 'compound-setae' referred for A. gudrunae is in fact simple limbate ones eventually splintered as described for A. glacierae. Other characters, also previously considered as diagnostics for A. gudrunae, did not differ in both species as shown by the observation of several specimens of different sizes and type material of A. glacierae and A. gudrunae. All the reports on the densities of Antarctic apistobranchids, including ours, show that they have higher values in finer sediments of 20 and 40 m depth. The need of additional work, including the rearing of specimens in the laboratory and plankton analysis, is 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href="https://www.academia.edu/13046165/Integrated_quality_assessment_of_sediments_from_harbour_areas_in_Santos_S%C3%A3o_Vicente_Estuarine_System_Southern_Brazil">Integrated quality assessment of sediments from harbour areas in Santos-São Vicente Estuarine System, Southern Brazil</a></div><div class="wp-workCard_item wp-workCard--coauthors"><span>by </span><span><a class="" data-click-track="profile-work-strip-authors" href="https://unifesp.academia.edu/AugustoCesar">Augusto Cesar</a>, <a class="" data-click-track="profile-work-strip-authors" href="https://furg.academia.edu/GilbertoFillmann">Gilberto Fillmann</a>, <a class="" data-click-track="profile-work-strip-authors" href="https://independent.academia.edu/M%C3%B4nicaPetti">Mônica Petti</a>, and <a class="" data-click-track="profile-work-strip-authors" href="https://independent.academia.edu/LucianeMaranho">Luciane Maranho</a></span></div><div class="wp-workCard_item"><span>Estuarine, Coastal and Shelf Science</span><span>, 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="6386153"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/6386153/Spiochaetopterus_nonatoi_a_new_species_of_Chaetopteridae_Polychaeta_from_Brazil_biogeographical_consequences"><img alt="Research paper thumbnail of Spiochaetopterus nonatoi, a new species of Chaetopteridae (Polychaeta) from Brazil: biogeographical consequences" class="work-thumbnail" src="https://attachments.academia-assets.com/36586667/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/6386153/Spiochaetopterus_nonatoi_a_new_species_of_Chaetopteridae_Polychaeta_from_Brazil_biogeographical_consequences">Spiochaetopterus nonatoi, a new species of Chaetopteridae (Polychaeta) from Brazil: biogeographical consequences</a></div><div class="wp-workCard_item"><span>Journal of The Marine Biological Association of The United Kingdom</span><span>, 2001</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="2c6d73a610b424045daf58d97a418d43" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:36586667,&quot;asset_id&quot;:6386153,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/36586667/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="6386153"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="6386153"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 6386153; 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This species is distinguishable from already erected species of the same genus by the following characteristics: oculate specimens of large size; maximum segments, 197 (N=15); maximum tube length, 45 cm; maximum body length, 20 cm; orange coloration of the fore part (peristomium and segment 1) and of the ventral shield on segments 6^7; shape of the specialized enlarged cutting seta on A4 with an obliquely truncated distal end; this slightly concave section is heart-shaped and clearly asymmetrical; segments B1 and B2 with one lobe on the neuropodia. This additional description in the genus Spiochaetopterus con¢rms the limited geographical area of each species in this genus. In spite of the probable ability of planktonic larvae of Spiochaetopterus to disseminate throughout the Atlantic Ocean, the benthic adults of each species cover only a limited geographical area. In particular, the stem species S. costarum loses its cosmopolitan character.","publication_date":{"day":null,"month":null,"year":2001,"errors":{}},"publication_name":"Journal of The Marine Biological Association of The United Kingdom","grobid_abstract_attachment_id":36586667},"translated_abstract":null,"internal_url":"https://www.academia.edu/6386153/Spiochaetopterus_nonatoi_a_new_species_of_Chaetopteridae_Polychaeta_from_Brazil_biogeographical_consequences","translated_internal_url":"","created_at":"2014-03-12T05:09:12.530-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":36586667,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/36586667/thumbnails/1.jpg","file_name":"BHAUD-PETTI-01.pdf","download_url":"https://www.academia.edu/attachments/36586667/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Spiochaetopterus_nonatoi_a_new_species_o.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/36586667/BHAUD-PETTI-01-libre.pdf?1423587044=\u0026response-content-disposition=attachment%3B+filename%3DSpiochaetopterus_nonatoi_a_new_species_o.pdf\u0026Expires=1732999858\u0026Signature=TWPkXoujYCb~hMTeA~zpw~rOxyIaHLHF0tg17CwVmDTNZfxgw9nrD5Vk3K8vtjGYrMUDhPGJl1QmX6CTcw5DjviQstVzGYuSG2Mvbl4g4gPmKfwdYDAItjgqI5fDdIdDQ-LRjWNlmgE6q4EAmyPpz1jD1o28c3NxYfh1wLw2qgtGjePa1BOuTC3G12JnrZPes-yOBU-x0-YieWTzH4HjdYe1a4ymTO60VtM5DX6rqV0si4fMNWQhNxdvwArUrRwrCZlTYct~7Yauhjf0f9Y7gXX-VTyql0DI1xwbCLisaSNIb7uEQwdNxNNRlLdj5~a6fjNEz38I-oB4cpPtK3Ne6w__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Spiochaetopterus_nonatoi_a_new_species_of_Chaetopteridae_Polychaeta_from_Brazil_biogeographical_consequences","translated_slug":"","page_count":10,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":36586667,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/36586667/thumbnails/1.jpg","file_name":"BHAUD-PETTI-01.pdf","download_url":"https://www.academia.edu/attachments/36586667/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Spiochaetopterus_nonatoi_a_new_species_o.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/36586667/BHAUD-PETTI-01-libre.pdf?1423587044=\u0026response-content-disposition=attachment%3B+filename%3DSpiochaetopterus_nonatoi_a_new_species_o.pdf\u0026Expires=1732999858\u0026Signature=TWPkXoujYCb~hMTeA~zpw~rOxyIaHLHF0tg17CwVmDTNZfxgw9nrD5Vk3K8vtjGYrMUDhPGJl1QmX6CTcw5DjviQstVzGYuSG2Mvbl4g4gPmKfwdYDAItjgqI5fDdIdDQ-LRjWNlmgE6q4EAmyPpz1jD1o28c3NxYfh1wLw2qgtGjePa1BOuTC3G12JnrZPes-yOBU-x0-YieWTzH4HjdYe1a4ymTO60VtM5DX6rqV0si4fMNWQhNxdvwArUrRwrCZlTYct~7Yauhjf0f9Y7gXX-VTyql0DI1xwbCLisaSNIb7uEQwdNxNNRlLdj5~a6fjNEz38I-oB4cpPtK3Ne6w__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":173,"name":"Zoology","url":"https://www.academia.edu/Documents/in/Zoology"},{"id":5541,"name":"Plant Biology","url":"https://www.academia.edu/Documents/in/Plant_Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"}],"urls":[{"id":2574416,"url":"http://www.journals.cambridge.org/abstract_S002531540100368X"}]}, dispatcherData: dispatcherData }); 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Most of the available records arise from successive Polish and Brazilian Antarctic expeditions organized since 1977 and 1982, respectively, but also include new data from joint collecting efforts during the International Polar Year (2007Year ( -2009). Geological and hydrological characteristics of Admiralty Bay and a comprehensive species checklist with detailed data on the distribution and nature of the benthic communities are provided. Approximately 1300 species of benthic organisms (excluding bacteria, fungi and parasites) were recorded from the bay's entire depth range (0-500 m). Generalized classifications and the descriptions of soft-bottom and hard-bottom invertebrate communities are presented. A time-series analysis showed seasonal and interannual changes in the shallow benthic communities, likely to be related to ice formation and ice melt within the bay. As one of the best studied regions in the maritime Antarctic Admiralty Bay represents a legacy site, where continued, systematically integrated data sampling can evaluate the effects of climate change on marine life. Both high species richness and high assemblage diversity of the Admiralty Bay shelf benthic community have been documented against the background of habitat heterogeneity.","publication_date":{"day":null,"month":null,"year":2011,"errors":{}},"publication_name":"Deep-sea Research Part Ii-topical Studies in 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Heterogeneity","url":"https://www.academia.edu/Documents/in/Habitat_Heterogeneity"},{"id":199056,"name":"Species Richness","url":"https://www.academia.edu/Documents/in/Species_Richness"},{"id":322539,"name":"Benthos","url":"https://www.academia.edu/Documents/in/Benthos"},{"id":796144,"name":"Deep Sea","url":"https://www.academia.edu/Documents/in/Deep_Sea"},{"id":901837,"name":"International Polar Year","url":"https://www.academia.edu/Documents/in/International_Polar_Year"},{"id":1391624,"name":"Benthic Communities","url":"https://www.academia.edu/Documents/in/Benthic_Communities"},{"id":2142568,"name":"Thallophyta","url":"https://www.academia.edu/Documents/in/Thallophyta"}],"urls":[{"id":2574415,"url":"http://www.sciencedirect.com/science/article/pii/S0967064510002523"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="6386151"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/6386151/Trophic_relationships_in_the_nearshore_zone_of_Martel_Inlet_King_George_Island_Antarctica_d13C_stable_isotope_analysis"><img alt="Research paper thumbnail of Trophic relationships in the nearshore zone of Martel Inlet (King George Island, Antarctica): d13C stable-isotope analysis" class="work-thumbnail" src="https://attachments.academia-assets.com/37435623/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/6386151/Trophic_relationships_in_the_nearshore_zone_of_Martel_Inlet_King_George_Island_Antarctica_d13C_stable_isotope_analysis">Trophic relationships in the nearshore zone of Martel Inlet (King George Island, Antarctica): d13C stable-isotope analysis</a></div><div class="wp-workCard_item"><span>Polar Biology</span><span>, 2004</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Carbon isotopic composition was used to assess the linkage between three different potential sour...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Carbon isotopic composition was used to assess the linkage between three different potential sources of energy and the community in the shallow coastal zone of Martel Inlet. Stable δ13C ratios ranged from −28.7‰ for the zooplankton plus phytoplankton to −14.4‰ for the grazer Nacella concinna. Microphytobenthos (−16.7‰) was considerably more enriched in 13C than were suspended particulate matter (SPM) (−25.6‰) and macroalgal fragments (−23.6‰ and −21.1‰), indicating that stable carbon isotope analysis might be used to discern the relative contribution of these sources of primary production. There is a benthic-pelagic coupling between plankton, benthic suspensivores, the ophiuroid Ophionotus victoriae and the icefish Chaenocephalus aceratus. Benthic grazers such as N. concinna, deposit feeders such as Yoldia eightsi and the nematodes showed a tight coupling with the microphytobenthos and the sediment. Some omnivorous/depositivorous polychaetes, echinoids, amphipods and the fish Notothenia coriiceps showed values close to the ratios of the macroalgal fragments. Benthic carnivores and/or scavengers were generally enriched over suspensivores and depleted in relation to microphytobenthos grazers, showing a considerable overlap in δ13C values throughout the food web, without any clear coupling with the primary sources of organic matter. The trophic web in the shallow zone of high benthic production and under seasonal ice cover in the Antarctic is more complex than it is in shelf areas, where SPM is the main food source. The soft-bottom community in the shallow zone of Martel Inlet is enriched in 13C due to the significant input of carbon from the microphytobenthos and macroalgal fragments.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="f4660178fe3fd4e7591cdcd3c3559e51" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:37435623,&quot;asset_id&quot;:6386151,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/37435623/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="6386151"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="6386151"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 6386151; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=6386151]").text(description); $(".js-view-count[data-work-id=6386151]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 6386151; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='6386151']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 6386151, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "f4660178fe3fd4e7591cdcd3c3559e51" } } $('.js-work-strip[data-work-id=6386151]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":6386151,"title":"Trophic relationships in the nearshore zone of Martel Inlet (King George Island, Antarctica): d13C stable-isotope analysis","translated_title":"","metadata":{"abstract":"Carbon isotopic composition was used to assess the linkage between three different potential sources of energy and the community in the shallow coastal zone of Martel Inlet. Stable δ13C ratios ranged from −28.7‰ for the zooplankton plus phytoplankton to −14.4‰ for the grazer Nacella concinna. Microphytobenthos (−16.7‰) was considerably more enriched in 13C than were suspended particulate matter (SPM) (−25.6‰) and macroalgal fragments (−23.6‰ and −21.1‰), indicating that stable carbon isotope analysis might be used to discern the relative contribution of these sources of primary production. There is a benthic-pelagic coupling between plankton, benthic suspensivores, the ophiuroid Ophionotus victoriae and the icefish Chaenocephalus aceratus. Benthic grazers such as N. concinna, deposit feeders such as Yoldia eightsi and the nematodes showed a tight coupling with the microphytobenthos and the sediment. Some omnivorous/depositivorous polychaetes, echinoids, amphipods and the fish Notothenia coriiceps showed values close to the ratios of the macroalgal fragments. Benthic carnivores and/or scavengers were generally enriched over suspensivores and depleted in relation to microphytobenthos grazers, showing a considerable overlap in δ13C values throughout the food web, without any clear coupling with the primary sources of organic matter. The trophic web in the shallow zone of high benthic production and under seasonal ice cover in the Antarctic is more complex than it is in shelf areas, where SPM is the main food source. The soft-bottom community in the shallow zone of Martel Inlet is enriched in 13C due to the significant input of carbon from the microphytobenthos and macroalgal fragments.","publication_date":{"day":null,"month":null,"year":2004,"errors":{}},"publication_name":"Polar Biology"},"translated_abstract":"Carbon isotopic composition was used to assess the linkage between three different potential sources of energy and the community in the shallow coastal zone of Martel Inlet. Stable δ13C ratios ranged from −28.7‰ for the zooplankton plus phytoplankton to −14.4‰ for the grazer Nacella concinna. Microphytobenthos (−16.7‰) was considerably more enriched in 13C than were suspended particulate matter (SPM) (−25.6‰) and macroalgal fragments (−23.6‰ and −21.1‰), indicating that stable carbon isotope analysis might be used to discern the relative contribution of these sources of primary production. There is a benthic-pelagic coupling between plankton, benthic suspensivores, the ophiuroid Ophionotus victoriae and the icefish Chaenocephalus aceratus. Benthic grazers such as N. concinna, deposit feeders such as Yoldia eightsi and the nematodes showed a tight coupling with the microphytobenthos and the sediment. Some omnivorous/depositivorous polychaetes, echinoids, amphipods and the fish Notothenia coriiceps showed values close to the ratios of the macroalgal fragments. Benthic carnivores and/or scavengers were generally enriched over suspensivores and depleted in relation to microphytobenthos grazers, showing a considerable overlap in δ13C values throughout the food web, without any clear coupling with the primary sources of organic matter. The trophic web in the shallow zone of high benthic production and under seasonal ice cover in the Antarctic is more complex than it is in shelf areas, where SPM is the main food source. The soft-bottom community in the shallow zone of Martel Inlet is enriched in 13C due to the significant input of carbon from the microphytobenthos and macroalgal fragments.","internal_url":"https://www.academia.edu/6386151/Trophic_relationships_in_the_nearshore_zone_of_Martel_Inlet_King_George_Island_Antarctica_d13C_stable_isotope_analysis","translated_internal_url":"","created_at":"2014-03-12T05:09:05.734-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":37435623,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/37435623/thumbnails/1.jpg","file_name":"Corbisier-etal-04.pdf","download_url":"https://www.academia.edu/attachments/37435623/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Trophic_relationships_in_the_nearshore_z.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/37435623/Corbisier-etal-04-libre.pdf?1430145659=\u0026response-content-disposition=attachment%3B+filename%3DTrophic_relationships_in_the_nearshore_z.pdf\u0026Expires=1732999858\u0026Signature=TsJYHL3IBYNFWcQYTXMo2JbtVcyMk5OiIYnLPtDrTQl3Cen~MPqWVsm2GXx5ISAd2lXq-NiGOtbWxE~xF8xZHtrmbNp4YceF41N8SjHQqMuvkzYvuoXtHcQ14Xy7muqHUwztu8XsnLwtecIiChKqXD1DQzq1B9FD9Eq5jBKWZJUoCfaC98hespXdS~ISVjBwynud-m1xI-dRuxjmJZ2wcm6uYaWSghilJd6Hcs8Yesw6wG~q4GyA2jQfcc013LF2bcUiN5nOZkLH5ajsUHQL1AGr3P5lPaLs-NnaHjf1lmwx~36PmBRhp49248ppqVfhGXTFQnWw9Gs4GFzYjADwyA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Trophic_relationships_in_the_nearshore_zone_of_Martel_Inlet_King_George_Island_Antarctica_d13C_stable_isotope_analysis","translated_slug":"","page_count":8,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":37435623,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/37435623/thumbnails/1.jpg","file_name":"Corbisier-etal-04.pdf","download_url":"https://www.academia.edu/attachments/37435623/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Trophic_relationships_in_the_nearshore_z.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/37435623/Corbisier-etal-04-libre.pdf?1430145659=\u0026response-content-disposition=attachment%3B+filename%3DTrophic_relationships_in_the_nearshore_z.pdf\u0026Expires=1732999858\u0026Signature=TsJYHL3IBYNFWcQYTXMo2JbtVcyMk5OiIYnLPtDrTQl3Cen~MPqWVsm2GXx5ISAd2lXq-NiGOtbWxE~xF8xZHtrmbNp4YceF41N8SjHQqMuvkzYvuoXtHcQ14Xy7muqHUwztu8XsnLwtecIiChKqXD1DQzq1B9FD9Eq5jBKWZJUoCfaC98hespXdS~ISVjBwynud-m1xI-dRuxjmJZ2wcm6uYaWSghilJd6Hcs8Yesw6wG~q4GyA2jQfcc013LF2bcUiN5nOZkLH5ajsUHQL1AGr3P5lPaLs-NnaHjf1lmwx~36PmBRhp49248ppqVfhGXTFQnWw9Gs4GFzYjADwyA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":1703,"name":"Stable Isotope Analysis","url":"https://www.academia.edu/Documents/in/Stable_Isotope_Analysis"},{"id":47884,"name":"Biological Sciences","url":"https://www.academia.edu/Documents/in/Biological_Sciences"},{"id":82682,"name":"Food web","url":"https://www.academia.edu/Documents/in/Food_web"},{"id":289852,"name":"Primary Production","url":"https://www.academia.edu/Documents/in/Primary_Production"},{"id":340748,"name":"Carbon Isotope","url":"https://www.academia.edu/Documents/in/Carbon_Isotope"},{"id":477461,"name":"Coastal Zone","url":"https://www.academia.edu/Documents/in/Coastal_Zone"},{"id":512395,"name":"Polar Biology","url":"https://www.academia.edu/Documents/in/Polar_Biology"},{"id":970387,"name":"Organic Matter","url":"https://www.academia.edu/Documents/in/Organic_Matter"},{"id":1183407,"name":"Suspended Particulate Matter","url":"https://www.academia.edu/Documents/in/Suspended_Particulate_Matter"}],"urls":[{"id":2574414,"url":"http://www.springerlink.com/content/attelh3myhdb8w2n"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> </div><div class="profile--tab_content_container js-tab-pane tab-pane" data-section-id="1240460" id="papers"><div class="js-work-strip profile--work_container" data-work-id="18498016"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" rel="nofollow" href="https://www.academia.edu/18498016/_p_class_Title_Soft_bottom_polychaetes_from_the_Brazilian_harbors_of_Mucuripe_and_Pec%C3%A9m_state_of_Cear%C3%A1_and_Santos_state_of_S%C3%A3o_Paulo_p_"><img alt="Research paper thumbnail of &lt;p class=&quot;Title&quot;&gt;Soft-bottom polychaetes from the Brazilian harbors of Mucuripe and Pecém (state of Ceará) and Santos (state of São Paulo)&lt;/p&gt;" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" rel="nofollow" href="https://www.academia.edu/18498016/_p_class_Title_Soft_bottom_polychaetes_from_the_Brazilian_harbors_of_Mucuripe_and_Pec%C3%A9m_state_of_Cear%C3%A1_and_Santos_state_of_S%C3%A3o_Paulo_p_">&lt;p class=&quot;Title&quot;&gt;Soft-bottom polychaetes from the Brazilian harbors of Mucuripe and Pecém (state of Ceará) and Santos (state of São Paulo)&lt;/p&gt;</a></div><div class="wp-workCard_item"><span>Check List</span><span>, 2015</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498016"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498016"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498016; 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="13514552"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/13514552/INFLUENCE_OF_SEDIMENT_QUALITY_ON_THE_BENTHIC_COMMUNITIES_OF_ADMIRALTY_BAY_KING_GEORGE_ISLAND_ANTARCTICA"><img alt="Research paper thumbnail of INFLUENCE OF SEDIMENT QUALITY ON THE BENTHIC COMMUNITIES OF ADMIRALTY BAY, KING GEORGE ISLAND, ANTARCTICA" class="work-thumbnail" src="https://attachments.academia-assets.com/45250942/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/13514552/INFLUENCE_OF_SEDIMENT_QUALITY_ON_THE_BENTHIC_COMMUNITIES_OF_ADMIRALTY_BAY_KING_GEORGE_ISLAND_ANTARCTICA">INFLUENCE OF SEDIMENT QUALITY ON THE BENTHIC COMMUNITIES OF ADMIRALTY BAY, KING GEORGE ISLAND, ANTARCTICA</a></div><div class="wp-workCard_item wp-workCard--coauthors"><span>by </span><span><a class="" data-click-track="profile-work-strip-authors" href="https://unifesp.academia.edu/CristinaNakayama">Cristina Nakayama</a> and <a class="" data-click-track="profile-work-strip-authors" href="https://independent.academia.edu/M%C3%B4nicaPetti">Mônica Petti</a></span></div><div class="wp-workCard_item"><span>INCT-APA Annual Activity Report</span><span>, 2015</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="86ff46f4527edf8d37cb56913ae78733" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:45250942,&quot;asset_id&quot;:13514552,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/45250942/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="13514552"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="13514552"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 13514552; 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dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "86ff46f4527edf8d37cb56913ae78733" } } $('.js-work-strip[data-work-id=13514552]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":13514552,"title":"INFLUENCE OF SEDIMENT QUALITY ON THE BENTHIC COMMUNITIES OF ADMIRALTY BAY, KING GEORGE ISLAND, ANTARCTICA","translated_title":"","metadata":{"grobid_abstract":"Marine benthos is widely used in environmental impact studies, especially in coastal areas. A monitoring program of Admiralty Bay has been undertaken since 2008 (and, in the summer of 2010, three areas of Martel Inlet and one area of Mackellar Inlet were sampled in order to verify the environmental status of the area in front of the Ferraz Station (CF) in comparison to reference areas. Sediment was collected to analyse their characteristics and quality and to evaluate the meiofauna and macrofauna communities. Meiofauna densities were in the range of those found in previous studies in the bay and did not differ significantly between the sampling sites. Nematodes were the dominant group. On the other hand macrofauna densities were significantly higher in Mackellar Inlet, when comparing with some sites of Martel Inlet. Polychaetes, oligochaetes and bivalves were the dominant macrofauna taxa. Correlation analysis showed different sediment characteristics responsible to explain the abundance of the meiofauna or the macrofauna groups. A change in the meiobenthic and macrobenthic community structure was detected at the site under the sewage outfall influence (CF1: lower density of meiofauna and different taxa composition of macro and meiofauna), suggesting some impact of human activities on the benthic system in front of the Brazilian Station.","publication_date":{"day":null,"month":null,"year":2015,"errors":{}},"publication_name":"INCT-APA Annual Activity 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Maximum densities, biomass and richness of polychaetes were recorded in late spring (November) and summer (January). The lowest values were observed in winter (July) and early spring (September). The surface dwelling species of the families Spionidae, Cirratulidae, Pilargidae, Poecilochaetidae and Paraonidae were the main indicators of the temporal variability observed in the macrofauna community structure. The temporal distribution patterns were associated to the hydrodynamic processes present in the study area. The occurrence of cold fronts, more intense and frequent in winter, resulted in bottom re-suspension and extensive mortality of the surface life forms from shallow areas. Under these conditions, burrowing infaunal species or carnivorous species can predominate. The penetration of cold water masses during summer increased the concentration of nutrients and the recruitment of larval and juveniles.","grobid_abstract_attachment_id":40096113},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498015/Temporal_variation_of_polychaetes_from_Picinguaba_and_Ubatumirim_bights_southeastern_Brazil_","translated_internal_url":"","created_at":"2015-11-17T03:19:01.168-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096113,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096113/thumbnails/1.jpg","file_name":"Temporal_variation_of_polychaetes_from_P20151117-31675-soabhe.pdf","download_url":"https://www.academia.edu/attachments/40096113/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Temporal_variation_of_polychaetes_from_P.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096113/Temporal_variation_of_polychaetes_from_P20151117-31675-soabhe-libre.pdf?1447762033=\u0026response-content-disposition=attachment%3B+filename%3DTemporal_variation_of_polychaetes_from_P.pdf\u0026Expires=1732999857\u0026Signature=b2xJORtT29XoG6dfYyZRpmFTR~HvuuyKVy1nMgVDq9epBJ8Aoz3tQNylk6Vpenm-NW7QPOWFQSeQcgRm3CEBkYnRU32yGCHVwC~ILNI3OjWK0xTYRw3F~zGXiKT882pa9tPmpfMvuVKCl0GJMh1Got~S6RhDp5t1UZ4vE8-ppNc7QH17Nq9m~gbJ0dg2NXyjHqBzfac1Rt8Mn~Dz6Jp~XnZNAHLfk9mjklRO9gid3d35R3uJQSGaD6Qq00ZB6CB2xGqO3zKWRUcl53WLR2C~oX4bU~bblVFa6ZE9IBokeSyo3d6rhbNqh3TKQj~kmN-n~zJAToArgm395-WmU0U6BA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Temporal_variation_of_polychaetes_from_Picinguaba_and_Ubatumirim_bights_southeastern_Brazil_","translated_slug":"","page_count":10,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":40096113,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096113/thumbnails/1.jpg","file_name":"Temporal_variation_of_polychaetes_from_P20151117-31675-soabhe.pdf","download_url":"https://www.academia.edu/attachments/40096113/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Temporal_variation_of_polychaetes_from_P.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096113/Temporal_variation_of_polychaetes_from_P20151117-31675-soabhe-libre.pdf?1447762033=\u0026response-content-disposition=attachment%3B+filename%3DTemporal_variation_of_polychaetes_from_P.pdf\u0026Expires=1732999857\u0026Signature=b2xJORtT29XoG6dfYyZRpmFTR~HvuuyKVy1nMgVDq9epBJ8Aoz3tQNylk6Vpenm-NW7QPOWFQSeQcgRm3CEBkYnRU32yGCHVwC~ILNI3OjWK0xTYRw3F~zGXiKT882pa9tPmpfMvuVKCl0GJMh1Got~S6RhDp5t1UZ4vE8-ppNc7QH17Nq9m~gbJ0dg2NXyjHqBzfac1Rt8Mn~Dz6Jp~XnZNAHLfk9mjklRO9gid3d35R3uJQSGaD6Qq00ZB6CB2xGqO3zKWRUcl53WLR2C~oX4bU~bblVFa6ZE9IBokeSyo3d6rhbNqh3TKQj~kmN-n~zJAToArgm395-WmU0U6BA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":400,"name":"Earth Sciences","url":"https://www.academia.edu/Documents/in/Earth_Sciences"},{"id":47884,"name":"Biological Sciences","url":"https://www.academia.edu/Documents/in/Biological_Sciences"},{"id":58054,"name":"Environmental Sciences","url":"https://www.academia.edu/Documents/in/Environmental_Sciences"}],"urls":[]}, dispatcherData: dispatcherData }); 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A monitoring program of Admiralty Bay has been underway since 2008 (INCT-APA/CNPq), and in the summer of 2010, the meiofauna and the phytodetritus were sampled at two sites in three areas of Martel Inlet (CF, UP, BP) and at one area in Mackellar Inlet (RE). Densities were in the range of those found in previous studies in the bay and did not differ significantly between the eight sampling sites. Nevertheless lower densities (\u003c3,000 inds. 4.9 cm 2 ) were found at one site in front of the Brazilian Station (CF1), under the influence of the sewage outfall, and at other three sites. Higher densities (\u003e5,000 inds. 4.9 cm 2 ) were found at Ullmann Point (UP) and at one site in Botany Point (BP1). Nematodes were the dominant meiofauna group. A change in the meiobenthic community structure was detected at the site under the sewage outfall influence (CF1: low density, different composition), suggesting some influence of human activities on the benthic system in front of the Brazilian Station.","publication_date":{"day":null,"month":null,"year":2010,"errors":{}},"publication_name":"INCT-APA Annual Activity Report","grobid_abstract_attachment_id":40096183},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498014/Monitoring_the_impact_of_human_activities_in_Admiralty_Bay_King_George_Island_Antarctica_preliminary_results_of_the_meiofauna_community","translated_internal_url":"","created_at":"2015-11-17T03:19:00.796-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096183,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096183/thumbnails/1.jpg","file_name":"Monitoring_the_impact_of_human_activitie20151117-22381-krmb7l.pdf","download_url":"https://www.academia.edu/attachments/40096183/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Monitoring_the_impact_of_human_activitie.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096183/Monitoring_the_impact_of_human_activitie20151117-22381-krmb7l-libre.pdf?1447762023=\u0026response-content-disposition=attachment%3B+filename%3DMonitoring_the_impact_of_human_activitie.pdf\u0026Expires=1732999857\u0026Signature=NMgjo6GjjJJCZDtTG~oRcIM-Gb8glztbCNSPy~kOY9sKTFFVVTFYDAOw6nWjLo2IaofVNaI9cbKRNsXUlH3rzPFtdWrVHncVaiaK-l1nMTgqTIJF9VIxtFueKz0qulxU3PHn8bY9qGQhob~KjyMn124U-T3C0JiJ6bhIYa1mm9rmrqvnvsp3bxkvwXcDmwj-y6K9sLkeX3GTV5HpEFe8UO9onVa4RPxFIMTeM7i5EBgf7bkP7tbZGgJc-62eVkCOT5oWrOMxyr-8DUGBvEaYhcLiAetiNXDBWmbwSYzuPqVVnzQHJXfyXY3RzSA~5hD-mUJ7PoYb5RYpiiF7l1ch1Q__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Monitoring_the_impact_of_human_activities_in_Admiralty_Bay_King_George_Island_Antarctica_preliminary_results_of_the_meiofauna_community","translated_slug":"","page_count":5,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":40096183,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096183/thumbnails/1.jpg","file_name":"Monitoring_the_impact_of_human_activitie20151117-22381-krmb7l.pdf","download_url":"https://www.academia.edu/attachments/40096183/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Monitoring_the_impact_of_human_activitie.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096183/Monitoring_the_impact_of_human_activitie20151117-22381-krmb7l-libre.pdf?1447762023=\u0026response-content-disposition=attachment%3B+filename%3DMonitoring_the_impact_of_human_activitie.pdf\u0026Expires=1732999857\u0026Signature=NMgjo6GjjJJCZDtTG~oRcIM-Gb8glztbCNSPy~kOY9sKTFFVVTFYDAOw6nWjLo2IaofVNaI9cbKRNsXUlH3rzPFtdWrVHncVaiaK-l1nMTgqTIJF9VIxtFueKz0qulxU3PHn8bY9qGQhob~KjyMn124U-T3C0JiJ6bhIYa1mm9rmrqvnvsp3bxkvwXcDmwj-y6K9sLkeX3GTV5HpEFe8UO9onVa4RPxFIMTeM7i5EBgf7bkP7tbZGgJc-62eVkCOT5oWrOMxyr-8DUGBvEaYhcLiAetiNXDBWmbwSYzuPqVVnzQHJXfyXY3RzSA~5hD-mUJ7PoYb5RYpiiF7l1ch1Q__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[],"urls":[]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498013"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498013/Long_Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_King_George_Island_Isotopic_Analysis_of_C_and_N"><img alt="Research paper thumbnail of Long-Term Monitoring of Anthropogenic Impacts from the Brazilian Antarctic Station Comandante Ferraz (King George Island): Isotopic Analysis of C and N" class="work-thumbnail" src="https://attachments.academia-assets.com/42253792/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498013/Long_Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_King_George_Island_Isotopic_Analysis_of_C_and_N">Long-Term Monitoring of Anthropogenic Impacts from the Brazilian Antarctic Station Comandante Ferraz (King George Island): Isotopic Analysis of C and N</a></div><div class="wp-workCard_item"><span>INCT-APA Annual Activity Report</span><span>, 2013</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="a0ca0d465762476c4dafd7ae80fb0f23" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:42253792,&quot;asset_id&quot;:18498013,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/42253792/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498013"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498013"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498013; 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Suspended organic matter (SPM), the algae Desmarestia, sediment, and selected invertebrates of di erent trophic levels (suspensivore, depositivore, grazer and carnivore) were sampled in the subtidal zone (up to 25m) in three summers since 2000/01. e δ 13 C values for consumers ranged from -26.70 (Laternula elliptica) to -12.34‰ (Nacella concinna), and the δ 15 N from 2.86 to 10.71‰ (L. elliptica and Parborlasia corrugatus, respectively). Linear regression lines tted to the data (R \u003e 69%), and there were di erences between the sampling periods. e results suggested some in uence of the sewage organic matter on benthic communities in the coastal area near the Brazilian Station, mainly in the rst summers analysed, and a slight increase towards the end of the summer.","publication_date":{"day":null,"month":null,"year":2013,"errors":{}},"publication_name":"INCT-APA Annual Activity Report","grobid_abstract_attachment_id":42253792},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498013/Long_Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_King_George_Island_Isotopic_Analysis_of_C_and_N","translated_internal_url":"","created_at":"2015-11-17T03:19:00.616-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":42253792,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/42253792/thumbnails/1.jpg","file_name":"Long-Term_Monitoring_of_Anthropogenic_Im20160206-14055-15i4l31.pdf","download_url":"https://www.academia.edu/attachments/42253792/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Long_Term_Monitoring_of_Anthropogenic_Im.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/42253792/Long-Term_Monitoring_of_Anthropogenic_Im20160206-14055-15i4l31-libre.pdf?1454819120=\u0026response-content-disposition=attachment%3B+filename%3DLong_Term_Monitoring_of_Anthropogenic_Im.pdf\u0026Expires=1732999857\u0026Signature=IHoxtq~wW2G2im4ffVf~5EG~-b9nLrC7nrzsNyAeurET9kqdNGlEIAjqRw405172RpU~eLchdyI0Xms8WtXDRQvugCUzwaePsbhnl4XhBZniq5YByH94xgWbW7XWe0v9TpMj1jTBpzvK~c56pwYrzMrKYYJmecotSjhPxCD~Ces33f5ToG2EaScSko5BaYDwY925ryG82uFkmATrtLuqldRUVG2GDO4eXIAzHQybWM4zW8n9c5kI9ZbBaJJODe5zWx6GuZpfRuqKxMsMyXNmEYmYjzwAh-yhFPbLRK2ULA584IwMv8jzm4gfKdMhGEuZmgnV8l~VbaxfMural6xk2w__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Long_Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_King_George_Island_Isotopic_Analysis_of_C_and_N","translated_slug":"","page_count":4,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":42253792,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/42253792/thumbnails/1.jpg","file_name":"Long-Term_Monitoring_of_Anthropogenic_Im20160206-14055-15i4l31.pdf","download_url":"https://www.academia.edu/attachments/42253792/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Long_Term_Monitoring_of_Anthropogenic_Im.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/42253792/Long-Term_Monitoring_of_Anthropogenic_Im20160206-14055-15i4l31-libre.pdf?1454819120=\u0026response-content-disposition=attachment%3B+filename%3DLong_Term_Monitoring_of_Anthropogenic_Im.pdf\u0026Expires=1732999857\u0026Signature=IHoxtq~wW2G2im4ffVf~5EG~-b9nLrC7nrzsNyAeurET9kqdNGlEIAjqRw405172RpU~eLchdyI0Xms8WtXDRQvugCUzwaePsbhnl4XhBZniq5YByH94xgWbW7XWe0v9TpMj1jTBpzvK~c56pwYrzMrKYYJmecotSjhPxCD~Ces33f5ToG2EaScSko5BaYDwY925ryG82uFkmATrtLuqldRUVG2GDO4eXIAzHQybWM4zW8n9c5kI9ZbBaJJODe5zWx6GuZpfRuqKxMsMyXNmEYmYjzwAh-yhFPbLRK2ULA584IwMv8jzm4gfKdMhGEuZmgnV8l~VbaxfMural6xk2w__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[],"urls":[{"id":6485579,"url":"https://www.researchgate.net/profile/Paula_Gheller/publication/274893359_Long-Term_Monitoring_of_Anthropogenic_Impacts_from_the_Brazilian_Antarctic_Station_Comandante_Ferraz_(King_George_Island)_Isotopic_Analysis_of_C_and_N/links/552bcf810cf2e089a3aa7eb9.pdf"}]}, dispatcherData: dispatcherData }); 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dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "8ab424393f4d0a529808fe515bcd44b6" } } $('.js-work-strip[data-work-id=18498011]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":18498011,"title":"Role of meteorological events on the ­macrofauna community and sediment ­composition of the shallow waters of martel inlet (Admiralty Bay, Antarctica)","translated_title":"","metadata":{"grobid_abstract":"The short-term variability of the benthic macrofauna community in the shallow coastal area off the Brazilian Antarctic Station Comandante Ferraz (EACF) was investigated during the austral summer of 2008. Three replicates of sediment samples were obtained by a van Veen grab (0.0275 m²) at 20 m depth, in six periods from 1 st February to 7 th March. Macrofaunal densities and sediment composition varied during this period and were correlated to the wind field. Annelids (Polychaeta and Oligochaeta) were the most abundant group with density values ranging from 202 ind.0.0275m -² to 330 ind.0.0275m -² followed by Mollusca and Crustacea. The Principal Component Analysis (PCA) showed that the main sediment components that distinguish the samples were the percentage of gravel, silt and clay. These variations may be influenced by many factors and the climatic conditions play an important role in the local hydrodynamics that affect the benthic community, mainly the organisms with swimming capacity. Meteorological events may influence differently the sediment composition and the macrofauna community. Additional analysis is ongoing to better understand the short-term variability of the macrofauna, including the identification of the polychaetes. Moreover, studies concerning the local hydrodynamics and the interaction between wind, water and sediment in Admiralty Bay are needed. Objective This study aims to evaluate the wind influence on the short-term variation of the macrofaunal community and sediment composition during the austral summer of 2008 at the shallow coastal area, closer to the Brazilian Antarctic Station (Figure 2a). Methodology Six samples (three replicates each) of sediment were obtained using a van Veen grab (0.0275 m²) (Figure 2b) at 20 m depth almost weekly, from 1 st February to 7 th March 2008. In laboratory, the sediment volumes were measured and then washed through sieves of 0.5 mm mesh size. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498010"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498010/Trophic_structure_of_benthic_communities_in_the_Cabo_Frio_upwelling_system_southeastern_Brazilian_shelf_a_temporal_study_using_stable_isotope_analysis"><img alt="Research paper thumbnail of Trophic structure of benthic communities in the Cabo Frio upwelling system (southeastern Brazilian shelf): a temporal study using stable isotope analysis" class="work-thumbnail" src="https://attachments.academia-assets.com/40096116/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498010/Trophic_structure_of_benthic_communities_in_the_Cabo_Frio_upwelling_system_southeastern_Brazilian_shelf_a_temporal_study_using_stable_isotope_analysis">Trophic structure of benthic communities in the Cabo Frio upwelling system (southeastern Brazilian shelf): a temporal study using stable isotope analysis</a></div><div class="wp-workCard_item"><span>Marine Ecology Progress Series</span><span>, 2014</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="4dcd28a56b6a4ae86ceb8f3c7c5e8ad3" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:40096116,&quot;asset_id&quot;:18498010,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/40096116/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498010"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498010"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498010; 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This region is exposed to moderate seasonal Ekman-driven upwelling that brings cold water with increased nutrient levels nearshore and is more frequent and intense during the austral spring and summer, primarily due to the prevalence of northeasterly winds. Our aim was to verify the influence of this upwelling on the benthic trophic structure of the inner and outer shelf off Cabo Frio through measurements of stable nitrogen (δ 15 N) and carbon (δ 13 C) isotopes. We identified 1 main pathway of organic matter (OM) transfer from the base to the top of the food web, as observed from the tendencies of the δ 13 C and δ 15 N values. The isotopic signatures of benthic consumers exhibited temporal and spatial variability, with no interaction between them. As the result of a time lag, only consumers (mostly decapod carnivores) appeared to reflect the assimilation of 15 N-depleted and 13 C-enriched OM produced and deposited during strong upwelling that occurred 4 mo earlier. Therefore, the intensity and period of the upwelling phenomenon were important for detecting upwelling in benthic food webs. Lighter nitrogen and heavier carbon isotopes were found on the inner shelf. Consumers may have exploited OM of different quality on the inner and outer shelf due to differences in sediment, hydrodynamics, mineralisation and assimilation of 13 C-enriched microphytobenthos. Nevertheless, 4 trophic levels were estimated in the benthic communities of the continental shelf off the Cabo Frio upwelling system, independent of period or area.","publication_date":{"day":null,"month":null,"year":2014,"errors":{}},"publication_name":"Marine Ecology Progress Series","grobid_abstract_attachment_id":40096116},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498010/Trophic_structure_of_benthic_communities_in_the_Cabo_Frio_upwelling_system_southeastern_Brazilian_shelf_a_temporal_study_using_stable_isotope_analysis","translated_internal_url":"","created_at":"2015-11-17T03:19:00.049-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096116,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096116/thumbnails/1.jpg","file_name":"Trophic_structure_of_benthic_communities20151117-22381-1pn7ezx.pdf","download_url":"https://www.academia.edu/attachments/40096116/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Trophic_structure_of_benthic_communities.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096116/Trophic_structure_of_benthic_communities20151117-22381-1pn7ezx-libre.pdf?1447762033=\u0026response-content-disposition=attachment%3B+filename%3DTrophic_structure_of_benthic_communities.pdf\u0026Expires=1732999857\u0026Signature=N9ZgzjtYfHa3aGI9USBWaO49vZdPvTbKagXqBDGAuuz223PIAY8Pxwvgm1ooGiEwLNRfxXALMat1GC8m74au-O0A77J9FsxZy4PEQ3wDcAN6KjMaxQqc6ej0juzI~1S~fxxgvnqgjBel7xomNZELGB12ECgPtp8O6msPigJigApSNYytNkqO1OW30RaThxhBT9yGXzIlUKiiGirQtHEQSaAdgmhkqr~-UyLua0wbn5q1fX8llSzHfqlruPC6ns~qJdiAsQFpllChic6z~syri5NBTHtL7qGy21oW7d9Wh7cTdk1~YY7RXkYHT0wkkFKFKNb9pNukKnkQAlQv2UL8MQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Trophic_structure_of_benthic_communities_in_the_Cabo_Frio_upwelling_system_southeastern_Brazilian_shelf_a_temporal_study_using_stable_isotope_analysis","translated_slug":"","page_count":16,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":40096116,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096116/thumbnails/1.jpg","file_name":"Trophic_structure_of_benthic_communities20151117-22381-1pn7ezx.pdf","download_url":"https://www.academia.edu/attachments/40096116/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Trophic_structure_of_benthic_communities.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096116/Trophic_structure_of_benthic_communities20151117-22381-1pn7ezx-libre.pdf?1447762033=\u0026response-content-disposition=attachment%3B+filename%3DTrophic_structure_of_benthic_communities.pdf\u0026Expires=1732999857\u0026Signature=N9ZgzjtYfHa3aGI9USBWaO49vZdPvTbKagXqBDGAuuz223PIAY8Pxwvgm1ooGiEwLNRfxXALMat1GC8m74au-O0A77J9FsxZy4PEQ3wDcAN6KjMaxQqc6ej0juzI~1S~fxxgvnqgjBel7xomNZELGB12ECgPtp8O6msPigJigApSNYytNkqO1OW30RaThxhBT9yGXzIlUKiiGirQtHEQSaAdgmhkqr~-UyLua0wbn5q1fX8llSzHfqlruPC6ns~qJdiAsQFpllChic6z~syri5NBTHtL7qGy21oW7d9Wh7cTdk1~YY7RXkYHT0wkkFKFKNb9pNukKnkQAlQv2UL8MQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":173,"name":"Zoology","url":"https://www.academia.edu/Documents/in/Zoology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"}],"urls":[]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="18498009"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/18498009/Biomagnification_of_mercury_through_the_food_web_of_the_Santos_continental_shelf_subtropical_Brazil"><img alt="Research paper thumbnail of Biomagnification of mercury through the food web of the Santos continental shelf, subtropical Brazil" class="work-thumbnail" src="https://attachments.academia-assets.com/40096114/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/18498009/Biomagnification_of_mercury_through_the_food_web_of_the_Santos_continental_shelf_subtropical_Brazil">Biomagnification of mercury through the food web of the Santos continental shelf, subtropical Brazil</a></div><div class="wp-workCard_item"><span>Marine Ecology Progress Series</span><span>, 2014</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="b1b68913ec337c00263e7af8b6611277" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:40096114,&quot;asset_id&quot;:18498009,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/40096114/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="18498009"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="18498009"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 18498009; 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dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "b1b68913ec337c00263e7af8b6611277" } } $('.js-work-strip[data-work-id=18498009]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":18498009,"title":"Biomagnification of mercury through the food web of the Santos continental shelf, subtropical Brazil","translated_title":"","metadata":{"grobid_abstract":"This study was conducted on the continental shelf surrounding a large metropolitan region on the coast of São Paulo State, Southeast Brazil. This region harbours a large industrial plant and the largest port in Latin America, both of which release pollutants into the Santos−São Vicente estuarine system. High levels of Hg have been reported in sediments and fish from the estuaries and Santos Bay; however, data for the biota in offshore waters are scarce, and the biomagnification of Hg across the food web here has never been assessed. In this study, the trophic structure of the Santos shelf was addressed through the carbon and nitrogen stable isotope compositions of different species across a trophic gradient. We determined the total Hg levels (THg, dry weight) of invertebrates and fish to estimate the rate of biomagnification of this metal in the benthic and pelagic food webs. The lowest mean THg levels were found in zooplankton (0.006 µg g −1 ) and surface-depositivore polychaetes (0.011 µg g −1 ); the highest THg levels were found in the largest fishes: Patagonian flounder (0.825 µg g −1 ), fat snook (0.714 µg g −1 ), and lesser guitarfish (0.639 µg g −1 ). Overall, the Hg concentration in fish was below the recommended limit for human consumption. The THg and δ 15 N were positively correlated in both food webs; however, the rate of biomagnification was higher and the basal Hg was lower in the pelagic food web. 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dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "5789e241ff393d998198e391c6b06850" } } $('.js-work-strip[data-work-id=18498005]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":18498005,"title":"Polychaete distribution in the near-shore zone of Martel inlet, admiralty bay (King George island, Antarctica)","translated_title":"","metadata":{"grobid_abstract":"Although a considerable amount of literature exists on Antarctic polychaetes, comparatively few ecological studies have been carried out in shallow waters (to 30 m). In these environments, inherent factors such as freezing of the intertidal and upper sublittoral zones, iceberg scouring and formation of anchor ice greatly influence the faunal distribution and comnmunity structure. The aim of this study is to investigate the structure of the polychaete assemblages in a shallow soft bottom environment in the Antarctic and to assess the relationships with bottom type and ice effects. The samples were taken in December 1994 along a transect comprising four sampling stations ranging from 6-25 m depth, adjacent to the Brazilian Antarctic Station \"Comandante Ferraz\" at Martel Inlet, Admiralty Bay. Two additional stations were established at a depth of 18 m in order to study the effect of ice-scouring. Five replicates per station were samnpled with corers taken by SCUBA divers. The polychaete distribution showed a distinct zonation pattern as a fuiction of depth induced mainly by sedimentary differences and ice-scouring. The polychaete density, biomass and species diversity increased with depth. In the area affected by ice-scouring, these structural parameters were more variable. A total of 31 species in 18 families was recorded across the sampling area. Four species accounted for 80% of the total abundance: Apistobranchus gudrunae, Tharyx cf. cincinnatus, Leitoscoloplos kerguelensis and Ophryotrocha notialis. Certain tube-dwelling polychaetes, such as Leaena cf. collaris and Asvchis aniphiglypta, occurred only at the 18 and 25 m stations where the ice-effects are less than at the shallower stations. Conversely, some species, notably those belonging to taxa known to be opportunistic in life-style, such as Ophryotrochl notialis and Microspio cf. moorei, were more abundant at the shallow stations.","publication_date":{"day":null,"month":null,"year":2000,"errors":{}},"grobid_abstract_attachment_id":40096111},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498005/Polychaete_distribution_in_the_near_shore_zone_of_Martel_inlet_admiralty_bay_King_George_island_Antarctica_","translated_internal_url":"","created_at":"2015-11-17T03:18:58.969-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096111,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096111/thumbnails/1.jpg","file_name":"Polychaete_distribution_in_the_near-shor20151117-18316-c2zw58.pdf","download_url":"https://www.academia.edu/attachments/40096111/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Polychaete_distribution_in_the_near_shor.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096111/Polychaete_distribution_in_the_near-shor20151117-18316-c2zw58-libre.pdf?1447762034=\u0026response-content-disposition=attachment%3B+filename%3DPolychaete_distribution_in_the_near_shor.pdf\u0026Expires=1732999857\u0026Signature=WhJCOfUaepITXpxHqZicwn9nx8bF7ENGNpYohD~Z2u0t2Qr7SHRuY9EiqVkemSBTEdCsga~rtUnPEHVPznLhO6TaK4cqIfQFBtqVTktB44I4Zay5czt4Wea~eN6MFS2qnt9kiVlDOmHMQqr-AuDkjv52dUxBxTshoFDqIGEF9O3DOe68HbmI2A8T6PeHKspn6YiJ4kb7GQYaEkku3ZL6TdbmIv1Rqx5CYg2qeL9B8WsI5U4cRhb7l7Kb1vGq6Xk4uDOwSwNAdd4ayNOPvDAqfvAZs4MoTQ9VeQjMFECgwi5FDF3CjEgL847HBTgHMS3PdAx-m7kIlyP-b-ak62hO3g__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Polychaete_distribution_in_the_near_shore_zone_of_Martel_inlet_admiralty_bay_King_George_island_Antarctica_","translated_slug":"","page_count":15,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":40096111,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096111/thumbnails/1.jpg","file_name":"Polychaete_distribution_in_the_near-shor20151117-18316-c2zw58.pdf","download_url":"https://www.academia.edu/attachments/40096111/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Polychaete_distribution_in_the_near_shor.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096111/Polychaete_distribution_in_the_near-shor20151117-18316-c2zw58-libre.pdf?1447762034=\u0026response-content-disposition=attachment%3B+filename%3DPolychaete_distribution_in_the_near_shor.pdf\u0026Expires=1732999857\u0026Signature=WhJCOfUaepITXpxHqZicwn9nx8bF7ENGNpYohD~Z2u0t2Qr7SHRuY9EiqVkemSBTEdCsga~rtUnPEHVPznLhO6TaK4cqIfQFBtqVTktB44I4Zay5czt4Wea~eN6MFS2qnt9kiVlDOmHMQqr-AuDkjv52dUxBxTshoFDqIGEF9O3DOe68HbmI2A8T6PeHKspn6YiJ4kb7GQYaEkku3ZL6TdbmIv1Rqx5CYg2qeL9B8WsI5U4cRhb7l7Kb1vGq6Xk4uDOwSwNAdd4ayNOPvDAqfvAZs4MoTQ9VeQjMFECgwi5FDF3CjEgL847HBTgHMS3PdAx-m7kIlyP-b-ak62hO3g__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":400,"name":"Earth Sciences","url":"https://www.academia.edu/Documents/in/Earth_Sciences"},{"id":47884,"name":"Biological Sciences","url":"https://www.academia.edu/Documents/in/Biological_Sciences"},{"id":58054,"name":"Environmental Sciences","url":"https://www.academia.edu/Documents/in/Environmental_Sciences"}],"urls":[]}, dispatcherData: dispatcherData }); 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Two species were later described: Apistobranchus glacierae Hartman, 1978 and Apistobranchus gudrunae Hartmann-Schröder \u0026 Rosenfeldt, 1988, which differed from A. glacierae mainly by having compound setae. Subsequently, ecological studies in Antarctica have identified both of these species. On the status of Antarctic Apistobranchus, we concluded that there is up to now, only one valid species, A. glacierae. The character 'compound-setae' referred for A. gudrunae is in fact simple limbate ones eventually splintered as described for A. glacierae. Other characters, also previously considered as diagnostics for A. gudrunae, did not differ in both species as shown by the observation of several specimens of different sizes and type material of A. glacierae and A. gudrunae. All the reports on the densities of Antarctic apistobranchids, including ours, show that they have higher values in finer sediments of 20 and 40 m depth. The need of additional work, including the rearing of specimens in the laboratory and plankton analysis, is emphasized.","publication_date":{"day":null,"month":null,"year":2007,"errors":{}},"publication_name":"Zootaxa","grobid_abstract_attachment_id":40096107},"translated_abstract":null,"internal_url":"https://www.academia.edu/18498004/On_the_taxonomy_of_Apistobranchus_species_Polychaeta_Apistobranchidae_from_the_Antarctic","translated_internal_url":"","created_at":"2015-11-17T03:18:58.111-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":40096107,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/40096107/thumbnails/1.jpg","file_name":"On_the_taxonomy_of_Apistobranchus_specie20151117-22381-126g1r5.pdf","download_url":"https://www.academia.edu/attachments/40096107/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"On_the_taxonomy_of_Apistobranchus_specie.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/40096107/On_the_taxonomy_of_Apistobranchus_specie20151117-22381-126g1r5-libre.pdf?1447762035=\u0026response-content-disposition=attachment%3B+filename%3DOn_the_taxonomy_of_Apistobranchus_specie.pdf\u0026Expires=1732999857\u0026Signature=cQtVxO~hOvgmY5nw3q-wBE~VRTrrIyHYIA181fa87OhodSv5YcS9VNsHdRRYsqO7Gzqj7RouVfwNwVzy177jomIF2hB~e6r3PU9WxkERl4DHVHJa8u6UkfHb-ZiYiCTA7~QHB3q4LSBgbLCqM9xwa26Gu23SGEapav67csifHQbMnlG2V5oqPmrI6awS-SekH9BcSEOr4LNoO2KIJ9tBWmtZ034wVDXM4WLNF6TbFToM38T-5FS-AkXE-gXMAo~lFQSg4zYlZoBi1rrvkclXHQWqsjzmnYUiA~sChfcooQ0firfXXhMae-4ScleoFBuNq9rUChgF-r6sG6p6b3ERTA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"On_the_taxonomy_of_Apistobranchus_species_Polychaeta_Apistobranchidae_from_the_Antarctic","translated_slug":"","page_count":9,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica 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href="https://www.academia.edu/13046165/Integrated_quality_assessment_of_sediments_from_harbour_areas_in_Santos_S%C3%A3o_Vicente_Estuarine_System_Southern_Brazil">Integrated quality assessment of sediments from harbour areas in Santos-São Vicente Estuarine System, Southern Brazil</a></div><div class="wp-workCard_item wp-workCard--coauthors"><span>by </span><span><a class="" data-click-track="profile-work-strip-authors" href="https://unifesp.academia.edu/AugustoCesar">Augusto Cesar</a>, <a class="" data-click-track="profile-work-strip-authors" href="https://furg.academia.edu/GilbertoFillmann">Gilberto Fillmann</a>, <a class="" data-click-track="profile-work-strip-authors" href="https://independent.academia.edu/M%C3%B4nicaPetti">Mônica Petti</a>, and <a class="" data-click-track="profile-work-strip-authors" href="https://independent.academia.edu/LucianeMaranho">Luciane Maranho</a></span></div><div class="wp-workCard_item"><span>Estuarine, Coastal and Shelf Science</span><span>, 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This species is distinguishable from already erected species of the same genus by the following characteristics: oculate specimens of large size; maximum segments, 197 (N=15); maximum tube length, 45 cm; maximum body length, 20 cm; orange coloration of the fore part (peristomium and segment 1) and of the ventral shield on segments 6^7; shape of the specialized enlarged cutting seta on A4 with an obliquely truncated distal end; this slightly concave section is heart-shaped and clearly asymmetrical; segments B1 and B2 with one lobe on the neuropodia. This additional description in the genus Spiochaetopterus con¢rms the limited geographical area of each species in this genus. In spite of the probable ability of planktonic larvae of Spiochaetopterus to disseminate throughout the Atlantic Ocean, the benthic adults of each species cover only a limited geographical area. In particular, the stem species S. costarum loses its cosmopolitan character.","publication_date":{"day":null,"month":null,"year":2001,"errors":{}},"publication_name":"Journal of The Marine Biological Association of The United Kingdom","grobid_abstract_attachment_id":36586667},"translated_abstract":null,"internal_url":"https://www.academia.edu/6386153/Spiochaetopterus_nonatoi_a_new_species_of_Chaetopteridae_Polychaeta_from_Brazil_biogeographical_consequences","translated_internal_url":"","created_at":"2014-03-12T05:09:12.530-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":10012503,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":36586667,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/36586667/thumbnails/1.jpg","file_name":"BHAUD-PETTI-01.pdf","download_url":"https://www.academia.edu/attachments/36586667/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Spiochaetopterus_nonatoi_a_new_species_o.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/36586667/BHAUD-PETTI-01-libre.pdf?1423587044=\u0026response-content-disposition=attachment%3B+filename%3DSpiochaetopterus_nonatoi_a_new_species_o.pdf\u0026Expires=1732999858\u0026Signature=TWPkXoujYCb~hMTeA~zpw~rOxyIaHLHF0tg17CwVmDTNZfxgw9nrD5Vk3K8vtjGYrMUDhPGJl1QmX6CTcw5DjviQstVzGYuSG2Mvbl4g4gPmKfwdYDAItjgqI5fDdIdDQ-LRjWNlmgE6q4EAmyPpz1jD1o28c3NxYfh1wLw2qgtGjePa1BOuTC3G12JnrZPes-yOBU-x0-YieWTzH4HjdYe1a4ymTO60VtM5DX6rqV0si4fMNWQhNxdvwArUrRwrCZlTYct~7Yauhjf0f9Y7gXX-VTyql0DI1xwbCLisaSNIb7uEQwdNxNNRlLdj5~a6fjNEz38I-oB4cpPtK3Ne6w__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Spiochaetopterus_nonatoi_a_new_species_of_Chaetopteridae_Polychaeta_from_Brazil_biogeographical_consequences","translated_slug":"","page_count":10,"language":"en","content_type":"Work","owner":{"id":10012503,"first_name":"Mônica","middle_initials":null,"last_name":"Petti","page_name":"MônicaPetti","domain_name":"independent","created_at":"2014-03-12T05:08:10.853-07:00","display_name":"Mônica Petti","url":"https://independent.academia.edu/M%C3%B4nicaPetti"},"attachments":[{"id":36586667,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/36586667/thumbnails/1.jpg","file_name":"BHAUD-PETTI-01.pdf","download_url":"https://www.academia.edu/attachments/36586667/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Spiochaetopterus_nonatoi_a_new_species_o.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/36586667/BHAUD-PETTI-01-libre.pdf?1423587044=\u0026response-content-disposition=attachment%3B+filename%3DSpiochaetopterus_nonatoi_a_new_species_o.pdf\u0026Expires=1732999858\u0026Signature=TWPkXoujYCb~hMTeA~zpw~rOxyIaHLHF0tg17CwVmDTNZfxgw9nrD5Vk3K8vtjGYrMUDhPGJl1QmX6CTcw5DjviQstVzGYuSG2Mvbl4g4gPmKfwdYDAItjgqI5fDdIdDQ-LRjWNlmgE6q4EAmyPpz1jD1o28c3NxYfh1wLw2qgtGjePa1BOuTC3G12JnrZPes-yOBU-x0-YieWTzH4HjdYe1a4ymTO60VtM5DX6rqV0si4fMNWQhNxdvwArUrRwrCZlTYct~7Yauhjf0f9Y7gXX-VTyql0DI1xwbCLisaSNIb7uEQwdNxNNRlLdj5~a6fjNEz38I-oB4cpPtK3Ne6w__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":173,"name":"Zoology","url":"https://www.academia.edu/Documents/in/Zoology"},{"id":5541,"name":"Plant Biology","url":"https://www.academia.edu/Documents/in/Plant_Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"}],"urls":[{"id":2574416,"url":"http://www.journals.cambridge.org/abstract_S002531540100368X"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="6386152"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/6386152/Admiralty_Bay_Benthos_Diversity_A_census_of_a_complex_polar_ecosystem"><img alt="Research paper thumbnail of Admiralty Bay Benthos Diversity—A census of a complex polar ecosystem" class="work-thumbnail" src="https://attachments.academia-assets.com/48893490/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/6386152/Admiralty_Bay_Benthos_Diversity_A_census_of_a_complex_polar_ecosystem">Admiralty Bay Benthos Diversity—A census of a complex polar ecosystem</a></div><div class="wp-workCard_item"><span>Deep-sea Research Part Ii-topical Studies in Oceanography</span><span>, 2011</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="bd37fb6a4ad88136b0ea5c02d7a31ed4" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:48893490,&quot;asset_id&quot;:6386152,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/48893490/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="6386152"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="6386152"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 6386152; 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Most of the available records arise from successive Polish and Brazilian Antarctic expeditions organized since 1977 and 1982, respectively, but also include new data from joint collecting efforts during the International Polar Year (2007Year ( -2009). Geological and hydrological characteristics of Admiralty Bay and a comprehensive species checklist with detailed data on the distribution and nature of the benthic communities are provided. Approximately 1300 species of benthic organisms (excluding bacteria, fungi and parasites) were recorded from the bay's entire depth range (0-500 m). Generalized classifications and the descriptions of soft-bottom and hard-bottom invertebrate communities are presented. A time-series analysis showed seasonal and interannual changes in the shallow benthic communities, likely to be related to ice formation and ice melt within the bay. 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data-work-id="6386151"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/6386151/Trophic_relationships_in_the_nearshore_zone_of_Martel_Inlet_King_George_Island_Antarctica_d13C_stable_isotope_analysis"><img alt="Research paper thumbnail of Trophic relationships in the nearshore zone of Martel Inlet (King George Island, Antarctica): d13C stable-isotope analysis" class="work-thumbnail" src="https://attachments.academia-assets.com/37435623/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/6386151/Trophic_relationships_in_the_nearshore_zone_of_Martel_Inlet_King_George_Island_Antarctica_d13C_stable_isotope_analysis">Trophic relationships in the nearshore zone of Martel Inlet (King George Island, Antarctica): d13C stable-isotope analysis</a></div><div class="wp-workCard_item"><span>Polar Biology</span><span>, 2004</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Carbon isotopic composition was used to assess the linkage between three different potential sour...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Carbon isotopic composition was used to assess the linkage between three different potential sources of energy and the community in the shallow coastal zone of Martel Inlet. Stable δ13C ratios ranged from −28.7‰ for the zooplankton plus phytoplankton to −14.4‰ for the grazer Nacella concinna. Microphytobenthos (−16.7‰) was considerably more enriched in 13C than were suspended particulate matter (SPM) (−25.6‰) and macroalgal fragments (−23.6‰ and −21.1‰), indicating that stable carbon isotope analysis might be used to discern the relative contribution of these sources of primary production. There is a benthic-pelagic coupling between plankton, benthic suspensivores, the ophiuroid Ophionotus victoriae and the icefish Chaenocephalus aceratus. Benthic grazers such as N. concinna, deposit feeders such as Yoldia eightsi and the nematodes showed a tight coupling with the microphytobenthos and the sediment. Some omnivorous/depositivorous polychaetes, echinoids, amphipods and the fish Notothenia coriiceps showed values close to the ratios of the macroalgal fragments. Benthic carnivores and/or scavengers were generally enriched over suspensivores and depleted in relation to microphytobenthos grazers, showing a considerable overlap in δ13C values throughout the food web, without any clear coupling with the primary sources of organic matter. The trophic web in the shallow zone of high benthic production and under seasonal ice cover in the Antarctic is more complex than it is in shelf areas, where SPM is the main food source. The soft-bottom community in the shallow zone of Martel Inlet is enriched in 13C due to the significant input of carbon from the microphytobenthos and macroalgal fragments.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="f4660178fe3fd4e7591cdcd3c3559e51" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:37435623,&quot;asset_id&quot;:6386151,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/37435623/download_file?st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&st=MTczMjk5NjI1OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="6386151"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="6386151"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 6386151; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=6386151]").text(description); $(".js-view-count[data-work-id=6386151]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 6386151; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='6386151']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 6386151, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "f4660178fe3fd4e7591cdcd3c3559e51" } } $('.js-work-strip[data-work-id=6386151]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":6386151,"title":"Trophic relationships in the nearshore zone of Martel Inlet (King George Island, Antarctica): d13C stable-isotope analysis","translated_title":"","metadata":{"abstract":"Carbon isotopic composition was used to assess the linkage between three different potential sources of energy and the community in the shallow coastal zone of Martel Inlet. 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