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Thieme E-Journals - International Journal of Sports Medicine / Abstract
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// custom KV example window._adexc.push([ '/506/3014/', 'ut', '_kv', { 'IpLoggedIn':'false', 'LoggedIn':'false', 'isFulltext':'false', 'JournalDoi': '00000028', } ]); var axd = document.createElement('script'); axd.type = 'text/javascript'; axd.async = 1; axd.src = "https://dmp.theadex.com/d/506/3014/s/adex.js"; var s = document.getElementsByTagName('script')[0]; s.parentNode.insertBefore(axd, s); })(); </script> <!-- TC-1735 MathML --> <script src="https://polyfill.io/v3/polyfill.min.js?features=es6"></script> <script type="text/javascript" id="MathJax-script" async src="https://cdn.jsdelivr.net/npm/mathjax@3/es5/mml-chtml.js"></script> <meta name="page" content="abstract"/> <meta name="layout" content="main"/> <meta name="prism:publicationName" content="International Journal of Sports Medicine" /> <meta name="prism:issn" content="0172-4622" /> <meta name="prism:eissn" content="1439-3964" /> <meta name="prism:distributor" content="Georg Thieme Verlag KG" /> <meta name="prism:copyright" content="Georg Thieme Verlag KG Oswald-Hesse-Straße 50, 70469 Stuttgart, Germany" /> <meta name="prism:doi" content="10.1055/a-2450-9051" /> <meta name="prism:academicField" content="Training & Testing" /> <meta name="prism:person" content="Ryosuke Takeda" /> <meta name="prism:person" content="Hiroya Nojima" /> <meta name="prism:person" content="Taichi Nishikawa" /> <meta name="prism:person" content="Kohei Watanabe" /> <meta name="prism:copyrightYear" content="2024" /> <meta name="prism:copyrighEntity" content="Georg Thieme Verlag KG" /> <meta name="prism:publicationDate" content="2024/11/20" /> <meta name="prism:issueIdentifier" content="EFirst" /> <meta name="prism:keyword" content="subtetanic neuromuscular electrical stimulation" /> <meta name="prism:keyword" content="blood lactate accumulation" /> <meta name="prism:keyword" content="muscle fatigue" /> <meta name="prism:keyword" content="high-intensity exercise" /> <meta name="prism:url" content="http://www.thieme-connect.com/products/ejournals/html/10.1055/a-2450-9051" /> <meta name="citation_language" content="en" /> <meta name="citation_journal_title" content="International Journal of Sports Medicine" /> <meta name="citation_journal_abbrev" content="Int J Sports Med" /> <meta name="citation_issn" content="0172-4622" /> <meta name="citation_issn" content="1439-3964" /> <meta name="citation_publisher" content="Georg Thieme Verlag KG" /> <meta name="citation_doi" content="10.1055/a-2450-9051" /> <meta name="citation_title" content="Effect of subtetanic neuromuscular electrical stimulation on sprint interval exercise" /> <meta name="citation_author" content="Ryosuke Takeda" /> <meta name="citation_author_institution" content="Laboratory of Neuromuscular Biomechanics, School of Health and Sport Sciences, Chukyo University – Toyota Campus, Toyota, Japan" /> <meta name="citation_author_email" content="r.takeda@mng.chukyo-u.ac.jp" /> <meta name="citation_author_orcid" content="0000-0002-6535-0912" /> <meta name="citation_author" content="Hiroya Nojima" /> <meta name="citation_author_institution" content="Laboratory of Neuromuscular Biomechanics, School of Health and Sport Sciences, Chukyo University – Toyota Campus, Toyota, Japan" /> <meta name="citation_author" content="Taichi Nishikawa" /> <meta name="citation_author_institution" content="Graduate School of Health and Sport Sciences, Chukyo University, Toyota, Japan" /> <meta name="citation_author_orcid" content="0000-0002-9510-8879" /> <meta name="citation_author" content="Kohei Watanabe" /> <meta name="citation_author_institution" content="Laboratory of Neuromuscular Biomechanics, School of Health and Sport Sciences, Chukyo University – Toyota Campus, Toyota, Japan" /> <meta name="citation_online_date" content="2024/11/20" /> <meta name="citation_keyword" content="subtetanic neuromuscular electrical stimulation" /> <meta name="citation_keyword" content="blood lactate accumulation" /> <meta name="citation_keyword" content="muscle fatigue" /> <meta name="citation_keyword" content="high-intensity exercise" /> <meta name="citation_pdf_url" content="http://www.thieme-connect.com/products/ejournals/pdf/10.1055/a-2450-9051.pdf" /> <meta name="citation_fulltext_html_url" content="http://www.thieme-connect.com/products/ejournals/html/10.1055/a-2450-9051" /> <meta name="citation_xml_url" content="http://www.thieme-connect.com/products/ejournals/xml/10.1055/a-2450-9051.xml" format_fulltext="jats1.3" /> <meta name="citation_abstract_html_url" content="http://www.thieme-connect.de/DOI/DOI?10.1055/a-2450-9051" /> <meta name="citation_license" content="[null, null]" /> <meta name="citation_abstract" content="<p>The study aimed to determine the acute effects of subtetanic neuromuscular electrical stimulation (NMES) combined with active recovery between sprint exercises on blood lactate accumulation, sprint performance, and muscle fatigue. Sixteen healthy young individuals [23(4) years, 10 males] underwent a 1-min rest followed by sprint interval training consisting of four 15-sec maximal sprint exercises with three 5-min active cycling sessions. Participants engaged in voluntary cycling at 40% of peak oxygen consumption, with or without NMES (VOLES or VOL; interventions). Blood lactate concentration ([La]<sub>b</sub>) was assessed at the end of the rest and each intervention periods. Mean power was assessed during each sprint exercise session. Maximum voluntary contraction (MVC) of the knee extensor was measured before and after sprint interval training to evaluate muscle fatigue. The [La]<sub>b</sub> was significantly higher in VOLES than in VOL (main effect, P=0.037). Mean power did not differ between conditions (main effect and interaction, P>0.050). MVC after sprint interval exercise was significantly lower in VOLES than in VOL (interaction, P<0.001). Subtetanic NMES combined with voluntary cycling enhanced blood lactate accumulation and induced greater voluntary fatigue but resulted in similar peripheral muscle fatigue and sprint exercise performance compared with voluntary cycling without NMES.</p> " /> <meta name="citation_funding_source" content="citation_funder=Japan Society for the Promotion of Science; citation_grant_number=18H03158,22K21221;" /> <meta name="citation_funding_source" content="citation_funder=MTG Co., Ltd., Nagoya, Japan;" /> <meta name="citation_reference" content="citation_author=I Jacobs; citation_author=M Esbjornsson; citation_author=C Sylven; citation_publication_date=1987; citation_title=Sprint training effects on muscle myoglobin, enzymes, fiber types, and blood lactate; citation_firstpage=368; citation_lastpage=374; citation_journal_title=Med Sci Sports Exerc; citation_volume=19; " /> <meta name="citation_reference" content="citation_author=M J MacInnis; citation_author=M J Gibala; citation_publication_date=2017; citation_title=Physiological adaptations to interval training and the role of exercise intensity; citation_firstpage=2915; citation_lastpage=2930; citation_doi=10.1113/JP273196; citation_journal_title=J Physiol; citation_volume=595; " /> <meta name="citation_reference" content="citation_author=T K Hunt; citation_author=R S Aslam; citation_author=S Beckert; citation_publication_date=2007; citation_title=Aerobically derived lactate stimulates revascularization and tissue repair via redox mechanisms; citation_firstpage=1115; citation_lastpage=1124; citation_doi=10.1089/ars.2007.1674; citation_journal_title=Antioxid Redox Signal; citation_volume=9; " /> <meta name="citation_reference" content="citation_author=P Sonveaux; citation_author=T Copetti; citation_author=C J De Saedeleer; citation_publication_date=2012; citation_title=Targeting the lactate transporter MCT1 in endothelial cells inhibits lactate-induced HIF-1 activation and tumor angiogenesis; citation_firstpage=e33418; citation_doi=10.1371/journal.pone.0033418; citation_journal_title=PLoS One; citation_volume=7; " /> <meta name="citation_reference" content="citation_author=Y Kitaoka; citation_author=K Takeda; citation_author=Y Tamura; citation_publication_date=2016; citation_title=Lactate administration increases mRNA expression of PGC-1alpha and UCP3 in mouse skeletal muscle; citation_firstpage=695; citation_lastpage=698; citation_doi=10.1139/apnm-2016-0016; citation_journal_title=Appl Physiol Nutr Metab; citation_volume=41; " /> <meta name="citation_reference" content="citation_author=M Buchheit; citation_author=P B Laursen; citation_publication_date=2013; citation_title=High-intensity interval training, solutions to the programming puzzle. 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" /> <meta name="citation_reference" content="citation_author=M Amann; citation_author=L T Proctor; citation_author=J J Sebranek; citation_publication_date=2009; citation_title=Opioid-mediated muscle afferents inhibit central motor drive and limit peripheral muscle fatigue development in humans; citation_firstpage=271; citation_lastpage=283; citation_doi=10.1113/jphysiol.2008.163303; citation_journal_title=J Physiol; citation_volume=587; " /> <meta name="citation_reference" content="citation_author=M Amann; citation_publication_date=2011; citation_title=Central and peripheral fatigue: interaction during cycling exercise in humans; citation_firstpage=2039; citation_lastpage=2045; citation_doi=10.1249/MSS.0b013e31821f59ab; citation_journal_title=Med Sci Sports Exerc; citation_volume=43; " /> <meta name="citation_reference" content="citation_author=R Borzuola; citation_author=S Nuccio; citation_author=M Scalia; citation_publication_date=2023; citation_title=Adjustments in the motor unit discharge behavior following neuromuscular electrical stimulation compared to voluntary contractions; citation_firstpage=1212453; citation_doi=10.3389/fphys.2023.1212453; citation_journal_title=Front Physiol; citation_volume=14; " /> <meta name="dc:medium" content="International Journal of Sports Medicine" /> <meta name="dc:language" content="en" /> <meta name="dc:rights" content="Georg Thieme Verlag KG Oswald-Hesse-Straße 50, 70469 Stuttgart, Germany" /> <meta name="dc:publisher" content="Georg Thieme Verlag KG" /> <meta name="dc:identifier" content="10.1055/a-2450-9051" /> <meta name="dc:subject" content="Training & Testing" /> <meta name="dc:title" content="Effect of subtetanic neuromuscular electrical stimulation on sprint interval exercise" /> <meta name="dc:creator" content="Ryosuke Takeda" /> <meta name="dc:creator" content="Hiroya Nojima" /> <meta name="dc:creator" content="Taichi Nishikawa" /> <meta name="dc:creator" content="Kohei Watanabe" /> <meta name="dc:rightsHolder" content="Georg Thieme Verlag KG" /> <meta name="dc:date" content="2024/11/20" /> <meta name="dcterms:abstract" content="The study aimed to determine the acute effects of subtetanic neuromuscular electrical stimulation (NMES) combined with active recovery between sprint exercises on blood lactate accumulation, sprint performance, and muscle fatigue. Sixteen healthy young individuals [23(4) years, 10 males] underwent a 1-min rest followed by sprint interval training consisting of four 15-sec maximal sprint exercises with three 5-min active cycling sessions. Participants engaged in voluntary cycling at 40% of peak oxygen consumption, with or without NMES (VOLES or VOL; interventions). Blood lactate concentration ([La]b) was assessed at the end of the rest and each intervention periods. Mean power was assessed during each sprint exercise session. Maximum voluntary contraction (MVC) of the knee extensor was measured before and after sprint interval training to evaluate muscle fatigue. The [La]b was significantly higher in VOLES than in VOL (main effect, P=0.037). Mean power did not differ between conditions (main effect and interaction, P>0.050). MVC after sprint interval exercise was significantly lower in VOLES than in VOL (interaction, P<0.001). Subtetanic NMES combined with voluntary cycling enhanced blood lactate accumulation and induced greater voluntary fatigue but resulted in similar peripheral muscle fatigue and sprint exercise performance compared with voluntary cycling without NMES. 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<span id="authorlist"><span class="author"> <div class="name"> <a class="orchid-id" target="_blank" href="https://orcid.org/0000-0002-6535-0912">Ryosuke Takeda</a>  </div> <div class="affiliation"></div> <div class="affiliation"> <sup>1   </sup>Laboratory of Neuromuscular Biomechanics, School of Health and Sport Sciences, Chukyo University – Toyota Campus, Toyota, Japan (Ringgold ID: RIN70653)</div> <div class="authorseparator">, </div> </span><span class="author"> <div class="name">Hiroya Nojima</div> <div class="affiliation"> <sup>1   </sup>Laboratory of Neuromuscular Biomechanics, School of Health and Sport Sciences, Chukyo University – Toyota Campus, Toyota, Japan (Ringgold ID: RIN70653)</div> <div class="authorseparator">, </div> </span><span class="author"> <div class="name"> <a class="orchid-id" target="_blank" href="https://orcid.org/0000-0002-9510-8879">Taichi Nishikawa</a>  </div> <div class="affiliation"> <sup>2   </sup>Graduate School of Health and Sport Sciences, Chukyo University, Toyota, Japan (Ringgold ID: RIN12745)</div> <div class="authorseparator">, </div> </span><span class="author"> <div class="name">Kohei Watanabe</div> <div class="affiliation"> <sup>1   </sup>Laboratory of Neuromuscular Biomechanics, School of Health and Sport Sciences, Chukyo University – Toyota Campus, Toyota, Japan (Ringgold ID: RIN70653)</div> </span><a style="text-decoration: none;" class="toggle-affiliation-infos" href="#">› Author Affiliations<span class="verbum"></span></a></span>Supported by: <a href="https://doi.org/10.13039/501100001691">Japan Society for the Promotion of Science</a> 18H03158,22K21221 <br>Supported by: MTG Co., Ltd., Nagoya, Japan <br> <div class="toggleMenu articleToggleMenu"> <a style="text-decoration: none;" href="#info"> › Further Information</a> <div class="platformLink"> <span class="label"><a style="color: #000000; text-decoration: none" class="virtualLink">Also available at</a></span><a data-url="https://eref.thieme.de/10.1055/a-2450-9051" 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neuromuscular electrical stimulation on sprint interval exercise" target="sfx"><span class="articleAccessLabel sfx"><img id="sfxImageUrl" src="" alt="SFX Search" height="15" width="52"></span></a> </div> <a style="display: none" href="/products/ejournals/buyDocument/10.1055/a-2450-9051" class="gotoLink" id="sasLink">Buy Article</a> <a data-url="https://s100.copyright.com/AppDispatchServlet" data-id="CCC RightsLink" data-target="CCC RightsLink" onClick="RightslinkPopUp("1439-3964", "Effect of subtetanic neuromuscular electrical stimulation on sprint interval exercise", "11/20/2024", "Ryosuke Takeda, Hiroya Nojima, Taichi Nishikawa, Kohei Watanabe", "", "10.1055/a-2450-9051", "", "", "", "EFirst", "")" class="gotoLink linkFunction" href="javascript:;">Permissions and Reprints</a> </div> <figure style="margin-left: 30px" class="floatRight"> <a data-doi="10.1055/a-2450-9051" data-caption="" data-id="10-1055-a-2450-9051-1.jpg" data-cssClass="previewOverlay" href="https://www.thieme-connect.de/media/sportsmed/EFirst/lookinside/10-1055-a-2450-9051-1.jpg" class="zoomFunction alignLeft"><img src="https://www.thieme-connect.de/media/sportsmed/EFirst/lookinside/thumbnails/10-1055-a-2450-9051-1.jpg"></a> <figcaption></figcaption> </figure> <a name="N10C6F"></a> <h3>Abstract</h3> <p>The study aimed to determine the acute effects of subtetanic neuromuscular electrical stimulation (NMES) combined with active recovery between sprint exercises on blood lactate accumulation, sprint performance, and muscle fatigue. Sixteen healthy young individuals [23(4) years, 10 males] underwent a 1-min rest followed by sprint interval training consisting of four 15-sec maximal sprint exercises with three 5-min active cycling sessions. Participants engaged in voluntary cycling at 40% of peak oxygen consumption, with or without NMES (VOLES or VOL; interventions). Blood lactate concentration ([La]<sub>b</sub>) was assessed at the end of the rest and each intervention periods. Mean power was assessed during each sprint exercise session. Maximum voluntary contraction (MVC) of the knee extensor was measured before and after sprint interval training to evaluate muscle fatigue. The [La]<sub>b</sub> was significantly higher in VOLES than in VOL (main effect, P=0.037). Mean power did not differ between conditions (main effect and interaction, P>0.050). MVC after sprint interval exercise was significantly lower in VOLES than in VOL (interaction, P<0.001). Subtetanic NMES combined with voluntary cycling enhanced blood lactate accumulation and induced greater voluntary fatigue but resulted in similar peripheral muscle fatigue and sprint exercise performance compared with voluntary cycling without NMES.</p> <i></i><i></i> <div class="articleKeywords"> <a name="N10C7F"></a> <h3>Keywords</h3> subtetanic neuromuscular electrical stimulation - blood lactate accumulation - muscle fatigue - high-intensity exercise </div> <div class="articleBox supmat"> <div class="wrapper"> <a name="N10EF5"></a> <h3>Supplementary Material</h3> <ul class="linkList"> <li> <a href="https://www.thieme-connect.de/media/sportsmed/EFirst/supmat/10-1055-a-2450-9051_24514788.pdf">Supplementary Material</a> </li> </ul> </div> </div> <br> <br> <a name="info"></a> <h3>Publication History</h3> <p>Received: 03 July 2024<br> <br>Accepted after revision: 07 October 2024<br> <br>Article published online:<br>20 November 2024<br> </p> <p>© 2024. Thieme. All rights reserved.</p> <p>Georg Thieme Verlag KG<br>Oswald-Hesse-Straße 50, 70469 Stuttgart, Germany</p> <div id="trendmd-suggestions"></div> </section> <section id="htmlfulltext"> </section> <section id="references"> <a name=""></a> <ul class="literaturliste"> <a name="N10F0B"></a> <li> <h3>References</h3> </li> <li> <a name="R07-2024-10673-T-0001"></a><strong>1</strong> Jacobs I, Esbjornsson M, Sylven C. et al. Sprint training effects on muscle myoglobin, enzymes, fiber types, and blood lactate. 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