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(PDF) Biological Computation Running on Quantum Computation | Koichiro Matsuno - Academia.edu

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An advantage of the indexical operation of quantum computation rests upon a significant reduction" /> <title>(PDF) Biological Computation Running on Quantum Computation | Koichiro Matsuno - Academia.edu</title> <link rel="canonical" href="https://www.academia.edu/54135065/Biological_Computation_Running_on_Quantum_Computation" /> <script async src="https://www.googletagmanager.com/gtag/js?id=G-5VKX33P2DS"></script> <script> window.dataLayer = window.dataLayer || []; function gtag(){dataLayer.push(arguments);} gtag('js', new Date()); gtag('config', 'G-5VKX33P2DS', { cookie_domain: 'academia.edu', send_page_view: false, }); gtag('event', 'page_view', { 'controller': "single_work", 'action': "show", 'controller_action': 'single_work#show', 'logged_in': 'false', 'edge': 'unknown', // Send nil if there is no A/B test bucket, in case some records get logged // with missing data - that way we can distinguish between the two cases. // ab_test_bucket should be of the form <ab_test_name>:<bucket> 'ab_test_bucket': null, }) </script> <script> var $controller_name = 'single_work'; var $action_name = "show"; var $rails_env = 'production'; var $app_rev = '04eca283cd87f77be92866d598a6d757659962b2'; var $domain = 'academia.edu'; var $app_host = "academia.edu"; var $asset_host = "academia-assets.com"; var $start_time = new Date().getTime(); var $recaptcha_key = "6LdxlRMTAAAAADnu_zyLhLg0YF9uACwz78shpjJB"; var $recaptcha_invisible_key = "6Lf3KHUUAAAAACggoMpmGJdQDtiyrjVlvGJ6BbAj"; var $disableClientRecordHit = false; </script> <script> window.require = { config: function() { return function() {} } } </script> <script> window.Aedu = window.Aedu || {}; window.Aedu.hit_data = null; window.Aedu.serverRenderTime = new Date(1733258528000); window.Aedu.timeDifference = new Date().getTime() - 1733258528000; </script> <script type="application/ld+json">{"@context":"https://schema.org","@type":"ScholarlyArticle","abstract":"Biological computation supporting biological phenomena functionally practices the underlying quantum computation indexically, rather than symbolically. An advantage of the indexical operation of quantum computation rests upon a significant reduction of the computational complexity compared with the corresponding classical counterpart running exclusively upon the symbol manipulation. The reduction of the complexity is sought in allowing for the participation of multiple processors running concurrently in a parallel manner. The concurrent distribution of multiple processors operating mutually in an inseparable manner lets each processor regard the rest of the distribution as its own environment. The environment thus formed and detected by each processor may differ from the similar ones appropriated to the other individual participants nearby. Both the individual processor and the corresponding environment turn out to be agential. Quantum computation practiced indexically may serve as a precursor agency apt for both forming Jakob von Uexküll\u0026amp;#39;s umwelt towards the environment and making use of James J. Gibson\u0026amp;#39;s affordance from the environment. The individual environment to each material participant there is already indexically agential in pulling that participant in.","author":[{"@context":"https://schema.org","@type":"Person","name":"Koichiro Matsuno"}],"contributor":[],"dateCreated":"2021-09-29","dateModified":"2021-09-29","datePublished":"2021-01-01","headline":"Biological Computation Running on Quantum 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window.loswp.translateUrl = "https://www.academia.edu/login?post_login_redirect_url=https%3A%2F%2Fwww.academia.edu%2F54135065%2FBiological_Computation_Running_on_Quantum_Computation%3Fshow_translation%3Dtrue"; window.loswp.previewableAttachments = [{"id":70645667,"identifier":"Attachment_70645667","shouldShowBulkDownload":false}]; window.loswp.shouldDetectTimezone = true; window.loswp.shouldShowBulkDownload = true; window.loswp.showSignupCaptcha = false window.loswp.willEdgeCache = false; window.loswp.work = {"work":{"id":54135065,"created_at":"2021-09-29T22:25:12.584-07:00","from_world_paper_id":null,"updated_at":"2022-05-09T21:53:29.527-07:00","_data":{"doi":"10.1016/j.biosystems.2021.104467","abstract":"Biological computation supporting biological phenomena functionally practices the underlying quantum computation indexically, rather than symbolically. An advantage of the indexical operation of quantum computation rests upon a significant reduction of the computational complexity compared with the corresponding classical counterpart running exclusively upon the symbol manipulation. The reduction of the complexity is sought in allowing for the participation of multiple processors running concurrently in a parallel manner. The concurrent distribution of multiple processors operating mutually in an inseparable manner lets each processor regard the rest of the distribution as its own environment. The environment thus formed and detected by each processor may differ from the similar ones appropriated to the other individual participants nearby. Both the individual processor and the corresponding environment turn out to be agential. Quantum computation practiced indexically may serve as a precursor agency apt for both forming Jakob von Uexküll's umwelt towards the environment and making use of James J. Gibson's affordance from the environment. The individual environment to each material participant there is already indexically agential in pulling that participant in.","publication_date":"2021,,","publication_name":"BioSystems"},"document_type":"paper","pre_hit_view_count_baseline":null,"quality":"high","language":"en","title":"Biological Computation Running on Quantum Computation","broadcastable":true,"draft":false,"has_indexable_attachment":true,"indexable":true}}["work"]; window.loswp.workCoauthors = [10230536]; window.loswp.locale = "en"; window.loswp.countryCode = "SG"; window.loswp.cwvAbTestBucket = ""; window.loswp.designVariant = "ds_vanilla"; window.loswp.fullPageMobileSutdModalVariant = "control"; window.loswp.useOptimizedScribd4genScript = false; window.loswp.appleClientId = 'edu.academia.applesignon';</script><script defer="" src="https://accounts.google.com/gsi/client"></script><div class="ds-loswp-container"><div class="ds-work-card--grid-container"><div class="ds-work-card--container js-loswp-work-card"><div class="ds-work-card--cover"><div class="ds-work-cover--wrapper"><div class="ds-work-cover--container"><button class="ds-work-cover--clickable js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;swp-splash-paper-cover&quot;,&quot;attachmentId&quot;:70645667,&quot;attachmentType&quot;:&quot;pdf&quot;}"><img alt="First page of “Biological Computation Running on Quantum Computation”" class="ds-work-cover--cover-thumbnail" src="https://0.academia-photos.com/attachment_thumbnails/70645667/mini_magick20210929-23575-5ipl5u.png?1632979942" /><img alt="PDF Icon" class="ds-work-cover--file-icon" src="//a.academia-assets.com/assets/single_work_splash/adobe.icon-574afd46eb6b03a77a153a647fb47e30546f9215c0ee6a25df597a779717f9ef.svg" /><div class="ds-work-cover--hover-container"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">download</span><p>Download Free PDF</p></div><div class="ds-work-cover--ribbon-container">Download Free PDF</div><div class="ds-work-cover--ribbon-triangle"></div></button></div></div></div><div class="ds-work-card--work-information"><h1 class="ds-work-card--work-title">Biological Computation Running on Quantum Computation</h1><div class="ds-work-card--work-authors ds-work-card--detail"><a class="ds-work-card--author js-wsj-grid-card-author ds2-5-body-md ds2-5-body-link" data-author-id="10230536" href="https://nagaokaut.academia.edu/KoichiroMatsuno"><img alt="Profile image of Koichiro Matsuno" class="ds-work-card--author-avatar" src="https://0.academia-photos.com/10230536/3136772/3693191/s65_koichiro.matsuno.jpg" />Koichiro Matsuno</a></div><div class="ds-work-card--detail"><p class="ds-work-card--detail ds2-5-body-sm">2021, BioSystems</p></div><p class="ds-work-card--work-abstract ds-work-card--detail ds2-5-body-md">Biological computation supporting biological phenomena functionally practices the underlying quantum computation indexically, rather than symbolically. An advantage of the indexical operation of quantum computation rests upon a significant reduction of the computational complexity compared with the corresponding classical counterpart running exclusively upon the symbol manipulation. The reduction of the complexity is sought in allowing for the participation of multiple processors running concurrently in a parallel manner. The concurrent distribution of multiple processors operating mutually in an inseparable manner lets each processor regard the rest of the distribution as its own environment. The environment thus formed and detected by each processor may differ from the similar ones appropriated to the other individual participants nearby. Both the individual processor and the corresponding environment turn out to be agential. Quantum computation practiced indexically may serve as a precursor agency apt for both forming Jakob von Uexküll&#39;s umwelt towards the environment and making use of James J. Gibson&#39;s affordance from the environment. The individual environment to each material participant there is already indexically agential in pulling that participant in.</p><div class="ds-work-card--button-container"><button class="ds2-5-button js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;continue-reading-button--work-card&quot;,&quot;attachmentId&quot;:70645667,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;workUrl&quot;:&quot;https://www.academia.edu/54135065/Biological_Computation_Running_on_Quantum_Computation&quot;}">See full PDF</button><button class="ds2-5-button ds2-5-button--secondary js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;download-pdf-button--work-card&quot;,&quot;attachmentId&quot;:70645667,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;workUrl&quot;:&quot;https://www.academia.edu/54135065/Biological_Computation_Running_on_Quantum_Computation&quot;}"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">download</span>Download PDF</button></div></div></div></div><div data-auto_select="false" data-client_id="331998490334-rsn3chp12mbkiqhl6e7lu2q0mlbu0f1b" data-doc_id="70645667" data-landing_url="https://www.academia.edu/54135065/Biological_Computation_Running_on_Quantum_Computation" data-login_uri="https://www.academia.edu/registrations/google_one_tap" data-moment_callback="onGoogleOneTapEvent" id="g_id_onload"></div><div class="ds-top-related-works--grid-container"><div class="ds-related-content--container ds-top-related-works--container"><h2 class="ds-related-content--heading">Related papers</h2><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="0" data-entity-id="9093871" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/9093871/Synchronicity_Among_Biological_and_Computational_Levels_of_an_Organism_Quantum_Biology_and_Complexity">Synchronicity Among Biological and Computational Levels of an Organism: Quantum Biology and Complexity</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="11005384" href="https://unbosque.academia.edu/CarlosEduardoMaldonado">Carlos Eduardo Maldonado</a></div><p class="ds-related-work--abstract ds2-5-body-sm">This paper argues that there is a synchronicity among biological and computational levels on an organism and provides arguments and proofs based on experimental research gathered in the literature. The leading thread is the interplay between quantum biology (QB) and complexity. As the paper asks whether QB does contribute to complexity science (CS), five arguments are provided: (i) Firstly a state-of-the art of QB and its relationship to CS is sketched out. Thereafter, the attention is directed to answering the question set out; (ii) Secondly, it digs into the understanding of life toward deeper levels of reality; (iii) It is shown that non-trivial quantum effects shed insightful lights on the information processing of and within living beings; (iv) Once the distinction is made between increasing levels of complexity and increasing levels of organization, the focus lies in the importance of QB for organization, and not so much for complexity as such; (v) The role of information rises at the center of all concerns, and the intertwining of complexity and information processing. At the end some conclusions are drawn.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Synchronicity Among Biological and Computational Levels of an Organism: Quantum Biology and Complexity&quot;,&quot;attachmentId&quot;:35389648,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/9093871/Synchronicity_Among_Biological_and_Computational_Levels_of_an_Organism_Quantum_Biology_and_Complexity&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/9093871/Synchronicity_Among_Biological_and_Computational_Levels_of_an_Organism_Quantum_Biology_and_Complexity"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="1" data-entity-id="58357708" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/58357708/Quantum_One_Go_Computation_and_the_Physical_Computation_Level_of_Biological_Information_Processing">Quantum One Go Computation and the Physical Computation Level of Biological Information Processing</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="36689116" href="https://independent.academia.edu/GiuseppeCastagnoli">Giuseppe Castagnoli</a></div><p class="ds-related-work--metadata ds2-5-body-xs">International Journal of Theoretical Physics, 2010</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Quantum One Go Computation and the Physical Computation Level of Biological Information Processing&quot;,&quot;attachmentId&quot;:72808975,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/58357708/Quantum_One_Go_Computation_and_the_Physical_Computation_Level_of_Biological_Information_Processing&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/58357708/Quantum_One_Go_Computation_and_the_Physical_Computation_Level_of_Biological_Information_Processing"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="2" data-entity-id="91765330" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/91765330/A_decade_of_work_on_Consciousness_Universe_and_Quantum_Computation_with_special_reference_to_biological_organisms_2010_2020">A decade of work on Consciousness, Universe and Quantum Computation with special reference to biological organisms 2010-2020</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="7687122" href="https://iasri.academia.edu/MonendraGrover">Monendra Grover</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Compilation of published papers</p><p class="ds-related-work--abstract ds2-5-body-sm">During the last decade we have worked extensively on quantum computation in universe with special reference to biological organisms. We have given several hypotheses in the above mentioned area. This article presents an integrated perspective of our hypotheses presented during the last ten years.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;A decade of work on Consciousness, Universe and Quantum Computation with special reference to biological organisms 2010-2020&quot;,&quot;attachmentId&quot;:94959237,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/91765330/A_decade_of_work_on_Consciousness_Universe_and_Quantum_Computation_with_special_reference_to_biological_organisms_2010_2020&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/91765330/A_decade_of_work_on_Consciousness_Universe_and_Quantum_Computation_with_special_reference_to_biological_organisms_2010_2020"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="3" data-entity-id="677941" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/677941/Living_systems_are_dynamically_stable_by_computing_themselves_at_the_quantum_level">Living systems are dynamically stable by computing themselves at the quantum level</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="239112" href="https://mun.academia.edu/AbirIgamberdiev">Abir Igamberdiev</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Entropy, 2003</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Living systems are dynamically stable by computing themselves at the quantum level&quot;,&quot;attachmentId&quot;:51296337,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/677941/Living_systems_are_dynamically_stable_by_computing_themselves_at_the_quantum_level&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/677941/Living_systems_are_dynamically_stable_by_computing_themselves_at_the_quantum_level"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="4" data-entity-id="41028028" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/41028028/First_Report_on_Quantum_Computational_Logic_in_Biological_Networks_Report_on_Quantum_Computational_Logic_in_Biological_Networks">First Report on Quantum Computational Logic in Biological Networks Report on Quantum Computational Logic in Biological Networks</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="7687122" href="https://iasri.academia.edu/MonendraGrover">Monendra Grover</a></div><p class="ds-related-work--abstract ds2-5-body-sm">It is argued in this paper that biological networks may behave as quantum computers. Thus biological networks process information both in classical and quantum fashion. The quantum computational logic in biological networks is discussed. The logic of the quantum information processing can be described by L q which differs from classical logic in the sense that quantum truth is probabilistic and many valued (fuzzy). The metalanguage of L q is QML (Quantum metalanguage). It is also emphasized that in biological networks the information is processed by a system which is not just quantum but quantum computational. The biological networks compute. Their computer language consists of laws of physics and their biological and chemical consequences. The question that needs to be addressed is that whether biological networks are nothing more than a digital computer. The answer is probably No. The problem with identifying the biological networks as a classical digital computer is that the biological networks are apparently more computationally powerful. &quot;Two computing machines have the same computational power if each can simulate the other efficiently&quot; [1]. A conventional digital computer seems unable to simulate the biological networks efficiently. The problem with such simulations is though they are possible, they are actually inefficient. The biological networks are basically quantum mechanical and it is difficult for conventional digital computers to simulate quantum mechanical systems. It has been estimated that in order to simulate a tiny piece of matter consisting, for example, of a few hundred atoms for a fraction of second, a conventional computer would need more memory than the total number of atoms in the universe and would take more time to complete the task than the current age of the universe. Even the most primitive biological networks are more than 100 atoms. Thus the conventional computers would be inefficient in simulating even the simplest of biological networks. Therefore it follows that computational power of conventional digital computers is much less than that of biological networks. Though classical computers can be useful for capturing certain aspects of biological networks, there is no known way for conventional digital computers to perform a full dynamical simulation of biological networks without using practically unavailable vast amount of resources. Seth Lloyd has shown that quantum computers can simulate any system that obeys the known laws of physics in a straightforward and efficient way. The principle of simulation is as follows: First the state of every piece of a quantum system such as atom electron etc. is mapped on to the state of some small set of qubits known as quantum register. Since the register is itself quantum mechanical, it is capable of storing the quantum information contained in the original system on just a few qubits. The natural dynamics of the quantum system can be simulated using simple quantum logic operations which are-interactions between quantum bits. These arguments are extension of the arguments originally proposed by Seth Lloyd for universe to biological networks [1]. Thus the biological networks possibly employ both the classical information processing and quantum information processing. The logic of quantum information processing by the biochemical pathways is coextensive with the logic of classical information processing. The logic of the quantum information processing can be described by Lq, the logic of quantum information [2]. In Lq propositions are configured in qubits, (quantum analogue of classical bits) which are linear superposition of classical bits. Lq differs from the classical logic in the sense that the classical truth is single valued and deterministic while quantum truth is probabilistic and many valued (fuzzy). The metalanguage of Lq is a quantum metalanguage (QML) [2]. In this paper we will use physical interpretations of assertions in QML as field states configured by a dissipative quantum field theory (DQFT). The metalinguistic of information processing by biological networks should be well modelled by QML (in conjunction with classical language notation). Pessa and Zizzi have proposed that by employing a dissipative thermofield elaboration of QFT (DQFT) based on a doubling mechanism [3], it is possible to obtain a generalization of quantum theory which considers typically dynamical processes of the biological world. An important question is what definable kind of logic can be used for biological networks. It was once believed that for a classical</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;First Report on Quantum Computational Logic in Biological Networks Report on Quantum Computational Logic in Biological Networks&quot;,&quot;attachmentId&quot;:61306900,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/41028028/First_Report_on_Quantum_Computational_Logic_in_Biological_Networks_Report_on_Quantum_Computational_Logic_in_Biological_Networks&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/41028028/First_Report_on_Quantum_Computational_Logic_in_Biological_Networks_Report_on_Quantum_Computational_Logic_in_Biological_Networks"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="5" data-entity-id="677933" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/677933/Quantum_computation_non_demolition_measurements_and_reflective_control_in_living_systems">Quantum computation, non-demolition measurements, and reflective control in living systems</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="239112" href="https://mun.academia.edu/AbirIgamberdiev">Abir Igamberdiev</a></div><p class="ds-related-work--metadata ds2-5-body-xs">BioSystems, 2004</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Quantum computation, non-demolition measurements, and reflective control in living systems&quot;,&quot;attachmentId&quot;:51296388,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/677933/Quantum_computation_non_demolition_measurements_and_reflective_control_in_living_systems&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/677933/Quantum_computation_non_demolition_measurements_and_reflective_control_in_living_systems"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="6" data-entity-id="18380192" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/18380192/Computation_Consciousness_and_the_Quantum">Computation, Consciousness and the Quantum</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="34504635" href="https://independent.academia.edu/MarchalBruno">Bruno Marchal</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Teorie &amp; modelli</p><p class="ds-related-work--abstract ds2-5-body-sm">Quantum Mechanics is often used by philosophers of mind to develop a non mechanist approach to the cognitive domain. In this paper we propose the inverse: we show that the mechanist or computationalist hypothesis in philosophy of mind can justify some quantum logic of the &amp;#39;observable&amp;#39;. We suggest that the quantum nature of reality might be explained by the nature of the digital when &amp;quot;seen from inside arithmetic&amp;quot; in some precise technical sense.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Computation, Consciousness and the Quantum&quot;,&quot;attachmentId&quot;:42173556,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/18380192/Computation_Consciousness_and_the_Quantum&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/18380192/Computation_Consciousness_and_the_Quantum"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="7" data-entity-id="51038899" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/51038899/THE_WORLD_AS_A_QUANTUM_INFORMATION_PROCESSOR">THE WORLD AS A QUANTUM INFORMATION PROCESSOR</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="80976390" href="https://independent.academia.edu/unbosqueeduco">Carlos Eduardo Maldonado</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Praxis Filosófica, 2021</p><p class="ds-related-work--abstract ds2-5-body-sm">It is impossible to fully grasp reality and the universe without a sound understanding of quantum science, i.e. theory. The aim of this paper is twofold, namely first presenting what quantum information processing consists of, and then consequently discussing the implications of quantum science to the understanding of reality. I shall claim that the world is fully quantum, and the classical world is but a limit case of the quantum world. The crux of the argument is that quantum information can be taken as a living phenomenon. Quantum information processing (QIP) has been mainly the subject of computational approaches. Here we take it as the way in which information allows for a non-dualistic explanation of the world. In this sense, quantum information processing consists in understanding how entanglement stands as the ground for a coherent reality yet highly dynamical, vibrant and vivid. Information, I argue, is a living phenomenon that creates itself out of nothing. Quantum information is a relational view of entities, systems, phenomena, and events (Auletta, 2005).</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;THE WORLD AS A QUANTUM INFORMATION PROCESSOR&quot;,&quot;attachmentId&quot;:68906709,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/51038899/THE_WORLD_AS_A_QUANTUM_INFORMATION_PROCESSOR&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/51038899/THE_WORLD_AS_A_QUANTUM_INFORMATION_PROCESSOR"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="8" data-entity-id="6440994" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/6440994/The_Theoretical_Foundations_for_Engineering_a_Conscious_Quantum_Computer">The Theoretical Foundations for Engineering a Conscious Quantum Computer</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="10127295" href="https://noeticadvancedstudies.academia.edu/RichardAmoroso">Richard Amoroso</a></div><p class="ds-related-work--metadata ds2-5-body-xs">1997</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;The Theoretical Foundations for Engineering a Conscious Quantum Computer&quot;,&quot;attachmentId&quot;:33238267,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/6440994/The_Theoretical_Foundations_for_Engineering_a_Conscious_Quantum_Computer&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/6440994/The_Theoretical_Foundations_for_Engineering_a_Conscious_Quantum_Computer"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="9" data-entity-id="22390753" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/22390753/Quantum_Human_and_Animal_Consciousness_a_Concept_Embracing_Philosophy_Quantitative_Molecular_Biology_and_Mathematics">Quantum Human and Animal Consciousness: a Concept Embracing Philosophy, Quantitative Molecular Biology and Mathematics</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="13927348" href="https://ludes.academia.edu/FabioGabrielli">Fabio Gabrielli</a><span>, </span><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="43855744" href="https://univp.academia.edu/ElianoPessa">Eliano Pessa</a><span>, </span><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="43911187" href="https://independent.academia.edu/LucioTonello">Lucio Tonello</a><span>, </span><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="8215030" href="https://unipv.academia.edu/MassimoPregnolato">Massimo Pregnolato</a></div><p class="ds-related-work--abstract ds2-5-body-sm">Biology and culture, consciousness and the world, subject and object, inner and outer have continuity and find, in the &amp;quot;creative transcendence” of consciousness and its experiences, a privileged degree of understanding. This paper aims to show: 1) The validity of the phenomenological approach to consciousness and the subsequent interpretation of memory, expression of the “ego” as a continuous narrative of “self”, which persists even in the face of minimal consciential conditions, perhaps, even including traumatic brain injuries, justified on the bio molecular level, with the hypothesis that Schrödinger proteins (i.e. tubulins) are the biological interface from quantum to classical computation into quantum/classical consciousness processes and at the crossroad of memories and learning capacities. 2) That a molecular structure, such as tubulin, can effectively modulate the state of consciousness through the changes that occur within it. 3) A plausible hypothesis about the existan...</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Quantum Human and Animal Consciousness: a Concept Embracing Philosophy, Quantitative Molecular Biology and Mathematics&quot;,&quot;attachmentId&quot;:43017199,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/22390753/Quantum_Human_and_Animal_Consciousness_a_Concept_Embracing_Philosophy_Quantitative_Molecular_Biology_and_Mathematics&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/22390753/Quantum_Human_and_Animal_Consciousness_a_Concept_Embracing_Philosophy_Quantitative_Molecular_Biology_and_Mathematics"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div></div></div><div class="ds-sticky-ctas--wrapper js-loswp-sticky-ctas hidden"><div class="ds-sticky-ctas--grid-container"><div class="ds-sticky-ctas--container"><button class="ds2-5-button js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;continue-reading-button--sticky-ctas&quot;,&quot;attachmentId&quot;:70645667,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;workUrl&quot;:null}">See full PDF</button><button class="ds2-5-button ds2-5-button--secondary js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;download-pdf-button--sticky-ctas&quot;,&quot;attachmentId&quot;:70645667,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;workUrl&quot;:null}"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">download</span>Download PDF</button></div></div></div><div class="ds-below-fold--grid-container"><div class="ds-work--container js-loswp-embedded-document"><div class="attachment_preview" data-attachment="Attachment_70645667" style="display: none"><div class="js-scribd-document-container"><div class="scribd--document-loading js-scribd-document-loader" style="display: block;"><img alt="Loading..." src="//a.academia-assets.com/images/loaders/paper-load.gif" /><p>Loading Preview</p></div></div><div style="text-align: center;"><div class="scribd--no-preview-alert js-preview-unavailable"><p>Sorry, preview is currently unavailable. 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