{"id":445870,"date":"2024-03-12T12:52:20","date_gmt":"2024-03-12T11:52:20","guid":{"rendered":"https:\/\/www.eenewseurope.com\/?p=445870"},"modified":"2024-03-20T19:04:32","modified_gmt":"2024-03-20T18:04:32","slug":"medical-capteur-dintelligence-artificielle-optoelectronique-a-base-de-papier","status":"publish","type":"post","link":"https:\/\/www.ecinews.fr\/fr\/medical-capteur-dintelligence-artificielle-optoelectronique-a-base-de-papier\/","title":{"rendered":"Capteur d&rsquo;intelligence artificielle opto\u00e9lectronique \u00e0 base de papier"},"content":{"rendered":"<h3><span style=\"font-size: 16px;\">Des chercheurs japonais ont mis au point un capteur d&rsquo;intelligence artificielle jetable et portable, \u00e0 base de papier, destin\u00e9 \u00e0 la surveillance de la sant\u00e9.<\/span><\/h3>\n<p>Une \u00e9quipe de l&rsquo;Universit\u00e9 des sciences de Tokyo (TUS) a mis au point un capteur de sant\u00e9 \u00ab\u00a0the flexible paper-based AI\u00a0\u00bb, compos\u00e9 de nanocellulose et de nanoparticules d&rsquo;oxyde de zinc (ZnO), qui prend une entr\u00e9e optique en temps r\u00e9el.<\/p>\n<p>La surveillance de la sant\u00e9 et le diagnostic biologique bas\u00e9s sur l&rsquo;IA n\u00e9cessitent un capteur autonome qui fonctionne de mani\u00e8re ind\u00e9pendante sans avoir besoin d&rsquo;une connexion constante \u00e0 un serveur central. En m\u00eame temps, le capteur doit avoir une faible consommation d&rsquo;\u00e9nergie pour une utilisation prolong\u00e9e, \u00eatre capable de traiter des signaux biologiques changeant rapidement pour une surveillance en temps r\u00e9el, \u00eatre suffisamment souple pour se fixer confortablement sur le corps humain, et \u00eatre facile \u00e0 fabriquer et \u00e0 \u00e9liminer pour des raisons d&rsquo;hygi\u00e8ne.<\/p>\n<p>Les chercheurs ont fabriqu\u00e9 une synapse artificielle photo-\u00e9lectronique compos\u00e9e d&rsquo;\u00e9lectrodes en or sur un film transparent de 10 \u00b5m constitu\u00e9 de nanoparticules d&rsquo;oxyde de zinc (ZnO) et de nanofibres de cellulose (CNF).<\/p>\n<p>Le film transparent a trois fonctions principales.<\/p>\n<ul>\n<li>Tout d&rsquo;abord, il laisse passer la lumi\u00e8re, ce qui lui permet de traiter les signaux d&rsquo;entr\u00e9e optiques repr\u00e9sentant diverses informations biologiques.<\/li>\n<li>Deuxi\u00e8mement, les nanofibres de cellulose sont flexibles et peuvent \u00eatre facilement \u00e9limin\u00e9es par incin\u00e9ration.<\/li>\n<li>Troisi\u00e8mement, les nanoparticules de ZnO sont photor\u00e9actives et g\u00e9n\u00e8rent un photocourant lorsqu&rsquo;elles sont expos\u00e9es \u00e0 une lumi\u00e8re UV puls\u00e9e et \u00e0 une tension constante. Ce photocourant imite les r\u00e9ponses transmises par les synapses dans le cerveau humain, ce qui permet \u00e0 l&rsquo;appareil d&rsquo;interpr\u00e9ter et de traiter les informations re\u00e7ues des capteurs optiques.<\/li>\n<\/ul>\n<p>Le film est capable de distinguer des impulsions optiques de 4 bits et de g\u00e9n\u00e9rer des courants distincts en r\u00e9ponse \u00e0 des s\u00e9ries temporelles d&rsquo;entr\u00e9es optiques, avec un temps de r\u00e9ponse rapide de l&rsquo;ordre de la subseconde. Cette rapidit\u00e9 de r\u00e9action est cruciale pour la d\u00e9tection de changements soudains ou d&rsquo;anomalies dans les signaux li\u00e9s \u00e0 la sant\u00e9. En outre, lors de l&rsquo;exposition \u00e0 deux impulsions lumineuses successives, la r\u00e9ponse au courant \u00e9lectrique \u00e9tait plus forte pour la deuxi\u00e8me impulsion.<\/p>\n<p>Le dispositif pr\u00e9sente un photocourant synaptique en r\u00e9ponse \u00e0 une entr\u00e9e optique et a \u00e9t\u00e9 test\u00e9 pour des t\u00e2ches de classification et de pr\u00e9vision de s\u00e9ries temporelles. La capacit\u00e9 de m\u00e9moire \u00e0 court terme, qui indique la capacit\u00e9 de l&rsquo;appareil \u00e0 stocker des informations pass\u00e9es, est de 1,8 et l&rsquo;appareil peut reconna\u00eetre des chiffres manuscrits avec une pr\u00e9cision de 88 %.<\/p>\n<p>La pr\u00e9cision de la reconnaissance des chiffres manuscrits en flexion a \u00e9t\u00e9 \u00e9valu\u00e9e avec des rayons de flexion allant de 9,5 mm \u00e0 16 mm sur 1000 cycles et cela n&rsquo;affecte pas sa pr\u00e9cision. Il br\u00fble \u00e9galement en quelques secondes, comme du papier de bureau ordinaire. Il peut donc \u00eatre jet\u00e9.<\/p>\n<p>\u00ab\u00a0Un dispositif synaptique opto\u00e9lectronique \u00e0 base de papier compos\u00e9 de nanocellulose et de ZnO a \u00e9t\u00e9 mis au point pour d\u00e9velopper l&rsquo;informatique physique \u00e0 partir d&rsquo;un r\u00e9pertoire. Ce dispositif pr\u00e9sente un comportement synaptique et des t\u00e2ches cognitives \u00e0 une \u00e9chelle de temps appropri\u00e9e pour la surveillance de la sant\u00e9\u00a0\u00bb, explique le professeur associ\u00e9 Takashi Ikuno.<\/p>\n<p><a href=\"http:\/\/www.tus.ac.jp\/en\">www.tus.ac.jp\/en<\/a><\/p>\n<p><a href=\"https:\/\/news.google.com\/publications\/CAAqBwgKMJbcwQswuPfYAw?hl=fr&amp;gl=BE&amp;ceid=BE:fr\" target=\"news.google.com\" rel=\"noopener\">Suivre ECInews sur Google news<\/a><\/p>\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Des chercheurs japonais ont mis au point un capteur d&rsquo;intelligence artificielle jetable et portable, \u00e0 base de papier, destin\u00e9 \u00e0 la surveillance de la sant\u00e9. Une \u00e9quipe de l&rsquo;Universit\u00e9 des sciences de Tokyo (TUS) a mis au point un capteur de sant\u00e9 \u00ab\u00a0the flexible paper-based AI\u00a0\u00bb, compos\u00e9 de nanocellulose et de nanoparticules d&rsquo;oxyde de zinc [&hellip;]<\/p>\n","protected":false},"author":11,"featured_media":445828,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[883],"tags":[3679,937,1652,2198,904,907,1920,5997,910,914],"domains":[47],"ppma_author":[1143,3640],"class_list":["post-445870","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-technologies","tag-ai-fr","tag-capteur","tag-electronique-medicale","tag-ia","tag-medicalelectronics-fr","tag-optoelectronics-fr","tag-optoelectronique","tag-produit-portable","tag-sensing-conditioning-fr","tag-wearables-fr","domains-electronique-eci"],"acf":[],"yoast_head":"<title>Capteur d&#039;intelligence 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