{"id":12631,"date":"2018-10-11T18:50:59","date_gmt":"2018-10-11T16:50:59","guid":{"rendered":"https:\/\/42doit.com\/science-en\/artificial-skin-monitors-your-health\/"},"modified":"2024-07-31T12:40:56","modified_gmt":"2024-07-31T10:40:56","slug":"artificial-skin-monitors-your-health","status":"publish","type":"post","link":"https:\/\/www.42doit.com\/en\/2018\/10\/11\/artificial-skin-monitors-your-health\/","title":{"rendered":"Artificial skin monitors your health"},"content":{"rendered":"<p><strong><span title=\"Materiale ultrasottile che si integra con materiali soffici. \">Ultra-thin material that integrates with soft materials<\/span><\/strong><\/p>\n<p><span title=\"Una nuova forma di tecnologia indossabile che pu\u00f2 diventare parte del corpo formando una pelle metallica artificiale, che pu\u00f2 essere utilizzata per monitorare la salute dei pazienti.\">A new form of wearable technology that can become part of the body by forming an artificial metal skin, which can be used to monitor patient health. <\/span><span title=\"La tecnologia, che comporta l'uso di sensori biomedici, \u00e8 stata sviluppata da ricercatori del laboratorio di NanoBiotics dell'Universit\u00e0 Monash di Melbourne. \">The technology, which involves the use of biomedical sensors, was developed by researchers at the NanoBiotics laboratory at the Monash University of Melbourne.<\/span><\/p>\n<p><span title=\"La tecnologia, che comporta l'uso di sensori biomedici, \u00e8 stata sviluppata da ricercatori del laboratorio di NanoBiotics dell'Universit\u00e0 Monash di Melbourne. \"><br \/>\n<\/span><span title=\"Formata da una patina d'oro estremamente sottile, dieci volte pi\u00f9 sottile di un follicolo di capello umano, la pelle elettronica pu\u00f2 essere usata per monitorare i movimenti del corpo, il battito cardiaco e la pressione del sangue. \">Formed by an extremely thin gold patina, ten times thinner than a human hair follicle, electronic skin can be used to monitor body movements, heartbeat and blood pressure.<br \/>\n<\/span><span title=\"Caratteristica cruciale \u00e8 la sua capacit\u00e0 unica di integrarsi con materiali soffici e con superfici curvilinee, spiega Wenlong Cheng del Dipartimento di Ingegneria Chimica e il responsabile del progetto, nel sito dell'universit\u00e0.\">Crucial feature is its unique ability to integrate with soft materials and curvilinear surfaces, explains Wenlong Cheng of the Department of Chemical Engineering and the project manager on the university site. <\/span><span title=\"Il materiale ultrasottile piezoresistivo pu\u00f2 resistere a uno sforzo del 600%, risultante in un sensore biomedico indossabile altamente elastico per un monitoraggio in tempo reale delle condizioni di salute.\">The ultra-thin piezoresistive material can withstand a 600% effort, resulting in a highly elastic wearable biomedical sensor for real-time monitoring of health conditions. <\/span><span title=\"Il progetto ha avuto la collaborazione di specialisti di nanotecnologia, ingegneri elettrici, designer industriali e specialisti di ricerca cardiologica. \">The project was supported by nanotechnology specialists, electrical engineers, industrial designers and cardiology research specialists.<\/span><\/p>\n<p><span title=\"Il progetto ha avuto la collaborazione di specialisti di nanotecnologia, ingegneri elettrici, designer industriali e specialisti di ricerca cardiologica. \"><br \/>\n<\/span><span title=\"Cheng osserva che la produzione della tecnologia \u00e8 di basso costo ed \u00e8 ecosostenibile.\">Cheng notes that the production of technology is low-cost and is environmentally sustainable. <\/span><span title=\"&quot;Questa forma di nanofabbricazione sostenibile - conclude - sar\u00e0 un componente chiave in futura tecnologia elettronica indossabile con ampie applicazioni che andranno dalla pelle elettronica, alle interazioni intelligenti uomo-macchina, robotica soft e recupero di energia&quot;.\">&#8220;This form of sustainable nanofabrication &#8211; he concludes &#8211; will be a key component in future wearable electronic technology with broad applications ranging from electronic skin to intelligent human-machine interactions, soft robotics and energy recovery&#8221;.<\/span><\/p>\n<hr \/>\n<p><strong>La peau artificielle surveille votre sant\u00e9<\/strong><\/p>\n<p>Mat\u00e9riau ultra-fin s&#8217;int\u00e9grant \u00e0 des mat\u00e9riaux souples.<\/p>\n<p>Une nouvelle forme de technologie portable qui peut devenir une partie du corps en formant une peau artificielle en m\u00e9tal, qui peut \u00eatre utilis\u00e9e pour surveiller la sant\u00e9 du patient. La technologie, qui implique l&#8217;utilisation de capteurs biom\u00e9dicaux, a \u00e9t\u00e9 d\u00e9velopp\u00e9e par des chercheurs du laboratoire NanoBiotics de l&#8217;Universit\u00e9 Monash de Melbourne.<\/p>\n<p>&nbsp;<\/p>\n<p>Form\u00e9e d&#8217;une patine dor\u00e9e extr\u00eamement fine, dix fois plus fine qu&#8217;un follicule pileux, la peau \u00e9lectronique peut \u00eatre utilis\u00e9e pour surveiller les mouvements du corps, le rythme cardiaque et la pression art\u00e9rielle.<br \/>\nLa caract\u00e9ristique cruciale est sa capacit\u00e9 unique \u00e0 s\u2019int\u00e9grer \u00e0 des mat\u00e9riaux souples et \u00e0 des surfaces curvilignes, explique Wenlong Cheng du d\u00e9partement de g\u00e9nie chimique et gestionnaire de projet sur le site de l\u2019universit\u00e9. Le mat\u00e9riau pi\u00e9zor\u00e9sistif ultra-mince peut supporter un effort de 600%, ce qui en fait un capteur biom\u00e9dical portable tr\u00e8s \u00e9lastique pour la surveillance en temps r\u00e9el des conditions de sant\u00e9. Le projet a b\u00e9n\u00e9fici\u00e9 du soutien de sp\u00e9cialistes en nanotechnologie, ing\u00e9nieurs \u00e9lectriciens, concepteurs industriels et sp\u00e9cialistes de la recherche en cardiologie.<\/p>\n<p>&nbsp;<\/p>\n<p>Cheng souligne que la production de technologie est peu co\u00fbteuse et durable sur le plan environnemental. &#8220;Cette forme de nanofabrication durable &#8211; conclura-t-il &#8211; sera un \u00e9l\u00e9ment cl\u00e9 de la future technologie \u00e9lectronique portable avec de nombreuses applications allant de la peau \u00e9lectronique aux interactions intelligentes homme-machine, \u00e0 la robotique douce et \u00e0 la r\u00e9cup\u00e9ration d&#8217;\u00e9nergie&#8221;.<\/p>\n<hr \/>\n<p><strong>La piel artificial controla su salud<\/strong><\/p>\n<p>Material ultrafino que se integra con materiales blandos.<\/p>\n<p>Una nueva forma de tecnolog\u00eda port\u00e1til que puede convertirse en parte del cuerpo al formar una piel de metal artificial, que se puede utilizar para controlar la salud del paciente. La tecnolog\u00eda, que implica el uso de sensores biom\u00e9dicos, fue desarrollada por investigadores del laboratorio NanoBiotics de la Universidad Monash de Melbourne.<\/p>\n<p>&nbsp;<\/p>\n<p>Formada por una p\u00e1tina dorada extremadamente delgada, diez veces m\u00e1s delgada que un fol\u00edculo piloso humano, la piel electr\u00f3nica se puede usar para controlar los movimientos del cuerpo, los latidos del coraz\u00f3n y la presi\u00f3n arterial.<br \/>\nLa caracter\u00edstica crucial es su capacidad \u00fanica de integrarse con materiales blandos y superficies curvil\u00edneas, explica Wenlong Cheng, del Departamento de Ingenier\u00eda Qu\u00edmica y el gerente del proyecto en el sitio de la universidad. El material piezoresistivo ultradelgado puede soportar un esfuerzo del 600%, lo que resulta en un sensor biom\u00e9dico port\u00e1til altamente el\u00e1stico para el monitoreo en tiempo real de las condiciones de salud. El proyecto fue apoyado por especialistas en nanotecnolog\u00eda, ingenieros el\u00e9ctricos, dise\u00f1adores industriales y especialistas en investigaci\u00f3n en cardiolog\u00eda.<\/p>\n<p>&nbsp;<\/p>\n<p>Cheng se\u00f1ala que la producci\u00f3n de tecnolog\u00eda es de bajo costo y ambientalmente sostenible. &#8220;Esta forma de nanofabricaci\u00f3n sostenible, concluye, ser\u00e1 un componente clave en la tecnolog\u00eda electr\u00f3nica port\u00e1til en el futuro con amplias aplicaciones que van desde la piel electr\u00f3nica hasta interacciones inteligentes hombre-m\u00e1quina, rob\u00f3tica suave y recuperaci\u00f3n de energ\u00eda&#8221;.<\/p>\n<hr \/>\n<p><strong>K\u00fcnstliche Haut \u00fcberwacht Ihre Gesundheit<\/strong><\/p>\n<p>Ultrad\u00fcnnes Material, das sich in weiche Materialien einf\u00fcgt.<\/p>\n<p>Eine neue Form der tragbaren Technologie, die durch die Bildung einer k\u00fcnstlichen Metallhaut, mit der die Gesundheit des Patienten \u00fcberwacht werden kann, Teil des K\u00f6rpers werden kann. Die Technologie, bei der biomedizinische Sensoren zum Einsatz kommen, wurde von Forschern des NanoBiotics-Labors der Monash University of Melbourne entwickelt.<\/p>\n<p>&nbsp;<\/p>\n<p>Die elektronische Haut besteht aus einer extrem d\u00fcnnen Goldpatina und ist zehnmal d\u00fcnner als ein menschlicher Haarfollikel. Sie kann zur \u00dcberwachung von K\u00f6rperbewegungen, Herzschlag und Blutdruck eingesetzt werden.<br \/>\nEntscheidend ist die einzigartige F\u00e4higkeit, sich in weiche Materialien und krummlinige Oberfl\u00e4chen zu integrieren, erkl\u00e4rt Wenlong Cheng vom Department of Chemical Engineering und der Projektmanager auf dem Universit\u00e4tsgel\u00e4nde. Das ultrad\u00fcnne piezoresistive Material h\u00e4lt einer Belastung von 600% stand, was zu einem hochelastischen, tragbaren biomedizinischen Sensor zur Echtzeit\u00fcberwachung des Gesundheitszustands f\u00fchrt. Das Projekt wurde von Nanotechnologie-Spezialisten, Elektroingenieuren, Industriedesignern und Spezialisten f\u00fcr Kardiologie-Forschung unterst\u00fctzt.<\/p>\n<p>&nbsp;<\/p>\n<p>Cheng stellt fest, dass die Herstellung von Technologie kosteng\u00fcnstig und umweltvertr\u00e4glich ist. &#8220;Diese Form der nachhaltigen Nanofabrikation wird eine Schl\u00fcsselkomponente in der k\u00fcnftigen tragbaren elektronischen Technologie sein, die breite Anwendungen von elektronischer Haut \u00fcber intelligente Mensch-Maschine-Interaktionen bis hin zu sanfter Robotik und Energier\u00fcckgewinnung bietet.&#8221;<\/p>\n<hr \/>\n<p style=\"text-align: right;\"><strong>\u0627\u0644\u062c\u0644\u062f \u0627\u0644\u0627\u0635\u0637\u0646\u0627\u0639\u064a \u064a\u0631\u0627\u0642\u0628 \u0635\u062d\u062a\u0643<\/strong><\/p>\n<p style=\"text-align: right;\">\u0645\u0627\u062f\u0629 \u0631\u0642\u064a\u0642\u0629 \u062c\u062f\u0627 \u062a\u062a\u0643\u0627\u0645\u0644 \u0645\u0639 \u0645\u0648\u0627\u062f \u0644\u064a\u0646\u0629.<\/p>\n<p style=\"text-align: right;\">\u0634\u0643\u0644 \u062c\u062f\u064a\u062f \u0645\u0646 \u0627\u0644\u062a\u0642\u0646\u064a\u0627\u062a \u0627\u0644\u0642\u0627\u0628\u0644\u0629 \u0644\u0644\u0627\u0631\u062a\u062f\u0627\u0621 \u0648\u0627\u0644\u062a\u064a \u064a\u0645\u0643\u0646 \u0623\u0646 \u062a\u0635\u0628\u062d \u062c\u0632\u0621\u064b\u0627 \u0645\u0646 \u0627\u0644\u062c\u0633\u0645 \u0639\u0646 \u0637\u0631\u064a\u0642 \u062a\u0634\u0643\u064a\u0644 \u062c\u0644\u062f \u0645\u0639\u062f\u0646\u064a \u0635\u0646\u0627\u0639\u064a \u060c \u064a\u0645\u0643\u0646 \u0627\u0633\u062a\u062e\u062f\u0627\u0645\u0647 \u0644\u0645\u0631\u0627\u0642\u0628\u0629 \u0635\u062d\u0629 \u0627\u0644\u0645\u0631\u064a\u0636. \u062a\u0645 \u062a\u0637\u0648\u064a\u0631 \u0647\u0630\u0647 \u0627\u0644\u062a\u0642\u0646\u064a\u0629 \u060c \u0627\u0644\u062a\u064a \u062a\u0646\u0637\u0648\u064a \u0639\u0644\u0649 \u0627\u0633\u062a\u062e\u062f\u0627\u0645 \u0623\u062c\u0647\u0632\u0629 \u0627\u0644\u0627\u0633\u062a\u0634\u0639\u0627\u0631 \u0627\u0644\u0637\u0628\u064a\u0629 \u0627\u0644\u062d\u064a\u0648\u064a\u0629 \u060c \u0645\u0646 \u0642\u0628\u0644 \u0627\u0644\u0628\u0627\u062d\u062b\u064a\u0646 \u0641\u064a \u0645\u062e\u062a\u0628\u0631 NanoBiotics \u0641\u064a \u062c\u0627\u0645\u0639\u0629 \u0645\u0648\u0646\u0627\u0634 \u0641\u064a \u0645\u0644\u0628\u0648\u0631\u0646.<\/p>\n<p style=\"text-align: right;\">\u064a\u0645\u0643\u0646 \u062a\u0634\u0643\u064a\u0644 \u0627\u0644\u062c\u0644\u062f \u0627\u0644\u0625\u0644\u0643\u062a\u0631\u0648\u0646\u064a \u0645\u0646 \u0642\u0650\u0628\u0644 \u0627\u0644\u0632\u0646\u062c\u0627\u0631 \u0627\u0644\u0630\u0647\u0628\u064a \u0627\u0644\u0631\u0642\u064a\u0642 \u0644\u0644\u063a\u0627\u064a\u0629 \u060c \u0627\u0644\u0630\u064a \u064a\u0643\u0648\u0646 \u0623\u0631\u0642 \u0639\u0634\u0631 \u0645\u0631\u0627\u062a \u0645\u0646 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\u0627\u0644\u0630\u0643\u064a\u0629 \u060c \u0648\u0627\u0644\u0631\u0648\u0628\u0648\u062a\u0627\u062a \u0627\u0644\u0646\u0627\u0639\u0645\u0629 \u0648\u0627\u0633\u062a\u0639\u0627\u062f\u0629 \u0627\u0644\u0637\u0627\u0642\u0629&#8221;.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Ultra-thin material that integrates with soft materials A new form of wearable technology that can 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