{"@context":"https://schema.org","@type":"NewsArticle","generatedAt":"2026-09-28T06:03:00.468Z","headline":"中科院沈阳自动化所研制无线光控类生命蝠鲼机器人，用牛蛙骨骼肌驱动","description":"中国科学院沈阳自动化研究所研制出一款基于牛蛙离体骨骼肌的无线近红外光控类生命蝠鲼机器人，相关成果刊载于《Advanced Functional Materials》。该机器人采用天然离体骨骼肌作为驱动核心，可输出约6.5牛顿收缩力，平均游速达每秒0.54体长，瞬时峰值游速每秒2体长，创下骨骼肌驱动类生命机器人的最高相对行进速度纪录。目前主要限制在于生物组织寿命与外部能量依赖。","url":"https://www.aioga.com/news/cmttmpfpk0elirofppoqsjx5t/","mainEntityOfPage":"https://www.aioga.com/news/cmttmpfpk0elirofppoqsjx5t/","datePublished":"2026-09-09T04:11:20.000Z","dateModified":"2026-09-09T04:11:20.000Z","inLanguage":"zh-CN","publisher":{"@type":"NewsMediaOrganization","name":"Aioga","url":"https://www.aioga.com"},"citation":["https://www.ithome.com/1/000/146.htm","https://aihot.news/items/cmttmpfpk0elirofppoqsjx5t"],"canonicalUrl":"https://www.aioga.com/news/cmttmpfpk0elirofppoqsjx5t/","directAnswer":{"@type":"Answer","text":"中国科学院沈阳自动化研究所研制出无线近红外光控类生命蝠鲼机器人，以牛蛙离体骨骼肌作为驱动核心，通过光伏模块和神经电刺激实现无缆水下运动。来源称其平均游速为每秒0.54体长，瞬时峰值为每秒2体长。","url":"https://www.aioga.com/news/cmttmpfpk0elirofppoqsjx5t/","dateCreated":"2026-09-09T04:11:20.000Z","author":{"@type":"Organization","@id":"https://www.aioga.com/authors/aioga-editorial/#editorial-team","name":"Aioga Editorial 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Materials》。该机器人采用天然离体骨骼肌作为驱动核心，可输出约6.5牛顿收缩力，平均游速达每秒0.54体长，瞬时峰值游速每秒2体长，创下骨骼肌驱动类生命机器人的最高相对行进速度纪录。目前主要限制在于生物组织寿命与外部能量依赖。","source":"IT之家（RSS）","sourceUrl":"https://www.ithome.com/1/000/146.htm","aiHotUrl":"https://aihot.news/items/cmttmpfpk0elirofppoqsjx5t","publishedAt":"2026-09-09T04:11:20.000Z","category":"行业动态","score":58,"selected":false,"articleBody":["IT之家：https://www.ithome.com/ 9 月 9 日消息，中国科学院沈阳自动化研究所机器人学研究室科研团队受蝠鲼游动机制启发，研制出一款基于牛蛙离体骨骼肌的无线近红外光控“类生命蝠鲼机器人”。","该研究将生物组织直接用作执行器，属于类生命机器人领域的前沿探索。相关成果刊载于国际学术期刊《Advanced Functional Materials》。","区别于领域内主流的细胞工程骨骼肌组织，科研人员创新性地选用牛蛙股薄肌天然离体骨骼肌作为生物驱动核心，其天然肌纤维排布有序，收缩力学性能优于细胞再造肌肉。在优化电刺激条件下（1Hz、5V、每脉冲 10 毫秒），离体肌肉可稳定输出约 6.5 牛顿收缩力，收缩幅度约 25%；极限条件下峰值收缩力达 9.4 牛顿。体外培养测试证实，该离体骨骼肌可维持电响应收缩性能长达 11 天，稳定驱动机器人运行约 7 天。","在无线驱动方面，团队构建了“近红外激光 — 光电转换 — 神经电刺激”一体化架构。机器人背部集成微型砷化镓（GaAs）光伏模块，通过分时、分区激光辐照左右光伏单元，可独立控制双侧肌肉收缩时序，无需外接线缆即可实现直行、左右转向、环形巡游、掉头等多自由度复杂运动，完成无缆化水下精准操控。该方案无需对生物组织进行基因修饰。","性能测试结果表明，该机器蝠鲼平均直线游动速度达每秒 0.54 体长（约 2.7 厘米 / 秒），瞬时峰值游速可达每秒 2 体长，创造了由骨骼肌组织驱动的类生命机器人的最高相对行进速度；最小转弯半径仅 0.8 倍体长，最大转向角速度达每秒 21 度，约 17 秒即可完成完整环形轨迹。该机器人同时支持水面巡游、水下 5 克负载作业及硬质地面低速曲线移动。","研究团队认为，此类小型、鳍推进的机器人适用于浅水环境监测及对水生生物的低扰动观测。此外，所构建的肌肉电刺激参数体系可为神经损伤后的体外肌肉康复研究及动态组织工程培养系统提供实验参考。","目前的主要限制在于生物组织寿命与外部能量依赖。下一步，团队计划优化离体肌肉体外培养体系以延长寿命，研发类神经柔性薄膜电极以实现更均匀的电信号分布，并尝试将光伏系统与机载储能结合，使机器人储存光能按需调用。该研究得到国家自然科学基金、科技部重点研发计划支持。","IT之家附论文地址： https://doi.org/10.1002/adfm.77713"],"articleImages":[{"sourceUrl":"https://img.ithome.com/newsuploadfiles/2026/9/d41ff163-6f7d-4f73-84c8-c70fcc785dfa.png?x-bce-process=image/format,f_auto","alt":"","afterParagraph":1,"url":"/media/articles/cmttmpfpk0elirofppoqsjx5t/4d35306a812dadb5.webp"},{"sourceUrl":"https://img.ithome.com/newsuploadfiles/2026/9/31d6ffa6-44d3-4e43-9e5b-590546896d94.png?x-bce-process=image/format,f_auto","alt":"","afterParagraph":2,"url":"/media/articles/cmttmpfpk0elirofppoqsjx5t/aabea08f72045e7a.webp"},{"sourceUrl":"https://img.ithome.com/newsuploadfiles/2026/9/589149ae-c57d-494a-a5ef-e3627eb71651.png?x-bce-process=image/format,f_auto","alt":"","afterParagraph":3,"url":"/media/articles/cmttmpfpk0elirofppoqsjx5t/5af6a51db2be1fdd.webp"}],"mediaStatus":"ok","articleBodyZh":["中科院沈阳自动化所研制无线光控类生命蝠鲼机器人，用牛蛙骨骼肌驱动 这条更新来自 ithome.com，发布时间为 2026-09-09，Aioga 保留原文入口以便核验。","摘要：中国科学院沈阳自动化研究所研制出一款基于牛蛙离体骨骼肌的无线近红外光控类生命蝠鲼机器人，相关成果刊载于《Advanced Functional Materials》。该机器人采用天然离体骨骼肌作为驱动核心，可输出约6.5牛顿收缩力，平均游速达每秒0.54体长，瞬时峰值游速每秒2体长，创下骨骼肌驱动类生命机器人的最高相对行进速度纪录。目前主要限制在于生物组织寿命与外部能量依赖。","背景：该机器人采用天然离体骨骼肌，而非细胞工程骨骼肌组织，并可通过分时、分区激光辐照控制左右肌肉收缩，实现直行、转向、环形巡游和掉头。材料显示，生物组织寿命和外部能量依赖仍是主要限制。","Aioga 观察：Aioga 判断：这项研究的重点在于将天然生物组织直接作为机器人执行器，并完成无线光控和水下多自由度运动验证。现有材料支持其处于实验研究阶段，不足以据此判断其已具备规模化应用条件。","影响与后续：可能影响：该类小型鳍推进机器人可能为浅水环境监测和低扰动水生生物观测提供研究方向，但其应用仍需要面对生物组织寿命、外部能量依赖等问题；相关性能数据不代表已形成成熟产品。 后续观察：研究团队计划优化离体肌肉体外培养体系以延长寿命，研发类神经柔性薄膜电极，并尝试结合光伏系统与机载储能，使机器人能够储存光能并按需调用。"],"translationStatus":"","bodyOrigin":"source-page","editorial":{"summary":"中国科学院沈阳自动化研究所研制出无线近红外光控类生命蝠鲼机器人，以牛蛙离体骨骼肌作为驱动核心，通过光伏模块和神经电刺激实现无缆水下运动。来源称其平均游速为每秒0.54体长，瞬时峰值为每秒2体长。","background":"该机器人采用天然离体骨骼肌，而非细胞工程骨骼肌组织，并可通过分时、分区激光辐照控制左右肌肉收缩，实现直行、转向、环形巡游和掉头。材料显示，生物组织寿命和外部能量依赖仍是主要限制。","viewpoint":"Aioga 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Functional Materials》。该机器人采用天然离体骨骼肌作为驱动核心，可输出约6.5牛顿收缩力，平均游速达每秒0.54体长，瞬时峰值游速每秒2体长，创下骨骼肌驱动类生命机器人的最高相对行进速度纪录。目前主要限制在于生物组织寿命与外部能量依赖。","category":"行业动态","source":"IT之家","aggregationSource":"IT之家（RSS）","pageTitle":"中科院沈阳自动化所研制无线光控类生命蝠鲼机器人，用牛蛙骨骼肌驱动 - Aioga AI资讯","description":"中国科学院沈阳自动化研究所研制出一款基于牛蛙离体骨骼肌的无线近红外光控类生命蝠鲼机器人，相关成果刊载于《Advanced Functional Materials》。该机器人采用天然离体骨骼肌作为驱动核心，可输出约6.5牛顿收缩力，平均游速达每秒0.54体长，瞬时峰值游速每秒2体长，创下骨骼肌驱动类生命机器人的最高相对行进速度纪录。目前主要限制在于生物组织寿...","url":"https://www.aioga.com/news/cmttmpfpk0elirofppoqsjx5t/","articleBody":["中科院沈阳自动化所研制无线光控类生命蝠鲼机器人，用牛蛙骨骼肌驱动 这条更新来自 ithome.com，发布时间为 2026-09-09，Aioga 保留原文入口以便核验。","摘要：中国科学院沈阳自动化研究所研制出一款基于牛蛙离体骨骼肌的无线近红外光控类生命蝠鲼机器人，相关成果刊载于《Advanced Functional Materials》。该机器人采用天然离体骨骼肌作为驱动核心，可输出约6.5牛顿收缩力，平均游速达每秒0.54体长，瞬时峰值游速每秒2体长，创下骨骼肌驱动类生命机器人的最高相对行进速度纪录。目前主要限制在于生物组织寿命与外部能量依赖。","背景：该机器人采用天然离体骨骼肌，而非细胞工程骨骼肌组织，并可通过分时、分区激光辐照控制左右肌肉收缩，实现直行、转向、环形巡游和掉头。材料显示，生物组织寿命和外部能量依赖仍是主要限制。","Aioga 观察：Aioga 判断：这项研究的重点在于将天然生物组织直接作为机器人执行器，并完成无线光控和水下多自由度运动验证。现有材料支持其处于实验研究阶段，不足以据此判断其已具备规模化应用条件。","影响与后续：可能影响：该类小型鳍推进机器人可能为浅水环境监测和低扰动水生生物观测提供研究方向，但其应用仍需要面对生物组织寿命、外部能量依赖等问题；相关性能数据不代表已形成成熟产品。 后续观察：研究团队计划优化离体肌肉体外培养体系以延长寿命，研发类神经柔性薄膜电极，并尝试结合光伏系统与机载储能，使机器人能够储存光能并按需调用。"]},"en":{"title":"Shenyang Institute of Automation, CAS, develops wireless optically controlled manta ray-like robot driven by frog skeletal muscle","summary":"The Shenyang Institute of Automation, Chinese Academy of Sciences, has developed a wireless near-infrared optically controlled manta ray-like robot based on isolated frog skeletal muscle. The results are published in \"Advanced Functional Materials.\" The robot uses natural isolated skeletal muscle as the driving core, producing about 6.5 Newtons of contraction force, with an average swimming speed of 0.54 body lengths per second and a peak instantaneous swimming speed of 2 body lengths per second, setting a record for the highest relative movement speed among skeletal muscle-driven life-like robots. The main current limitations are the lifespan of the biological tissue and dependence on external energy.","category":"Industry","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Shenyang Institute of Automation, CAS, develops wireless optically controlled manta ray-like robot driven by frog skeletal muscle - Aioga AI News","description":"The Shenyang Institute of Automation, Chinese Academy of Sciences, has developed a wireless near-infrared optically controlled manta ray-like robot based on isolated frog skeletal...","url":"https://www.aioga.com/en/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:18.876Z"},"ja":{"title":"中国科学院沈陽自動化研究所、牛蛙筋肉で駆動する無線光制御型生物モチーフマンタロボットを開発","summary":"中国科学院沈陽自動化研究所は、牛蛙の離体骨格筋を駆動源とする無線近赤外光制御型生物モチーフマンタロボットを開発。関連成果は『Advanced Functional Materials』に掲載。ロボットは天然の離体骨格筋を駆動コアとして使用し、約6.5ニュートンの収縮力を発揮。平均遊泳速度は体長の0.54/秒、瞬間最大速度は体長の2/秒に達し、骨格筋駆動型生物ロボットとして最高の相対移動速度を記録。現在の主な制約は生体組織の寿命と外部エネルギー依存。","category":"業界動向","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"中国科学院沈陽自動化研究所、牛蛙筋肉で駆動する無線光制御型生物モチーフマンタロボットを開発 - Aioga AIニュース","description":"中国科学院沈陽自動化研究所は、牛蛙の離体骨格筋を駆動源とする無線近赤外光制御型生物モチーフマンタロボットを開発。関連成果は『Advanced Functional Materials』に掲載。ロボットは天然の離体骨格筋を駆動コアとして使用し、約6.5ニュートンの収縮力を発揮。平均遊泳速度は体長の0.54/秒、瞬間最大速度は体長の2/秒に達し、骨格筋駆動型生物...","url":"https://www.aioga.com/ja/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:21.057Z"},"ko":{"title":"중국과학원 심양자동화연구소, 무선 광 제어형 생명광선 가오리 로봇 개발, 황소개구리 골격근으로 구동","summary":"중국과학원 심양자동화연구소, 황소개구리 체외 골격근을 기반으로 한 무선 근적외선 광 제어형 생명 광선 가오리 로봇을 개발하였으며, 관련 성과는 《Advanced Functional Materials》에 게재됨. 이 로봇은 천연 체외 골격근을 구동 핵심으로 사용하며 약 6.5 뉴턴의 수축력을 출력, 평균 수영 속도 초당 0.54 체장, 순간 최고 수영 속도 초당 2 체장으로 골격근 구동형 생명 로봇 중 최고 상대 이동 속도 기록을 세움. 현재 주요 제한은 생물 조직 수명과 외부 에너지 의존성에 있음.","category":"업계 동향","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"중국과학원 심양자동화연구소, 무선 광 제어형 생명광선 가오리 로봇 개발, 황소개구리 골격근으로 구동 - Aioga AI 뉴스","description":"중국과학원 심양자동화연구소, 황소개구리 체외 골격근을 기반으로 한 무선 근적외선 광 제어형 생명 광선 가오리 로봇을 개발하였으며, 관련 성과는 《Advanced Functional Materials》에 게재됨. 이 로봇은 천연 체외 골격근을 구동 핵심으로 사용하며 약 6.5 뉴턴의 수축력을 출력, 평균 수영 속도 초당 0...","url":"https://www.aioga.com/ko/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:28.371Z"},"es":{"title":"El Instituto de Automatización de Shenyang de la Academia China de Ciencias desarrolla un robot tipo mantarraya controlado por luz inalámbrica, impulsado por músculos esqueléticos de rana bovina","summary":"El Instituto de Automatización de Shenyang de la Academia China de Ciencias ha desarrollado un robot tipo mantarraya controlado por luz infrarroja cercana inalámbrica basado en músculos esqueléticos de rana bovina fuera del cuerpo, cuyos resultados se publicaron en \"Advanced Functional Materials\". Este robot utiliza músculos esqueléticos naturales fuera del cuerpo como núcleo propulsor, puede generar una fuerza de contracción de aproximadamente 6.5 Newtons, con una velocidad de natación promedio de 0,54 longitudes de cuerpo por segundo y una velocidad máxima instantánea de 2 longitudes de cuerpo por segundo, estableciendo el récord de velocidad relativa más alta para robots biológicos impulsados por músculos esqueléticos. Actualmente, las principales limitaciones son la vida útil de los tejidos biológicos y la dependencia de energía externa.","category":"Industria","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"El Instituto de Automatización de Shenyang de la Academia China de Ciencias desarrolla un robot tipo mantarraya controlado por luz inalámbrica, impulsado por músculos esqueléticos de rana bovina - Aioga Noticias de IA","description":"El Instituto de Automatización de Shenyang de la Academia China de Ciencias ha desarrollado un robot tipo mantarraya controlado por luz infrarroja cercana inalámbrica basado en mús...","url":"https://www.aioga.com/es/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:27.067Z"},"fr":{"title":"L’Institut d’automatisation de Shenyang, Académie chinoise des sciences, a développé un robot manta sans fil, contrôlé par la lumière et réaliste, alimenté par des muscles squelettiques de grenouille taureau","summary":"L’Institut d’automatisation de Shenyang, Académie chinoise des sciences, a développé un robot manta à raies manta, contrôlé par la lumière proche infrarouge sans fil, basé sur un muscle squelettique isolé de grenouille taureau, avec des résultats connexes publiés dans Advanced Functional Materials. Ce robot utilise un muscle squelettique naturel isolé comme noyau moteur, peut fournir environ 6,5 newtons de force de contraction, une vitesse moyenne de nage de 0,54 longueur corporelle par seconde, et une vitesse de nage instantanée maximale de 2 longueurs corporelles par seconde, établissant le record de vitesse relative de déplacement le plus élevé pour les robots de vie entraînés par les muscles squelettiques. Actuellement, les principales limites résident dans la durée de vie des tissus biologiques et la dépendance à l’énergie externe.","category":"Industrie","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"L’Institut d’automatisation de Shenyang, Académie chinoise des sciences, a développé un robot manta sans fil, contrôlé par la lumière et réaliste, alimenté par des muscles squelettiques de grenouille taureau - Aioga Actualités IA","description":"L’Institut d’automatisation de Shenyang, Académie chinoise des sciences, a développé un robot manta à raies manta, contrôlé par la lumière proche infrarouge sans fil, basé sur un m...","url":"https://www.aioga.com/fr/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:37.777Z"},"de":{"title":"Shenyang Institut für Automatisierung der Chinesischen Akademie der Wissenschaften entwickelt drahtlos lichtgesteuerte lebensähnliche Rochen-Roboter, angetrieben von Froschskelettmuskeln","summary":"Das Shenyang Institut für Automatisierung der Chinesischen Akademie der Wissenschaften hat einen drahtlos mit nahinfrarotem Licht gesteuerten lebensähnlichen Rochen-Roboter entwickelt, der auf isolierter Froschskelettmuskulatur basiert. Die entsprechenden Ergebnisse wurden in „Advanced Functional Materials“ veröffentlicht. Dieser Roboter verwendet natürliche isolierte Skelettmuskeln als Antriebskern, kann etwa 6,5 Newton Kontraktionskraft erzeugen, erreicht eine durchschnittliche Schwimmgeschwindigkeit von 0,54 Körperlängen pro Sekunde und eine momentane Spitzen-Schwimmgeschwindigkeit von 2 Körperlängen pro Sekunde, was den höchsten relativen Fortbewegungsgeschwindigkeitsrekord für skeletalmuskelbetriebene lebensechte Roboter aufstellt. Hauptbeschränkungen sind derzeit die Lebensdauer des biologischen Gewebes und die Abhängigkeit von externer Energie.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Shenyang Institut für Automatisierung der Chinesischen Akademie der Wissenschaften entwickelt drahtlos lichtgesteuerte lebensähnliche Rochen-Roboter, angetrieben von Froschskelettmuskeln - Aioga KI-News","description":"Das Shenyang Institut für Automatisierung der Chinesischen Akademie der Wissenschaften hat einen drahtlos mit nahinfrarotem Licht gesteuerten lebensähnlichen Rochen-Roboter entwick...","url":"https://www.aioga.com/de/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:34.590Z"},"pt-BR":{"title":"O Instituto de Automação Shenyang, da Academia Chinesa de Ciências, desenvolveu um robô manta, sem fio, controlado pela luz e realista, movido por músculos esqueléticos de rã-touro","summary":"O Instituto de Automação Shenyang, da Academia Chinesa de Ciências, desenvolveu um robô manta controlado por luz de luz no infravermelho próximo ao infravermelho, baseado em músculo esquelético isolado de sapo-touro, com resultados relacionados publicados na Advanced Functional Materials. Este robô utiliza músculo esquelético isolado natural como núcleo motriz, pode gerar cerca de 6,5 newtons de força de contração, velocidade média de natação de 0,54 comprimento corporal por segundo e velocidade máxima instantânea de natação de 2 comprimentos corporais por segundo, estabelecendo o recorde mais alto de velocidade relativa de deslocamento para robôs de vida movidos a músculos esqueléticos. Atualmente, as principais limitações estão na vida útil dos tecidos biológicos e na dependência de energia externa.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"O Instituto de Automação Shenyang, da Academia Chinesa de Ciências, desenvolveu um robô manta, sem fio, controlado pela luz e realista, movido por músculos esqueléticos de rã-touro - Aioga Notícias de IA","description":"O Instituto de Automação Shenyang, da Academia Chinesa de Ciências, desenvolveu um robô manta controlado por luz de luz no infravermelho próximo ao infravermelho, baseado em múscul...","url":"https://www.aioga.com/pt-BR/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:47.003Z"},"ru":{"title":"Институт автоматизации Шэньян Китайской академии наук создал беспроводного роботоподобного ската с контролем светом, приводимого в движение скелетными мышцами бычьей лягушки.","summary":"Институт автоматизации Шэньян Китайской академии наук разработал беспроводного подинфракрасного светового роботоподобного ската, основанного на изолированных скелетных мышцах бычьей лягушки; результаты опубликованы в журнале «Advanced Functional Materials». Робот использует естественные изолированные скелетные мышцы в качестве движущего ядра, способен развивать силу сокращения около 6,5 Н, среднюю скорость плавания 0,54 длины тела в секунду, моментальный пик скорости плавания — 2 длины тела в секунду, установив рекорд по наибольшей относительной скорости среди роботов на основе скелетных мышц. Основными ограничениями остаются срок службы биологической ткани и зависимость от внешнего источника энергии.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Институт автоматизации Шэньян Китайской академии наук создал беспроводного роботоподобного ската с контролем светом, приводимого в движение скелетными мышцами бычьей лягушки. - Aioga Новости ИИ","description":"Институт автоматизации Шэньян Китайской академии наук разработал беспроводного подинфракрасного светового роботоподобного ската, основанного на изолированных скелетных мышцах бычье...","url":"https://www.aioga.com/ru/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:44.133Z"},"ar":{"title":"طور معهد شنغهاي للأتمتة التابع للأكاديمية الصينية للعلوم روبوتًا يشبه حياة شيطان البحر يتم التحكم فيه بالضوء اللاسلكي، مدفوع بعضلات عظمية من ضفدع البقرة","summary":"طور معهد شنغهاي للأتمتة التابع للأكاديمية الصينية للعلوم روبوتًا يشبه حياة شيطان البحر يعمل بواسطة عضلات عظمية من ضفدع البقرة خارج الجسم، ونُشرت النتائج في مجلة Advanced Functional Materials. يستخدم هذا الروبوت عضلات طبيعية خارج الجسم كمحرك أساسي، ويمكنه إخراج قوة انقباض تبلغ حوالي 6.5 نيوتن، وسرعة سباحة متوسطة تبلغ 0.54 طول الجسم في الثانية، وسرعة سباحة قصوى لحظية تبلغ طولين في الثانية، مسجلًا أعلى سرعة نسبية في الروبوتات المدفوعة بعضلات العظم. الحواجز الرئيسية حتى الآن هي عمر الأنسجة البيولوجية واعتمادها على الطاقة الخارجية.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"طور معهد شنغهاي للأتمتة التابع للأكاديمية الصينية للعلوم روبوتًا يشبه حياة شيطان البحر يتم التحكم فيه بالضوء اللاسلكي، مدفوع بعضلات عظمية من ضفدع البقرة - Aioga أخبار الذكاء الاصطناعي","description":"طور معهد شنغهاي للأتمتة التابع للأكاديمية الصينية للعلوم روبوتًا يشبه حياة شيطان البحر يعمل بواسطة عضلات عظمية من ضفدع البقرة خارج الجسم، ونُشرت النتائج في مجلة Advanced Functional...","url":"https://www.aioga.com/ar/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:53.022Z"},"hi":{"title":"चीन अकादमी ऑफ साइंसेज के शेनयांग ऑटोमेशन संस्थान ने बायोलॉजिकल फ्लाई-रॉबोट विकसित किया, जिसे बैल फ्रॉग की कंकाल मांसपेशियों द्वारा संचालित किया जाता है","summary":"चीन अकादमी ऑफ साइंसेस के शेनयांग ऑटोमेशन रिसर्च इंस्टीट्यूट ने एक वायरलेस नजदीकी-इन्फ़्रारेड लाइट-कंट्रोल्ड बायोलॉजिकल री मँक रा रोबोट विकसित किया, जो बैल फ्रॉग की अलग की हुई कंकाल मांसपेशियों पर आधारित है। संबंधित परिणामों को 'Advanced Functional Materials' में प्रकाशित किया गया। इस रोबोट में प्राकृतिक अलग की हुई कंकाल मांसपेशियां ड्राइविंग कोर के रूप में प्रयोग की गई हैं, जो लगभग 6.5 न्यूटन संकुचन बल उत्पन्न कर सकती हैं, औसत तैरने की गति प्रति सेकंड 0.54 शारीरिक लंबाई है, और अधिकतम पीक गति प्रति सेकंड 2 शारीरिक लंबाई है, जो कंकाल मांसपेशियों द्वारा संचालित बायोलॉजिकल रोबोटों में सबसे उच्च सापेक्ष गतिज गति रिकॉर्ड बनाती है। वर्तमान में मुख्य सीमाएँ जैविक ऊतक की आयु और बाहरी ऊर्जा पर निर्भरता हैं।","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"चीन अकादमी ऑफ साइंसेज के शेनयांग ऑटोमेशन संस्थान ने बायोलॉजिकल फ्लाई-रॉबोट विकसित किया, जिसे बैल फ्रॉग की कंकाल मांसपेशियों द्वारा संचालित किया जाता है - Aioga AI समाचार","description":"चीन अकादमी ऑफ साइंसेस के शेनयांग ऑटोमेशन रिसर्च इंस्टीट्यूट ने एक वायरलेस नजदीकी-इन्फ़्रारेड लाइट-कंट्रोल्ड बायोलॉजिकल री मँक रा रोबोट विकसित किया, जो बैल फ्रॉग की अलग की हुई कंकाल...","url":"https://www.aioga.com/hi/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:21:54.267Z"},"it":{"title":"Istituto di Automatizzazione di Shenyang dell'Accademia Cinese delle Scienze sviluppa un robot vivente tipo manta controllato da luce wireless, alimentato da muscoli scheletrici di rana toro","summary":"L'Istituto di Automatizzazione di Shenyang dell'Accademia Cinese delle Scienze ha sviluppato un robot vivente tipo manta controllato da luce a infrarossi vicina wireless, basato su muscoli scheletrici isolati di rana toro, i cui risultati sono stati pubblicati su \"Advanced Functional Materials\". Il robot utilizza muscoli scheletrici naturali come nucleo di propulsione, può produrre circa 6,5 N di forza di contrazione, con velocità media di nuoto di 0,54 lunghezze corporee al secondo e velocità massima istantanea di 2 lunghezze corporee al secondo, stabilendo il record di velocità relativa più alta tra i robot viventi guidati da muscoli scheletrici. L'attuale principale limite è la durata dei tessuti biologici e la dipendenza dall'energia esterna.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Istituto di Automatizzazione di Shenyang dell'Accademia Cinese delle Scienze sviluppa un robot vivente tipo manta controllato da luce wireless, alimentato da muscoli scheletrici di rana toro - Aioga Notizie IA","description":"L'Istituto di Automatizzazione di Shenyang dell'Accademia Cinese delle Scienze ha sviluppato un robot vivente tipo manta controllato da luce a infrarossi vicina wireless, basato su...","url":"https://www.aioga.com/it/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:22:00.527Z"},"nl":{"title":"Chengdu Institute of Automation, Chinese Academy of Sciences ontwikkelt draadloze lichtgestuurde levensachtige manta-robot aangedreven door kikkerspieren","summary":"Het Shenyang Institute of Automation van de Chinese Academie van Wetenschappen heeft een draadloze nabije-infrarood lichtgestuurde levensachtige manta-robot ontwikkeld, gebaseerd op uit het lichaam genomen kikkerspieren. De relevante resultaten zijn gepubliceerd in 'Advanced Functional Materials'. Deze robot gebruikt natuurlijke uit het lichaam genomen skeletspieren als aandrijfkern, kan ongeveer 6,5 Newton krimpkracht leveren, met een gemiddelde zwemsnelheid van 0,54 lichaamslengte per seconde en een pieksnelheid van 2 lichaamslengtes per seconde, wat het hoogste relatieve voortbewegingssnelheidrecord voor door skeletspieren aangedreven levensmachines vestigt. Momenteel zijn de belangrijkste beperkingen de levensduur van het biologische weefsel en de afhankelijkheid van externe energie.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Chengdu Institute of Automation, Chinese Academy of Sciences ontwikkelt draadloze lichtgestuurde levensachtige manta-robot aangedreven door kikkerspieren - Aioga AI-nieuws","description":"Het Shenyang Institute of Automation van de Chinese Academie van Wetenschappen heeft een draadloze nabije-infrarood lichtgestuurde levensachtige manta-robot ontwikkeld, gebaseerd o...","url":"https://www.aioga.com/nl/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:22:00.728Z"},"tr":{"title":"Çin Bilimler Akademisi Shenyang Otomasyon Enstitüsü, sığır kurbağası iskelet kasıyla çalışan kablosuz ışık kontrollü yaşam benzeri manta robotu geliştirdi","summary":"Çin Bilimler Akademisi Shenyang Otomasyon Araştırma Enstitüsü, in vitro sığır kurbağası iskelet kası bazlı kablosuz yakın kızılötesi ışık kontrollü yaşam benzeri manta robotu geliştirdi; ilgili sonuçlar \"Advanced Functional Materials\" dergisinde yayınlandı. Robot, doğal in vitro iskelet kasını sürücü çekirdek olarak kullanıyor, yaklaşık 6.5 Newton kasılma kuvveti üretiyor, ortalama yüzme hızı saniyede 0.54 vücut uzunluğu, anlık maksimum hız saniyede 2 vücut uzunluğu ve iskelet kası ile çalışan yaşam makineleri arasında en yüksek göreli ilerleme hızını kaydetti. Şu anda başlıca sınırlama biyolojik doku ömrü ve dış enerji bağımlılığıdır.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Çin Bilimler Akademisi Shenyang Otomasyon Enstitüsü, sığır kurbağası iskelet kasıyla çalışan kablosuz ışık kontrollü yaşam benzeri manta robotu geliştirdi - Aioga AI Haberleri","description":"Çin Bilimler Akademisi Shenyang Otomasyon Araştırma Enstitüsü, in vitro sığır kurbağası iskelet kası bazlı kablosuz yakın kızılötesi ışık kontrollü yaşam benzeri manta robotu geliş...","url":"https://www.aioga.com/tr/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:22:08.683Z"},"vi":{"title":"Viện Tự động hóa Thẩm Dương thuộc Viện Hàn lâm Khoa học Trung Quốc chế tạo robot cá mập quạt kiểu sinh vật sống điều khiển ánh sáng không dây, sử dụng cơ xương ếch bò làm động lực","summary":"Viện Tự động hóa Thẩm Dương, Viện Hàn lâm Khoa học Trung Quốc đã chế tạo một robot cá mập quạt kiểu sinh vật sống điều khiển ánh sáng gần hồng ngoại không dây dựa trên cơ xương tách rời từ ếch bò, kết quả liên quan được công bố trên tạp chí 《Advanced Functional Materials》. Robot này sử dụng cơ xương tách rời tự nhiên làm trung tâm truyền động, có thể tạo ra lực co khoảng 6,5 Newton, tốc độ bơi trung bình 0,54 chiều dài cơ thể mỗi giây, tốc độ đỉnh tức thời đạt 2 chiều dài cơ thể mỗi giây, thiết lập kỷ lục tốc độ di chuyển tương đối cao nhất cho robot loại cơ xương. Hiện hạn chế chủ yếu nằm ở tuổi thọ mô sinh học và phụ thuộc năng lượng bên ngoài.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Viện Tự động hóa Thẩm Dương thuộc Viện Hàn lâm Khoa học Trung Quốc chế tạo robot cá mập quạt kiểu sinh vật sống điều khiển ánh sáng không dây, sử dụng cơ xương ếch bò làm động lực - Tin tức AI Aioga","description":"Viện Tự động hóa Thẩm Dương, Viện Hàn lâm Khoa học Trung Quốc đã chế tạo một robot cá mập quạt kiểu sinh vật sống điều khiển ánh sáng gần hồng ngoại không dây dựa trên cơ xương tác...","url":"https://www.aioga.com/vi/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:22:07.236Z"},"id":{"title":"Institut Otomasi Shenyang, CAS Mengembangkan Robot Manta Ray Mirip Kehidupan yang Dikendalikan Cahaya Nirkabel, Digerakkan oleh Otot Kerangka Katak","summary":"Institut Otomasi Shenyang, Akademi Ilmu Pengetahuan Tiongkok, mengembangkan robot mirip manta ray berbasis otot kerangka katak eks-vivo yang dikendalikan cahaya inframerah dekat nirkabel, hasil terkait dipublikasikan di \"Advanced Functional Materials\". Robot ini menggunakan otot kerangka alami eks-vivo sebagai inti penggerak, dapat menghasilkan kontraksi sekitar 6,5 Newton, kecepatan berenang rata-rata 0,54 panjang tubuh per detik, kecepatan puncak sesaat 2 panjang tubuh per detik, mencatat rekor kecepatan relatif tertinggi untuk robot berbasis otot kerangka. Batasan utama saat ini adalah umur jaringan biologis dan ketergantungan pada sumber energi eksternal.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Institut Otomasi Shenyang, CAS Mengembangkan Robot Manta Ray Mirip Kehidupan yang Dikendalikan Cahaya Nirkabel, Digerakkan oleh Otot Kerangka Katak - Berita AI Aioga","description":"Institut Otomasi Shenyang, Akademi Ilmu Pengetahuan Tiongkok, mengembangkan robot mirip manta ray berbasis otot kerangka katak eks-vivo yang dikendalikan cahaya inframerah dekat ni...","url":"https://www.aioga.com/id/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:22:14.622Z"},"th":{"title":"สถาบันอัตโนมัติเสิ่นหยาง สถาบันวิทยาศาสตร์แห่งจีน ได้พัฒนาหุ่นยนต์ปลากระเบนแมนตาไร้สายควบคุมด้วยแสงที่ดูเหมือนจริง โดยใช้กล้ามเนื้อโครงกระดูกกบวัวกระเบน","summary":"สถาบันอัตโนมัติเสิ่นหยาง สถาบันวิทยาศาสตร์แห่งประเทศจีน ได้พัฒนาหุ่นยนต์ควบคุมด้วยแสงอินฟราเรดใกล้ไร้สายโดยใช้กล้ามเนื้อโครงกระดูกกบวัวกระเบนแยกตัว โดยมีผลการวิจัยที่เกี่ยวข้องตีพิมพ์ในวารสาร Advanced Functional Materials หุ่นยนต์นี้ใช้กล้ามเนื้อโครงกระดูกที่แยกตัวตามธรรมชาติเป็นแกนขับเคลื่อน สามารถสร้างแรงหดตัวประมาณ 6.5 นิวตัน ความเร็วว่ายน้ําเฉลี่ย 0.54 ความยาวตัวต่อวินาที และความเร็วในการว่ายน้ําสูงสุดทันทีที่ 2 ความยาวตัวต่อวินาที ซึ่งเป็นสถิติความเร็วเดินทางสัมพัทธ์สูงสุดสําหรับหุ่นยนต์ชีวิตที่ขับเคลื่อนด้วยกล้ามเนื้อโครงกระดูกปัจจุบันข้อจํากัดหลักอยู่ที่อายุขัยของเนื้อเยื่อชีวภาพและการพึ่งพาพลังงานภายนอก","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"สถาบันอัตโนมัติเสิ่นหยาง สถาบันวิทยาศาสตร์แห่งจีน ได้พัฒนาหุ่นยนต์ปลากระเบนแมนตาไร้สายควบคุมด้วยแสงที่ดูเหมือนจริง โดยใช้กล้ามเนื้อโครงกระดูกกบวัวกระเบน - ข่าว AI Aioga","description":"สถาบันอัตโนมัติเสิ่นหยาง สถาบันวิทยาศาสตร์แห่งประเทศจีน ได้พัฒนาหุ่นยนต์ควบคุมด้วยแสงอินฟราเรดใกล้ไร้สายโดยใช้กล้ามเนื้อโครงกระดูกกบวัวกระเบนแยกตัว โดยมีผลการวิจัยที่เกี่ยวข้องตีพิ...","url":"https://www.aioga.com/th/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:22:17.968Z"},"pl":{"title":"Instytut Automatyzacji w Shenyang, Chińska Akademia Nauk, opracował bezprzewodowego, sterowanego światłem robota manty przypominającego realistycznego robota napędzanego mięśniami szkieletowymi żaby byka","summary":"Instytut Automatyzacji w Shenyang, Chińska Akademia Nauk, opracował bezprzewodowego robota manta manta sterowanego światłem w bliskiej podczerwieni, opartego na izolowanym mięśniu szkieletu żaby byka, a podobne wyniki opublikowano w Advanced Functional Materials. Robot ten wykorzystuje naturalne, izolowane mięśnie szkieletowe jako rdzeń napędowy, może generować około 6,5 niutonów siły skurczowej, średnią prędkość pływania 0,54 długości ciała na sekundę oraz maksymalną natychmiastową prędkość pływania 2 długości ciała na sekundę, ustanawiając najwyższy względny rekord prędkości podróży dla robotów żywych napędzanych mięśniami szkieletowymi. Obecnie główne ograniczenia dotyczą długości życia tkanek biologicznych i zależności od energii zewnętrznej.","category":"行业动态","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Instytut Automatyzacji w Shenyang, Chińska Akademia Nauk, opracował bezprzewodowego, sterowanego światłem robota manty przypominającego realistycznego robota napędzanego mięśniami szkieletowymi żaby byka - Aioga Wiadomości AI","description":"Instytut Automatyzacji w Shenyang, Chińska Akademia Nauk, opracował bezprzewodowego robota manta manta sterowanego światłem w bliskiej podczerwieni, opartego na izolowanym mięśniu...","url":"https://www.aioga.com/pl/news/cmttmpfpk0elirofppoqsjx5t/","contentTranslated":true,"sourceHash":"5733d0e56016d67a","translatedAt":"2026-09-09T05:22:27.424Z"}},"evidenceTier":"verified-news","reviewStatus":"automated-ingest","indexable":true,"editorialCover":""}}