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基于工程化心脏组织构建的远程控制可变形软体机器人

A Remotely Controlled Transformable Soft Robot Based on Engineered Cardiac Tissue Construct.

机构信息

Department of Mechanical and Biomedical Engineering, City University of Hong Kong, Kowloon, Hong Kong SAR, China.

Thayer School of Engineering, Dartmouth College, Hanover, NH, 03755, USA.

出版信息

Small. 2019 May;15(18):e1900006. doi: 10.1002/smll.201900006. Epub 2019 Mar 25.

Abstract

Many living organisms undergo conspicuous or abrupt changes in body structure, which is often accompanied by a behavioral change. Inspired by the natural metamorphosis, robotic systems can be designed as reconfigurable to be multifunctional. Here, a tissue-engineered transformable robot is developed, which can be remotely controlled to assume different mechanical structures for switching locomotive function. The soft robot is actuated by a muscular tail fin that emulates the swimming of whales and works as a cellular engine powered by the synchronized contraction of striated cardiac microtissue constructs. For a transition of locomotive behavior, the robot can be optically triggered to transform from a spread to a retracted form, which effectively changes the bending stiffness of the tail fins, thus minimizing the propulsion output from the "tail fin" and effectively switching off the engine. With the unprecedented controllability and responsiveness, the transformable robot is implemented to work as a cargo carrier for programmed delivery of chemotherapeutic agents to selectively eradicate cancer cells. It is believed that the realization of the transformable concept paves a pathway for potential development of intelligent biohybrid robotic systems.

摘要

许多生物体会经历身体结构的显著或突然变化,这通常伴随着行为的改变。受自然变态的启发,机器人系统可以被设计成可重构的,以实现多功能性。在这里,开发了一种组织工程可变形机器人,它可以远程控制,以承担不同的机械结构,从而切换运动功能。这个软体机器人由一个模仿鲸鱼游泳的肌肉尾鳍驱动,作为一个细胞引擎,由横纹心肌微组织构建物的同步收缩提供动力。为了改变运动行为,机器人可以通过光触发来从展开状态转变为收缩状态,这有效地改变了尾鳍的弯曲刚度,从而最小化了“尾鳍”的推进输出,并有效地关闭了引擎。通过前所未有的可控性和响应性,可变形机器人被用作化学治疗剂的编程输送的载运工具,以选择性地消灭癌细胞。相信这种可变形概念的实现为智能生物混合机器人系统的潜在发展铺平了道路。

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