生物医学应用的细菌自主智能微型机器人。

Haotian Chen, Yingze Li, Zhenguang Li, Yuantai Sun, Weicheng Gu, Chang Chen, Yu Cheng
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引用次数: 0

摘要

微/纳米机器人越来越多地被用作生物医学领域的新的诊断和治疗平台,使远程导航到难以到达的组织和执行各种医疗程序成为可能。尽管生物医学微纳米机器人的发展取得了重大进展,但如何实现从感知、记忆、精确轨迹规划到反馈的闭环控制,以执行生物医学任务仍然是一个挑战。具有自我推进和自主智能特性的细菌非常适合被设计成微型机器人,以实现生物医学应用的闭环控制。凭借合成生物学,细菌微型机器人拥有一个扩展的遗传工具箱,允许它们加载输入传感器来响应或记忆外部信号。为了在复杂的生理环境中实现精确控制,细菌微型机器人的开发需要与相应的控制系统设计相匹配。本文就细菌微型机器人的传感和控制机制作一综述。重点介绍了细菌微型机器人在生物医学领域的工程和应用。展望了用于精准医疗的细菌自主智能微型机器人的未来发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bacterial Autonomous Intelligent Microrobots for Biomedical Applications.

Micro/nanorobots are being increasingly utilized as new diagnostic and therapeutic platforms in the biomedical field, enabling remote navigation to hard-to-reach tissues and the execution of various medical procedures. Although significant progress has been made in the development of biomedical micro/nanorobots, how to achieve closed-loop control of them from sensing, memory, and precise trajectory planning to feedback to carry out biomedical tasks remains a challenge. Bacteria with self-propulsion and autonomous intelligence properties are well suited to be engineered as microrobots to achieve closed-loop control for biomedical applications. By virtue of synthetic biology, bacterial microrobots possess an expanded genetic toolbox, allowing them to load input sensors to respond or remember external signals. To achieve accurate control in the complex physiological environment, the development of bacterial microrobots should be matched with the corresponding control system design. In this review, a detailed summary of the sensing and control mechanisms of bacterial microrobots is presented. The engineering and applications of bacterial microrobots in the biomedical field are highlighted. Their future directions of bacterial autonomous intelligent microrobots for precision medicine are forecasted.

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