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精子驱动的微型机器人——生物启发式机器人设计面临的新机遇与挑战

Sperm Cell Driven Microrobots-Emerging Opportunities and Challenges for Biologically Inspired Robotic Design.

作者信息

Singh Ajay Vikram, Ansari Mohammad Hasan Dad, Mahajan Mihir, Srivastava Shubhangi, Kashyap Shubham, Dwivedi Prajjwal, Pandit Vaibhav, Katha Uma

机构信息

Physical Intelligence Department, Max Planck Institute for Intelligent Systems, 70569 Stuttgart, Germany.

Department of Chemical and Product Safety, German Federal Institute for Risk Assessment (BfR), Max-Dohrn-Strasse 8-10, 10589 Berlin, Germany.

出版信息

Micromachines (Basel). 2020 Apr 23;11(4):448. doi: 10.3390/mi11040448.

Abstract

With the advent of small-scale robotics, several exciting new applications like Targeted Drug Delivery, single cell manipulation and so forth, are being discussed. However, some challenges remain to be overcome before any such technology becomes medically usable; among which propulsion and biocompatibility are the main challenges. Propulsion at micro-scale where the Reynolds number is very low is difficult. To overcome this, nature has developed flagella which have evolved over millions of years to work as a micromotor. Among the microscopic cells that exhibit this mode of propulsion, sperm cells are considered to be fast paced. Here, we give a brief review of the state-of-the-art of Spermbots - a new class of microrobots created by coupling sperm cells to mechanical loads. Spermbots utilize the flagellar movement of the sperm cells for propulsion and as such do not require any toxic fuel in their environment. They are also naturally biocompatible and show considerable speed of motion thereby giving us an option to overcome the two challenges of propulsion and biocompatibility. The coupling mechanisms of physical load to the sperm cells are discussed along with the advantages and challenges associated with the spermbot. A few most promising applications of spermbots are also discussed in detail. A brief discussion of the future outlook of this extremely promising category of microrobots is given at the end.

摘要

随着小型机器人技术的出现,一些令人兴奋的新应用,如靶向药物递送、单细胞操作等,正在被讨论。然而,在任何此类技术能够用于医疗之前,仍有一些挑战有待克服;其中推进和生物相容性是主要挑战。在雷诺数非常低的微尺度下进行推进是困难的。为了克服这一问题,自然界进化出了鞭毛,经过数百万年的进化,鞭毛可作为微型马达工作。在表现出这种推进方式的微观细胞中,精子细胞被认为是快速运动的。在此,我们简要回顾一下精子机器人的最新技术——这是一类通过将精子细胞与机械负载耦合而创造的新型微型机器人。精子机器人利用精子细胞的鞭毛运动进行推进,因此在其环境中不需要任何有毒燃料。它们还具有天然的生物相容性,并显示出相当快的运动速度,从而为我们提供了一种克服推进和生物相容性这两个挑战的选择。本文讨论了物理负载与精子细胞的耦合机制以及与精子机器人相关的优点和挑战。还详细讨论了精子机器人的一些最有前景的应用。最后对这类极具前景的微型机器人的未来展望进行了简要讨论。

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