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Control of cardiomyocyte contraction for actuation of bio-syncretic robots

机译:控制用于生物合体机器人的心肌细胞收缩

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Bio-syncretic robots, consisting of living biological materials and traditional electromechanical systems, have attracted lots of attention due to the potentialities of self-sensing, self-actuation and self-repairing with intrinsic safety and high energy conversion efficiency. However, most of current researches focus on the movement of the devices, and have ignored the study on the control of actuation unit “cells”, which is as important as motors for traditional electromechanical robots. In this work, the effects of cell culturing time, seeding concentration and functional drugs (cytochalasin and adrenalin) on contractile frequency and force strength of cardiomyocytes have been studied using scanning ion conductance microscope (SICM) and arrays of micro-pillars made of PDMS. This work will lay the foundation for the further study of quantitatively control of bio-syncretic robots actuated by cardiomyocytes and is also meaningful for the development of cytology, medicine, and clinical science.
机译:由生物材料和传统机电系统组成的生物综合杂志,由于自我传感,自动驱动和自我修复,具有内在安全性和高能量转换效率,引起了很多关注。然而,目前的大多数研究都侧重于设备的移动,并且忽略了对致动单元“电池”控制的研究,这与传统机电机器人的电动机一样重要。在这项工作中,使用扫描离子电导显微镜(SICM)和由PDMS制成的微柱阵列研究了细胞培养时间,播种浓度和功能药物(细胞蛋白酶和肾上腺素)对心肌细胞的收缩频率和力强度的影响。这项工作将奠定基础,进一步研究由心肌细胞致动的生物综合机器人的量化控制,并且对细胞学,医学和临床科学的发展也有意义。

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