Micro Robotic Manipulation System for the Force Stimulation of Muscle Fiber-like Cell Structure

2021 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION (ICRA 2021)(2021)

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摘要
Many previous works have facilitated muscle cell (C2C12) alignment to form fiber-like cell structures. However, there still remains a challenge how to induce C2C12 myoblasts in the cell structures to differentiate into matured myocytes to form a functional muscle tissue, while external mechanical stimulation has been proved to have good effects on proliferation and differentiation of myoblasts. In this paper, we proposed a vision-based micro robotic manipulation system to achieve automatic mechanical stimulation for one single muscle fiber-like cell structures (MFCS). A tube, which is attached to a three degree-of-freedom (DOF) manipulator, and a probe are employed to apply the uniaxial mechanical stimulation to train the MFCS. To measure the force applied on MFCS, a vision-based measuring and correction method is utilized, which decrease the error by 74%. Moreover, based on the viscoelastic property of the MFCS, a feedback control algorithm has been applied to compensate for the force loss to realize the force stimulation. And the final value of force remains 699 +/- 1 mu N after 110s experiment.
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关键词
force stimulation,muscle cell alignment,functional muscle tissue,external mechanical stimulation,vision-based microrobotic manipulation system,automatic mechanical stimulation,uniaxial mechanical stimulation,single muscle fiber-like cell structures,C2C12 myoblasts,myoblasts proliferation,myoblasts differentiation,MFCS,degree-of-freedom manipulator,DOF manipulator,viscoelastic property,feedback control
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