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首页> 外文期刊>The International journal of robotics research >Indirect pushing based automated micromanipulation of biological cells using optical tweezers
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Indirect pushing based automated micromanipulation of biological cells using optical tweezers

机译:使用光镊,基于间接推动的生物细胞自动显微操作

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In this paper, we introduce an indirect pushing based technique for automated micromanipulation of biological cells. In indirect pushing, an optically trapped glass bead pushes a freely diffusing intermediate bead that in turn pushes a freely diffusing target cell towards a desired goal. Some cells can undergo significant changes in their behaviors as a result of direct exposure to a laser beam. Indirect pushing eliminates this problem by minimizing the exposure of the cell to the laser beam. We report an automated feedback planning algorithm that combines three motion maneuvers, namely, push, align, and backup for micromanipulation of cells. We have developed a dynamics based simulation model of indirect pushing dynamics and also identified parameters of measurement noise using physical experiments. We present an optimization-based approach for automated tuning of planner parameters to enhance its robustness. Finally, we have tested the developed planner using our optical tweezers physical setup and carried out a detailed analysis of the experimental results. The developed approach can be utilized in biological experiments for studying collective cell migration by accurately arranging the cells in arrays without exposing them to a laser beam.
机译:在本文中,我们介绍了一种基于间接推动的技术,用于生物细胞的自动显微操作。在间接推动中,光学捕获的玻璃珠会推动自由扩散的中间珠,而中间珠又会将自由扩散的目标细胞推向所需的目标。由于直接暴露于激光束中,某些细胞的行为可能发生重大变化。间接推动通过最小化细胞对激光束的照射来消除此问题。我们报告了一种自动化的反馈计划算法,该算法结合了三个运动操作,即对细胞进行微操作的推,对齐和备份。我们开发了基于动力学的间接推动动力学仿真模型,并使用物理实验确定了测量噪声的参数。我们提出了一种基于优化的方法来自动调整计划程序参数,以增强其鲁棒性。最后,我们使用光镊物理设置测试了开发的计划器,并对实验结果进行了详细分析。通过将细胞准确地排列成阵列而不将其暴露于激光束中,可以将这种开发的方法用于生物学实验中以研究集体细胞迁移。

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