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首页> 外文期刊>Advanced Robotics: The International Journal of the Robotics Society of Japan >Precise Control of Magnetically Driven Microtools for Enucleation of Oocytes in a Microfluidic Chip
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Precise Control of Magnetically Driven Microtools for Enucleation of Oocytes in a Microfluidic Chip

机译:精确控制微驱动芯片中卵母细胞去核的磁驱动微型工具

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摘要

This paper presents two innovative driving methodologies using a magnetically driven microtool (MMT) for precise cell manipulations and automation systems. First, magnetic analysis has been conducted to show the current MMT problem and proved that static friction makes MMT control difficult. New driving methodologies that reduce the friction on the MMT effectively are introduced, and supported by finite element analysis and experimental results. The positioning accuracy improves 3-10 times and the response speeds become 10 times faster against the driving linear stage than in the conventional drive method. Stage feedback control by PI with a disturbance observer has been also investigated in order to obtain precise positioning accuracy and this was successfully improved by 16 times as compared to the conventional drive. Using this methodology, the enucleation of oocytes is demonstrated to show the effectiveness of the method. The required force to cut a swine oocyte is also estimated by the simplified model to prove that the MMT has sufficient force. Two MMT blades made of nickel were set on the microfluidic chip with a new drive methodology and successfully achieved the enucleation process with high throughput.
机译:本文介绍了两种创新的驱动方法,这些方法使用电磁驱动的微型工具(MMT)进行精确的细胞操作和自动化系统。首先,已经进行了磁分析以显示当前的MMT问题,并证明了静摩擦使MMT控制变得困难。引入了有效减少MMT摩擦的新驱动方法,并得到了有限元分析和实验结果的支持。与传统的驱动方法相比,对驱动线性平台的定位精度提高了3-10倍,响应速度提高了10倍。为了获得精确的定位精度,还对带有扰动观测器的PI的级反馈控制进行了研究,与传统驱动器相比,它成功地提高了16倍。使用这种方法,卵母细胞摘除被证明可以显示该方法的有效性。简化模型还估算了切割猪卵母细胞所需的力,以证明MMT具有足够的力。使用一种新的驱动方法,将两个镍制MMT刀片设置在微流体芯片上,并成功实现了高通量的去核过程。

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