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Continuous enucleation of bovine oocyte by microrobot with local flow distribution control

机译:微型机器人在局部流量分布控制下连续摘除牛卵母细胞

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We present a continuous enucleation process of bovine oocytes on a microfluidic chip to achieve the continuous cutting of the oocytes and increasing the potential viability of the enucleated oocyte. By combining microfluidic chip and micororobotics, the flow in a channel can be actively controlled and we achieved successive operations of 1) loading oocyte, 2) control cutting volume and 3) removing nucleus. The magnetically actuated microrobot can control local fluid flow by changing its position like gate valve and control fluid force distributions in a microchip which govern oocyte movement in a chip. The optimally designed microchannel for enucleation enables continuous operation and cutting bovine oocyte with smooth manner by hydrodynamic force. The new system is propose here to show advantages by the means of the continuous operation on oocytes in a short term, cutting precision and great potentiality on continuous enucleation process for clone technology.
机译:我们目前在微流控芯片上的牛卵母细胞的连续摘除过程,以实现卵母细胞的连续切割并增加去核的卵母细胞的潜在生存力。通过结合微流控芯片和微绒毛膜,可以主动控制通道中的流量,并实现了以下操作:1)加载卵母细胞,2)控制切割体积和3)去除核。磁驱动微型机器人可以通过改变其位置(如闸阀)来控制局部流体流动,并控制微芯片中的流体力分布,从而控制芯片中的卵母细胞运动。经过优化设计的去核微通道可以连续操作并通过流体动力以平滑的方式切割牛卵母细胞。本文提出的新系统通过在短期内对卵母细胞进行连续操作,降低切割精度以及在克隆技术的连续去核过程中具有巨大潜力而​​显示出优点。

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