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Smooth Enucleation of Bovine Oocyte by Microrobot with Local Flow Speed Control in Microchannel

机译:微型沟槽用局部流量控制的微型卵细胞光滑牛卵细胞

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In this study, we present a smooth enucleation process on a microfluidic chip. To improve the success rate of enucleation and increasing the potential viability of the enucleated oocyte, a microfluidic system is specially designed. Magnetically driven MicroTool (MMT) control the flow distribution in the microchamber. Designed microchannel with height difference is for the purpose of confining oocyte with its nucleus located in the withdrawal microchannel to achieve the high precision control in cutting volume. By utilizing these aspects, first, oocytes are sequentially loaded to the operation port; MMT constrains the oocyte location and controls the distribution of micro flow simultaneously letting hydraulic force cut off the nucleus from the oocyte. Enucleated oocyte is smooth in shape and incision is neat. With cutting volume control, this system can achieve high-speed enucleation with less cutting volume while removing the nucleus. Since the flow distribution could be managed by MMT significantly, therefore, the new system is proposed here to show advantages by the means of operation speed, cutting precision and great potentiality on continuous cutting process.
机译:在这项研究中,我们在微流体芯片上呈现了光滑的enucleation过程。为了提高enucleation的成功率并增加卵卵细胞的潜在活力,专门设计了微流体系统。磁驱动微池(MMT)控制微芯片中的流量分布。具有高度差异的设计微通道是为了将卵母细胞限制在戒断微通道中的核细胞中,以实现切割体积的高精度控制。通过利用这些方面,首先,卵母细胞顺序地加载到操作端口; MMT约束卵母细胞位置并控制微流量的分布,同时让液压从卵母细胞切断核。 Enucleated卵母细胞的形状平滑,切口整洁。通过切割体积控制,该系统可以在除去核的同时实现具有较少切割体积的高速enucleation。由于流量分布可以通过MMT进行显着管理,因此,在此提出新系统以通过操作速度,切割精度和巨大潜力在连续切割过程中显示出优势。

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