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Using control microfluidic system to enhance the sperm motility sorting efficiency

机译:使用控制微流控系统提高精子活力分选效率

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A microfluidic device was designed with two parallel laminar-stream-based surface-modified microchannels to separate motile sperm. This modified sperm sorter provided a new selection that had advances in resolving traditional sorting problems. Microscopic examination showed that sperms with different motility and the results of fluorescence images indicated that the laminar streams are the same as the CFDRC simulation result which revealed distribution of flow field. For the purpose of confirming the real sorting situation, the proportions of living and dead sperm after sorting were readily identified and quantified through use of flow cytometric analysis. Moreover, we present a control microfluidic system to change the flow rate. The controlmicrofluidic system is consists of syringe pump and connective tube module. Decreasing the velocity of flow field provide more opportunities of sorting sperm. The result showed that the sperm collected via our device have higher activity on average. As a result, we can enhance the sorting efficiency in the quality and quantity of sperm. With this approach, the characteristics of laminar flow and a control microfluidic system were utilized to demonstrate the microfluidic system with high efficiency for sperm motility sorting.
机译:设计了一种微流体装置,具有两个平行的基于层流的表面修饰微通道,以分离运动精子。这种改良的精子分选机提供了一个新的选择,可以解决传统的分选问题。显微镜检查显示,具有不同运动性的精子和荧光图像的结果表明,层流与CFDRC模拟结果相同,揭示了流场的分布。为了确认真实的分选情况,通过流式细胞仪分析可以很容易地确定和定量分选后活和死精子的比例。此外,我们提出了一种控制微流体系统来改变流速。控制微流体系统由注射泵和连接管模块组成。降低流场速度可提供更多的精子分选机会。结果表明,通过我们的设备收集的精子平均具有更高的活性。结果,我们可以提高精子质量和数量的分选效率。通过这种方法,利用层流的特征和控制微流体系统来证明高效的微流体系统用于精子运动性分选。

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