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Real-Time Single Cell Monitoring: Measurement and Counting of Motile Sperm Using LCR Impedance-Integrated Microfluidic Device

机译:实时单细胞监测:使用LCR阻抗集成微流控设备对运动精子进行测量和计数

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In this research, we aimed to count the ratio of the number of motile to immotile sperm for patients with infertility problems based on a low-sperm-concentration examination. The microfluidic system consists of two series of applications: The conventional separation of motile sperm and the proposed inductance (L), capacitance (C), and resistance (R) or LCR impedance sperm counter. In the experiment, 96% of motile sperm were isolated from nonmotile sperm in the first part and transported to the second part to count and calculate real-time sperm concentration. A pair of microelectrodes composed of thin metal film were integrated between microchannels, resulting in a peak signal for LCR single-cell detection, as well as the estimated total sperm concentration. A minimum of 10 μL of the sperm sample was completely analyzed with an accuracy of 94.8% compared with the standard computer-assisted semen analysis (CASA) method. This method could be applied for low-cost sperm separation and counting in the future.
机译:在这项研究中,我们旨在基于低精子浓度检查来计算患有不育症患者的活动精子与不活动精子数之比。微流体系统由两个系列的应用程序组成:运动精子的常规分离和拟议的电感(L),电容(C)和电阻(R)或LCR阻抗精子计数器。在实验中,第一部分是从非运动型精子中分离出96%的运动型精子,然后运到第二部分进行计数和计算实时精子浓度。在微通道之间整合了一对由金属薄膜组成的微电极,产生了用于LCR单细胞检测的峰值信号以及估计的总精子浓度。与标准的计算机辅助精液分析(CASA)方法相比,可以对至少10μL的精子样品进行完全分析,准确度为94.8%。该方法将来可用于低成本的精子分离和计数。

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