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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >3D numerical simulation of a Coulter counter array with analysis of electrokinetic forces
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3D numerical simulation of a Coulter counter array with analysis of electrokinetic forces

机译:具有电动势分析的库尔特计数器阵列的3D数值模拟

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Coulter counters have played an important role in biological cell assays since their introduction decades ago. Several types of high throughput micro-Coulter counters based on lab-on-chip devices have been commercialized recently. In this paper, we propose a highly integrated micro-Coulter counter array working under low DC voltage. The real-time electrical current change, including the pulse amplitude and width, of the micro-Coulter counter with novel structure is systematically investigated numerically. The major types of forces exerted on the particle in the micro-Coulter counter, including hydrodynamic force and electrokinetic force are quantitatively analyzed. The simulation in this study shows the pulse profile, such as width and amplitude, is affected by both particle size and the flow condition. The special cases of multiple particle aggregation and cross-talk between neighboring channels are also considered for their effects on the electric current pulses. This simulation provides critical insight and guidance for developing next new generations of micro-Coulter counter.
机译:自几十年前问世以来,Coulter计数器就在生物细胞测定中发挥了重要作用。最近,基于片上实验室设备的几种类型的高通量微库尔特计数器已经商品化。在本文中,我们提出了一种在低直流电压下工作的高度集成的微库尔特计数器阵列。系统地研究了新型结构微库尔特计数器的实时电流变化,包括脉冲幅度和宽度。定量分析了微库尔特计数器中作用在颗粒上的主要作用力,包括流体动力和电动势。本研究中的仿真显示,脉冲轮廓(例如宽度和幅度)受粒径和流动条件的影响。还考虑了多个粒子聚集和相邻通道之间串扰的特殊情况,因为它们对电流脉冲有影响。该仿真为开发下一代微型库尔特计数器提供了关键的见识和指导。

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