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Centrifugal and Electric Field Forces Dual-Pumping CD-Like Microfluidic Platform for Biomedical Separation

机译:离心力和电场迫使双泵CD样微流控平台用于生物医学分离

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摘要

In this article, we propose a versatile CD-like multichannel electrophoresis-based biomedical separation system that is driven by the interactive forces between the centrifugal force and the electric field force. The centrifugal force control of this system is realized through the velocity control of a DC servo motor, while the electric field is governed through the concentric conducting circuits, which are suitably designed and fabricated by sputtering on metal mask method, and can be adjusted to provide multi-stage voltages. Experimental results demonstrate that the electro-osmotic flow (EOF) effect can be effectively reduced when the electric field force and centrifugal force are in the opposite direction. Benefits from this are that the electrophoresis separation time can be prolonged and the length of the microfluidic channels can be shortened; therefore, more effective separation efficiency can be obtained. Moreover, other advantages, such as lower joule-heat generation, low-chemistry reaction, and no variation on the ion concentration during processes, make this biomedical separation system more useful.
机译:在本文中,我们提出了一种通用的类似CD的基于多通道电泳的生物医学分离系统,该系统由离心力和电场力之间的相互作用力驱动。该系统的离心力控制是通过DC伺服电机的速度控制来实现的,而电场是通过同心导电电路控制的,这些同心导电电路是通过在金属掩模方法上进行溅射而适当设计和制造的,并且可以进行调整以提供多级电压。实验结果表明,当电场力和离心力方向相反时,可以有效降低电渗流(EOF)效应。这样做的好处是可以延长电泳分离时间,并可以缩短微流体通道的长度。因此,可以获得更有效的分离效率。此外,其他优点(例如较低的焦耳热产生,低化学反应以及过程中离子浓度没有变化)使这种生物医学分离系统更加有用。

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