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基于介电电泳的多粒子噪声辅助并行微操纵的反馈控制

Feedback control for noise-aided parallel micromanipulation of several particles using dielectrophoresis.

作者信息

Zemánek Jiří, Michálek Tomáš, Hurák Zdeněk

机构信息

Faculty of Electrical Engineering, Czech Technical University, Prague, Czech Republic.

出版信息

Electrophoresis. 2015 Jul;36(13):1451-8. doi: 10.1002/elps.201400521. Epub 2015 Jun 11.

Abstract

The paper describes a novel control strategy for simultaneous manipulation of several microscale particles over a planar microelectrode array using dielectrophoresis. The approach is based on a combination of numerical nonlinear optimization, which gives a systematic computational procedure for finding the voltages applied to the individual electrodes, and exploitation of the intrinsic noise, which compensates for the loss of controllability when two identical particles are exposed to identical forces. Although interesting on its own, the proposed functionality can also be seen as a preliminary achievement in a quest for a technique for separation of two particles. The approach is tested experimentally with polystyrene beads (50 microns in diameter) immersed in deionized water on a flat microelectrode array with parallel electrodes. A digital camera and computer vision algorithm are used to measure the positions. Two distinguishing features of the proposed control strategy are that the range of motion is not limited to interelectrode gaps and that independent manipulation of several particles simultaneously is feasible even on a simple microelectrode array.

摘要

本文描述了一种新颖的控制策略,用于通过介电泳在平面微电极阵列上同时操纵多个微尺度粒子。该方法基于数值非线性优化与固有噪声利用的结合,数值非线性优化给出了用于确定施加到各个电极上电压的系统计算程序,固有噪声则补偿了两个相同粒子受到相同力时可控性的损失。尽管该功能本身很有趣,但也可被视为在寻求一种分离两个粒子的技术方面的初步成果。该方法在一个带有平行电极的平面微电极阵列上,对浸入去离子水中的聚苯乙烯珠(直径50微米)进行了实验测试。使用数码相机和计算机视觉算法来测量位置。所提出的控制策略的两个显著特点是,运动范围不限于电极间隙,并且即使在简单的微电极阵列上也能够同时独立操纵多个粒子。

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