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由氮化镓微像素发光二极管阵列控制的小型化光电镊子。

Miniaturized optoelectronic tweezers controlled by GaN micro-pixel light emitting diode arrays.

作者信息

Zarowna-Dabrowska Alicja, Neale Steven L, Massoubre David, McKendry Jonathan, Rae Bruce R, Henderson Robert K, Rose Mervyn J, Yin Huabing, Cooper Jonathan M, Gu Erdan, Dawson Martin D

机构信息

Institute of Photonics, University of Strathclyde, Glasgow, UK.

出版信息

Opt Express. 2011 Jan 31;19(3):2720-8. doi: 10.1364/OE.19.002720.

Abstract

A novel, miniaturized optoelectronic tweezers (OET) system has been developed using a CMOS-controlled GaN micro-pixelated light emitting diode (LED) array as an integrated micro-light source. The micro-LED array offers spatio-temporal and intensity control of the emission pattern, enabling the creation of reconfigurable virtual electrodes to achieve OET. In order to analyse the mechanism responsible for particle manipulation in this OET system, the average particle velocity, electrical field and forces applied to the particles were characterized and simulated. The capability of this miniaturized OET system for manipulating and trapping multiple particles including polystyrene beads and live cells has been successfully demonstrated.

摘要

一种新型的小型化光电镊子(OET)系统已被开发出来,该系统使用CMOS控制的氮化镓微像素发光二极管(LED)阵列作为集成微光源。微LED阵列提供了发射图案的时空和强度控制,能够创建可重构的虚拟电极以实现光电镊子。为了分析该光电镊子系统中粒子操纵的机制,对平均粒子速度、电场以及施加在粒子上的力进行了表征和模拟。这种小型化光电镊子系统操纵和捕获包括聚苯乙烯珠子和活细胞在内的多个粒子的能力已得到成功证明。

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