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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Optically Controlled Cell Discrimination and Trapping Using Optoelectronic Tweezers
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Optically Controlled Cell Discrimination and Trapping Using Optoelectronic Tweezers

机译:使用光电镊子进行光控细胞区分和诱捕

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摘要

Optoelectronic tweezers (OET) provide a powerful tool for the manipulation of micro- and nanoparticles. The OET device produces an optically controlled dielectrophoretic force, allowing complex dynamic manipulation patterns using light intensities up to 100 000 times lower than that of optical tweezers. Using OET, we demonstrate the separation of live and dead human B cells, and the separation of HeLa and Jurkat cells. We also present, for the first time, a modified single-sided OET device that promises to facilitate the integration of OET and microfluidics. Unlike standard OET, this single-sided OET device produces electric fields that are oriented parallel to the plane of the device. We demonstrate the manipulation of polystyrene beads using this new single-sided OET device, and discuss its capabilities.
机译:光电镊子(OET)为操纵微米级和纳米级颗粒提供了强大的工具。 OET装置产生光学控制的介电泳力,从而允许使用比光镊子低10万倍的光强度进行复杂的动态操纵模式。使用OET,我们演示了活的和死亡的人类B细胞的分离,以及HeLa和Jurkat细胞的分离。我们还将首次展示一种改进的单面OET设备,该设备有望促进OET和微流体技术的集成。与标准OET不同,此单面OET设备产生的电场平行于设备的平面。我们演示了使用这种新型单面OET设备对聚苯乙烯珠进行的处理,并讨论了其功能。

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