DIELECTROPHORESIS BASED MICRO FLOW CYTOMETRY.

Jody Vykoukal, Jon A Schwartz, Peter R C Gascoyne, Choongho Yu, Li Shi
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Abstract

We report a simplified flow cytometer design that makes use of negative dielectrophoresis (DEP) for particle focusing and integrated optical and AC impedance detectors to enable an inexpensive, compact and robust system for cell and particle characterization. This straightforward, modular design could be applied as a standalone instrument or as a particle detector in an integrated micro total analysis system.

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基于介电泳的微流式细胞仪。
我们报告了一种简化的流式细胞仪设计,它利用负电介电泳(DEP)进行粒子聚焦,并集成了光学和交流阻抗检测器,从而实现了一种用于细胞和粒子表征的廉价、紧凑和稳健的系统。这种简单明了的模块化设计既可作为独立仪器使用,也可作为微粒检测器集成到微量总体分析系统中。
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MACHINE LEARNING ENABLES QUANTIFYING CELL-JANUS PARTICLE CONJUGATES THROUGH MICROFLOWING IMPEDANCE SIGNALS. CONCENTRATION GRADIENTS INSIDE MICRODROPLETS. APPLICATION OF DNA-DIRECTED PATTERNING TO FABRICATE AN IN VITRO BONE MARROW MICROENVIRONMENT FOR THE HIGH-THROUGHPUT STUDY OF PROSTATE CANCER DORMANCY. High-Throughput Microfluidic Device for Circulating Tumor Cell Isolation from Whole Blood. SIZE BASED NANOPARTICLE SEPARATION USING DIELECTROPHORETIC FOCUSING FOR FEMTOSECOND NANOCRYSTALLOGRAPHY OF MEMBRANE PROTEINS.
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