介电泳
微流控
镊子
旋转(数学)
制作
电极
炸薯条
平面的
电场
材料科学
实验室晶片
光电子学
纳米技术
计算机科学
物理
电气工程
光学
工程类
人工智能
计算机图形学(图像)
病理
量子力学
替代医学
医学
作者
Chunyuan Gan,Jiaying Zhang,Jiawei Zhao,Ao Wang,Hongyi Xiong,Shuzhang Liang,Yiming Ji,Lin Feng
标识
DOI:10.21203/rs.3.rs-2221854/v1
摘要
Abstract Optoelectronic tweezers (OETs) based on dielectrophoresis (DEP) force is a valuable tool for the manipulation of particles and cells. However, DEP-based methods that can measure the electrical parameters are always preformed on static metal electrode DEP systems. Here, we present a partitioned single-sided OET chip that combines an OET system and microfluidic channel. Unlike classical sandwich-structure OET chip, the single-sided chip is close to the metal electrode DEP system but can switch functions easily. Numerical simulations are studied to analyze the electric field on a microfluidic chip and pro-vide data for characterizing cell electric properties. The focusing and electro-rotation are successfully realized by partitioned multi-signal OET system. By analyzing the rotation speed, some specific electric param-eters of Raw cells are characterized. The work has laid a foundation for OET-based single-sided chip fabrication and experiment validation.
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