文献详情
On-chip microfluid induced by oscillation of microrobot for noncontact cell transportation
文献类型期刊
作者Feng, Lin[1];Liang, Shuzhang[2];Zhou, Xiangcong[3];Yang, Jianlei[4];Jiang, Yonggang[5];Zhang, Deyuan[6];Arai, Fumihito[7]
机构
2017
通讯作者Jiang, YG (reprint author), Beihang Univ, Sch Mech Engn & Automat, Beijing 100191, Peoples R China.
期刊名称APPLIED PHYSICS LETTERS影响因子和分区
来源信息年:2017  卷:111  期:20  
111
期刊信息APPLIED PHYSICS LETTERS影响因子和分区  ISSN:0003-6951
20
增刊正刊
摘要The importance of cell manipulation and cultivation is increasing rapidly in various fields, such as drug discovery, regenerative medicine, and investigation of new energy sources. This paper presents a method to transport cells in a microfluidic chip without contact. A local vortex was generated when high-frequency oscillation of a microtool was induced in a microfluidic chip. The vortex was controlled by tuning the tool's oscillation parameters, such as the oscillation amplitude and frequency. The cells were then transported in the chip based on the direction of the tool's movement, and their position, posture, and trajectories were controlled. Bovine oocyte manipulations, that is, transportation and rotation, were conducted to demonstrate the capability of the proposed method, without any contact by the microrobot with high-frequency oscillation. (C) 2017 Author(s).
收录情况SCIE(WOS:000415648000052)  EI(20174704437923)  
所属部门计算机学院;机械工程及自动化学院
DOI10.1063/1.5009545
百度学术On-chip microfluid induced by oscillation of microrobot for noncontact cell transportation
语言外文
ISSN0003-6951
被引频次55
人气指数225
浏览次数225
基金National Natural Science Foundation of China [61602022]; [ZG216S1751]; [ZG216S1745]
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