文化大學機構典藏 CCUR:Item 987654321/26659
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    jsp.display-item.identifier=請使用永久網址來引用或連結此文件: https://irlib.pccu.edu.tw/handle/987654321/26659


    题名: Adjustable trapping position for single cells using voltage phase-controlled method
    作者: Wang, CC (Wang, Chun-Chih)
    Lan, KC (Lan, Kung-Chieh)
    Chen, MK (Chen, Ming-Kun)
    Wang, MH (Wang, Min-Haw)
    Jang, LS (Jang, Ling-Sheng)
    贡献者: Dept Elect Engn
    关键词: Cell manipulation
    Cell impedance measurement
    Voltage phase-controlled method (VPC)
    Dielectrophoresis (DEP)
    Adjustable trapping position
    日期: 2013-11-15
    上传时间: 2014-02-21 14:57:50 (UTC+8)
    摘要: We present an advanced technique improving upon the micron-sized particle trap integrated in biochip systems using a planar structure to generate an adjustable trapping position by utilizing voltage phase-controlled (VPC) method and negative dielectrophoresis (nDEP) theory in high conductivity physiological media. The designed planar and split structure is composed of independent components of measuring and trapping micro-electrodes. Through different voltage configurations on the device, the trapped position of single particles/cells was selected and adjusted in vertical and horizontal directions. The numerical simulations verify our theoretical predictions of the effects at the various voltages. It shows that the trapped position can be adjusted in the vertical (0 to 26 pm) and horizontal (0 to 74 mu m) directions. In experiments, the single particles/cells is captured, measured, and then released, with the same process being repeated twice to demonstrate the precision of the positioning. The measurement results determined that particles at various heights result in different magnitude values, while the impedance error is less than 5% for the proposed electrode layout. Finally, the experiments are performed to verify that a particle/cell can be precisely trapped on the selected site in both the vertical and horizontal directions. (C) 2013 Elsevier B.V. All rights reserved.
    關聯: BIOSENSORS & BIOELECTRONICS Volume: 49 Pages: 297-304
    显示于类别:[Department of Electrical Engineering ] journal articles

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