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3D组织培养的双极电阻率剖面分析

Bipolar resistivity profiling of 3D tissue culture.

作者信息

Linderholm Pontus, Vannod Jeanne, Barrandon Yann, Renaud Philippe

机构信息

Microsystems Laboratory, Swiss Federal Institute of Technology, 1015 Lausanne, Switzerland.

出版信息

Biosens Bioelectron. 2007 Jan 15;22(6):789-96. doi: 10.1016/j.bios.2006.02.016. Epub 2006 Apr 4.

Abstract

We describe a new low-cost technique for continuous monitoring of the thickness of biofilms and tissue cultures, and we demonstrate the advantage of using electrodes of different dimensions to probe different depths of a sample. We have used electric impedance spectroscopy to monitor keratinocyte stem cells (YF29) growing on an array of Ti/Pt coplanar microelectrodes. The thickness of the sample was reconstructed by fitting the measurements to theoretical curves. We have developed an algorithm for the rapid calculation of the resistance through a multilayered sample. This algorithm is based on conformal mapping and the serial partial capacitance technique. The validity of the technique was tested by measuring the sedimentation rate of an alumina powder. Sample thicknesses between 10 and 80 microm could be measured with a resolution of a few microns using the device.

摘要

我们描述了一种用于连续监测生物膜和组织培养物厚度的新型低成本技术,并展示了使用不同尺寸电极探测样品不同深度的优势。我们利用电阻抗光谱法监测在钛/铂共面微电极阵列上生长的角质形成干细胞(YF29)。通过将测量值与理论曲线拟合来重建样品的厚度。我们开发了一种用于快速计算通过多层样品电阻的算法。该算法基于保角映射和串联部分电容技术。通过测量氧化铝粉末的沉降速率对该技术的有效性进行了测试。使用该设备可以测量10至80微米之间的样品厚度,分辨率可达几微米。

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