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Estimating the Volume of Unknown Inclusions in an Electrically Conducting Body with Voltage Measurements

机译:通过电压测量估算导电体中未知夹杂物的量

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摘要

We propose a novel technique to estimate the total volume of unknown insulating inclusions in an electrically conducting body from voltage measurements. Unlike conventional Electrical Impedance Tomography (EIT) systems that usually exhibit low spatial resolution and accuracy, the proposed device is composed of a pair of driving electrodes which, supplied with a known sinusoidal voltage, create a current density field inside a region of interest. The electrodes are designed to generate a current density field in the region of interest that is uniform, to a good approximation, when the inclusions are not present. A set of electrodes with a polygonal geometry is used for four-wires resistance measurements. The proposed technique has been tested designing a low cost prototype, where all electrodes are on the bottom of the conducting body, showing good performances. Such a device may be used to monitor the volume of biological cells inside cell culture dishes or the volume of blood clots in micro-channels in lab-on-a-chip biosensors.
机译:我们提出了一种新颖的技术,可以通过电压测量来估算导电体中未知绝缘夹杂物的总量。与通常表现出较低的空间分辨率和准确性的常规电阻抗层析成像(EIT)系统不同,所提出的设备由一对驱动电极组成,这些驱动电极被提供已知的正弦电压,从而在感兴趣区域内产生电流密度场。当不存在夹杂物时,将电极设计为在感兴趣的区域中产生均匀,良好近似的电流密度场。一组具有多边形几何形状的电极用于四线电阻测量。该提议的技术已经过测试,设计了一个低成本的原型,其中所有电极都位于导电体的底部,显示出良好的性能。这样的设备可以用于监测芯片实验室生物传感器中的细胞培养皿内的生物细胞的体积或微通道中的血块的体积。

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