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通过测量小鼠组织中的阻抗来设计和实现生物电阻抗光谱设备。

Designing and implementing bioimpedance spectroscopy device by measuring impedance in a mouse tissue.

作者信息

Dastjerdi Houman Mirzaalian, Soltanzadeh Ramin, Rabbani Hossein

机构信息

Medical Image and Signal processing Research Center, Isfahan University of Medical Sciences, Isfahan, Iran.

出版信息

J Med Signals Sens. 2013 Jul;3(3):187-94.

Abstract

Studies show that any complications including hemorrhage, lack of blood supply, lack of oxygen supply and death of cells in a tissue, will have a clear effect on electrical properties of that tissue. Thus, by measuring impedance of a set of tissues, potential problems of the damaged tissue may be found. Since electrical impedance is closely related to the measuring frequency, obviously, every tissue exhibits its own specific impedance according to its electrical properties at each frequency. This research project investigates design and manufacture method of a device for measuring tissue impedance at different frequencies. To this end, design of a multi frequency sinusoidal current source is required. This current source is built using a single harmonic Generator sample (Direct Digital Synthesizer AD9835) with working frequency (design-point frequency) between 1 Hz and 10 MHz and accuracy of 1 Hz and microcontroller (PIC16F628) capability. For measurement and display of tissue impedance, ARM AT91SAMs256 microcontroller was used. Thus, with this hardware created, it shows that there are significant impedance changes between mouse tissues.

摘要

研究表明,任何并发症,包括出血、血液供应不足、氧气供应不足以及组织中细胞死亡,都会对该组织的电学特性产生明显影响。因此,通过测量一组组织的阻抗,可能会发现受损组织的潜在问题。由于电阻抗与测量频率密切相关,显然,每个组织根据其在每个频率下的电学特性呈现出自身特定的阻抗。本研究项目探究了一种用于测量不同频率下组织阻抗的设备的设计与制造方法。为此,需要设计一个多频正弦电流源。该电流源采用单个谐波发生器样本(直接数字频率合成器AD9835)构建,工作频率(设计点频率)在1赫兹至10兆赫兹之间,精度为1赫兹,具备微控制器(PIC16F628)功能。为了测量和显示组织阻抗,使用了ARM AT91SAMs256微控制器。因此,通过创建此硬件表明,小鼠组织之间存在显著的阻抗变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0df/3959010/19ab65cbc54d/JMSS-3-187-g003.jpg

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