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Microcontroller-Based Sinusoidal Voltage Generation for Electrical Bio-Impedance Spectroscopy Applications

机译:基于微控制器的正弦电压产生,用于生物电阻抗谱应用

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A sinusoidal voltage wave generator is proposed based on the use of micro-processor digital signals with programmable duty-cycles, with application to real-time Electrical Cell-substrate Impedance Spectroscopy (ECIS) assays in cell cultures. The working principle relies on the time convolution of the programmed microcontroller (μC) digital signals. The expected frequency is easily tuned on the bio-impedance spectroscopy range [100 Hz, 1 MHz] thanks to the μC clock frequency selection. This system has been simulated and tested on the 8 bits μC ArduinoTM Uno with ATmega328 version. Results obtained prove that only three digital signals are required to fit the general specification in ECIS experiments, below 1% THD accuracy, and show the appropriateness of the system for the real-time monitoring of this type of biological experiments.
机译:基于使用具有可编程占空比的微处理器数字信号,提出了一种正弦电压波发生器,并将其应用于细胞培养中的实时电-细胞-基板阻抗谱(ECIS)分析。工作原理取决于已编程的微控制器(μC)数字信号的时间卷积。借助μC时钟频率选择,可以在生物阻抗谱范围[100 Hz,1 MHz]上轻松调整预期频率。该系统已在ATmega328版本的8位μCArduinoTM Uno上进行了仿真和测试。获得的结果证明,仅需要三个数字信号即可满足ECIS实验中的一般规格,总谐波失真(THD)准确度低于1%,并且表明该系统适合实时监控此类生物实验。

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