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Digital Signal Processing by Virtual Instrumentation of a MEMS Magnetic Field Sensor for Biomedical Applications

机译:通过虚拟仪器对生物医学应用的MEMS磁场传感器进行数字信号处理

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We present a signal processing system with virtual instrumentation of a MEMS sensor to detect magnetic flux density for biomedical applications. This system consists of a magnetic field sensor, electronic components implemented on a printed circuit board (PCB), a data acquisition (DAQ) card, and a virtual instrument. It allows the development of a semi-portable prototype with the capacity to filter small electromagnetic interference signals through digital signal processing. The virtual instrument includes an algorithm to implement different configurations of infinite impulse response (IIR) filters. The PCB contains a precision instrumentation amplifier, a demodulator, a low-pass filter (LPF) and a buffer with operational amplifier. The proposed prototype is used for real-time non-invasive monitoring of magnetic flux density in the thoracic cage of rats. The response of the rat respiratory magnetogram displays a similar behavior as the rat electromyogram (EMG).
机译:我们提出了一种具有MEMS传感器虚拟仪器的信号处理系统,以检测生物医学应用的磁通密度。该系统由磁场传感器,在印刷电路板(PCB)上实现的电子组件,数据采集(DAQ)卡和虚拟仪器组成。它允许开发具有通过数字信号处理过滤小的电磁干扰信号的能力的半便携式原型。该虚拟仪器包括一种算法,用于实现无限冲激响应(IIR)滤波器的不同配置。 PCB包含一个精密仪表放大器,一个解调器,一个低通滤波器(LPF)和一个带运算放大器的缓冲器。所提出的原型用于实时无创监测大鼠胸廓中的磁通密度。大鼠呼吸磁图的反应显示出与大鼠肌电图(EMG)类似的行为。
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