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A Real-Time Heart Rate Signal Detection using an Electronic Stethoscope with Labview

机译:使用带Labview的电子听诊器进行实时心率信号检测

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摘要

Better accurate stethoscope measurements have been needed to diagnose heart problems earlier, monitor patients, and provide initial clinical data for physicians. This study aims to evaluate an electronic stethoscope for automatic identification of heart rate by monitoring Beats Per Minute (BPM) in real-time. In this work, a new design with a low cost electronic stethoscope is designed and implemented as a simple circuit for a replacement with conventional stethoscopes. This presented a low cost stethoscopes consisting of a preamplifier, low-pass filter, high-pass filter, microcontroller and Bluetooth. This simulation and experimental study was carried out for electronic circuit design testing. The condenser microphone transmited the signal into the signal conditioning circuit, and amplified it from 10 to 30 times. The low- and high- pass filter circuit was with cutoffs of 180 Hz and 50 Hz, respectively. The result shows that the fourth-order Butterworth filter was the best filter, with a gain of 0.707 Volt, -3.01 dB, and 0.782 Volt, -2.137 dB, respectively. The real-time measurements using the system are not significantly different from the manual measurements, with around 2-5%, with a delay of 1.7 to 2 seconds. The results indicated that an electronic stethoscope system could provide suitable information for BPM value and could display heart sound signals.
机译:为了更早地诊断出心脏问题,监视患者并为医生提供初始临床数据,需要更好的准确听诊器测量结果。这项研究旨在通过实时监测每分钟心跳数(BPM)来评估用于自动识别心率的电子听诊器。在这项工作中,设计并实现了一种具有低成本电子听诊器的新设计,并将其设计成一种简单的电路,可以替代传统的听诊器。提出了一种由前置放大器,低通滤波器,高通滤波器,微控制器和蓝牙组成的低成本听诊器。进行了此仿真和实验研究,以进行电子电路设计测试。电容式麦克风将信号传输到信号调节电路中,并将其放大10到30倍。低通和高通滤波器电路的截止频率分别为180 Hz和50 Hz。结果表明,四阶巴特沃斯滤波器是最佳滤波器,增益分别为0.707伏,-3.01 dB和0.782伏,-2.137 dB。使用该系统进行的实时测量与手动测量没有显着差异,约为2%至5%,延迟为1.7至2秒。结果表明,电子听诊器系统可以为BPM值提供合适的信息,并可以显示心音信号。

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