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Designing a Biosignal Extraction Device for Measuring a Blood Pressure

机译:设计用于测量血压的生物信号提取装置

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This paper presents a design of non-invasive electronic device for extracting a biosignal, with this device the extracted biosignal is then processed for measuring human blood pressure. The approach of the designed device is based on an oscillometric method. Leveraging on the potential of the electronic device, a cuff with a small sensor attaches to patient's forearm; the output signal of the sensor requires amplification and filtering operations in order to be applied into a microcontroller. Hence, the designed device consists of three parts: amplification circuit, filtering circuit and a microcontroller circuit. Signal amplification is performed using a level shifter to scale and shift the signal within a range of 0 to 5 volts, which is suitable for the work of the used microcontroller. Filtering off the noise from the extracted signal is done with a second order Butterworth band pass filter with bandwidth from 0.5 to 10 Hz. A microcontroller (PIC18F4550) is used for processing the signal and computing the result. The research investigates the accuracy of the extracted biomedical signal computation to achieve good result for helping both healthy people and patients to self-monitor their wellness.
机译:本文提出了一种用于提取生物信号的非侵入性电子设备的设计,然后使用该设备对提取的生物信号进行处理以测量人体血压。设计设备的方法基于示波法。利用电子设备的潜力,将带有小传感器的袖带固定在患者的前臂上。传感器的输出信号需要放大和滤波操作才能应用于微控制器。因此,设计的器件由三部分组成:放大电路,滤波电路和微控制器电路。使用电平转换器执行信号放大,以在0至5伏范围内缩放和移动信号,这适用于所用微控制器的工作。使用带宽为0.5到10 Hz的二阶Butterworth带通滤波器滤除来自提取信号的噪声。微控制器(PIC18F4550)用于处理信号并计算结果。该研究调查了提取的生物医学信号计算的准确性,以取得良好的结果,从而帮助健康的人和患者自我监测其健康状况。

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