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Rapid Prototyping of a Smart Device-based Wireless Reflectance Photoplethysmograph

机译:基于智能设备的无线反射光体积描记器的快速原型制作

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摘要

This paper presents the design, fabrication, and testing of a wireless heart rate (HR) monitoring device based on photoplethysmography (PPG) and smart devices. PPG sensors use infrared (IR) light to obtain vital information to assess cardiac health and other physiologic conditions. The PPG data that are transferred to a computer undergo further processing to derive the Heart Rate Variability (HRV) signal, which is analyzed to generate quantitative markers of the Autonomic Nervous System (ANS). The HRV signal has numerous monitoring and diagnostic applications. To this end, wireless connectivity plays an important role in such biomedical instruments. The photoplethysmograph consists of an optical sensor to detect the changes in the light intensity reflected from the illuminated tissue, a signal conditioning unit to prepare the reflected light for further signal conditioning through amplification and filtering, a low-power microcontroller to control and digitize the analog PPG signal, and a Bluetooth module to transmit the digital data to a Bluetooth-based smart device such as a tablet. An Android app is then used to enable the smart device to acquire and digitally display the received analog PPG signal in real-time on the smart device. This article is concluded with the prototyping of the wireless PPG followed by the verification procedures of the PPG and HRV signals acquired in a laboratory environment.
机译:本文介绍了基于光电容积描记法(PPG)和智能设备的无线心率(HR)监测设备的设计,制造和测试。 PPG传感器使用红外(IR)光获取重要信息,以评估心脏健康和其他生理状况。传输到计算机的PPG数据经过进一步处理,得出心率变异性(HRV)信号,对其进行分析以生成自主神经系统(ANS)的定量标记。 HRV信号具有许多监视和诊断应用程序。为此,无线连接在此类生物医学仪器中起着重要作用。光电容积描记器包括:一个光学传感器,用于检测从被照射的组织反射的光强度的变化;一个信号调节单元,用于准备反射的光,以便通过放大和滤波进行进一步的信号调节;一个低功率微控制器,用于控制和数字化模拟信号PPG信号,以及将数字数据传输到基于蓝牙的智能设备(例如平板电脑)的蓝牙模块。然后使用Android应用程序使智能设备能够在智能设备上实时获取并数字显示接收到的模拟PPG信号。本文以无线PPG的原型制作结束,然后是在实验室环境中获取的PPG和HRV信号的验证程序。

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