首页> 外文会议>Southern Biomedical Engineering Conference >Development of Mobile Apps for Wireless Sensor Data Acquisition and Visualization of Biopotentials
【24h】

Development of Mobile Apps for Wireless Sensor Data Acquisition and Visualization of Biopotentials

机译:无线传感器数据采集和生物电势可视化移动应用程序的开发

获取原文

摘要

Pervasive health biomedical devices are presently trending towards supplementary usage with smart phones, tablets, and wearable gadgets to complement their ubiquitous roles in monitoring and diagnostic applications. In this paper, detailed design and development of a user-friendly mobile app using MIT App Inventor 2 software is explained, where emphasis is placed on building a graphical user interface (GUI) to provide the stage for real-time data acquisition and quality visualization (plotting) of photoplethysmography (PPG) data and their spectra on a smart device. Brief review of wireless networking and serial communications is also presented. PPG is modeled in a laboratory environment, where blood volume measurement is obtained via light absorption and reflectance through arterial pulse in the finger by an infrared LED source and optical sensor. A low-power microcontroller is implemented to control and digitize the analog PPG signal, characterized by a pulse oximeter waveform. Investigation of how this valuable biopotential data can be wirelessly transferred from the PPG device via a Bluetooth or WiFi module to a beaconing smart device is pursued. Following a research-driven approach and systematic process, the PPG raw data is amplified and filtered, transmitted and collected wirelessly, then further analyzed to derive the Heart Rate Variability (HRV) signal. Utilizing an advanced tool for studying the variability of heart beat intervals, namely Kubios software, the HRV data was validated for its accuracy in its computation and generation of quantitative markers indicative of the autonomic nervous system's (ANS) influence on the cardiovascular system, particularly the stress response.
机译:目前,无处不在的健康生物医学设备正趋向于与智能手机,平板电脑和可穿戴设备互补使用,以补充其在监测和诊断应用中的普遍作用。在本文中,将说明使用MIT App Inventor 2软件进行的用户友好型移动应用程序的详细设计和开发,其中重点放在构建图形用户界面(GUI)上,以提供实时数据采集和质量可视化的平台智能设备上的(体积)光电容积描记术(PPG)数据及其频谱的分析。还简要介绍了无线网络和串行通信。 PPG是在实验室环境中建模的,在实验室环境中,通过红外LED光源和光学传感器通过手指中动脉脉冲的光吸收和反射来获得血容量测量值。实现了低功耗微控制器,以控制和数字化模拟PPG信号,其特征是脉搏血氧仪波形。正在进行有关如何通过蓝牙或WiFi模块将PPP设备从无线数据传输到信标智能设备的研究。按照研究驱动的方法和系统的过程,PPG原始数据经过无线放大,过滤,传输和收集,然后进一步分析以得出心率变异性(HRV)信号。使用Kubios软件等先进的工具来研究心跳间隔的变异性,验证了HRV数据在计算和生成指示自主神经系统(ANS)对心血管系统(尤其是心血管系统)影响的定量标记时的准确性,从而验证了其准确性。压力反应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号