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A Wearable Patch to Enable Long-Term Monitoring of Environmental, Activity and Hemodynamics Variables

机译:一个可穿戴的补丁程序,可以对环境,活动和血液动力学变量进行长期监控

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摘要

We present a low power multi-modal patch designed for measuring activity, altitude (based on high-resolution barometric pressure), a single-lead electrocardiogram, and a tri-axial seismocardiogram (SCG). Enabled by a novel embedded systems design methodology, this patch offers a powerful means of monitoring the physiology for both patients with chronic cardiovascular diseases, and the general population interested in personal health and fitness measures. Specifically, to the best of our knowledge, this patch represents the first demonstration of combined activity, environmental context, and hemodynamics monitoring, all on the same hardware, capable of operating for longer than 48 hours at a time with continuous recording. The three-channels of SCG and one-lead ECG are all sampled at 500 Hz with high signal-to-noise ratio, the pressure sensor is sampled at 10 Hz, and all signals are stored to a microSD card with an average current consumption of less than 2 mA from a 3.7 V coin cell (LIR2450) battery. In addition to electronic characterization, proof-of-concept exercise recovery studies were performed with this patch, suggesting the ability to discriminate between hemodynamic and electrophysiology response to light, moderate, and heavy exercise.
机译:我们提出了一种低功率多模式贴片,用于测量活动,海拔(基于高分辨率大气压),单导联心电图和三轴心电图(SCG)。通过新颖的嵌入式系统设计方法,此修补程序为监测慢性心血管疾病患者以及对个人健康和健身措施感兴趣的一般人群的生理状况提供了强大的手段。具体来说,就我们所知,此补丁代表了结合了活动,环境和血液动力学监测的首次演示,这些演示都在同一硬件上进行,并且一次连续记录可以运行超过48小时。 SCG和单导联ECG的三个通道均以500 Hz的高信噪比采样,压力传感器以10 Hz的采样率,所有信号均存储到microSD卡中,平均电流消耗为3.7 V纽扣电池(LIR2450)电池的电流不足2 mA。除电子特性外,还对该贴片进行了概念验证性运动恢复研究,表明该能力可以区分轻度,中度和重度运动的血液动力学和电生理反应。

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