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Mechanically Flexible Wireless Multisensor Platform for Human Physical Activity and Vitals Monitoring

机译:机械灵活的无线多传感器平台,用于人体运动和生命周期监测

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Practical usability of the majority of current wearable body sensor systems for multiple parameter physiological signal acquisition is limited by the multiple physical connections between sensors and the data-acquisition modules. In order to improve the user comfort and enable the use of these types of systems on active mobile subjects, we propose a wireless body sensor system that incorporates multiple sensors on a single node. This multisensor node includes signal acquisition, processing, and wireless data transmission fitted on multiple layers of a thin flexible substrate with a very small footprint. Considerations for design include size, form factor, reliable body attachment, good signal coupling, low power consumption, and user convenience. The prototype device measures 55 $times$ 15 mm and is 3 mm thick. The unit is attached to the patient's chest, and is capable of performing simultaneous measurements of parameters, such as body motion, activity intensity, tilt, respiration, cardiac vibration, cardiac potential (ECG), heart rate, and body surface temperature. In this paper, we discuss the architecture of this system, including the multisensor hardware, the firmware, a mobile-phone receiver unit, and assembly of the first proof-of-concept prototype. Preliminary performance results on key elements of the system, such as power consumption, wireless range, algorithm efficiency, ECG signal quality for heart-rate calculations, as well as synchronous ECG and body activity signals are also presented.
机译:当前大多数可穿戴身体传感器系统在多参数生理信号采集中的实际可用性受到传感器与数据采集模块之间多个物理连接的限制。为了提高用户的舒适度并允许在活动的移动对象上使用这些类型的系统,我们提出了一种无线人体传感器系统,该系统在单个节点上集成了多个传感器。该多传感器节点包括信号采集,处理和无线数据传输,这些信号安装在具有很小占地面积的薄柔性基板的多层上。设计时要考虑的因素包括尺寸,外形尺寸,可靠的机身连接,良好的信号耦合,低功耗和用户便利性。原型设备的尺寸为55 x 15毫米,厚3毫米。该设备连接到患者的胸部,并能够同时测量参数,例如身体运动,活动强度,倾斜度,呼吸,心脏振动,心电势(ECG),心率和体表温度。在本文中,我们讨论了该系统的体系结构,包括多传感器硬件,固件,移动电话接收器单元以及第一个概念验证原型的组装。还给出了系统关键要素的初步性能结果,例如功耗,无线范围,算法效率,用于心率计算的ECG信号质量,以及同步ECG和身体活动信号。

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