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The Application of a Piezo-Resistive Cardiorespiratory Sensor System in an Automobile Safety Belt

机译:压电式心肺传感器系统在汽车安全带中的应用

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摘要

Respiratory and heart failure are conditions that can occur with little warning and may also be difficult to predict. Therefore continuous monitoring of these bio-signals is advantageous for ensuring human health. The car safety belt is mainly designed to secure the occupants of the vehicle in the event of an accident. In the current research a prototype safety belt is developed, which is used to acquire respiratory and heart signals, under laboratory conditions. The current safety belt is constructed using a copper ink based nonwoven material, which works based on the piezo-resistive effect due to the pressure exerted on the sensor as a result of expansion of the thorax/abdomen area of the body for respiration and due to the principle of ballistocardiography (BCG) in heart signal sensing. In this research, the development of a theoretical model to qualitatively describe the piezo-resistive material is also presented in order to predict the relative change in the resistance of the piezo-resistive material due to the pressure applied.
机译:呼吸和心力衰竭是可能发生的情况,几乎没有预警,也可能难以预测。因此,对这些生物信号的连续监测对于确保人类健康是有利的。汽车安全带主要设计用于在发生事故时固定车辆乘员。在当前的研究中,开发了一种原型安全带,用于在实验室条件下采集呼吸和心脏信号。当前的安全带使用铜油墨基非织造材料制成,该材料基于压阻效应而工作,这是由于人体的胸腔/腹部区域扩张并呼吸导致施加在传感器上的压力所致。心脏信号感应中的心动描记法(BCG)原理。在这项研究中,还提出了定性描述压阻材料的理论模型,以预测由于施加压力而导致的压阻材料的相对电阻变化。

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