对汽车驾驶员的心率变异性和血流动力学稳定性进行连续监测,以防止交通事故的发生

S. Emarose, R. Asokan, D. Valayaputtur
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引用次数: 3

摘要

一种持续监测汽车驾驶员心率变异性(HRV)和血流动力学稳定性的方法对驾驶员和同乘人员都是必不可少的。本文讨论了安装在汽车方向盘上的血氧仪所能测量的最大生理参数。通常用于测量血氧饱和度的脉搏血氧仪在磁场中暴露以获得血液粘度,这是保持人体血液动力学稳定的重要参数。对血氧仪输出进行RGB色带分析,得到绿色波段的心电信号。呼吸速率的测量是通过光信号的幅度和频率调制来完成的[1]。在心脏骤停的情况下,车辆将切换到巡航控制模式,测量的参数将通过GPS发送到附近的任何医院寻求帮助。RFID标签还用于与附近的车辆通信,以提醒其他司机进行紧急援助。每辆车都配备了自动体外除颤器(AED),并配有如何操作AED的详细说明,以便为心脏骤停的人除颤器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Continuous monitoring of heart rate variability and haemodynamic stability of an automobile driver to prevent road accidents
A methodology to continuously monitor the heart rate variability (HRV) and haemodynamic stability of an automobile driver is essential for both the driver and the co-passengers. In this paper, we discuss the maximum physiological parameters that an oximeter installed in the steering wheel of an automobile can measure. A pulse oximeter which is normally used for measuring blood oxygen saturation is exposed to magnetic fields to obtain the blood viscosity, which is an essential parameter to keep the body haemodynamically stable. RGB color band analysis is made on the oximeter output in order to obtain the electro-cardiac signals from the Green band. Measurement of respiration rate is done by amplitude and frequency modulation of the light signal [1]. In case of cardiac arrest, the vehicle is changed to cruise control mode and the measured parameters will be sent to any nearby hospitals for assistance using GPS. The RFID tags are also used to communicate to the nearby vehicles to alert other drivers for emergency assistance. Each and every vehicle is equipped with automatic external defibrillator (AED) with detailed instructions on how to operate the AED, in order to defibrillate a person in cardiac arrest.
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