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Collecting Heart Rate Using a High Precision, Non-contact, Single-Point Infrared Temperature Sensor

机译:使用高精度非接触式单点红外温度传感器采集心率

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Remotely detecting the physiological state of humans is becoming increasingly important for rehabilitative robotics (RR) and socially assistive robotics (SAR) because it makes robots better-suited to work more closely and more cooperatively with humans. This research delivers a new non-contact technique for detecting heart rate in real time using a high precision, single-point infrared sensor. The proposed approach is an important potential improvement over existing methods because it collects heart rate information unencumbered by biofeedback sensors, complex computational processing or high cost equipment. We use a thermal infrared sensor to capture subtle changes in the sub-nasal skin surface temperature to monitor cardiac pulse. This study extends our previous research in which breathing rate is automatically extracted using the same hardware. Experiments conducted to test the proposed system accuracy show that in 72.7% of typical cases heart rate was successfully detected within 0-9 beats per minute as measured by root-mean-square error.
机译:远程检测人类的生理状态对于康复机器人(RR)和社会辅助机器人(SAR)变得越来越重要,因为它使机器人更适合与人类更紧密地合作。这项研究提供了一种新的非接触式技术,可使用高精度的单点红外传感器实时检测心率。所提出的方法是对现有方法的重要的潜在改进,因为它收集了生物反馈传感器,复杂的计算处理或高成本的设备所不会妨碍的心率信息。我们使用热红外传感器捕获鼻下皮肤表面温度的细微变化,以监测心脏搏动。这项研究扩展了我们先前的研究,在该研究中,使用相同的硬件自动提取了呼吸频率。为测试建议的系统准确性而进行的实验表明,在72.7%的典型情况下,通过均方根误差可以成功地在每分钟0-9次心跳中成功检测到心率。

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