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Relationships and Comparisons of Finger Surface Temperature Measurements from Three Different Kinds of Temperature Sensors

机译:三种不同温度传感器手指表面温度测量的关系与比较

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Temperature biofeedback has been used in behavioral medicine for more than three decades. Traditional temperature biofeedback uses the contact sensor of a thermistor to measure one's finger surface temperature. The goal of this study is to discover new valid sensors for temperature biofeedback. Sixteen healthy young adult volunteers (23.1±2.0 years old) practiced cognitive imagery muscle relaxation with three kinds of temperature sensors (thermography imaging, thermistor, and infrared thermopile) to measure their finger surfaces simultaneously. The temperature readings from different sensors were synchronically videotaped and converged to video files for analyses. The data were selected every half a minute from a fixed section of the muscle relaxation procedure to show the outline of the temperature variation. Twenty-eight means of skin temperature measurements from each sensor resulted in overall correlation coefficients of R=0.98 (p<0.001) between the thermistor and thermography imaging sensors, R=0.95 (p<0.001) between thermography imaging and infrared thermopile sensors, and R=0.96 (p<0.001) between thermistor and infrared thermopile sensors. These results suggest that contact and non-contact temperature sensors could demonstrate good synchronous temperature covariance in measuring finger surface temperature. This study also proposes specific setups for instrumentation of finger surface temperature monitoring.
机译:温度生物反馈已用于行为医学超过三十年。传统温度生物反馈使用热敏电阻的接触传感器来测量一个人的手指表面温度。本研究的目标是发现用于温度生物融合的新有效传感器。十六岁健康的年轻成人志愿者(23.1±2.0岁)练习认知图像肌肉放松,具有三种温度传感器(热成像,热敏电阻和红外热电液),同时测量其手指表面。来自不同传感器的温度读数是同步录像和融合到视频文件以进行分析。从肌肉弛豫程序的固定部分中每隔半分钟选择数据,以显示温度变化的轮廓。来自每个传感器的二十八种皮肤温度测量方法导致热敏电阻和热成像传感器之间的r = 0.98(p <0.001)的整体相关系数,r = 0.95(p <0.001),在热成像和红外热电器传感器之间,以及热敏电阻和红外热电孔传感器之间的r = 0.96(P <0.001)。这些结果表明,接触和非接触式温度传感器可以在测量手指表面温度下表现出良好的同步温度协方差。本研究还提出了针对手指表面温度监测仪器的具体设置。

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