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ERRORS IN SKIN TEMPERATURE MEASUREMENTS

机译:皮肤温度测量中的误差

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Numerical simulation is used to investigate the accuracy of a widely used direct-contact device for measuring skin-surface temperature. The device incorporates a foam pad which functions as a de facto thermal resistance to heat flow from the skin surface to the environment. The temperature at the interface of the measurement device and the skin surface is sensed by a micro thermocouple or thermistor. The multidimensional bioheat equation was solved numerically to obtain the temperature field both in the tissue beneath the device and in the device proper. Parametric variations were made of the thermal conductivity of the foam pad and of the blood perfusion rate. Of these, the former was found to have the greater effect on the results. In the limiting case where the thermal conductivity of the foam pad is zero, an error of 1.5 °C in the measured temperature was identified. For foam pad conductivities of 0.03 and 0.06 W/m-°C, the numerical solutions gave temperature measurement errors of 0.5 and 0.15 °C, respectively.
机译:数值模拟用于研究一种广泛使用的直接接触装置来测量皮肤表面温度的精度。该器件采用泡沫垫,其用作从皮肤表面到环境的热流量的事实上的热阻。测量装置和皮肤表面的界面处的温度由微耦合或热敏电阻感测。多维生物发热方程在数值上进行解决,以获得装置下方的组织中的温度场,并且在装置中正确。参数变形是由泡沫垫和血液灌注速率的导热率的变化。其中,发现前者对结果产生了更大的影响。在泡沫垫的导热率为为零的限制情况下,鉴定了测量温度中1.5℃的误差。对于0.03和0.06W / m-℃的泡沫垫导电,数值溶液分别产生0.5和0.15°C的温度测量误差。

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