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Micromachined hot-wire thermal conductivity probe for biomedical applications

机译:用于生物医学应用的微加工热线导热系数探头

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摘要

A micro thin-film thermal conductivity probe is developed to measure thermal conductivity of biological tissues based on the principle of traditional hot-wire method. The design of this new micro probe consists of a resistive line heating element on a substrate and a RTD based temperature sensor. The transient time response of the heating element depends on the thermal conductivity of the surrounding medium and the substrate. A theoretical analysis of the transient conduction for this configuration where the heater source is sandwiched between two materials (the substrate and the surrounding medium) shows that the composite thermal conductivity calculated from the temperature versus time response is simply the average of the thermal conductivity of the two materials. The experiments conducted to measure thermal conductivity of Crisco and agar gel show a good match with the theoretical and numerical analyses. The technique demonstrates the potential of the microprobe for in vivo measurements of thermal conductivity of biological tissues.
机译:基于传统热线法的原理,研制了一种用于测量生物组织导热系数的微型薄膜导热系数探头。这种新型微型探针的设计包括基板上的电阻线加热元件和基于RTD的温度传感器。加热元件的瞬态时间响应取决于周围介质和基材的热导率。对于这种配置的瞬态传导的理论分析,其中加热器源夹在两种材料(基板和周围介质)之间,根据温度对时间响应的计算得出的复合热导率只是该热导率的平均值。两种材料。测量Crisco和琼脂凝胶的热导率的实验表明与理论和数值分析非常吻合。该技术证明了微探针在体内测量生物组织热导率的潜力。

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