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Effect of Depth-Dependent Nociceptor Density on the Heat-Induced Withdrawal Reflex

机译:深度依赖性伤害者密度对热诱导的戒断反射的影响

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摘要

Previously we introduced a concise dose-response model for the heat-induced withdrawal reflex caused by millimeter wave radiation. The model predicts the occurrence of withdrawal reflex from the given spatial temperature profile. It was formulated on the assumption that the density of nociceptors in skin is uniform, independent of the depth. The model has only two parameters: the activation temperature of heat-sensitive nociceptors and the critical threshold on the activated volume for triggering withdrawal reflex. In this study, we consider the case of depth-dependent nociceptor density in skin. We use a general parametric form with a scaling parameter in the depth direction to represent the nociceptor density. We analyze system behaviors for four density types of this form. Based on the theoretical results, we develop a methodology for 1) identifying from test data the density form of nociceptors distribution, 2) finding from test data the scaling parameter in the density form, and 3) determining from test data the activation temperature of nociceptors.
机译:以前我们介绍了由毫米波辐射引起的热诱导的戒断反射的简洁剂量响应模型。该模型预测来自给定的空间温度曲线的退出反射的发生。假设皮肤中的伤虫剂密度是均匀的,与深度无关。该模型仅具有两个参数:热敏伤害患者的激活温度和激活体积的临界阈值,用于引发撤离反射。在这项研究中,我们认为皮肤中深度依赖性伤害者密度的情况。我们在深度方向上使用一般参数形式,在深度方向上以表示伤口二极管密度。我们分析了四种密度类型的这种形式的系统行为。基于理论结果,我们开发了一种方法论为1),从测试数据识别Nociceptors分布的密度形式,2)从缩放参数以密度形式的缩放参数找到,3)从测试数据确定伤膨力的激活温度。

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