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Multiscale analysis of thermoregulation in the human microvascular system

机译:人体微血管系统中温度调节的多尺度分析

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The bio-heat transfer equation is a macroscopic model for describing the heat transfer in microvascular tissue. So far the derivation of the Helmholtz term arising in the bio-heat transfer equation is not completely satisfactory. Here we use homogenization techniques to show that this term may be understood as asymptotic result of boundary value problems which provide a microscopic description for microvascular tissue. An appropriate scaling of so-called heat transfer coefficients in Robin boundary conditions on tissue-blood boundaries is seen to play the crucial role. In view of a future application of our new mathematical model for treatment planning in hyperthermia, we derive asymptotic estimates for the first-order corrector. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:生物热传递方程是用于描述微血管组织中热传递的宏观模型。到目前为止,生物传热方程式中亥姆霍兹项的推导还不完全令人满意。在这里,我们使用均化技术来表明该术语可以理解为边值问题的渐近结果,其为微血管组织提供了微观描述。在组织-血液边界上的罗宾边界条件下,所谓的传热系数的适当缩放被认为起着至关重要的作用。考虑到我们的新数学模型在热疗中的治疗计划的未来应用,我们导出了一阶校正器的渐近估计。版权所有(C)2004 John Wiley Sons,Ltd.

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