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具有温度依赖性灌注的组织中一维热传递的敏感性分析。

Sensitivity analysis of one-dimensional heat transfer in tissue with temperature-dependent perfusion.

作者信息

Davies C R, Saidel G M, Harasaki H

机构信息

Department of Biomedical Engineering, Cleveland Clinic Foundation, OH 44195, USA.

出版信息

J Biomech Eng. 1997 Feb;119(1):77-80. doi: 10.1115/1.2796068.

Abstract

Design criteria for implantable heat-generating devices such as the total artificial heart require the determination of safe thresholds for chronic heating. This involves in-vivo experiments in which tissue temperature distributions are obtained in response to known heat sources. Prior to experimental studies, simulation using a mathematical model can help optimize the design of experiments. In this paper, a theoretical analysis of heat transfer is presented that describes the dynamic, one-dimensional distribution of temperature from a heated surface. Loss of heat by perfusion is represented by temperature-independent and temperature-dependent terms that can reflect changes in local control of blood flow. Model simulations using physiologically appropriate parameter values indicate that the temperature elevation profile caused by a heated surface adjacent to tissue may extend several centimeters into the tissue. Furthermore, sensitivity analysis indicates the conditions under which temperature profiles are sensitive to changes in thermal diffusivity and perfusion parameters. This information provides the basis for estimation of model parameters in different tissues and for prediction of the thermal responses of these tissues.

摘要

诸如全人工心脏等可植入式发热装置的设计标准要求确定慢性加热的安全阈值。这涉及体内实验,即针对已知热源获取组织温度分布。在进行实验研究之前,使用数学模型进行模拟有助于优化实验设计。本文给出了传热的理论分析,描述了来自加热表面的温度动态一维分布。灌注散热由与温度无关和与温度有关的项表示,这些项可反映局部血流控制的变化。使用生理上合适的参数值进行的模型模拟表明,与组织相邻的加热表面引起的温度升高曲线可能会延伸到组织内几厘米处。此外,敏感性分析表明了温度曲线对热扩散率和灌注参数变化敏感的条件。这些信息为估算不同组织中的模型参数以及预测这些组织的热响应提供了依据。

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