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采用有效热导率在圆柱坐标系下进行热建模。

Thermal modeling in cylindrical coordinates using effective conductivity.

作者信息

Jafari F, Higgins P D

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 1989;36(2):191-6. doi: 10.1109/58.19150.

Abstract

Predictive thermometry, utilizing minimally invasive sampling techniques, is an essential ingredient in the development of hyperthermia treatment planning capabilities. The authors demonstrate a powerful, but simple approach toward predicting temperature distributions in tissues, based on analytic solution, using in cylindrical symmetry, of the heat diffusion equation. Conduction and localized perfusion effects are combined as an effective conductivity term, readily measurable, and parametrized in a general exponential form. The proposed approach allows a first-order approximation to modeling three typical situations: hypoxic or necrotic tumor core with homogeneously perfused periphery; highly perfused periphery (in rapidly growing tumors); or perfused central cover with a less well-supplied periphery (such as for some invasive tumors). The utility and strength of this approach is that it provides a rapid, accurate model of directly observing the technical quality to be expected for different heating methods, making it possible to optimally configure source distributions in a treatment planning setting.

摘要

利用微创采样技术的预测性体温测量法是热疗治疗计划能力发展的重要组成部分。作者展示了一种基于热扩散方程圆柱对称解析解的强大而简单的预测组织温度分布的方法。传导和局部灌注效应被合并为一个易于测量的有效电导率项,并以一般指数形式进行参数化。所提出的方法允许对三种典型情况进行一阶近似建模:周边均匀灌注的缺氧或坏死肿瘤核心;(快速生长肿瘤中)周边高度灌注;或周边供血较少的灌注中央覆盖区(如某些侵袭性肿瘤)。这种方法的实用性和优势在于,它提供了一个快速、准确的模型,可直接观察不同加热方法预期的技术质量,从而有可能在治疗计划设置中优化源分布。

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