血流灌注时谐振腔涂敷器的发热分析

L. Arakawa, J. Nagasawa, Y. Shindo, Kazuo Kato, M. Kubo, T. Uzuka, Hideaki Takahashi
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摘要

本文介绍了一种用于脑肿瘤加热的谐振腔加热器的加热特性,并用有限元法计算了血液灌注情况下的加热特性。我们已经提出了用于治疗脑肿瘤的谐振腔涂抹器,并使用琼脂幻影的原型加热系统实验验证了涂抹器的有效性。本文首先建立了一个简单的血管模型,用有限元法计算温度分布。在简单模型中,一条粗血管分支成两条窄血管。其次,分别通过求解热流方程得到了计算得到的温度分布;并对不同流动条件下的温度分布进行了比较。从这些结果可以看出,血液灌注的冷却作用出现在距离血管约2cm的受热区域。
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Heating analysis of resonant cavity applicator with blood perfusion
This paper describes the heating properties of a resonant cavity applicator for heating brain tumors, calculated by a finite element method (FEM) with blood perfusion. We have already proposed the resonant cavity applicator for treating brain tumors and checked the effectiveness of the applicator experimentally, using a prototype heating system with an agar phantom. In this paper, first, we constructed a simple model with blood vessels for calculating temperature distributions using the FEM. In the simple model, a single thick blood vessel branches into two narrow blood vessels. Second, calculated temperature distributions were presented by solving the heat-flow equation, respectively. Also, a comparison of the temperature distributions when the flow conditions were changed were discussed. From these results, it was found that the cooling effects of blood perfusion appear at the heated area approximately 2 cm away from the blood vessels.
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