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计算研究动脉分叉对冷冻手术过程中温度分布的影响。

Computational study of the effects of arterial bifurcation on the temperature distribution during cryosurgery.

机构信息

Department of Liver Surgery, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, 100730, China.

College of Environmental and Energy Engineering, Beijing University of Civil Engineering and Architecture, Beijing, 100044, China.

出版信息

Biomed Eng Online. 2018 Jan 16;17(1):4. doi: 10.1186/s12938-018-0438-z.

Abstract

BACKGROUND

Thermally significant blood flows into locally cooled diseased tissues and warm them during cryosurgery so that the iceball is often hard to cover the whole diseased volume. This paper is aimed at investigating the effects of large arterial bifurcation on the temperature distribution during cryosurgery through simulation method.

METHODS

A parametric geometry model is introduced to construct a close-to-real arterial bifurcation. The three-dimensional transient conjugate heat transfer between bifurcated artery and solid tissues with phase change during cryosurgery is performed by finite volume method.

RESULTS

The discussion was then made on the effects of the relative position between cryoprobe and artery bifurcation, the inlet velocity of root artery and the layout of multiple cryoprobes on the temperature distribution and iceball evolution. The results show that the thermal interaction between blood flow and iceball growth near bifurcation is considerable complex. The thermal effects of bifurcation could modulate the iceball morphology, severely weaken its freezing volume and prevent the blood vessel from being frozen.

CONCLUSION

The present work is expected to be valuable in optimizing cryosurgery scheme of the situation that the bifurcated artery is embedded into the disease tissue.

摘要

背景

在冷冻手术中,热量显著的血液流入局部冷却的病变组织并使其升温,导致冰球往往难以覆盖整个病变体积。本文旨在通过模拟方法研究大的动脉分叉对冷冻手术期间温度分布的影响。

方法

引入参数化几何模型来构建接近真实的动脉分叉。通过有限体积法对冷冻手术期间具有相变的分叉动脉和固体组织之间的三维瞬态共轭传热进行了模拟。

结果

然后讨论了冷冻探针和动脉分叉、根动脉入口速度以及多个冷冻探针布局之间的相对位置对温度分布和冰球演变的影响。结果表明,分叉处血流和冰球生长之间的热相互作用非常复杂。分叉的热效应可以调节冰球形态,严重削弱其冻结体积,并防止血管冻结。

结论

本工作有望为优化分叉动脉嵌入病变组织的冷冻手术方案提供有价值的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8421/5771102/6abefe6b2c74/12938_2018_438_Fig1_HTML.jpg

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