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射频消融热模拟模型:参数敏感性分析。

RF ablation thermal simulation model: Parameter sensitivity analysis.

作者信息

Wang Xiaoru, Gao Hongjian, Wu Shuicai, Bai Yanping, Zhou Zhuhuang

出版信息

Technol Health Care. 2018;26(S1):179-192. doi: 10.3233/THC-174542.

Abstract

OBJECTIVE

The aim of the research is to obtain the relative influences of some critical electro-thermal parameters on the ablation temperature and lesion volume during temperature-controlled radiofrequency ablation (RFA) of liver tumor by parameter sensitivity analysis.

METHODS

The finite element method (FEM) has been used to establish the simulation model of RFA temperature field, and the sensitivity of the tissue parameters has been analyzed. The effects of six parameters have been taken into account, including the thermal specific capacity (Cp), the thermal conductivity (k), the electrical conductivity (Sigma), the density (rho), the dielectric constant (Epsilon) and the resistance (R). The simulation processes based on different parameter values have been accomplished with Comsol Multiphysics software, and the sensitivity parameters have been obtained utilizing the variance contribution rate (SS%) or the main effects.

RESULTS

It was found that the ablation temperature and lesion volume increased with increasing the values of Rand Sigma, but was a reverse situation for Cp and rho. Besides, the influence of k on ablation volume was relatively small and Epsilon had a negligible effect on ablation temperature.

CONCLUSIONS

It is concluded that these parameter sensitivity results can provide scientific and reliable reference for the specificity analysis of the RF ablation models.

摘要

目的

本研究旨在通过参数敏感性分析,获取某些关键电热参数对肝肿瘤温度控制射频消融(RFA)过程中消融温度和消融灶体积的相对影响。

方法

采用有限元法(FEM)建立RFA温度场模拟模型,并分析组织参数的敏感性。考虑了六个参数的影响,包括热比容(Cp)、热导率(k)、电导率(Sigma)、密度(rho)、介电常数(Epsilon)和电阻(R)。使用Comsol Multiphysics软件完成基于不同参数值的模拟过程,并利用方差贡献率(SS%)或主效应获得敏感性参数。

结果

发现消融温度和消融灶体积随R和Sigma值的增加而升高,但Cp和rho的情况则相反。此外,k对消融体积的影响相对较小,而Epsilon对消融温度的影响可忽略不计。

结论

得出这些参数敏感性结果可为射频消融模型的特异性分析提供科学可靠的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1945/6004962/946e876f4d3c/thc-26-thc174542-g001.jpg

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