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首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >Computational Modeling of Cardiac Ablation Incorporating Electrothermomechanical Interactions
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Computational Modeling of Cardiac Ablation Incorporating Electrothermomechanical Interactions

机译:计算模型的心脏消融术结合Electrothermomechanical的相互作用

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摘要

The application of radio frequency ablation (RFA) has been widely explored in treating various types of cardiac arrhythmias. Computational modeling provides a safe and viable alternative to ex vivo and in vivo experimental studies for quantifying the effects of different variables efficiently and reliably, apart from providing a priori estimates of the ablation volume attained during cardiac ablation procedures. In this contribution, we report a fully coupled electrothermomechanical model for a more accurate prediction of the treatment outcomes during the radio frequency cardiac ablation. A numerical model comprising of cardiac tissue and the cardiac chamber has been developed in which an electrode has been inserted perpendicular to the cardiac tissue to simulate actual clinical procedures. Temperature-dependent heat capacity, electrical and thermal conductivities, and blood perfusion rate have been considered to model more realistic scenarios. The effects of blood flow and contact force of the electrode tip on the treatment outcomes of a fully coupled model of RFA have been systematically investigated. The numerical study demonstrates that the predicted ablation volume of RFA is significantly dependent on the blood flow rate in the cardiac chamber and also on the tissue deformation induced due to electrode insertion depth of 1.5?mm or higher.
机译:射频消融(RFA)的应用被广泛探讨治疗各种类型的心律失常。建模提供了一种安全、可行的选择体外和体内实验研究量化不同变量的影响有效和可靠,除了提供一个烧蚀量的先验估计在心脏消融术程序。贡献,我们报告一个完全耦合electrothermomechanical模型更准确预测的治疗结果无线电频率心脏消融术。模型的组成和心脏组织一个心脏室了电极插入垂直于模拟实际临床心脏组织程序。电气和热导率,和血液灌注率被认为是多模型现实的场景。和接触力的电极头治疗结果的完全耦合模型RFA已经系统地调查。数值研究表明,预测烧蚀量RFA是显著相关的在心脏室和血流量组织变形诱导由于电极插入深度1.5 ?

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