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Computer modeling of irrigated-tip electrodes during RF cardiac ablation: Comparative analysis between including and excluding the problem of fluid dynamics

机译:射频消融过程中尖端电极的计算机建模:包括和排除流体动力学问题之间的比较分析

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Accurate modeling of the thermal performance of irrigated-tip electrodes in endocardial radiofrequency ablation requires solving a triple coupled problem involving simultaneous electrical conduction, heat transfer, and fluid dynamics. We propose an approximate method that avoids the fluid dynamics problem by setting a constant value of temperature in a specific zone of the electrode tip. Our objective was to assess the capacity of the approximate method by comparing its results with those obtained from the accurate method. The results showed that the approximate method failed to predict the lesion surface width, overestimating it by 5 mm for any insertion depth and blood flow rate. Likewise, it drastically overestimated the maximum temperature reached in the blood. However, the approximate method is able to predict lesion depth reasonably well (differences lower than 0.1 mm between both methods) and the maximum temperature reached in the tissue (differences always less than 3°C) throughout the entire ablation time regardless of blood flow rate and electrode insertion depth. In conclusion, the accurate method is the only capable of simulating the real performance of an irrigated electrode-tip surrounded by blood.
机译:在心内膜射频消融术中,对尖端电极的热性能进行精确建模需要解决三重耦合问题,包括同时导电,传热和流体动力学。我们提出一种近似方法,通过在电极头的特定区域中设置恒定的温度值来避免流体动力学问题。我们的目标是通过将近似方法的结果与从精确方法中获得的结果进行比较,来评估近似方法的能力。结果表明,该近似方法无法预测病灶表面宽度,对于任何插入深度和血液流速,其高估了5 mm。同样,它也大大高估了血液中达到的最高温度。但是,近似方法能够很好地预测病变深度(两种方法之间的差异均小于0.1 mm)和整个消融时间内组织达到的最高温度(差异始终小于3°C),而与血液流速无关和电极插入深度。总之,准确的方法是唯一能够模拟被血液包围的灌溉电极头的真实性能的方法。

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