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A computational model of open-irrigated electrode for endocardial RF catheter ablation

机译:用于内膜射频导管消融的开放式电极计算模型

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Radiofrequency catheter ablation (RFCA) is an important curative treatment for cardiac arrhythmias. However, during RFCA thrombus formation can occur when the electrode-tissue interface temperature exceeds 80??C. Open-irrigated electrodes reduce the risk of such side-effect. No computational model of an open-irrigated electrode in endocardial RFCA accounting for both the saline irrigation flow and the blood motion in the cardiac chamber has been proposed yet. Our aim was to introduce the first computer model including both effects. The model has been validated against existing experimental results. Computational results showed that the surface lesion width and blood temperature are affected by the irrigation flow rate. Smaller surface lesion widths and blood temperatures are obtained with higher irrigation flow rate, while the lesion depth is not affected by changing the irrigation flow rate. Larger lesions are obtained when electrode is placed horizontally. Overall, the computational findings are in close agreement with previous experimental results.
机译:射频导管消融(RFCA)是心律失常的重要疗效治疗。然而,在电极组织界面温度超过80Ω·C时,可以发生在RFCA血栓形成期间。开放式电极降低了这种副作用的风险。已经提出了在心脏室内内膜RFCA中的开放式灌溉电极的计算模型尚未提出心脏室中的盐水室中的血液运动。我们的目标是介绍第一批包括两种效果的计算机模型。该模型已针对现有实验结果验证。计算结果表明,表面病变宽度和血液温度受灌溉流速的影响。通过更高的灌溉流速获得较小的表面病变宽度和血液温度,而病变深度不受改变灌溉流速的影响。当水平放置电极时,获得较大的病变。总体而言,计算结果与先前的实验结果密切一致。

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