首页> 外文会议>Latin American Congress on Biomedical Engineering >Electrical and Thermal Effects of Esophageal Temperature Probes on Radiofrequency Catheter Ablation of Atrial Fibrillation: Results from a Computational Modeling Study
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Electrical and Thermal Effects of Esophageal Temperature Probes on Radiofrequency Catheter Ablation of Atrial Fibrillation: Results from a Computational Modeling Study

机译:食管温度探测对心房颤动射频导管消融的电气和热效应:计算建模研究的结果

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Luminal esophageal temperature (LET) monitoring is commonly employed during catheter ablation of atrial fibrillation (AF) to detect high esophageal temperatures during radiofrequency (RF) delivery along the posterior wall of the left atrium. However, it has been recently suggested that in some cases the esophageal probe itself may serve as an RF 'antenna' and promote esophageal thermal injury. In this study, we developed a computational model to assess the electrical and thermal effects of three different types of esophageal temperature probes (ETPs): a standard single-sensor and two multi-sensor probes (one with and one without metallic surfaces). Results showed that LET monitoring invariably underestimated the maximum temperature reached in the esophageal wall. While only the ETP with a metallic surface produced minimal electrical alterations, the magnitude of this interference did not appear to be clinically-significant. In conclusion, temperature rises in both the esophageal wall and the ETP seem to be primarily produced by thermal conduction, and not electrical and/or thermal interactions between the ablation catheter and the ETP, itself. As such, the proposed notion of the 'antenna effect' producing satellite esophageal lesions during AF ablation was not evident in this study.
机译:在心房颤动(AF)的导管消融期间通常采用腔食管温度(Let)监测,以在沿左心房的后壁递送的射频(RF)输送期间检测高食管温度。然而,最近建议在某些情况下,食管探针本身可以用作RF'天线'并促进食管热损伤。在这项研究中,我们开发了一种计算模型,以评估三种不同类型的食管温度探针(ETPS)的电气和热效应:标准单传感器和两个多传感器探针(一个没有金属表面的多传感器探针(一个,没有金属表面)。结果表明,让监测总是低估食管壁达到的最高温度。虽然只有金属表面产生的ETP产生最小的电气改变,但这种干扰的幅度似乎没有临床显着。总之,在食管壁上的温度升高,ETP似乎主要通过热传导产生,而不是消融导管和ETP之间的电气和/或热相互作用。因此,在本研究中,在AF消融期间产生卫星食管病变的“天线效应”的建议概念并不明显。

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