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首页> 外文期刊>Journal of cardiovascular electrophysiology >Impedance, power, and current in radiofrequency ablation: Insights from technical, ex vivo, and clinical studies
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Impedance, power, and current in radiofrequency ablation: Insights from technical, ex vivo, and clinical studies

机译:射频消融的阻抗,力量和电流:技术,前体内和临床研究的见解

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摘要

Background Radiofrequency (RF) power is routinely considered during RF application. In contrast, impedance has been relatively poorly studied, despite also influencing RF lesion creation. The aim of this study was to examine the influence of electric impedance on RF lesion characteristics and on clinical RF ablation parameters. Methods and Results In the first part of the study, power and impedance were systematically varied and the resulting current was calculated using custom-made software. In the second part of the study, ablation lesions (n = 40) were analyzed in a porcine ex vivo model. RF applications were delivered in cardiac muscle preparations with systematically varied values of electric impedance using a contact force ablation catheter. In the third part of the study,n = 3378 clinical RF applications were analyzed, power, impedance, and current data were exported and correlated with clinical patient data. 20 +/- 3 W/80 omega, 30 +/- 3 W/120 omega, 40 +/- 3 W/160 omega, and 50 +/- 3 W/200 omega RF applications resulted in 498 +/- 40, 499 +/- 26, 500 +/- 20, and 500 +/- 16 mA RF current, which were not significantly different (p = .32). Ablation lesions were significantly different in depth and diameter when applied with the same power but different impedances (p < .01); lesion sizes decreased when increasing impedance. In clinical data, a large range of delivered current (e.g., 39-40 W: 530-754 mA) was measured, due to variations in impedance. Conclusions RF lesion creation is determined by current rather than by power. During clinical RF ablation procedures, impedance significantly influences current delivery and varies considerably between patients. Impedance and current are clinically relevant parameters that should be considered during RF ablation.
机译:背景射频(RF)功率通常在射频应用过程中考虑。相比之下,阻抗的研究相对较少,尽管它也会影响射频损伤的产生。本研究旨在探讨电阻抗对射频损伤特征和临床射频消融参数的影响。方法和结果在研究的第一部分,系统地改变功率和阻抗,并使用定制软件计算产生的电流。在研究的第二部分,在猪离体模型中分析了消融损伤(n=40)。射频应用于心肌准备中,使用接触力消融导管系统性地改变阻抗值。在研究的第三部分中,分析了n=3378个临床射频应用,导出了功率、阻抗和电流数据,并与临床患者数据相关联。20+/-3 W/80Ω、30+/-3 W/120Ω、40+/-3 W/160Ω和50+/-3 W/200Ω射频应用产生498+/-40、499+/-26、500+/-20和500+/-16 mA射频电流,这些电流没有显著差异(p=0.32)。在相同功率但不同阻抗下,消融病灶的深度和直径存在显著差异(p<0.01);当阻抗增加时,病变大小减小。在临床数据中,由于阻抗的变化,测量了大范围的输送电流(例如39-40 W:530-754 mA)。结论射频损伤的产生取决于电流而不是功率。在临床射频消融过程中,阻抗显著影响电流传递,且患者之间存在显著差异。阻抗和电流是射频消融时应考虑的临床相关参数。

著录项

  • 来源
  • 作者单位

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

    Fdn Bordeaux Univ Electrophysiol &

    Heart Modeling Inst IHU LIRYC Pessac France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    current; impedance; power; radiofrequency ablation;

    机译:当前;阻抗;力量;射频消融;

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