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射频导管消融的生物物理参数。

Biophysical parameters of radiofrequency catheter ablation.

作者信息

Hoffmann E, Haberl R, Pulter R, Gokel M, Steinbeck G

机构信息

Department of Medicine, University of Munich, Germany.

出版信息

Int J Cardiol. 1992 Nov;37(2):213-22. doi: 10.1016/0167-5273(92)90211-k.

Abstract

Radiofrequency catheter ablation has been shown to be an effective treatment for patients with accessory pathways in Wolff-Parkinson-White syndrome and other supraventricular tachycardias. However, the biophysical parameters used so far in vivo did not correlate to the size of myocardial lesions and provided no information about the myocardial wall contact of the electrode. In this study 104 radiofrequency applications were performed on excised pig myocardium in circulating heparinized pig blood as well as in blood alone, and root mean square (rms) voltage, root mean square current and phase angle were measured using a specially developed device. The calculated effective power and output power differed by only 2-7% when measured at the point of maximum current during coagulation. A drop of current following a rise in impedance led to a phase displacement of more than 80 degrees and thereby to a drop of effective power to 17% of the output power. Hence, apparent output power consists mainly of ineffective power. The time dependent variations of phase angle, impedance and current were found to be useful for distinguishing between the media blood and myocardium. These results show that physical parameters measured during radiofrequency catheter ablation may help to control electrode position in the clinical situation and reduce the number and duration of ineffective energy applications.

摘要

射频导管消融术已被证明是治疗预激综合征和其他室上性心动过速患者旁道的有效方法。然而,迄今为止体内使用的生物物理参数与心肌损伤的大小无关,也未提供有关电极与心肌壁接触情况的信息。在本研究中,在循环肝素化猪血以及仅在血液中对切除的猪心肌进行了104次射频应用,并使用专门开发的设备测量了均方根(rms)电压、均方根电流和相角。在凝血过程中最大电流点测量时,计算出的有效功率和输出功率仅相差2 - 7%。阻抗上升后电流下降导致相位移超过80度,从而使有效功率降至输出功率的17%。因此,表观输出功率主要由无效功率组成。发现相角、阻抗和电流随时间的变化有助于区分血液和心肌介质。这些结果表明,射频导管消融术中测量的物理参数可能有助于在临床情况下控制电极位置,并减少无效能量应用的次数和持续时间。

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