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快速双相电击子脉冲切换对心室除颤阈值的影响。

Effect of rapid biphasic shock subpulse switching on ventricular defibrillation thresholds.

作者信息

Dosdall Derek J, Rothe Darrin E, Brandon Tedd A, Sweeney James D

机构信息

Harrington Department of Bioengineering, Arizona State University, Tempe, Arizona 85287-9709, USA.

出版信息

J Cardiovasc Electrophysiol. 2004 Jul;15(7):802-8. doi: 10.1046/j.1540-8167.2004.03652.x.

Abstract

INTRODUCTION

The aim of this study was to demonstrate that significant reductions in defibrillation threshold (DFT) can be achieved by rapidly switching defibrillation pulses within an overall biphasic envelope between multiple endovascular electrode sets.

METHODS AND RESULTS

Defibrillation electrodes were implanted in four locations in nine anesthetized swine (41.7 +/- 8.7 kg). Electrodes were implanted into the right ventricular apex (RV), the superior vena cava (SVC), over the left pectoral region as a "hot can" (Can), and within the middle cardiac vein on the posterior left ventricular (LV) surface. The 50% DFT (level for which 50% of delivered shocks successfully defibrillated) for control shocks (7-ms first phase, 0.5-ms interpulse period, 4-ms second phase, RV- --> SVC+ + Can+) were determined to have energy of 20.5 +/- 5.5 J (mean +/- SD). Mean 50% DFTs were also determined for waveforms that split each phase of the same overall biphasic waveform between various electrode sets. Each phase was divided into 2, 3, 4, or 6 subpulses, the defibrillation shock was sequentially delivered to multiple electrode sets, and DFTs were determined (11.9 +/- 4.8 J, 11.7 +/- 2.9 J, 17.9 +/- 8.7 J, 16.7 +/- 6.1 J, respectively). DFT energy was statistically lower than the control (Wilcoxon sign rank test; P < 0.05) when each phase was divided into 2 or 3 subpulses.

CONCLUSION

Rapid shock switching within an overall biphasic waveform between electrode sets including an electrode in the middle cardiac vein potentially can lower DFT energy by 40% or more.

摘要

引言

本研究的目的是证明,通过在多个血管内电极组之间的整体双相包络内快速切换除颤脉冲,可以显著降低除颤阈值(DFT)。

方法与结果

在9只麻醉猪(41.7±8.7千克)的四个位置植入除颤电极。电极分别植入右心室心尖(RV)、上腔静脉(SVC)、左胸区域作为“热罐”(Can)以及左心室(LV)后表面的心大静脉内。对于对照电击(第一阶段7毫秒,脉冲间期0.5毫秒,第二阶段4毫秒,RV→SVC++Can+),确定其50%除颤阈值(即50%的电击成功除颤的水平)能量为20.5±5.5焦耳(平均值±标准差)。还确定了在不同电极组之间将同一整体双相波形的每个阶段进行分割的波形的平均50%除颤阈值。每个阶段分为2、3、4或6个子脉冲,除颤电击依次输送到多个电极组,并确定除颤阈值(分别为11.9±4.8焦耳、11.7±2.9焦耳、17.9±8.7焦耳、16.7±6.1焦耳)。当每个阶段分为2或3个子脉冲时,除颤阈值能量在统计学上低于对照(Wilcoxon符号秩检验;P<0.05)。

结论

在包括心大静脉内电极的电极组之间的整体双相波形内快速切换电击,有可能使除颤阈值能量降低40%或更多。

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