The effect of uniform and non-uniform electric fields on defibrillation thresholds for monophasic and biphasic waveforms

A.N. Mears, L. Holley
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引用次数: 3

Abstract

This study examines whether uniform and nonuniform electric field topologies as generated by different defibrillation electrode configurations influence defibrillation threshold energies (DFT) for monophasic (MP) and biphasic (BP) shock waveforms. Recent theoretical studies have suggested that the ability of BP to change transmembrane potential may be enhanced under non-uniform field conditions. This may also influence the efficacy of defibrillation of BP waveforms, Also, contradictory experimental results in the comparison of BP versus MP efficacy have been reported. These may be due to different experimental setups resulting in different shock electric field non-uniformity. To test the hypothesis that electric field non-uniformity influences relative defibrillation efficacy for MP and BP waveforms we determined DFT delivered to the heart under two electrode configurations. A catheter electrode was used to create a non-uniform field and a pair of parallel plates created a uniform field. The results show that BP is more efficacious than MP under both uniform and non-uniform field conditions (p<0.05) and that the efficacy off BP is enhanced under non-uniform fields (p<0.005) whilst there is no observed difference between uniform and non-uniform fields for MP waveforms.
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均匀电场和非均匀电场对单相和双相波形除颤阈值的影响
本研究探讨了由不同除颤电极结构产生的均匀和非均匀电场拓扑是否影响单相(MP)和双相(BP)激波的除颤阈值能量(DFT)。最近的理论研究表明,在非均匀电场条件下,BP改变跨膜电位的能力可能会增强。这也可能影响BP波形的除颤效果。此外,在BP与MP疗效比较的实验结果也有矛盾的报道。这可能是由于不同的实验设置导致不同的冲击电场不均匀性。为了验证电场不均匀性影响MP和BP波形相对除颤效果的假设,我们测定了两种电极配置下传递到心脏的DFT。一个导管电极被用来产生一个非均匀场,一对平行板产生一个均匀场。结果表明,在均匀场和非均匀场条件下,BP的药效均优于MP (p<0.05);在非均匀场条件下,BP的药效增强(p<0.005),而均匀场和非均匀场对MP波形没有明显差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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