锥形凝胶垫心脏外起搏电极电流密度分布分析。

Medical instrumentation Pub Date : 1987-12-01
C R Williams, L A Geddes, J D Bourland, E S Furgason
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引用次数: 0

摘要

我们设计了一种高阻抗(5000 ω -cm),锥形,胶状垫,体外心脏起搏电极,限制电荷迁移到圆形电极的周长,并产生比临床使用的体外心脏起搏电极更均匀的电流密度分布。开发了一种计算机模拟方法,利用柱坐标分析电极与人体组织界面处的电流密度分布。计算机模拟分析了32种不同的电极,结果表明,胶凝垫厚度、胶凝垫锥度和导电盘半径不是决定低电阻率电极电流密度分布的重要参数。然而,这些参数对于高电阻率电极来说意义重大。我们将最佳电阻率定义为锥形胶状衬垫电极产生最均匀的电流密度分布,并向人体组织输送最大电流。当在最佳电阻率下评估电极时,我们确定锥形凝胶垫电极的峰值电流密度比临床可用的电极低50%,而向人体组织输送的电流多58%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the current-density distribution from a tapered, gelled-pad external cardiac pacing electrode.

We have designed a high-impedance (5000 omega-cm), tapered, gelled-pad, external cardiac pacing electrode that limits the migration of charges to the perimeter of a circular electrode and produces a more uniform current-density distribution than external cardiac pacing electrodes in clinical use. A computer simulation was developed that uses cylindrical coordinates to analyze the current-density distribution at the interface between the electrode and human tissue. Our computer simulation analyzed 32 different electrodes, and the results showed that the gelled-pad thickness, the gelled-pad taper, and the radius of the conducting disk were not significant parameters in determining the current-density distributions for low-resistivity electrodes. Those parameters were, however, significant for high-resistivity electrodes. We defined the optimum resistivity as that at which the tapered, gelled-pad electrode produces the most uniform current-density distribution and delivers the most current to human tissue. When evaluating electrodes at the optimum resistivity, we determined that the peak current density of the tapered, gelled-pad electrode was 50% lower than that of the clinically available electrodes, while delivering 58% more current to the human tissue.

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