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首页> 外文期刊>Artificial Organs >A finite element model to identify electrode influence on current distribution in the skin.
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A finite element model to identify electrode influence on current distribution in the skin.

机译:识别电极对皮肤中电流分布影响的有限元模型。

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Discomfort experienced during surface functional electrical stimulation (FES) is thought to be partly a result of localized high current density in the skin underneath the stimulating electrode. This article describes a finite element (FE) model to predict skin current density distribution in the region of the electrode during stimulation and its application to the identification of electrode properties that may act to reduce sensation. The FE model results show that the peak current density was located in an area immediately under the stratum corneum, adjacent to a sweat duct. A simulation of surface FES via a high-resistivity electrode showed a reduction in this peak current density, when compared to that with a low-resistivity electrode.
机译:表面功能电刺激(FES)期间出现的不适被认为部分是刺激电极下方皮肤中局部高电流密度的结果。本文介绍了一种有限元(FE)模型,用于预测刺激过程中电极区域内的皮肤电流密度分布,并将其应用于识别可能会降低感觉的电极特性。 FE模型的结果表明,峰值电流密度位于角质层正下方的区域,与汗管相邻。与低电阻电极相比,通过高电阻电极对表面FES的仿真显示该峰值电流密度降低了。

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