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Current Density Distribution Under Surface Electrode on Posterior Tibial Nerve Electrical Stimulation

机译:胫骨后神经电刺激下表面电极下的电流密度分布

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Electrical stimulation on the posterior tibial nerve is commonly used in the measurement of somatosensory evoked potential (SEP). To improve the efficiency of stimulation, the potential field and current density distributions under the surface electrodes were simulated with a three layer theoretical model. The mirror method was used to analyze the potential field of point charge. Integration of the field and the stimulus area provide the potential field for one surface electric pole. Potential field distribution of the bipolar electrodes was calculated by superimposition of two unipolar fields. Finally, the current density distribution was calculated by Laplace equation. An analytical solution of the potential field was obtained; thereafter the numerical solution of the current density distribution was calculated. The potential field and current density distribution were simulated by 2-D plot. From the model and simulation, the potential and current density distributions were not found to be evenly distributed under transcutaneous stimulation electrode and the maximum current density is located under the poles. The result suggests that bipolar stimulator should be applied axially along the stimulated nerve course.
机译:胫后神经的电刺激通常用于体感诱发电位(SEP)的测量中。为了提高刺激效率,使用三层理论模型模拟了表面电极下的电势场和电流密度分布。使用镜像法分析点电荷的势场。场和刺激区域的积分为一个表面电极提供了势场。通过叠加两个单极场来计算双极电极的电位场分布。最后,通过拉普拉斯方程计算电流密度分布。得到了势场的解析解。此后,计算电流密度分布的数值解。通过二维曲线模拟了势场和电流密度分布。通过模型和仿真,发现经皮刺激电极下的电位和电流密度分布不​​是均匀分布的,并且最大电流密度位于电极的下方。结果表明,双极刺激器应沿受刺激的神经进程轴向应用。

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