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A Simulation Study: Effect of the Inter-Electrode Distance, Electrode Size and Shape in Transcutaneous Electrical Stimulation

机译:一种仿真研究:电极间距离,电极尺寸和形状在经皮电刺激的影响

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Transcutaneous Electrical Stimulation (TES) has been used widely to recover motor functions in neurologically impaired individuals by artificially activating skeletal muscles using superficial electrodes. Some simulation studies have investigated the percentage of fibers activated in denervated skeletal muscles, the comfort and selectivity, and the influence of fat thickness in the case of obese people, to optimize the inter-electrode distance and electrode size. However, the effect of the inter-electrode distance, electrode shape and electrode size might be further analyzed using the selectivity, activation depth and activation volume. In this regard, we developed a 3D multi-layer (skin, fat, muscle, and nerve) thigh model coupled with a mammalian nerve model using a finite element method for optimization of TES therapy. Different evaluation indices (motor threshold, activation depth, selectivity and activation volume) were inspected to compare different TES parameters in terms of nerve activation. The simulation results agreed with experimental data and new insights were obtained: selectivity is better in small electrodes; nevertheless, in high current stimulation, small electrodes and large electrodes have similar selectivity.
机译:经皮电刺激(TES)已被广泛用于通过人工激活使用浅电极骨骼肌以恢复神经功能受损的个体的运动功能。一些仿真研究已经研究了神经骨骼肌激活的纤维的百分比,舒适和选择性,以及肥胖厚度在肥胖人的情况下,优化电极间距离和电极尺寸。然而,使用选择性,激活深度和激活体积可以进一步分析电极间距离,电极形状和电极尺寸的效果。在这方面,我们开发了一种3D多层(皮肤,脂肪,肌肉和神经)大腿模型,其使用有限元方法与哺乳动物神经模型相结合,以优化TES治疗。检查不同的评估指数(电机阈值,激活深度,选择性和激活体积)以比较神经激活方面的不同TES参数。获得了实验数据和新见解商定的仿真结果:在小电极中选择性更好;然而,在高电流刺激,小电极和大电极具有类似的选择性。

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