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首页> 外文期刊>生体医工学 >階段状波形を有する細胞外電気刺激に対する神経線維モデルの時空間ダイナミクス
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階段状波形を有する細胞外電気刺激に対する神経線維モデルの時空間ダイナミクス

机译:阶跃波形的细胞外电刺激神经纤维模型的时空动力学

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摘要

It has been suggested that position- or diameter-selective recruitment of myelinated axons can be achieved by up-staircase-shape electrical nerve stimulation delivered from an extracellular electrode. However, so far, detail properties of the position- or diameter-selectivity of the stimulation have not been clarified. In this study, we investigated the spatio-temporal dynamics of myelinated axons in response to staircase-shape stimulation by numerical simulation of a compartmental model of rabbit myelinated axons. We found that the upstaircase-shape stimulation activates not only the targeted axons but also the ones close to the electrode by anodal break excitation; this property would degrade the distance selectivity of the stimulation. By considering the mechanism of extracellular electrical stimulation, we developed down-staircase-shape stimulation which can achieve selective activation of targeted axons without generating anodal break excitation near the electrode. Systematic simulation revealed that the down-staircase stimulation is better than the up-staircase one in terms of distance-selectivity of axon recruitment. However, diameter-selectivity of both stimulations was not sufficient.
机译:已经提出,可以通过从细胞外电极递送的上楼梯形状的电神经刺激来实现有髓的轴突的位置或直径选择性募集。但是,到目前为止,还没有弄清刺激的位置或直径选择性的详细特性。在这项研究中,我们通过对兔有髓轴突的隔室模型进行了数值模拟,研究了有髓轴突响应楼梯形状刺激的时空动态。我们发现,楼上形状的刺激不仅可以激活目标轴突,还可以通过阳极断裂激发激活靠近电极的轴突。这种性质会降低刺激的距离选择性。通过考虑细胞外电刺激的机制,我们开发了楼梯下形状的刺激,该刺激可以实现目标轴突的选择性激活,而不会在电极附近产生阳极断裂激发。系统仿真表明,就轴突募集的距离选择性而言,楼下刺激比楼上刺激要好。但是,两种刺激的直径选择性都不够。

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