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A novel electrode array for diameter dependent control of axonal excitability: a simulation study

机译:一种用于直径依赖性控制的新型电极阵列:仿真研究

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Electrical extracellular stimulation of peripheral nerve stimulates large diameter fiber before small diameter fiber, which is opposite to the natural recruitment order Ill. This study presents a novel peripheral nerve stimulation technique capable of enhancing the excitability of small myelinated axons and suppressing the excitability of large ones. The mechanism of the technique is to reshape the profile of extracellular voltage along the axon by using an array of electrodes placed along the nerve fiber. The hypothesis was tested using computer simulation. Axons and current sources were assumed to lie in a purely resistive homogeneous isotropic conducting medium. The current excitation threshold as a function of axon diameter was computed using numerical integration. The results from the conventional cathodic stimulus and the electrode array were compared. The results showed that the excitability of certain axon diameter range can be suppressed by an electrode array with a specific interelectrode distance.
机译:外周神经的电细胞外刺激在小直径纤维之前刺激大直径纤维,这与天然招生命令不相反。本研究提出了一种新的外周神经刺激技术,能够提高小粒轴突的兴奋并抑制大型兴奋性。该技术的机制是通过使用沿着神经纤维放置的电极阵列重塑沿着轴突的细胞外电压的轮廓。使用计算机仿真测试假设。假设轴突和电流源位于纯电阻均匀各向同性导电介质中。使用数值集成计算作为轴突直径的函数的电流激励阈值。比较了传统阴极刺激和电极阵列的结果。结果表明,通过具有特定电极距离的电极阵列可以抑制某些轴向直径范围的兴奋性。

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