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多触点神经袖套电极的选择性:模拟分析

Selectivity of multiple-contact nerve cuff electrodes: a simulation analysis.

作者信息

Choi A Q, Cavanaugh J K, Durand D M

机构信息

Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH 44106, USA.

出版信息

IEEE Trans Biomed Eng. 2001 Feb;48(2):165-72. doi: 10.1109/10.909637.

Abstract

Advances in functional neuromuscular stimulation (FNS) have increased the need for nerve cuff designs that can control multiple motor functions through selective stimulation of selected populations of axons. This selectivity has proved to be difficult to achieve. Recent experiments suggest that it is possible to slowly reshape peripheral nerve without affecting its physiological function. Using computer simulations we have tested the hypothesis that changing the cross section of a nerve from a round to a flat configuration can significantly improve the selectivity of a nerve cuff. We introduce a new index to estimate selectivity to evaluate the various designs. This index is based on the ability of a nerve electrode to stimulate a target axon without stimulating any other axons. The calculations involve a three-dimensional finite element model to represent the electrical properties of the nerve and cuff and the determination of the firing properties of individual axons. The selectivity rating was found to be significantly higher for the Flat Cuff than the Round Cuff. The result was valid with uniform or random distribution of axons and with a random distribution of fascicles diameters. Flattening of individual fascicles also improved the selectivity of the Flat Cuff but only when the number of contacts used was increased to maintain uniform contact density. Therefore, cuff designs that can reshape the nerve into flatter configurations should yield better cuff performance than the cylindrical cuffs but will require higher contact density.

摘要

功能性神经肌肉刺激(FNS)的进展增加了对神经袖套设计的需求,这种设计能够通过选择性刺激特定轴突群体来控制多种运动功能。事实证明,实现这种选择性颇具难度。最近的实验表明,在不影响其生理功能的情况下,有可能缓慢重塑周围神经。我们通过计算机模拟测试了这样一个假设,即把神经的横截面从圆形改变为扁平形状能够显著提高神经袖套的选择性。我们引入了一个新的指标来估计选择性,以评估各种设计。该指标基于神经电极在不刺激任何其他轴突的情况下刺激目标轴突的能力。计算过程涉及一个三维有限元模型,用于表示神经和袖套的电学特性以及确定单个轴突的放电特性。结果发现,扁平袖套的选择性评级显著高于圆形袖套。无论轴突是均匀分布还是随机分布,以及束直径是随机分布,该结果都是有效的。单个束的扁平化也提高了扁平袖套的选择性,但前提是增加所用触点的数量以保持均匀的接触密度。因此,能够将神经重塑为更扁平形状的袖套设计应该比圆柱形袖套具有更好的袖套性能,但需要更高的接触密度。

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