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A Model of Selective Activation of the Femoral Nerve With a Flat Interface Nerve Electrode for a Lower Extremity Neuroprosthesis

机译:带有平面接口神经电极的下肢神经假体选择性激活股神经的模型

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摘要

Functional electrical stimulation (FES) can restore limb movements through electrically initiated, coordinated contractions of paralyzed muscles. The peripheral nerve is an attractive site for stimulation using cuff electrodes. Many applications will require the electrode to selectively activate many smaller populations of axons within a common nerve trunk. The purpose of this study is to computationally model the performance of a flat interface nerve electrode (FINE) on the proximal femoral nerve for standing and stepping applications. Simulations investigated multiple FINE configurations to determine the optimal number and locations of contacts for the maximum muscular selectivity. Realistic finite element method (FEM) models were developed from digitized cross sections from cadaver femoral nerve specimens. Electrical potentials were calculated and interpolated voltages were applied to a double-cable axon model. Model output was analyzed to determine selectivity and estimate joint moments with a musculoskeletal model. Simulations indicated that a 22-contact FINE will produce the greatest selectivity. Simulations predicted that an eight-contact FINE can be expected to selectively stimulate each of the six muscles innervated by the proximal femoral nerve, producing a sufficient knee extension moment for the sit-to-stand transition and contributing 60% of the hip flexion moment needed during gait. We conclude that, whereas more contacts produce greater selectivity, eight channels are sufficient for standing and stepping with an FES system using a FINE on the common femoral nerve.
机译:功能性电刺激(FES)可通过麻痹性肌肉的电启动,协调收缩来恢复肢体运动。周围神经是使用袖带电极刺激的吸引部位。许多应用将需要电极选择性地激活公共神经干内的许多较小的轴突。这项研究的目的是对站立和踩踏应用中股骨近端平界面神经电极(FINE)的性能进行计算建模。模拟研究了多种FINE构型,以确定最大肌肉选择性的最佳接触点数量和位置。从尸体股神经标本的数字化横截面开发了逼真的有限元方法(FEM)模型。计算电势,并将内插电压应用于双电缆轴突模型。分析了模型输出,以确定选择性并使用肌肉骨骼模型估计关节力矩。仿真表明,22触点的FINE将产生最大的选择性。模拟预测,可以通过八触点FINE选择性刺激股骨近端神经支配的六块肌肉中的每一个,从而产生足够的膝盖伸展力矩以实现从坐到站的过渡,并贡献了所需的60%髋部屈曲力矩在步态中。我们得出的结论是,虽然更多的接触产生更大的选择性,但八个通道足以在普通股神经上使用FINE在FES系统上站立和行走。

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