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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Biomechanical and functional variation in rat sciatic nerve following cuff electrode implantation
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Biomechanical and functional variation in rat sciatic nerve following cuff electrode implantation

机译:袖带电极植入后大鼠坐骨神经的生物力学和功能变化

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Background Nerve cuff electrodes are commonly and successfully used for stimulating peripheral nerves. On the other hand, they occasionally induce functional and morphological changes following chronic implantation, for reasons not always clear. We hypothesize that restriction of nerve mobility due to cuff implantation may alter nerve conduction. Methods We quantified acute changes in nerve-muscle electrophysiology, using electromyography, and nerve kinematics in anesthetized Sprague Dawley rat sciatic nerves during controlled hindlimb joint movement. We compared electrophysiological and biomechanical response in uncuffed nerves and those secured within a cuff electrode using analysis of variance (ANOVA) and regression analysis. Results Tethering resulting from cuff implantation resulted in altered nerve strain and a complex biomechanical environment during joint movement. Coincident with biomechanical changes, electromyography revealed significantly increased variability in the response of conduction latency and amplitude in cuffed, but not free, nerves following joint movement. Conclusion Our findings emphasize the importance of the mechanical interface between peripheral nerves and their devices on neurophysiological performance. This work has implications for nerve device design, implantation, and prediction of long-term efficacy.
机译:背景技术神经袖套电极通常并成功地用于刺激周围神经。另一方面,由于并不总是清楚的原因,它们在慢性植入后偶尔会引起功能和形态变化。我们假设由于袖套植入造成的神经活动受限可能会改变神经传导。方法我们使用肌电图和麻醉后的Sprague Dawley大鼠坐骨神经在受控的后肢关节运动过程中,定量了神经肌肉电生理的急性变化。我们使用方差分析(ANOVA)和回归分析比较了未佩戴神经和固定在袖带电极中的神经的电生理和生物力学响应。结果袖套植入引起的系留会导致关节运动期间神经张力改变和复杂的生物力学环境。与生物力学变化同时发生的是,肌电图显示关节运动后袖带神经(而非游离神经)的传导潜伏期和振幅响应的变化显着增加。结论我们的发现强调了周围神经及其装置之间的机械接口对神经生理机能的重要性。这项工作对神经装置的设计,植入和长期疗效的预测具有影响。

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