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首页> 外文期刊>Neurosurgery >Motor response of the leg muscles produced by position-selective stimulation of spinal nerve roots.
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Motor response of the leg muscles produced by position-selective stimulation of spinal nerve roots.

机译:选择性刺激脊神经根产生的腿部肌肉运动反应。

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摘要

OBJECTIVE: To define and measure motor responses of the leg muscles in the ankle associated with position-selective and tetanic stimulation of spinal nerve roots L3-S1. METHODS: Sixteen lumbosacral spinal nerve roots in 14 subjects were stimulated intraoperatively after surgical exposure and decompression for a herniated disc. Each contact of a spiral cuff multielectrode was wrapped around the root and used to excite a spatially defined population of axons beneath the electrode. The motor response from each stimulated position was evaluated in terms of three-dimensional vector torque in the ankle. RESULTS: Each position at which the stimulating electrode was placed around the root exhibited the same vector torque qualitatively, but at different thresholds. The root was most excitable ventrally. The S1 roots responded with a uniform three-dimensional torque pattern: plantar flexion plus lateral leg and foot rotation plus inversion. All L5 roots responded by plantar flexion. Dorsiflexion torque was possible only with stimulation of the L3 and L4 roots. Eversion was not possible with stimulation of the S1 roots or with most of the L5 roots. CONCLUSION: Position-selective stimulation of the extrathecal spinal nerve roots influences the threshold of the biomechanical response, the torque recruitment dynamics, and the magnitude of three-dimensional vector torque. Selective activation of some leg muscles or agonist muscle groups with stimulation of a single nerve root could not be achieved owing to the low spatial selectivity of the stimulation design and/or the low muscle specificity of motor fascicles in the root. Direct extrathecal stimulation of spinal nerve roots has some hypothetical advantages over stimulation of other sites along the peripheral nerves, owing to their unique anatomy, and may contribute to functional electrical stimulation of the lower extremities. Further investigation with a more selective multielectrode configuration and the use of multiple root stimulation is suggested.
机译:目的:定义和测量与位置选择性和强直性刺激脊髓神经根L3-S1相关的踝部腿部肌肉的运动反应。方法:对14名受试者的腰神经根进行手术暴露和减压后,对其进行术中刺激。螺旋袖带多电极的每次接触都缠绕在根部周围,并用于激发电极下方的空间轴突种群。根据脚踝中的三维矢量转矩,评估了每个受刺激位置的运动响应。结果:在根部周围放置刺激电极的每个位置在质量上均表现出相同的矢量转矩,但阈值不同。根部最易受兴奋。 S1根以均匀的三维扭矩模式响应:足底屈肌加侧腿脚旋转和倒立。所有的L5根都通过plant屈反应。仅在刺激L3和L4根时才可能产生背屈扭矩。刺激S1根或大多数L5根不可能外翻。结论:鞘外神经根的位置选择性刺激会影响生物力学反应的阈值,扭矩募集动力学和三维矢量扭矩的大小。由于刺激设计的空间选择性低和/或根中运动束的肌肉特异性低,因此无法通过刺激单个神经根来选择性激活某些腿部肌肉或激动剂肌肉群。由于对脊髓神经根的独特解剖结构,直接刺激鞘神经根比刺激沿周围神经的其他部位具有一些假设的优势,并且可能有助于下肢的功能性电刺激。建议使用更具选择性的多电极配置以及使用多根刺激物进行进一步研究。

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