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首页> 外文期刊>Spine >Electrical thresholds for biomechanical response in the ankle to direct stimulation of spinal roots L4, L5, and S1. Implications for intraoperative pedicle screw testing.
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Electrical thresholds for biomechanical response in the ankle to direct stimulation of spinal roots L4, L5, and S1. Implications for intraoperative pedicle screw testing.

机译:脚踝对直接刺激脊根L4,L5和S1的生物力学反应的电阈值。对术中椎弓根螺钉测试的意义。

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摘要

STUDY DESIGN: A comparison of electrical thresholds for biomechanical response in the ankle and for evoked electromyographic signals from specific leg muscles during intraoperative extradural direct stimulation of roots L4, L5, and S1. OBJECTIVE: To determine whether a biomechanical response in the ankle to direct root stimulation occurs before evoked electromyographic signals and to determine differences in electrical excitability of the roots circumferentially. SUMMARY OF BACKGROUND DATA: Stimulus intensities of 1.2-5.7 mA are reported to evoke electromyographic response in corresponding muscles to direct stimulation of normal roots. Stimulus intensities of 6-8 mA were suggested to detect bony pedicular compromise by stimulation of a hole or a screw during pedicle instrumentation. Electrical thresholds of three-dimensional torque response in the ankle to direct root stimulation have not yet been evaluated and compared with thresholds of evoked electromyogram. METHODS: Direct monopolar stimulation of the surgically exposed roots L4, L5, and S1 was performed from different sites around the root by a cuff multielectrode. Biomechanical response was measured as an isometric torque in the ankle at each of three orthogonal axes. Compound muscle action potentials (CMAPs) from root-specific muscles were detected by a pair of surface or wire electrodes. RESULTS: Mean threshold for biomechanical response in the ankle to stimulation of roots L4, L5, and S1 was 0.72 +/- 0.39 mA and for CMAP response was 1.09 mA +/- 0.36 (N = 13). Thresholds for biomechanical responses were significantly lower than for CMAP responses (P = 0.0004; paired t test). Nerve roots were electrically most excitable on their ventral aspects. CONCLUSION: The biomechanical response in the joint to root stimulation can be used to test all root-related muscles crossing that joint at their individual innervation pattern and their residual innervation and to detect electrical excitation of the root at electric thresholds lower than those for detecting CMAP from single standard root-specific muscle. However, this method does not provide sufficient root specificity. It will be valuable in conjunction with multimodality neurophysiologic monitoring of the roots for earlier and more reliable detection of pedicle bone breakthrough or integrity. Further clinical investigations are suggested.
机译:研究设计:术中硬膜外直接刺激根L4,L5和S1期间,踝部生物力学反应的电阈值和特定腿部肌肉诱发的肌电信号的比较。目的:确定在诱发肌电信号之前,踝部是否对直接根部刺激发生生物力学反应,并确定根部在圆周上的电兴奋性差异。背景数据概述:据报道,刺激强度为1.2-5.7 mA,可引起相应肌肉中的肌电图反应,从而直接刺激正常根。建议通过6-8 mA的刺激强度来通过在椎弓根器械上刺激孔或螺钉来检测骨性椎弓根的损伤。踝部对直接根部刺激的三维扭矩响应的电阈值尚未得到评估,并与诱发肌电图阈值进行了比较。方法:通过袖套多电极从根周围的不同部位对手术暴露的根L4,L5和S1进行直接单极刺激。生物力学响应被测量为在三个正交轴的每一个处的脚踝中的等距扭矩。通过一对表面或线电极检测根特定肌肉的复合肌肉动作电位(CMAP)。结果:踝部对根L4,L5和S1刺激的生物力学响应的平均阈值为0.72 +/- 0.39 mA,CMAP响应的平均值为1.09 mA +/- 0.36(N = 13)。生物力学反应的阈值明显低于CMAP反应的阈值(P = 0.0004;配对t检验)。神经根在腹侧方面最容易刺激。结论:关节对根部刺激的生物力学响应可用于测试穿过该关节的所有与根相关的肌肉在其各自的神经支配模式和残余神经支配,并以低于检测CMAP的电阈值检测根的电激发来自单个标准根特定肌肉。但是,这种方法不能提供足够的根特异性。结合根部的多模态神经生理学监测,对于更早,更可靠地检测椎弓根骨突或完整性,将非常有价值。建议进一步的临床研究。

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