Department of Neurological Surgery, University of Louisville, Louisville, Kentucky;
J Neurophysiol. 2014 Mar;111(5):1088-99. doi: 10.1152/jn.00489.2013. Epub 2013 Dec 11.
Epidural stimulation (ES) of the lumbosacral spinal cord has been used to facilitate standing and voluntary movement after clinically motor-complete spinal-cord injury. It seems of importance to examine how the epidurally evoked potentials are modulated in the spinal circuitry and projected to various motor pools. We hypothesized that chronically implanted electrode arrays over the lumbosacral spinal cord can be used to assess functionally spinal circuitry linked to specific motor pools. The purpose of this study was to investigate the functional and topographic organization of compound evoked potentials induced by the stimulation. Three individuals with complete motor paralysis of the lower limbs participated in the study. The evoked potentials to epidural spinal stimulation were investigated after surgery in a supine position and in one participant, during both supine and standing, with body weight load of 60%. The stimulation was delivered with intensity from 0.5 to 10 V at a frequency of 2 Hz. Recruitment curves of evoked potentials in knee and ankle muscles were collected at three localized and two wide-field stimulation configurations. Epidural electrical stimulation of rostral and caudal areas of lumbar spinal cord resulted in a selective topographical recruitment of proximal and distal leg muscles, as revealed by both magnitude and thresholds of the evoked potentials. ES activated both afferent and efferent pathways. The components of neural pathways that can mediate motor-evoked potentials were highly dependent on the stimulation parameters and sensory conditions, suggesting a weight-bearing-induced reorganization of the spinal circuitries.
硬膜外刺激(ES)腰骶脊髓已被用于促进站立和自愿运动后,临床上电机完成脊髓损伤。看来重要的是要检查如何硬膜外诱发的潜力是调制在脊髓电路和投影到各个运动池。我们假设,慢性植入电极阵列在腰骶脊髓可以用来评估与特定运动池相关的功能脊髓电路。本研究的目的是研究由刺激引起的复合诱发电位的功能和拓扑组织。有 3 名下肢完全瘫痪的患者参与了这项研究。在手术后,诱发电位在仰卧位进行研究,在一名参与者中,在仰卧位和站立位进行研究,体重负荷为 60%。刺激强度为 0.5 至 10 V,频率为 2 Hz。在三个局部和两个宽场刺激配置中收集了膝和踝肌肉的诱发电位募集曲线。硬膜外刺激脊髓的头侧和尾侧区域导致近端和远端腿部肌肉的选择性拓扑募集,这反映在诱发电位的幅度和阈值上。ES 激活传入和传出通路。介导运动诱发电位的神经通路的组成部分高度依赖于刺激参数和感觉条件,这表明脊髓回路的承重诱导重组。