Sayenko Dimitry G, Atkinson Darryn A, Dy Christine J, Gurley Katelyn M, Smith Valerie L, Angeli Claudia, Harkema Susan J, Edgerton V Reggie, Gerasimenko Yury P
Department of Neurological Surgery, University of Louisville, Louisville, Kentucky; Department of Integrative Biology and Physiology, University of California, Los Angeles, Los Angeles, California;
Neuroscience Collaborative Center, Frazier Rehab Institute, Louisville, Kentucky;
J Appl Physiol (1985). 2015 Jun 1;118(11):1364-74. doi: 10.1152/japplphysiol.01128.2014. Epub 2015 Mar 26.
Transcutaneous and epidural electrical spinal cord stimulation techniques are becoming more valuable as electrophysiological and clinical tools. Recently, we observed selective activation of proximal and distal motor pools during epidural spinal stimulation. In the present study, we hypothesized that the characteristics of recruitment curves obtained from leg muscles will reflect a relative preferential activation of proximal and distal motor pools based on their arrangement along the lumbosacral enlargement. The purpose was to describe the electrophysiological responses to transcutaneous stimulation in leg muscles innervated by motoneurons from different segmental levels. Stimulation delivered along the rostrocaudal axis of the lumbosacral enlargement in the supine position resulted in a selective topographical recruitment of proximal and distal leg muscles, as described by threshold intensity, slope of the recruitment curves, and plateau point intensity and magnitude. Relatively selective recruitment of proximal and distal motor pools can be titrated by optimizing the site and intensity level of stimulation to excite a given combination of motor pools. The slope of the recruitment of particular muscles allows characterization of the properties of afferents projecting to specific motoneuron pools, as well as to the type and size of the motoneurons. The location and intensity of transcutaneous spinal electrical stimulation are critical to target particular neural structures across different motor pools in investigation of specific neuromodulatory effects. Finally, the asymmetry in bilateral evoked potentials is inevitable and can be attributed to both anatomical and functional peculiarities of individual muscles or muscle groups.
经皮和硬膜外脊髓电刺激技术作为电生理和临床工具正变得越来越有价值。最近,我们观察到硬膜外脊髓刺激期间近端和远端运动池的选择性激活。在本研究中,我们假设从腿部肌肉获得的募集曲线特征将基于它们沿腰骶膨大的排列反映近端和远端运动池的相对优先激活。目的是描述由不同节段水平的运动神经元支配的腿部肌肉对经皮刺激的电生理反应。如阈值强度、募集曲线斜率以及平台点强度和幅度所描述的,在仰卧位沿腰骶膨大的头尾轴进行刺激会导致近端和远端腿部肌肉的选择性地形学募集。通过优化刺激部位和强度水平以激发给定的运动池组合,可以调节近端和远端运动池的相对选择性募集。特定肌肉募集的斜率允许表征投射到特定运动神经元池以及运动神经元类型和大小的传入神经的特性。经皮脊髓电刺激的位置和强度对于在研究特定神经调节作用时靶向不同运动池中的特定神经结构至关重要。最后,双侧诱发电位的不对称是不可避免的,并且可归因于个体肌肉或肌肉群的解剖学和功能特性。