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Multi-Electrode Array for Transcutaneous Lumbar Posterior Root Stimulation

机译:经皮腰椎后根刺激的多电极阵列

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Interest in transcutaneous electrical stimulation of the lumbosacral spinal cord is increasing in human electrophysiological and clinical studies. The stimulation effects on lower limb muscles depend on the depolarization of segmentally organized posterior root afferents and, thus, the rostro-caudal stimulation site. In previous studies, selective stimulation was achieved by varying the positions of single self-adhesive electrodes over the thoracolumbar spine. Here, we developed a multi-electrode surface array consisting of 3x8 electrode pads and tested its stimulation-site specificity. The array was placed longitudinally over the spine covering the T10-L2 vertebrae. Two different hydrogel layer configurations were utilized: a single layer adhered to all electrode pads of the array and a configuration comprised of eight separate strips attached to the three transverse electrode pads of each level. Voltage measurements demonstrated that an effectively focused field distribution along the longitudinal extent of the array was not accomplished when using the single continuous hydrogel layer, and segmental selective stimulation of the posterior root afferents was not possible. The separate strips produced a focused electric field distribution at the rostro-caudal level of the electrode pads selected for stimulation. This configuration allowed for the preferential elicitation of posterior root-muscle reflexes in either the L2-L4 innervated quadriceps or the L5-S2 innervated triceps surae muscle groups. Such multi-electrode array for transcutaneous spinal cord stimulation shall allow for improved control of stimulation conditions in electrophysiological studies and time-dependent and site-specific stimulation patterns for neuromodulation applications.
机译:在人的电生理和临床研究中,对腰s脊髓的经皮电刺激的兴趣正在增加。对下肢肌肉的刺激效果取决于分段组织的后根传入神经的去极化作用,因此,也取决于罗尾尾刺激部位。在先前的研究中,选择性刺激是通过改变胸腰椎上方单个自粘电极的位置来实现的。在这里,我们开发了由3x8电极垫组成的多电极表面阵列,并测试了其刺激部位的特异性。将阵列纵向放置在覆盖T10-L2椎骨的脊柱上方。利用了两种不同的水凝胶层构造:粘附到阵列的所有电极垫的单层和由附接到每个水平的三个横向电极垫的八个单独的条带组成的构造。电压测量表明,当使用单个连续水凝胶层时,无法实现沿阵列纵向范围的有效聚焦场分布,并且无法对后根传入神经进行分段选择性刺激。分开的条在选择用于刺激的电极垫的头尾水平处产生聚焦的电场分布。这种配置允许在L2-L4支配的股四头肌或L5-S2支配的肱三头肌腓肠肌群中优先诱发后根肌肉反射。这种用于经皮脊髓刺激的多电极阵列应允许改善电生理研究中刺激条件的控制以及神经调节应用的时间依赖性和部位特异性刺激模式。

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