Oh Jeonghoon, Scheffler Michelle S, Martin Catherine A, Dinh Jenny, Sheynin Jony, Steele Alexander G, Sayenko Dimitry G
Houston Methodist Research Institute.
Texas A&M University Health Science Center.
Res Sq. 2023 Nov 8:rs.3.rs-3513515. doi: 10.21203/rs.3.rs-3513515/v1.
Transcutaneous spinal stimulation (TSS) is emerging as a valuable tool for electrophysiological and clinical assessment. This study had the objective of examining the recruitment patterns of upper limb (UL) motor pools through the delivery of TSS above and below a spinal lesion. It also aimed to explore the connection between the recruitment pattern of UL motor pools and the neurological and functional status following spinal cord injury (SCI). In eight participants with tetraplegia due to cervical SCI, TSS was delivered to the cervical spinal cord between the spinous processes of C3-C4 and C7-T1 vertebrae, and spinally evoked motor potentials in UL muscles were characterized. We found that responses observed in UL muscles innervated by motor pools below the level of injury demonstrated relatively reduced sensitivity to TSS compared to those above the lesion, were asymmetrical in the majority of muscles, and were dependent on the level, extent, and side of SCI. Overall, our findings indicate that electrophysiological data acquired through TSS can offer insights into the extent of UL functional asymmetry, disruptions in neural pathways, and changes in motor control following SCI. This study suggests that such electrophysiological data can supplement clinical and functional assessment and provide further insight regarding residual motor function in individuals with SCI.
经皮脊髓刺激(TSS)正逐渐成为一种用于电生理和临床评估的重要工具。本研究旨在通过在脊髓损伤上方和下方进行TSS来检查上肢(UL)运动神经元池的募集模式。它还旨在探讨UL运动神经元池的募集模式与脊髓损伤(SCI)后神经和功能状态之间的联系。在8名因颈髓损伤导致四肢瘫痪的参与者中,将TSS施加于C3 - C4和C7 - T1椎体棘突之间的颈脊髓,并对UL肌肉中的脊髓诱发运动电位进行了特征描述。我们发现,与损伤水平以上的运动神经元池支配的UL肌肉相比,损伤水平以下的运动神经元池支配的UL肌肉中观察到的反应对TSS的敏感性相对降低,大多数肌肉存在不对称性,并且取决于SCI的水平、范围和部位。总体而言,我们的研究结果表明,通过TSS获得的电生理数据可以深入了解SCI后UL功能不对称的程度、神经通路的中断以及运动控制的变化。这项研究表明,此类电生理数据可以补充临床和功能评估,并为SCI个体的残余运动功能提供进一步的见解。