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人体腰骶部网络兴奋性的前庭脊髓和皮质脊髓调制

Vestibulospinal and Corticospinal Modulation of Lumbosacral Network Excitability in Human Subjects.

作者信息

Sayenko Dimitry G, Atkinson Darryn A, Mink Amber M, Gurley Katelyn M, Edgerton V Reggie, Harkema Susan J, Gerasimenko Yury P

机构信息

Department of Integrative Biology and Physiology, University of California, Los Angeles, Los Angeles, CA, United States.

Center for Neuroregeneration, Department of Neurosurgery, Houston Methodist Research Institute, Houston, TX, United States.

出版信息

Front Physiol. 2018 Dec 6;9:1746. doi: 10.3389/fphys.2018.01746. eCollection 2018.

Abstract

As part of a project aimed to develop a novel, non-invasive techniques for comprehensive assessment of supraspinal-spinal connectivity in humans, the present study sought to explore the convergence of descending vestibulospinal and corticospinal pathways onto lumbosacral motor pools. Transcutaneous electrical spinal stimulation-evoked motor potentials were recorded from knee and ankle flexors and extensors in resting neurologically intact participants. Descending influences on lumbosacral motor neurons were studied using galvanic vestibular (GVS) or transcranial magnetic stimulation (TMS) to elicit descending vestibulospinal or corticospinal volleys, respectively. Facilitatory conditioning effects of descending corticospinal volleys were manifested by a significant increase of spinally evoked motor potentials in recorded knee and ankle muscles bilaterally, and were observed at the 10-30 ms conditioning-test intervals (CTIs); whereas, facilitatory conditioning effects of vestibulospinal volleys manifested at longer latencies (CTIs of 90 and 110 ms), and lasted up to 250 ms. TMS mediated volleys revealed the conditioning effects at both short and long latencies, suggestive of both direct and indirect influence. In contrast, vestibulospinally mediated conditioning effects occurred at longer latencies, consistent with this pathway's known anatomical and functional interfaces with other descending systems including the reticulospinal pathway and, suggestively, propriospinal interneurons. Our work demonstrates the utility and sensitivity of transcutaneous spinal stimulation in human neurophysiological studies as a technique for quantitative characterization of excitatory conditioning effects in multiple lumbosacral motor pools, obtained through descending pathways. This characterization becomes critical in understanding the neuroplasticity in the central nervous system during motor learning and neurological recovery.

摘要

作为一个旨在开发用于全面评估人类脊髓上-脊髓连接性的新型非侵入性技术项目的一部分,本研究试图探索下行前庭脊髓束和皮质脊髓束通路在腰骶运动神经元池上的汇聚情况。在神经系统完好的静息参与者中,记录了来自膝部和踝部屈肌及伸肌的经皮脊髓电刺激诱发的运动电位。分别使用前庭电刺激(GVS)或经颅磁刺激(TMS)来引发下行前庭脊髓束或皮质脊髓束冲动,研究其对腰骶运动神经元的下行影响。下行皮质脊髓束冲动的易化性条件作用表现为记录到的双侧膝部和踝部肌肉中脊髓诱发运动电位显著增加,并且在10 - 30毫秒的条件-测试间隔(CTI)时观察到;而前庭脊髓束冲动的易化性条件作用在更长潜伏期(CTI为90和110毫秒)时出现,并持续长达250毫秒。TMS介导的冲动在短潜伏期和长潜伏期均显示出条件作用效应,提示既有直接影响也有间接影响。相比之下,前庭脊髓束介导的条件作用效应出现在更长潜伏期,这与该通路与包括网状脊髓束以及推测的脊髓 propriospinal 中间神经元在内的其他下行系统已知的解剖和功能界面一致。我们的工作证明了经皮脊髓刺激在人类神经生理学研究中的实用性和敏感性,它是一种通过下行通路对多个腰骶运动神经元池中的兴奋性条件作用效应进行定量表征的技术。这种表征对于理解运动学习和神经恢复过程中中枢神经系统的神经可塑性至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60c7/6291495/1dcd29832f0d/fphys-09-01746-g001.jpg

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