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脊髓损伤后腰骶部脊髓诱发运动反应的肢体间条件反射。

Interlimb conditioning of lumbosacral spinally evoked motor responses after spinal cord injury.

机构信息

University of St. Augustine for Health Sciences, Austin, TX, USA.

Department of Neurosurgery, Center for Neuroregeneration, Houston Methodist Hospital, Houston, TX, USA.

出版信息

Clin Neurophysiol. 2020 Jul;131(7):1519-1532. doi: 10.1016/j.clinph.2020.03.021. Epub 2020 Apr 9.

Abstract

OBJECTIVE

The importance of subcortical pathways to functional motor recovery after spinal cord injury (SCI) has been demonstrated in multiple animal models. The current study evaluated descending interlimb influence on lumbosacral motor excitability after chronic SCI in humans.

METHODS

Ulnar nerve stimulation and transcutaneous electrical spinal stimulation were used in a condition-test paradigm to evaluate the presence of interlimb connections linking the cervical and lumbosacral spinal segments in non-injured (n=15) and spinal cord injured (SCI) (n=18) participants.

RESULTS

Potentiation of spinally evoked motor responses (sEMRs) by ulnar nerve conditioning was observed in 7/7 SCI participants with volitional leg muscle activation, and in 6/11 SCI participants with no volitional activation. Of these six, conditioning of sEMRs was present only when the neurological level of injury was rostral to the ulnar innervation entry zones.

CONCLUSIONS

Descending modulation of lumbosacral motor pools via interlimb projections may exist in SCI participants despite the absence of volitional leg muscle activation.

SIGNIFICANCE

Evaluation of sub-clinical, spared pathways within the spinal cord after SCI may provide an improved understanding of both the contributions of different pathways to residual function, and the mechanisms of plasticity and functional motor recovery following rehabilitation..

摘要

目的

在多个动物模型中已经证明了皮质下通路对脊髓损伤(SCI)后功能运动恢复的重要性。本研究评估了慢性 SCI 后人类下肢间对腰骶部运动兴奋性的下行影响。

方法

在非损伤(n=15)和脊髓损伤(SCI)(n=18)参与者中,使用尺神经刺激和经皮脊髓电刺激在条件测试范式中评估连接颈段和腰骶段脊髓节段的肢体间连接的存在。

结果

在 7/7 有自主腿部肌肉激活的 SCI 参与者中,以及在 6/11 无自主激活的 SCI 参与者中,观察到尺神经条件刺激对脊髓诱发运动反应(sEMRs)的增强。在这六名参与者中,仅当损伤的神经水平位于尺神经支配进入区的上方时,sEMRs 的条件刺激才存在。

结论

尽管缺乏自主腿部肌肉激活,但在 SCI 参与者中,通过肢体间投射对腰骶部运动池进行下行调节可能存在。

意义

评估 SCI 后脊髓内亚临床、保留的通路可能有助于更好地理解不同通路对残余功能的贡献,以及康复后可塑性和功能运动恢复的机制。

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