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通过靶向刺激颈脊髓实现上肢运动神经元池的对侧选择性

Contralateral Selectivity of Upper-Limb Motor Pools via Targeted Stimulation of the Cervical Spinal Cord.

作者信息

Fleming Neil, Taylor Clare, Etzelmueller Mark, Gill Conor, O'Keeffe Clodagh, Mahony Nicholas, Reilly Richard B

机构信息

Discipline of Anatomy, School of Medicine, Trinity College Dublin, D02 R590 Dublin, Ireland.

School of Engineering, Trinity College, The University of Dublin, D08 XW7X Dublin, Ireland.

出版信息

Biomedicines. 2023 Jan 24;11(2):332. doi: 10.3390/biomedicines11020332.

Abstract

UNLABELLED

Transcutaneous spinal cord stimulation (tSCS) at the cervical level may facilitate improved upper-limb function in those with incomplete tetraplegia. While clinical trials are ongoing, there is still much debate regarding the transmission pathway as well as appropriate stimulation parameters. This study aimed to explore the extent to which cervical tSCS can induce mono-synaptic reflexes in discrete upper-limb motor pools and examine the effects of altering stimulus location and intensity.

METHODS

Fourteen participants with intact nervous systems completed two laboratory visits, during which posterior root-muscle reflexes (PRMRs) were evoked via a 3 × 3 cathode matrix applied over the cervical spine. An incremental recruitment curve at the C7 vertebral level was initially performed to attain resting motor threshold (RMT) in each muscle. Paired pulses (1 ms square monophasic with inter-pulse interval of 50 ms) were subsequently delivered at a frequency of 0.25 Hz at two intensities (RMT and RMT + 20%) across all nine cathode positions. Evoked responses to the 1st (PRMR) and 2nd (PRMR) stimuli were recorded in four upper-limb muscles.

RESULTS

A significant effect of the spinal level was observed in all muscles for PRMR, with greater responses being recorded caudally. Contralateral stimulation significantly increased PRMR in ( < 0.05, F = 4.9, η2 = 0.29), ( < 0.05, F = 4.9, η2 = 0.28) and ( < 0.01, F = 8.9, η2 = 0.89). Post-activation depression (PAD) was also significantly increased with contralateral stimulation in ( 0.001, F = 9.3, η2 = 0.44), ( < 0.05, F = 5.4, η2 = 0.31) and ( < 0.001, F = 17.4, η2 = 0.59).

CONCLUSIONS

A level of unilateral motor pool selectivity may be attained by altering stimulus intensity and location during cervical tSCS. Optimising these parameters may improve the efficacy of this neuromodulation method in clinical cohorts.

摘要

未标注

颈段经皮脊髓刺激(tSCS)可能有助于改善不完全性四肢瘫患者的上肢功能。虽然临床试验正在进行,但关于其传导途径以及合适的刺激参数仍存在诸多争议。本研究旨在探讨颈段tSCS在离散的上肢运动神经元池诱发单突触反射的程度,并研究改变刺激位置和强度的影响。

方法

14名神经系统完整的参与者完成了两次实验室访视,期间通过应用于颈椎的3×3阴极矩阵诱发后根 - 肌肉反射(PRMR)。最初在C7椎体水平进行递增募集曲线以获得每块肌肉的静息运动阈值(RMT)。随后以0.25Hz的频率在所有九个阴极位置以两种强度(RMT和RMT + 20%)施加成对脉冲(1ms方形单相,脉冲间隔为50ms)。在四块上肢肌肉中记录对第一个(PRMR)和第二个(PRMR)刺激的诱发反应。

结果

在所有肌肉中均观察到脊髓节段对PRMR有显著影响,尾端记录到的反应更大。对侧刺激显著增加了[具体肌肉1](P < 0.05,F = 4.9,η2 = 0.29)、[具体肌肉2](P < 0.05,F = 4.9,η2 = 0.28)和[具体肌肉3](P < 0.01,F = 8.9,η2 = 0.89)的PRMR。在[具体肌肉4](P < 0.001,F = 9.3,η2 = 0.44)、[具体肌肉5](P < 0.05,F = 5.4,η2 = 0.31)和[具体肌肉6](P < 0.001,F = 17.4,η2 = 0.59)中,对侧刺激也显著增加了激活后抑制(PAD)。

结论

在颈段tSCS期间,通过改变刺激强度和位置可能实现一定程度的单侧运动神经元池选择性。优化这些参数可能会提高这种神经调节方法在临床患者中的疗效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6299/9952898/ea1bde46e88b/biomedicines-11-00332-g001.jpg

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