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运动点与神经近段束电刺激感觉运动皮层激活水平的比较。

Comparison of the activation level in the sensorimotor cortex between motor point and proximal nerve bundle electrical stimulation.

机构信息

Institute of Engineering and Medicine Interdisciplinary Studies and the State Key Laboratory for Manufacturing Systems Engineering, School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an, People's Republic of China.

Department of Rehabilitation, First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, People's Republic of China.

出版信息

J Neural Eng. 2024 Apr 5;21(2). doi: 10.1088/1741-2552/ad3850.

Abstract

Neuromuscular electrical stimulation (NMES) is widely used for motor function rehabilitation in stroke survivors. Compared with the conventional motor point (MP) stimulation, the stimulation at the proximal segment of the peripheral nerve (PN) bundles has been demonstrated to have multiple advantages. However, it is not known yet whether the PN stimulation can increase the cortical activation level, which is crucial for motor function rehabilitation.The current stimuli were delivered transcutaneously at the muscle belly of the finger flexors and the proximal segment of the median and ulnar nerves, respectively for the MP and PN stimulation. The stimulation intensity was determined to elicit the same contraction levels between the two stimulation methods in 18 healthy individuals and a stroke patient. The functional near-infrared spectroscopy and the electromyogram were recorded to compare the activation pattern of the sensorimotor regions and the target muscles.For the healthy subjects, the PN stimulation induced significantly increased concentration of the oxygenated hemoglobin in the contralateral sensorimotor areas, and enhanced the functional connectivity between brain regions compared with the MP stimulation. Meanwhile, the compound action potentials had a smaller amplitude and the H-reflex became stronger under the PN stimulation, indicating that more sensory axons were activated in the PN stimulation. For the stroke patient, the PN stimulation can elicit finger forces and induce activation of both the contralateral and ipsilateral motor cortex.. Compared with the MP stimulation, the PN stimulation can induce more cortical activation in the contralateral sensorimotor areas possibly via involving more activities in the central pathway.This study demonstrated the potential of the PN stimulation to facilitate functional recovery via increasing the cortical activation level, which may help to improve the outcome of the NMES-based rehabilitation for motor function recovery after stroke.

摘要

神经肌肉电刺激 (NMES) 广泛应用于脑卒中幸存者的运动功能康复。与传统的运动点 (MP) 刺激相比,外周神经 (PN) 束近端段的刺激已被证明具有多种优势。然而,目前尚不清楚 PN 刺激是否可以提高皮质激活水平,这对运动功能康复至关重要。目前的刺激分别通过经皮刺激手指屈肌的肌腹和正中神经及尺神经的近端段来进行 MP 和 PN 刺激。在 18 名健康个体和 1 名脑卒中患者中,确定刺激强度以在两种刺激方法之间产生相同的收缩水平。记录功能近红外光谱和肌电图以比较感觉运动区域和目标肌肉的激活模式。对于健康受试者,PN 刺激可显著增加对侧感觉运动区的氧合血红蛋白浓度,并增强大脑区域之间的功能连接,而与 MP 刺激相比。同时,PN 刺激下复合动作电位的幅度较小,H 反射增强,表明 PN 刺激中更多的感觉轴突被激活。对于脑卒中患者,PN 刺激可以诱发手指力量,并激活对侧和同侧运动皮层。与 MP 刺激相比,PN 刺激可能通过涉及中枢通路的更多活动,在对侧感觉运动区引起更多的皮质激活。这项研究表明,PN 刺激通过增加皮质激活水平促进功能恢复的潜力,这可能有助于改善基于 NMES 的脑卒中后运动功能恢复康复的结果。

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