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阳极经颅直流电刺激可延长肘关节屈肌次最大收缩至任务失败的时间,而不改变皮质脊髓兴奋性。

Anodal transcranial direct current stimulation enhances time to task failure of a submaximal contraction of elbow flexors without changing corticospinal excitability.

作者信息

Abdelmoula A, Baudry S, Duchateau J

机构信息

Université libre de Bruxelles (ULB), Laboratory of Applied Biology and Neurophysiology, ULB Neuroscience Institute, 808 route de Lennik, 1070 Brussels, Belgium.

Université libre de Bruxelles (ULB), Laboratory of Applied Biology and Neurophysiology, ULB Neuroscience Institute, 808 route de Lennik, 1070 Brussels, Belgium.

出版信息

Neuroscience. 2016 May 13;322:94-103. doi: 10.1016/j.neuroscience.2016.02.025. Epub 2016 Feb 15.

Abstract

BACKGROUND

The increase in corticospinal excitability in response to anodal transcranial direct current stimulation (a-tDCS) may contribute to decrease neuromuscular fatigability.

OBJECTIVE

This study investigated the effects of a-tDCS on neuromuscular fatigability in relation with changes in corticospinal excitability.

METHODS

Eleven adults participated in two experimental sessions consisting of two submaximal voluntary contractions (35% maximal torque) performed to failure, one hour apart with the right elbow flexor muscles. Sham stimulation (90 s) and a-tDCS (10 min) were applied in two separate sessions 10 min prior to the second fatiguing contraction. Corticospinal excitability was assessed by recording motor-evoked potential (MEP), elicited by transcranial magnetic stimulation (TMS) of the motor cortex, in biceps brachii, brachioradialis and triceps brachii during the first (C1) and second (C2) fatiguing contractions. The silent period (SP) in electromyogramme (EMG) that followed MEP was also recorded for biceps brachii and brachioradialis.

RESULTS

Time to failure was briefer for C2 than C1 in both experimental sessions, but the decrease was less pronounced after a-tDCS (-14.4±12.7%) than sham stimulation (-23.3±11.9%; p=0.04). MEP amplitude (+9.7±4.0%) and SP duration (+22.5±12.8%) in biceps brachii and brachioradialis increased significantly (p<0.05) during C1 and C2, but to a similar extent in both sessions (p>0.05). A similar result was observed for MEP amplitude in triceps brachii. No association was found between changes in time to task failure of C2 and corticospinal excitability.

CONCLUSION

The reduced neuromuscular fatigability induced by a-tDCS does not rely on changes in the excitability of the corticospinal pathway of both agonist and antagonist muscles.

摘要

背景

阳极经颅直流电刺激(a-tDCS)引起的皮质脊髓兴奋性增加可能有助于降低神经肌肉疲劳性。

目的

本研究探讨a-tDCS对神经肌肉疲劳性的影响及其与皮质脊髓兴奋性变化的关系。

方法

11名成年人参与了两个实验环节,对右侧肘屈肌进行两次次最大自主收缩(最大扭矩的35%)直至力竭,两次收缩间隔1小时。在第二次疲劳性收缩前10分钟,分别进行假刺激(90秒)和a-tDCS(10分钟)。通过记录运动皮层经颅磁刺激(TMS)诱发的运动诱发电位(MEP)来评估皮质脊髓兴奋性,记录第一次(C1)和第二次(C2)疲劳性收缩期间肱二头肌、肱桡肌和肱三头肌的MEP。同时记录肱二头肌和肱桡肌在MEP之后的肌电图(EMG)静息期(SP)。

结果

在两个实验环节中,C2的力竭时间均比C1短,但a-tDCS后力竭时间的减少(-14.4±12.7%)比假刺激(-23.3±11.9%;p=0.04)更不明显。在C1和C2期间,肱二头肌和肱桡肌的MEP波幅(+9.7±4.0%)和SP持续时间(+22.5±12.8%)显著增加(p<0.05),但两个环节的增加程度相似(p>0.05)。肱三头肌的MEP波幅也得到了类似结果。未发现C2任务失败时间的变化与皮质脊髓兴奋性之间存在关联。

结论

a-tDCS诱导的神经肌肉疲劳性降低并不依赖于主动肌和拮抗肌皮质脊髓通路兴奋性的变化。

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