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双侧膝关节伸肌疲劳调节非疲劳优势侧肘关节屈肌的皮质脊髓通路的力量和反应性。

Bilateral Knee Extensor Fatigue Modulates Force and Responsiveness of the Corticospinal Pathway in the Non-fatigued, Dominant Elbow Flexors.

作者信息

Šambaher Nemanja, Aboodarda Saied Jalal, Behm David George

机构信息

School of Human Kinetics and Recreation, Memorial University of Newfoundland, St. John's NL, Canada.

出版信息

Front Hum Neurosci. 2016 Feb 1;10:18. doi: 10.3389/fnhum.2016.00018. eCollection 2016.

Abstract

Exercise-induced fatigue affects muscle performance and modulates corticospinal excitability in non-exercised muscles. The purpose of this study was to investigate the effect of bilateral knee extensor fatigue on dominant elbow flexor (EF) maximal voluntary force production and corticospinal excitability. Transcranial magnetic, transmastoid electrical and brachial plexus electrical stimulation (BPES) were used to investigate corticospinal, spinal, and muscle excitability of the dominant EF before and after a bilateral knee extensor fatiguing protocol or time matched rest period (control). For both sessions three stimuli were delivered every 1.5 s during the three pre-test time points and during the 1st, 3rd, 6th, 9th and 12th post-test 5 s EF isometric maximal voluntary contractions (MVC). In both conditions, overall, EF MVC force (p < 0.001) decreased progressively from repetition #1 to #12 during the post-test MVC protocol. EF MVC force (p < 0.001, ES = 0.9, Δ10.3%) decrements were more pronounced in the knee extensor fatigue intervention condition. In addition, there were no significant differences between conditions for biceps brachii electromyographic (EMG) activity (p = 0.43), motor evoked potentials (MEPs) amplitude (p = 0.908) or MEP silent period (SP; p = 0.776). However, the fatigue condition exhibited a lower MEP/cervicomedullary MEP (CMEP) ratio (p = 0.042, ES = 2.5, Δ25%) and a trend toward higher CMEP values (p = 0.08, ES = 0.5, Δ20.4%). These findings suggest that bilateral knee extensor fatigue can impair performance and modulate corticospinal excitability of the EF.

摘要

运动诱导的疲劳会影响肌肉性能,并调节未运动肌肉的皮质脊髓兴奋性。本研究的目的是调查双侧膝关节伸肌疲劳对优势侧肘屈肌(EF)最大自主力量产生和皮质脊髓兴奋性的影响。采用经颅磁刺激、经乳突电刺激和臂丛神经电刺激(BPES)来研究双侧膝关节伸肌疲劳方案或时间匹配的休息期(对照组)前后优势侧EF的皮质脊髓、脊髓和肌肉兴奋性。在两个试验阶段中,在三个测试前时间点以及测试后第1、3、6、9和12次5秒EF等长最大自主收缩(MVC)期间,每隔1.5秒施加三次刺激。在两种情况下,总体而言,在测试后MVC方案期间,EF MVC力量(p < 0.001)从第1次重复到第12次逐渐下降。在膝关节伸肌疲劳干预条件下,EF MVC力量的下降(p < 0.001,ES = 0.9,Δ10.3%)更为明显。此外,肱二头肌肌电图(EMG)活动(p = 0.43)、运动诱发电位(MEP)幅度(p = 0.908)或MEP静息期(SP;p = 0.776)在两种条件之间没有显著差异。然而,疲劳条件下的MEP/颈髓MEP(CMEP)比值较低(p = 0.042,ES = 2.5,Δ25%),且CMEP值有升高趋势(p = 0.08,ES = 0.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4000/4740948/039797e08e37/fnhum-10-00018-g0001.jpg

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