Stutzig N, Siebert T
Department of Exercise Science, Institute of Sport- and Movement Science, University of Stuttgart, Stuttgart, Germany.
Scand J Med Sci Sports. 2017 Apr;27(4):399-407. doi: 10.1111/sms.12663. Epub 2016 Feb 16.
The aim of the present study was to compare the H-reflex evoked at rest and at 20% maximal voluntary contraction (MVC) prior to and after fatiguing the lateral gastrocnemius (LG). The maximal H-reflex and M-wave were recorded in the LG, and soleus (SOL). Electrical evoked potentials were delivered to the posterior tibial nerve when muscles were inactivated and at 20% MVC. After fatigue, the H /M ratio of the fatigued LG was increased for both contraction levels (rest and 20% MVC) and remained unaltered for non-fatigued SOL. Before fatigue, the H /M ratio of SOL was enhanced at rest compared with the H /M ratio at 20% MVC. No differences were observed for LG. Fatigue of a single muscle leads to increased spinal reflex activity of the homonymous muscle. Contrary to previous recommendations in the literature, there appears to be no benefit with regard to the H-reflex amplitude in evoking electrical potentials during constant voluntary contractions at 20% MVC compared with inactivated muscles. The observed difference in SOL prior to fatigue was most likely due to hyperpolarization of the muscle fiber membrane.
本研究的目的是比较在使外侧腓肠肌(LG)疲劳之前和之后,静息状态以及最大自主收缩(MVC)20%时诱发的Hoffmann反射(H反射)。在LG和比目鱼肌(SOL)中记录最大H反射和M波。当肌肉处于静息状态和MVC 20%时,将电诱发电位施加于胫后神经。疲劳后,疲劳的LG在两种收缩水平(静息和MVC 20%)下的H/M比值均升高,而非疲劳的SOL的该比值保持不变。疲劳前,SOL在静息状态下的H/M比值高于MVC 20%时的H/M比值。LG未观察到差异。单块肌肉的疲劳会导致同名肌肉的脊髓反射活动增强。与文献中先前的建议相反,与肌肉静息时相比,在MVC 20%的持续自主收缩过程中诱发电位时,H反射波幅似乎没有优势。疲劳前在SOL中观察到的差异很可能是由于肌纤维膜的超极化所致。