Nordlund Maria M, Thorstensson Alf, Cresswell Andrew G
Department of Neuroscience, Karolinska Institutet, 114 86 Stockholm, Sweden.
J Appl Physiol (1985). 2004 Jan;96(1):218-25. doi: 10.1152/japplphysiol.00650.2003. Epub 2003 Sep 12.
This study aimed to investigate central and peripheral contributions to fatigue during repeated maximal voluntary isometric plantar flexions (MVCs). Changes in joint torque, level of activation (LOA), resting twitch amplitude (RT), electromyographic signals (EMG), and presynaptic inhibition of Ia afferents were investigated during 9 bouts of 10 MVCs. MVCs lasted for 2 s and were separated by 1 s. The interval between bouts was 10 s. Electrical stimulation was applied to the tibial nerve; at rest to evoke RTs, M waves, and two (1.5-s interval) H reflexes; with the soleus EMG at 30% of that during MVC to evoke M waves and two H reflexes; and during MVCs to measure LOA. Over the nine bouts, LOA decreased by 12.6% and RT by 16.2%. EMG root mean square during MVCs remained unchanged for the soleus and tibialis anterior muscles, but it decreased for medial gastrocnemius. Peripheral fatigue (decrease in RT) was positively correlated to LOA, whereas central fatigue (decrease in LOA) was not. Depression of both H reflexes suggests that presynaptic inhibition after the first bout was partly induced by homosynaptic postactivation depression of the Ia terminal. The H-reflex-to-M-wave ratio increased with fatigue in both passive and active states, with no change in the ratio of the second H reflex to the first, thereby indicating a decrease of presynaptic inhibition during fatigue. The results indicate that both central and peripheral mechanisms contributed to the fatigue observed during repeated MVCs and that the development of peripheral fatigue was influenced by the level of voluntary activation and initial plantar flexor torque.
本研究旨在探究在重复进行最大自主等长跖屈(MVC)过程中,中枢和外周因素对疲劳的影响。在9组每组10次的MVC过程中,研究了关节扭矩、激活水平(LOA)、静息抽搐幅度(RT)、肌电信号(EMG)以及Ia传入纤维的突触前抑制的变化。MVC持续2秒,间隔1秒。组间间隔为10秒。对胫神经施加电刺激;在静息时诱发RT、M波和两个(间隔1.5秒)H反射;在比目鱼肌EMG为MVC期间的30%时诱发M波和两个H反射;在MVC期间测量LOA。在9组实验中,LOA下降了12.6%,RT下降了16.2%。比目鱼肌和胫骨前肌在MVC期间的EMG均方根保持不变,但腓肠内侧肌的EMG均方根下降。外周疲劳(RT降低)与LOA呈正相关,而中枢疲劳(LOA降低)则不然。两个H反射的抑制表明,第一次实验后的突触前抑制部分是由Ia终末异突触后激活抑制诱导的。在被动和主动状态下,H反射与M波的比值均随疲劳增加,第二个H反射与第一个H反射的比值无变化,从而表明疲劳期间突触前抑制减弱。结果表明,中枢和外周机制均导致了重复MVC过程中观察到的疲劳,并且外周疲劳的发展受自主激活水平和初始跖屈扭矩的影响。