Kinugasa Ryuta, Akima Hiroshi
Graduate School of Health and Sport Science, Nippon Sport Science University, Tokyo, JAPAN.
Med Sci Sports Exerc. 2005 Apr;37(4):593-8. doi: 10.1249/01.mss.0000159026.99792.76.
The aim of the present study was to clarify the neuromuscular activation patterns among individual triceps surae (TS) muscles during a repetitive plantarflexion using muscle functional magnetic resonance imaging (MRI) (mfMRI) and electromyography (EMG).
Six healthy men participated in this study, performing 5 sets of 10 repetitions of a calf-raise exercise bilaterally, unilaterally, and unilaterally with an additional 15% of body-weight load. The transverse relaxation times (T2) in the medial gastrocnemius (MG), lateral gastrocnemius (LG), and soleus (SOL) muscles were measured from mfMR images obtained with the subject at rest and immediately after exercise; integrated EMG (iEMG) activity was recorded from the same muscles during exercise using surface electrodes.
There was remarkable correspondence between the changes in T2 values and iEMG activity under the three different workloads for individual TS muscles. In addition, changes in T2 value that occurred as a function of increasing exercise loads were linearly correlated with iEMG activity in the MG (r=0.58, P<0.05) and SOL (r=0.63, P<0.01), but not in the LG.
These results suggest that 1) mfMRI signals and iEMG activity correlate with workload in individual TS muscles, 2) mfMRI signals are associated with neuromuscular activity reflected in iEMG in the MG and SOL but not in the LG, and 3) these relationships are associated with neuromuscular and metabolic factors during exercise.
本研究旨在利用肌肉功能磁共振成像(mfMRI)和肌电图(EMG)阐明重复跖屈过程中比目鱼肌(TS)各肌肉间的神经肌肉激活模式。
六名健康男性参与本研究,双侧、单侧以及单侧增加15%体重负荷进行5组每组10次的提踵练习。在受试者休息时和运动后即刻获取的mfMR图像上测量腓肠肌内侧头(MG)、腓肠肌外侧头(LG)和比目鱼肌(SOL)的横向弛豫时间(T2);运动期间使用表面电极记录同一肌肉的积分肌电图(iEMG)活动。
在三种不同工作负荷下,TS各肌肉的T2值变化与iEMG活动之间存在显著对应关系。此外,随着运动负荷增加而出现的T2值变化与MG(r = 0.58,P < 0.05)和SOL(r = 0.63,P < 0.01)的iEMG活动呈线性相关,但与LG无关。
这些结果表明:1)mfMRI信号和iEMG活动与TS各肌肉的工作负荷相关;2)mfMRI信号与MG和SOL中iEMG反映的神经肌肉活动相关,而与LG无关;3)这些关系与运动期间的神经肌肉和代谢因素有关。