Ishigaki Tomonobu, Yamanaka Masanori, Hirokawa Motoki, Tai Keita, Ezawa Yuya, Samukawa Mina, Tohyama Harukazu, Sugawara Makoto
Graduate School of Health Sciences, Hokkaido University, Japan ; Matsuda Orthopaedic Memorial Hospital, Japan.
Faculty of Health Sciences, Hokkaido University, Japan.
J Phys Ther Sci. 2014 Dec;26(12):1871-4. doi: 10.1589/jpts.26.1871. Epub 2014 Dec 25.
[Purpose] The purpose of this study was to compare the intramuscular balance ratios of the upper trapezius muscle (UT) and the lower trapezius muscle (LT), and the intermuscular balance ratios of the UT and the serratus anterior muscle (SA) among prone extension (ProExt), prone horizontal abduction with external rotation (ProHAbd), forward flexion in the side-lying position (SideFlex), side-lying external rotation (SideEr), shoulder flexion with glenohumeral horizontal abduction load (FlexBand), and shoulder flexion with glenohumeral horizontal adduction load (FlexBall) in the standing posture. [Methods] The electromyographic (EMG) activities of the UT, LT and SA were measured during the tasks. The percentage of maximum voluntary isometric contraction (%MVIC) was calculated for each muscle, and the UT/LT ratios and the UT/SA ratios were compared among the tasks. [Results] The UT/LT ratio with the FlexBand was not significantly different from those of the four exercises in the side-lying and prone postures. The UT/SA ratio with the FlexBall demonstrated appropriate balanced activity. [Conclusion] In an anti-gravity posture, we recommend the FlexBand and the FlexBall for inducing balanced UT/LT and UT/SA ratios, respectively.
[目的] 本研究旨在比较在俯卧伸展(ProExt)、俯卧外旋水平外展(ProHAbd)、侧卧位前屈(SideFlex)、侧卧位外旋(SideEr)、肩肱关节水平外展负荷下的肩屈曲(FlexBand)以及站立位肩肱关节水平内收负荷下的肩屈曲(FlexBall)过程中,斜方肌上束(UT)与斜方肌下束(LT)的肌内平衡比率,以及UT与前锯肌(SA)的肌间平衡比率。[方法] 在各项任务中测量UT、LT和SA的肌电图(EMG)活动。计算每块肌肉的最大自主等长收缩百分比(%MVIC),并比较各项任务中的UT/LT比率和UT/SA比率。[结果] FlexBand时的UT/LT比率与侧卧位和俯卧位的四项运动的UT/LT比率无显著差异。FlexBall时的UT/SA比率显示出适当的平衡活动。[结论] 在抗重力姿势下,我们分别推荐FlexBand和FlexBall来诱导UT/LT和UT/SA比率达到平衡。