Tanino Yoshitsugu, Yoshida Takaki, Yamazaki Wataru, Fukumoto Yuki, Nakao Tetsuya, Suzuki Toshiaki
Clinical Physical Therapy Laboratory, Kansai University of Health Sciences, 2-11-1Wakaba, Kumatori, Sennan, Osaka 590-0482, Japan.
J Funct Morphol Kinesiol. 2020 Dec 18;5(4):98. doi: 10.3390/jfmk5040098.
The distal part of the vastus medialis (VM) (VM obliquus: VMO) muscle acts as the medial stabilizer of the patella. However, it has been known to facilitate VMO contraction during training of the quadriceps femoris muscle in knee joint rehabilitation. This study aimed to examine the contribution degree of VMO as a knee joint extension torque generator. Sixteen healthy male volunteers participated in this study. Electrical muscle stimulation (EMS) was performed on VMO at 60° knee angle for 20 min to induce muscle fatigue. Knee extension twitch torques (TT) at 90° and 30° knee angle evoked by femoral nerve stimulation were measured before and after EMS. Although each TT at 90° and 30° knee angle significantly decreased after EMS, the decreased TT rate in both joint angles showed no significant difference. Our results show that VMO might contribute to the generation of the knee joint torque at the same level in the range from flexion to extension. Therefore, it was suggested that the facilitating the neural drive for VMO is important during the quadriceps femoris muscle strengthening exercise.
股内侧肌(VM)的远端部分(股内侧斜肌:VMO)起着髌骨内侧稳定器的作用。然而,已知在膝关节康复训练股四头肌期间,它有助于VMO收缩。本研究旨在检查VMO作为膝关节伸展扭矩产生器的贡献程度。16名健康男性志愿者参与了本研究。在膝关节角度为60°时对VMO进行20分钟的肌肉电刺激(EMS)以诱导肌肉疲劳。在EMS前后测量由股神经刺激诱发的膝关节角度为90°和30°时的膝关节伸展抽搐扭矩(TT)。尽管在EMS后膝关节角度为90°和30°时的每个TT均显著降低,但两个关节角度的TT降低率均无显著差异。我们的结果表明,VMO可能在从屈曲到伸展的范围内以相同水平对膝关节扭矩的产生做出贡献。因此,建议在股四头肌强化运动期间促进对VMO的神经驱动很重要。