Lee Hyun-Seob, Lee Jae-Hyun, Kim Hyeong-Soo
Department of Physical Education, Korea University, Seoul, Korea.
Department of Health and Fitness Management, Woosong University, Daejeon, Korea.
J Exerc Rehabil. 2019 Apr 26;15(2):229-234. doi: 10.12965/jer.1938054.027. eCollection 2019 Apr.
The purpose of this study was to analyze the activity of ankle muscles during normal gait by simulation method using the human musculoskeletal model. The equipment used in this study was three-dimensional motion capture system and force platform, and OpenSim was used for simulation. Collected data was scaled to Gait2392 that is the human musculoskeletal simulation model using in the OpenSim. Tibialis anterior (TA) worked as a major muscle during gait, producing a higher force than other muscles. Main muscles contributing to propulsion were gastrocnemius medial head (GMH) and soleus (SOL) with their maximum forces appear to be more than 1.5 times the body weight. GMH and SOL showed cooperation for maintaining propulsion around left foot initial contact in the gait cycle. This study has shown a difference between activation and force pattern. The peak-activation of the TA and extensor digitorum longus (EDL) was similarly shown to be around 0.8 in the initial double stance, but the peak-force produced by these muscles in the same period showed a difference with 0.4 Newton/body weight higher in TA than in EDL. We suggest that when assessing muscle contribution to gait, it would be reasonable to consider the force generated because the human movement was generated by the mechanical net force of muscles.
本研究的目的是通过使用人体肌肉骨骼模型的模拟方法,分析正常步态期间踝关节肌肉的活动情况。本研究中使用的设备是三维运动捕捉系统和测力平台,并使用OpenSim进行模拟。收集到的数据被缩放到Gait2392,这是OpenSim中使用的人体肌肉骨骼模拟模型。胫骨前肌(TA)在步态中起主要作用,产生的力量比其他肌肉更大。对推进起主要作用的肌肉是腓肠肌内侧头(GMH)和比目鱼肌(SOL),它们的最大力量似乎超过体重的1.5倍。GMH和SOL在步态周期中左脚初始接触时,在维持推进方面表现出协同作用。本研究显示了激活和力量模式之间的差异。TA和趾长伸肌(EDL)在初始双支撑期的峰值激活情况类似,均约为0.8,但这些肌肉在同一时期产生的峰值力量存在差异,TA比EDL高0.4牛顿/体重。我们建议,在评估肌肉对步态的贡献时,考虑产生的力量是合理的,因为人体运动是由肌肉的机械净力产生的。