Institute for Human Movement and Medical Sciences, Niigata University of Health and Welfare, 1398 Shimami-cho, Kita-ku, Niigata City, Niigata, 950-3198, Japan.
Department of Rehabilitation, Oguma Orthopedics Clinic, 5-8-9 Koshin, Nishi-ku, Niigata City, Niigata, 950-2023, Japan.
Biomed Eng Online. 2018 Nov 29;17(1):177. doi: 10.1186/s12938-018-0610-5.
Sit-to-stand movements are a necessary part of daily life, and excessive mechanical stress on the articular cartilage has been reported to encourage the progression of osteoarthritis. Although a change in hip joint angle at seat-off may affect hip joint contact force during a sit-to-stand movement, the effect is unclear. This study aimed to examine the effect of the hip joint angle at seat-off on the hip joint contact force during a sit-to-stand movement by using a computer simulation.
A musculoskeletal model was created for the computer simulation, and eight muscles were attached to each lower limb. Various sit-to-stand movements were generated using parameters (e.g., seat height and time from seat-off to standing posture) reported by previous studies. The hip joint contact force for each sit-to-stand movement was calculated. Furthermore, the effect of the hip joint angle at seat-off on the hip joint contact force during the sit-to-stand movement was examined. In this study, as the changes to the musculoskeletal model parameters affect the hip joint contact force, a sensitivity analysis was conducted.
The hip joint contact force during the sit-to-stand movement increased approximately linearly as the hip flexion angle at the seat-off increased. Moreover, the normal sit-to-stand movement and the sit-to-stand movement yielding a minimum hip joint contact force were approximately equivalent. The effect of the changes to the musculoskeletal model parameters on the main findings of this study was minimal. Thus, the main findings are robust and may help prevent the progression of hip osteoarthritis by decreasing mechanical stress, which will be explored in future studies.
坐站运动是日常生活的必要组成部分,关节软骨承受过多的机械压力会促进骨关节炎的发展。虽然在坐下时髋关节角度的变化可能会影响坐站运动中的髋关节接触力,但这种影响尚不清楚。本研究旨在通过计算机模拟来研究坐下时髋关节角度对坐站运动中髋关节接触力的影响。
创建了一个用于计算机模拟的肌肉骨骼模型,并在每条下肢上附着了 8 块肌肉。使用之前研究中报道的参数(例如,座椅高度和从坐下到站立姿势的时间)生成各种坐站运动。计算了每次坐站运动的髋关节接触力。此外,还研究了坐下时髋关节角度对坐站运动中髋关节接触力的影响。在这项研究中,由于肌肉骨骼模型参数的变化会影响髋关节接触力,因此进行了敏感性分析。
随着坐下时髋关节屈曲角度的增加,坐站运动中的髋关节接触力大致呈线性增加。此外,正常的坐站运动和产生最小髋关节接触力的坐站运动大致相当。肌肉骨骼模型参数变化对本研究主要发现的影响很小。因此,主要发现是稳健的,可能有助于通过减少机械应力来预防髋关节骨关节炎的进展,这将在未来的研究中进行探索。