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陈氏太极拳典型下肢动作对膝关节的生物力学影响。

Biomechanical effects of typical lower limb movements of Chen-style Tai Chi on knee joint.

机构信息

Key Laboratory for Biomechanics and Mechanobiology (Beihang University) of Ministry of Education, Beijing Advanced Innovation Center for Biomedical Engineering, School of Biological Science and Medical Engineering, Beihang University, No.37, Xueyuan Road, Haidian District, Beijing, 100083, People's Republic of China.

出版信息

Med Biol Eng Comput. 2023 Nov;61(11):3087-3101. doi: 10.1007/s11517-023-02906-y. Epub 2023 Aug 25.

Abstract

The load and stress distribution on cartilage and meniscus of the knee joint in typical lower limb movements of Chen-style Tai Chi (TC) and deep squat (DS) were analyzed using finite element (FE) analysis. The loadings for this analysis consisted of muscle forces and ground reaction force (GRF), which were calculated through the inverse dynamic approach based on kinematics and force plate measurements obtained from motion capture experiments. Thirteen experienced practitioners performed four typical TC movements, namely, single whip (SW), brush knee and twist step (BKTS), stretch down (SD), and part the wild horse's mane (PWHM), which exhibit lower posture and greater lower limb force compared to other TC styles. The results indicated that TC required greater lower limb muscle strength than DS, resulting in greater knee joint forces. The stress on the medial cartilage in SW and BKTS fell within a range conductive to maintaining the balance between anabolism and catabolism of cartilage matrix. This was due to the fact that SW and BKTS reduce the medial to total tibiofemoral contact force ratios through knee abduction, which may effectively alleviate mild medial knee osteoarthritis (KOA). However, the greater medial contact force ratios observed in SD and PWHM resulted in great contact stresses that may aggravate the pain of patients with KOA. To mitigate these effects, practitioners should consider elevating their postures appropriately to reduce knee flexion angles, especially during the single-leg support phase. This adjustment can decrease the required muscle strength, load and stress on the knee joint.

摘要

采用有限元分析方法分析了陈氏太极拳(TC)和深蹲(DS)典型下肢运动中膝关节软骨和半月板的负荷和应力分布。该分析的载荷包括肌肉力和地面反作用力(GRF),这些力是通过基于运动学和从运动捕捉实验中获得的力板测量的逆动力学方法计算得出的。13 名经验丰富的从业者进行了四个典型的 TC 动作,即单鞭(SW)、抱膝拗步和转身蹬脚(BKTS)、海底针(SD)和野马分鬃(PWHM),与其他 TC 风格相比,这些动作的姿势更低,下肢力量更大。结果表明,TC 比 DS 需要更大的下肢肌肉力量,从而导致膝关节的力更大。SW 和 BKTS 中内侧软骨的应力处于有利于维持软骨基质合成代谢和分解代谢平衡的范围内。这是因为 SW 和 BKTS 通过膝关节外展降低了内侧到总的胫股接触力比,这可能有效地缓解轻度内侧膝骨关节炎(KOA)。然而,在 SD 和 PWHM 中观察到的更大的内侧接触力比导致了更大的接触应力,这可能会加重 KOA 患者的疼痛。为了减轻这些影响,从业者应考虑适当提高姿势,以减少膝关节的屈曲角度,特别是在单腿支撑阶段。这种调整可以降低膝关节所需的肌肉力量、负荷和应力。

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