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在侧步切入过程中,肌肉对胫骨股骨内外侧压缩负荷的贡献。

Muscle contributions to medial and lateral tibiofemoral compressive loads during sidestep cutting.

机构信息

School of Behavioural and Health Sciences, Australian Catholic University, Melbourne, Australia.

Department of Physiotherapy, Centre for Health, Exercise and Sports Medicine, The University of Melbourne, Melbourne, Australia.

出版信息

J Biomech. 2020 Mar 5;101:109641. doi: 10.1016/j.jbiomech.2020.109641. Epub 2020 Jan 16.

Abstract

The tibiofemoral compressive forces experienced during functional activities are believed to be important for maintaining tibiofemoral stability. Previous studies have shown that both knee-spanning and non-knee-spanning muscles contribute to tibiofemoral joint compressive forces during walking. However, healthy individuals typically engage in more vigorous activities (e.g. jumping and cutting) that provide greater challenges to tibiofemoral stability. Despite this, no previous studies have investigated how both knee-spanning and non-knee-spanning muscles contribute to tibiofemoral compressive loading during such tasks. The present study investigated how muscles contributed to the medial and lateral compartment tibiofemoral compressive forces during sidestep cutting. Three-dimensional marker trajectories, ground reaction forces and muscle electromyographic signals were collected from eight healthy males whilst they completed unanticipated sidestep cutting. OpenSim was used to perform musculoskeletal simulations to compute the contribution of each lower-limb muscle to compressive loading of each compartment of the knee. The greatest contributors to medial compartment loading were the vasti, gluteus maximus and medius, and the medial gastrocnemius. The greatest contributors to lateral compartment loading were the vasti, adductors, medial and lateral gastrocnemius, and the soleus. The soleus displayed the greatest potential for unloading the medial compartment, whereas the gluteus maximus and medius displayed the greatest potential for unloading the lateral compartment. These findings may help to inform interventions aiming to modulate compressive loading at the knee.

摘要

在功能活动中,胫骨股骨所承受的压缩力被认为对维持胫骨股骨稳定性很重要。先前的研究表明,在行走过程中,既包括跨膝关节肌肉,也包括非跨膝关节肌肉,都会对胫骨股骨关节的压缩力做出贡献。然而,健康个体通常会参与更剧烈的活动(例如跳跃和变向),这些活动对胫骨股骨稳定性提出了更大的挑战。尽管如此,以前的研究尚未探讨在这些任务中,跨膝关节和非跨膝关节肌肉如何共同作用于胫骨股骨的压缩负荷。本研究调查了在侧步急停过程中,肌肉如何对胫骨股骨内侧和外侧间室的压缩力做出贡献。当 8 名健康男性完成意外的侧步急停时,我们收集了他们的三维标记轨迹、地面反作用力和肌肉肌电图信号。我们使用 OpenSim 进行肌肉骨骼模拟,以计算每个下肢肌肉对膝关节每个间室的压缩负荷的贡献。对内侧间室负荷贡献最大的肌肉是股四头肌、臀大肌和臀中肌以及内侧腓肠肌。对外侧间室负荷贡献最大的肌肉是股四头肌、内收肌、内侧和外侧腓肠肌以及比目鱼肌。比目鱼肌对内侧间室的卸荷能力最强,而臀大肌和臀中肌对外侧间室的卸荷能力最强。这些发现可能有助于为旨在调节膝关节压缩负荷的干预措施提供信息。

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