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高风险动态任务期间的膝关节接触力:90°方向改变和减速运动

Knee Joint Contact Forces during High-Risk Dynamic Tasks: 90° Change of Direction and Deceleration Movements.

作者信息

Cassiolas Giorgio, Di Paolo Stefano, Marchiori Gregorio, Grassi Alberto, Della Villa Francesco, Bragonzoni Laura, Visani Andrea, Giavaresi Gianluca, Fini Milena, Zaffagnini Stefano, Lopomo Nicola Francesco

机构信息

Surgical Sciences and Technologies, IRCCS Istituto Ortopedico Rizzoli, 40136 Bologna, Italy.

Department for Life Quality Studies, University of Bologna, 40136 Bologna, Italy.

出版信息

Bioengineering (Basel). 2023 Jan 31;10(2):179. doi: 10.3390/bioengineering10020179.

Abstract

Pivoting sports expose athletes to a high risk of knee injuries, mainly due to mechanical overloading of the joint which shatters overall tissue integrity. The present study explored the magnitude of tibiofemoral contact forces (TFCF) in high-risk dynamic tasks. A novel musculoskeletal model with modifiable frontal plane knee alignment was developed to estimate the total, medial, and lateral TFCF developed during vigorous activities. Thirty-one competitive soccer players performing deceleration and 90° sidestepping tasks were assessed via 3D motion analysis by using a marker-based optoelectronic system and TFCF were assessed via OpenSim software. Statistical parametric mapping was used to investigate the effect of frontal plane alignment, compartment laterality, and varus-valgus genu on TFCF. Further, in consideration of specific risk factors, sex influence was also assessed. A strong correlation (R = 0.71 ÷ 0.98, < 0.001) was found between modification of compartmental forces and changes in frontal plane alignment. Medial and lateral TFCF were similar throughout most of the tasks with the exception of the initial phase, where the lateral compartment had to withstand to higher loadings (1.5 ÷ 3 BW higher, = 0.010). Significant sex differences emerged in the late phase of the deceleration task. A comprehensive view of factors influencing the mediolateral distribution of TFCF would benefit knee injury prevention and rehabilitation in sport activities.

摘要

旋转类运动使运动员面临较高的膝盖受伤风险,主要是由于关节的机械性过载破坏了整体组织完整性。本研究探讨了高风险动态任务中胫股接触力(TFCF)的大小。开发了一种具有可修改额状面膝关节对线的新型肌肉骨骼模型,以估计剧烈活动期间产生的总TFCF、内侧TFCF和外侧TFCF。通过使用基于标记的光电系统进行三维运动分析,对31名进行减速和90°侧步任务的竞技足球运动员进行了评估,并通过OpenSim软件评估了TFCF。使用统计参数映射来研究额状面对线、关节间侧别和膝内翻-膝外翻对TFCF的影响。此外,考虑到特定风险因素,还评估了性别影响。发现关节间力的改变与额状面对线的变化之间存在强相关性(R = 0.71÷0.98,<0.001)。除初始阶段外,在大多数任务中内侧和外侧TFCF相似,在初始阶段外侧关节间必须承受更高的负荷(高1.5÷3倍体重,= 0.010)。在减速任务的后期出现了显著的性别差异。全面了解影响TFCF内外侧分布的因素将有助于运动活动中的膝关节损伤预防和康复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a977/9952676/722282e87662/bioengineering-10-00179-g001.jpg

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