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优化单腿跳落地时的整体运动学,以减少外展/内收和内旋膝关节力矩峰值:对前交叉韧带损伤风险的影响。

Optimizing Whole-Body Kinematics During Single-Leg Jump Landing to Reduce Peak Abduction/Adduction and Internal Rotation Knee Moments: Implications for Anterior Cruciate Ligament Injury Risk.

机构信息

The University of Tennessee.

Nanyang Technological University.

出版信息

J Appl Biomech. 2021 Oct 1;37(5):432-439. doi: 10.1123/jab.2020-0407. Epub 2021 Sep 9.

DOI:10.1123/jab.2020-0407
PMID:34504045
Abstract

Knee abduction/adduction moment and knee internal rotation moment are known surrogate measures of anterior cruciate ligament (ACL) load during tasks like sidestepping and single-leg landing. Previous experimental literature has shown that a variety of kinematic strategies are associated or correlated with ACL injury risk; however, the optimal kinematic strategies needed to reduce peak knee moments and ACL injury are not well understood. To understand the complex, multifaceted kinematic factors underpinning ACL injury risk and to optimize kinematics to prevent the ACL injury, a musculoskeletal modeling and simulation experimental design was used. A 14-segment, 37-degree-of-freedom, dynamically consistent skeletal model driven by force/torque actuators was used to simulate whole-body single-leg jump landing kinematics. Using the residual reduction algorithm in OpenSim, whole-body kinematics were optimized to reduce the peak knee abduction/adduction and internal/external rotation moments simultaneously. This optimization was repeated across 30 single-leg jump landing trials from 10 participants. The general optimal kinematic strategy was to bring the knee to a more neutral alignment in the transverse plane and frontal plane (featured by reduced hip adduction angle and increased knee adduction angle). This optimized whole-body kinematic strategy significantly reduced the peak knee abduction/adduction and internal rotation moments, transferring most of the knee load to the hip.

摘要

膝关节外展/内收力矩和膝关节内旋力矩是前交叉韧带(ACL)在侧步和单腿着陆等任务中负荷的已知替代测量指标。先前的实验文献表明,各种运动学策略与 ACL 损伤风险相关或相关;然而,降低峰值膝关节力矩和 ACL 损伤所需的最佳运动学策略还不是很清楚。为了理解 ACL 损伤风险背后复杂的、多方面的运动学因素,并优化运动学以预防 ACL 损伤,使用了肌肉骨骼建模和模拟实验设计。使用由力/扭矩执行器驱动的 14 节、37 自由度、动态一致的骨骼模型来模拟全身单腿跳跃着陆运动学。使用 OpenSim 中的残差减少算法,优化全身运动学以同时降低峰值膝关节外展/内收和内/外旋转力矩。这一优化在来自 10 名参与者的 30 个单腿跳跃着陆试验中重复进行。一般的最佳运动学策略是使膝关节在横平面和额状面达到更中立的对齐(以减少髋关节内收角和增加膝关节内收角为特征)。这种优化的全身运动学策略显著降低了峰值膝关节外展/内收和内旋力矩,将大部分膝关节负荷转移到髋关节。

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