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下肢力线对自然状态下胫股关节运动学和动力学的作用。

The role of limb alignment on natural tibiofemoral kinematics and kinetics.

作者信息

Postolka Barbara, Taylor William R, Fucentese Sandro F, List Renate, Schütz Pascal

机构信息

Laboratory for Movement Biomechanics, Institute for Biomechanics, ETH Zürich, Zürich, Switzerland.

Human Movement Biomechanics Research Group, KU Leuven, Leuven, Belgium.

出版信息

Bone Joint Res. 2024 Sep 13;13(9):485-496. doi: 10.1302/2046-3758.139.BJR-2023-0162.R3.

Abstract

AIMS

This study aimed to analyze kinematics and kinetics of the tibiofemoral joint in healthy subjects with valgus, neutral, and varus limb alignment throughout multiple gait activities using dynamic videofluoroscopy.

METHODS

Five subjects with valgus, 12 with neutral, and ten with varus limb alignment were assessed during multiple complete cycles of level walking, downhill walking, and stair descent using a combination of dynamic videofluoroscopy, ground reaction force plates, and optical motion capture. Following 2D/3D registration, tibiofemoral kinematics and kinetics were compared between the three limb alignment groups.

RESULTS

No significant differences for the rotational or translational patterns between the different limb alignment groups were found for level walking, downhill walking, or stair descent. Neutral and varus aligned subjects showed a mean centre of rotation located on the medial condyle for the loaded stance phase of all three gait activities. Valgus alignment, however, resulted in a centrally located centre of rotation for level and downhill walking, but a more medial centre of rotation during stair descent. Knee adduction/abduction moments were significantly influenced by limb alignment, with an increasing knee adduction moment from valgus through neutral to varus.

CONCLUSION

Limb alignment was not reflected in the condylar kinematics, but did significantly affect the knee adduction moment. Variations in frontal plane limb alignment seem not to be a main modulator of condylar kinematics. The presented data provide insights into the influence of anatomical parameters on tibiofemoral kinematics and kinetics towards enhancing clinical decision-making and surgical restoration of natural knee joint motion and loading.

摘要

目的

本研究旨在利用动态荧光透视法分析在多种步态活动中,具有外翻、中立和内翻肢体对线的健康受试者胫股关节的运动学和动力学。

方法

采用动态荧光透视法、地面反作用力板和光学运动捕捉技术相结合的方法,对5名外翻、12名中立和10名内翻肢体对线的受试者在平路行走、下坡行走和下楼梯的多个完整周期中进行评估。在进行二维/三维配准后,比较三个肢体对线组之间的胫股关节运动学和动力学。

结果

在平路行走、下坡行走或下楼梯时,不同肢体对线组之间的旋转或平移模式没有显著差异。中立和内翻对线的受试者在所有三种步态活动的负重站立阶段,平均旋转中心位于内侧髁。然而,外翻对线在平路和下坡行走时导致旋转中心位于中央,但在下楼梯时旋转中心更偏向内侧。膝关节内收/外展力矩受肢体对线的显著影响,从外翻到中立再到内翻,膝关节内收力矩逐渐增加。

结论

髁运动学未反映肢体对线情况,但确实显著影响膝关节内收力矩。额状面肢体对线的变化似乎不是髁运动学的主要调节因素。所呈现的数据为解剖学参数对胫股关节运动学和动力学的影响提供了见解,有助于加强临床决策以及膝关节自然运动和负荷的手术恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f2f/11392572/dd0a9bb5bb4e/BJR-2023-0162.R3-galleyfig1.jpg

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