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Ligament fibre recruitment at the human ankle joint complex in passive flexion

机译:韧带纤维在被动屈曲中在人类踝关节复合体处的募集

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Knowledge of ligament fibre recruitment at the human ankle joint complex is a fundamental prerequisite for analysing mobility and stability. Previous experimental and modelling studies have shown that ankle motion must be guided by fibres within the calcaneofibular and tibiocalcaneal ligaments, which remain approximately isometric during passive flexion. The purpose of this study was to identify these fibres.Three below-knee amputated specimens were analysed during passive flexion with combined radiostereometry for bone pose estimation and 3D digitisation for ligament attachment area identification. A procedure based on singular value decomposition enabled matching bone pose with digitised data and therefore reconstructing position in space of ligament attachment areas in each joint position. Eleven ordered fibres, connecting corresponding points on origin and insertion curves, were modelled for each of the following ligaments: posterior talofibular, calcaneofibular, anterior talofibular, posterior tibiotalar, tibiocalcaneal, and anterior tibiotalar.The measured changes in length for the ligament fibres revealed patterns of tightening and slackening. The most anterior fibre of the calcaneofibular and the medio-anterior fibre of the tibiocalcaneal ligament exhibited the most isometric behaviour, as well as the most posterior fibre of the anterior talofibular ligament. Fibres within the calcaneofibular ligament remain parallel in the transverse plane, while those within the tibiocalcaneal ligament become almost parallel in joint neutral position. For both these ligaments, fibres maintain their relative inclination in the sagittal plane throughout the passive flexion range.The observed significant change in both shape and orientation of the ankle ligaments suggest that this knowledge is fundamental for future mechanical analysis of their response to external forces. (C) 2004 Elsevier Ltd. All rights reserved.
机译:韧带纤维在人体踝关节复合体募集的知识是分析活动性和稳定性的基本前提。先前的实验和模型研究表明,踝关节运动必须由跟腓韧带和胫骨跟韧带内的纤维引导,在被动屈曲过程中,纤维保持近似等轴测。这项研究的目的是识别这些纤维。在被动屈曲过程中对三个膝下截肢标本进行了分析,结合放射线立体测量法进行了骨姿势估计,并通过3D数字化对韧带附着区域进行了鉴定。基于奇异值分解的过程可以使骨骼姿态与数字化数据匹配,从而在每个关节位置重建韧带附着区域空间中的位置。为以下每条韧带建模了11条有序纤维,连接了起点和插入曲线上的对应点:后距腓肠肌,跟骨,前胫腓肌,胫腓骨,胫腓骨和胫腓骨的长度变化。拧紧和松动。胫腓骨韧带的最前部纤维和胫骨跟骨韧带的中前部纤维表现出最大的等距行为,以及前腓骨韧带的最后部纤维。跟腓韧带内的纤维在横切面上保持平行,而胫跟韧带内的纤维在关节中立位置变得几乎平行。对于这两种韧带,纤维在整个被动屈曲范围内均保持在矢状面的相对倾角。观察到的踝韧带形状和方向的显着变化表明,此知识对于将来对其外力反应的力学分析至关重要。 (C)2004 Elsevier Ltd.保留所有权利。

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