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距骨大小和形状对距小腿关节跳跃运动学的影响。

The influence of talus size and shape on talocrural hopping kinematics.

作者信息

Behling Anja-Verena, Kelly Luke, Welte Lauren, Rainbow Michael J

机构信息

School of Human Movement and Nutrition Science, The University of Queensland, Brisbane, Australia.

Department of Mechanical and Materials Engineering, Queen's University, Kingston, Canada.

出版信息

R Soc Open Sci. 2024 Oct 9;11(10):231997. doi: 10.1098/rsos.231997. eCollection 2024 Oct.

Abstract

Talus morphology (shape and size) plays a pivotal role in talocrural joint function. Despite its importance, the relationship between talus morphology, particularly the talar dome, and dynamic, talocrural function is poorly understood. Understanding these form-function relationships in a healthy cohort is essential for advancing patient-specific treatments aimed at restoring function. Nine participants (five females) hopped on one leg while biplanar videoradiography and ground reaction forces were simultaneously collected. Three-dimensional bone models were created from computed tomography scans. Helical axes of motion were calculated for the talus relative to the tibia (rotation axes), and a cylinder was fitted through the talar dome (morphological axis). Bland-Altman plots and spatial angles were used to examine the level of agreement between the rotation and morphological axes. A shape model of 36 (15 females) participants was established, and a cylinder fit was morphed through the range of ±3 standard deviations. The rotation and morphological axes largely agree regarding their orientation and location during hopping. The morphological axes were consistently oriented more anteriorly during landing than the rotation axes. Some shape components affect talar dome orientation and curvature independent of size. This suggests that besides bone size, the shape of the talar dome might influence the movement pattern during locomotion. Our findings may further inform talocrural joint arthroplasty design.

摘要

距骨形态(形状和大小)在踝关节功能中起着关键作用。尽管其很重要,但距骨形态,尤其是距骨穹顶,与动态踝关节功能之间的关系却鲜为人知。了解健康人群中的这些形态 - 功能关系对于推进旨在恢复功能的个性化治疗至关重要。九名参与者(五名女性)单腿跳跃时,同时收集双平面视频X线摄影和地面反作用力。通过计算机断层扫描创建三维骨骼模型。计算距骨相对于胫骨的螺旋运动轴(旋转轴),并通过距骨穹顶拟合一个圆柱体(形态轴)。使用布兰德 - 奥特曼图和空间角度来检查旋转轴和形态轴之间的一致性水平。建立了36名(15名女性)参与者的形状模型,并在±3个标准差范围内对拟合的圆柱体进行变形。在跳跃过程中,旋转轴和形态轴在方向和位置上基本一致。在着地时,形态轴始终比旋转轴更靠前。一些形状成分会独立于大小影响距骨穹顶的方向和曲率。这表明除了骨骼大小外,距骨穹顶的形状可能会影响运动过程中的运动模式。我们的研究结果可能会为踝关节置换术的设计提供进一步的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3542/11461066/2015b0e6a580/rsos.231997.f001.jpg

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