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胫距关节几何轴位置与方向的体内评估

In Vivo Evaluation of the Position and Orientation of the Geometric Axis of the Tibiotalar Joint.

作者信息

Yu Jian, Cao Shengxuan, Wang Chen, Zhao Dahang, Wang Shuo, Zhang Chao, Huang Jiazhang, Wang Xu, Ma Xin

机构信息

Department of Orthopedics, Huashan Hospital, Fudan University, Shanghai, China.

Department of Orthopedics, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

出版信息

Appl Bionics Biomech. 2023 Jan 18;2023:2763099. doi: 10.1155/2023/2763099. eCollection 2023.

Abstract

BACKGROUND

Fitting the surface morphology of the talar trochlea is one of the common methods to define the geometric axis of the tibiotalar joint (GATJ). However, the in vivo motion of such axis during gait has not been fully investigated.

METHODS

The ankle kinematic data of fifteen volunteers were collected by a dual fluoroscopic imaging system with a model-image registration method. The GATJ was defined by sphere-fitting the medial or lateral part of the trochlear surface of the talus. The position and orientation of this axis during gait were measured. To verify this axis, the distances of the feature points of the talus to the GATJ during gait were also measured.

RESULTS

There was no statistically significant difference in the distances of feature points of the talus to the GATJ among the seven key poses of the gait cycle. And the position and orientation of the GATJ during gait also showed no statistically significant difference.

CONCLUSION

The GATJ is the axis about which the talus rotated. And it is one fixed axis during gait. The current finding may help the design of the talar component for total ankle replacement based on the surface morphology of the talar trochlea.

摘要

背景

拟合距骨滑车的表面形态是定义胫距关节几何轴(GATJ)的常用方法之一。然而,该轴在步态中的体内运动尚未得到充分研究。

方法

通过双荧光透视成像系统和模型-图像配准方法收集15名志愿者的踝关节运动学数据。通过对距骨滑车表面的内侧或外侧部分进行球面拟合来定义GATJ。测量该轴在步态中的位置和方向。为了验证该轴,还测量了距骨特征点在步态中到GATJ的距离。

结果

在步态周期的七个关键姿势中,距骨特征点到GATJ的距离无统计学显著差异。并且GATJ在步态中的位置和方向也无统计学显著差异。

结论

GATJ是距骨旋转的轴。并且它在步态中是一个固定轴。目前的研究结果可能有助于基于距骨滑车表面形态设计全踝关节置换的距骨组件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91d2/9876701/6f5429ee6620/ABB2023-2763099.001.jpg

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