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移动双平面 X 射线成像揭示正常行走时膝关节复合体的三维运动。

Three-dimensional motion of the knee-joint complex during normal walking revealed by mobile biplane x-ray imaging.

机构信息

Department of Mechanical Engineering, University of Melbourne, Parkville, Victoria 3010, Australia.

Department of Surgery, Epworth Health Care, University of Melbourne, Victoria 3010, Australia.

出版信息

J Orthop Res. 2019 Mar;37(3):615-630. doi: 10.1002/jor.24226. Epub 2019 Feb 27.

Abstract

Accurate knowledge of knee kinematics is important for a better understanding of normal joint function and for improving patient outcomes subsequent to joint reconstructive surgery. Limited information is available that accurately describes the relative movements of the bones at the knee in vivo, even for the most common of all activities: walking. We used a mobile X-ray imaging system to measure the three-dimensional motion of the entire knee-joint complex-femur, tibia, and patella-when humans walk over ground at their natural speeds. Data were recorded from 15 healthy individuals (9 males, 6 females; age 30.5 ± 6.2 years). The most pronounced rotational motion of the tibia was flexion-extension followed by internal-external rotation and abduction-adduction (peak-to-peak displacements: 70.7°, 9.2°, and 1.9°, respectively). Maximum anterior translation of the tibia was 6.5 mm and occurred in early swing, coinciding with peak knee flexion and peak internal rotation. The most prominent rotational motion of the patella was flexion-extension (peak-to-peak displacement: 50.5°). The tibia pivoted about the medial compartment of the tibiofemoral joint, conferring greater movements of the contact centers in the lateral compartment than the medial compartment (15.4 and 9.7 mm, respectively). Internal-external rotation, anterior-posterior translation and medial-lateral shift of the tibia as well as flexion-extension and anterior-posterior translation of the patella were each coupled to the knee flexion angle, as were movements of the contact centers at each joint. These fundamental data serve as a valuable resource for evaluating knee joint function in normal and pathological gait. The data are available in Supplementary_Material_Data.xlsx. © 2019 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res.

摘要

膝关节运动学的准确知识对于更好地理解正常关节功能以及改善关节重建手术后的患者预后非常重要。即使对于最常见的活动,如行走,也只能获得有限的能够准确描述膝关节内骨骼相对运动的信息。我们使用移动 X 射线成像系统来测量人类在自然速度下在地面行走时整个膝关节复合体(股骨、胫骨和髌骨)的三维运动。数据来自 15 名健康个体(9 名男性,6 名女性;年龄 30.5±6.2 岁)。胫骨最明显的旋转运动是屈伸,其次是内外旋转和外展内收(峰峰值位移:分别为 70.7°、9.2°和 1.9°)。胫骨最大的前向平移为 6.5mm,发生在早期摆动期,与膝关节最大屈曲和最大内旋同时发生。髌骨最明显的旋转运动是屈伸(峰峰值位移:50.5°)。胫骨围绕胫股关节的内侧间室旋转,使外侧间室的接触中心运动幅度大于内侧间室(分别为 15.4mm 和 9.7mm)。胫骨的内外旋转、前后平移和内外移位以及髌骨的屈伸和前后平移都与膝关节的屈曲角度相关,每个关节的接触中心的运动也是如此。这些基础数据可作为评估正常和病理步态下膝关节功能的有价值的资源。数据可在 Supplementary_Material_Data.xlsx 中获得。©2019 矫形研究协会。由 Wiley Periodicals, Inc. 出版。J Orthop Res.

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