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步态力学影响健康的软骨形态和膝关节骨关节炎。

Gait mechanics influence healthy cartilage morphology and osteoarthritis of the knee.

作者信息

Andriacchi Thomas P, Koo Seungbum, Scanlan Sean F

机构信息

Department of Mechanical Engineering, Stanford University, 496 Lomita Mall, Stanford, CA 94305-4038, USA.

出版信息

J Bone Joint Surg Am. 2009 Feb;91 Suppl 1(Suppl 1):95-101. doi: 10.2106/JBJS.H.01408.

Abstract

The response of healthy and diseased cartilage of the knee to the mechanics of walking is examined, with the goal of providing insight into the relationship between the kinematics and kinetics of the knee during walking and the maintenance of cartilage health. The combination of information from three-dimensional thickness models of cartilage derived from magnetic resonance imaging and the analysis of the interaction between load at the knee and kinematic changes during walking associated with loss of the anterior cruciate ligament demonstrated the importance of considering walking mechanics as an important factor in the initiation and progression of osteoarthritis. In particular, this material suggests that knee cartilage becomes conditioned to loading and to the large number of repetitive cycles of loading that occur during walking and that healthy cartilage homeostasis is maintained as long as there are no changes to the normal patterns of locomotion, the structure of the knee joint, or cartilage biology. Thus, there is the potential for a degenerative pathway to be initiated when a condition such as anterior cruciate ligament injury causes the repetitive loading during walking to shift to a new location. The sensitivity of cartilage to the kinematic changes is illustrated with the anterior cruciate ligament-deficient knee and the regional variations in cartilage morphology. The material presented here supports the conclusion that individual variations in the range of loading and kinematics at the knee during walking can have a profound influence on the initiation and progression of osteoarthritis of the knee.

摘要

研究了健康和患病膝关节软骨对步行力学的反应,目的是深入了解步行过程中膝关节的运动学和动力学与软骨健康维持之间的关系。来自磁共振成像的软骨三维厚度模型信息,以及对膝关节负荷与前交叉韧带损伤后步行过程中运动学变化之间相互作用的分析,都表明将步行力学视为骨关节炎发病和进展的重要因素具有重要意义。特别是,该材料表明膝关节软骨会适应步行过程中出现的负荷以及大量重复的负荷循环,并且只要正常运动模式、膝关节结构或软骨生物学没有变化,健康的软骨内环境就能维持。因此,当前交叉韧带损伤等情况导致步行过程中的重复负荷转移到新位置时,就有可能引发退变途径。前交叉韧带损伤的膝关节以及软骨形态的区域差异说明了软骨对运动学变化的敏感性。本文所提供的材料支持这样的结论:步行过程中膝关节负荷范围和运动学的个体差异会对膝关节骨关节炎的发病和进展产生深远影响。

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