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仰卧位有限次数的膝关节伸展动作能否用于膝关节功能检查?

Can a finite set of knee extension in supine position be used for a knee functional examination?

作者信息

Marin F, Sangeux M, Charleux F, Ho Ba Tho M-C, Dürselen L

机构信息

Laboratoire de Biomécanique et Genie Biomedical CNRS 6600, Université Technologique, de Compiègne, Center de Recherche de Royallieu, BP 20529, F-60205, Compiègne, France.

出版信息

J Biomech. 2006;39(2):359-63. doi: 10.1016/j.jbiomech.2004.11.025.

Abstract

The kinematic magnetic resonance imaging technique has been developed to provide a functional examination of the knee. Technical limitations require this examination to be performed in supine position, and the knee motion is represented by an assembly of static positions at different knee angles. However, the main knee function is to support the body weight and perform continuous motion, e.g. parallel squat. Our study quantified the knee kinematics of 20 healthy subjects in different motion conditions (finite and continuous) and in different mechanical conditions (continuous unloaded and continuous loaded). We evaluated the angular and localisation difference of a finite helical axis of the knee motion for parallel squat, continuous knee extension in supine position and the finite set of knee extension in supine position. We found large inter-individual dispersion. The majority of subjects had equivalent knee kinematics between continuous knee extension and the finite set of knee extension in supine position, but not between continuous knee extension in supine position and the parallel squat. Therefore, results from a functional examination of a finite set of knee extensions in supine position do not represent the knee motion in a parallel squat. Our results suggest that functional examination of the knee from magnetic resonance imaging do not necessarily reflect the physiological kinematics of the knee. Further investigation should focus on a new magnetic resonance imaging acquisition protocol that allows image acquisition during weight bearing or includes a special device which reproduces the loaded condition.

摘要

运动磁共振成像技术已被开发用于对膝关节进行功能检查。技术限制要求该检查在仰卧位进行,并且膝关节的运动由不同膝关节角度的静态位置组合来表示。然而,膝关节的主要功能是支撑体重并进行连续运动,例如平行下蹲。我们的研究量化了20名健康受试者在不同运动条件(有限和连续)以及不同力学条件(连续无负荷和连续有负荷)下的膝关节运动学。我们评估了平行下蹲、仰卧位连续膝关节伸展以及仰卧位有限膝关节伸展组中膝关节运动有限螺旋轴的角度和定位差异。我们发现个体间差异很大。大多数受试者在仰卧位连续膝关节伸展和仰卧位有限膝关节伸展组之间具有等效的膝关节运动学,但在仰卧位连续膝关节伸展和平行下蹲之间则不然。因此,仰卧位有限膝关节伸展组功能检查的结果并不代表平行下蹲时的膝关节运动。我们的结果表明,磁共振成像对膝关节的功能检查不一定能反映膝关节的生理运动学。进一步的研究应集中在一种新的磁共振成像采集方案上,该方案允许在负重期间进行图像采集,或者包括一种能够再现负荷状态的特殊装置。

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