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一种用于评估膝关节功能的相互连接因子。

A reciprocal connection factor for assessing knee-joint function.

作者信息

Kim Wangdo, Kohles Sean S

机构信息

Biomechanics Laboratory, Faculty of Human Kinetics, Technical University of Lisbon, Estrada da Costa, 1495-688 Cruz-Quebrada, Portugal.

出版信息

Comput Methods Biomech Biomed Engin. 2012;15(9):911-7. doi: 10.1080/10255842.2011.566270. Epub 2011 May 24.

Abstract

In the knee joint, interactions between instantaneous kinetics and kinematics associated with ligamentous and articular tissues are not fully understood. These structures may be represented by the instantaneous screw axis ($) (ISA) and static force vectors ($'). Geometric changes to the joint structure affecting motion have not been fully explained, especially after surgical reconstruction and replacement procedures. The ISA offers a joint-characterisation approach, which is dependent on the combined forces of ligaments, articular contacts and muscles. The standard four-bar linkage model in the sagittal plane demonstrates that the normal contact force and the lines of action of the cruciate ligaments always intersect at the centre of rotation of the joint. A kinematic knee model in which the articular surfaces in the lateral and medial compartments as well as the isometric fascicles in the engaged ligaments may be represented as five constraints in a one-degree-of-freedom parallel spatial mechanism. This study provides a theoretical foundation to elucidate the role of each of these elements in the control of the ISA. A recourse to the principle of virtual work explained through d'Alembert's principle for reducing a dynamics problem to an instantaneous static scenario allows screws to be applied to the biomechanics of human motion. The principle of reciprocity links these approaches together to explain the transmitting load between the tibia and the femur as well as the relative motion within the knee joint. A principal clinical implication of this study is the introduction of the reciprocal connection factor to evaluate knee kinematics and kinetics in one simple term, allowing the quantitative assessment of the outcome of knee-joint treatment and rehabilitation methods.

摘要

在膝关节中,与韧带和关节组织相关的瞬时动力学和运动学之间的相互作用尚未完全明了。这些结构可以用瞬时螺旋轴($)(ISA)和静力矢量($')来表示。影响运动的关节结构几何变化尚未得到充分解释,尤其是在手术重建和置换手术后。ISA提供了一种关节表征方法,该方法取决于韧带、关节接触和肌肉的合力。矢状面的标准四杆连杆模型表明,正常接触力和交叉韧带的作用线总是在关节旋转中心相交。一种运动学膝关节模型,其中外侧和内侧间室的关节面以及参与韧带中的等长束可以表示为单自由度平行空间机构中的五个约束。本研究为阐明这些元素在ISA控制中的各自作用提供了理论基础。借助通过达朗贝尔原理解释的虚功原理,将动力学问题简化为瞬时静态场景,从而可以将螺旋应用于人体运动的生物力学。互易原理将这些方法联系在一起,以解释胫骨和股骨之间的传递载荷以及膝关节内的相对运动。本研究的一个主要临床意义是引入互易连接因子,用一个简单的术语来评估膝关节的运动学和动力学,从而能够对膝关节治疗和康复方法的结果进行定量评估。

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