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人类膝关节骨-韧带-骨复合体相对插入方向变化对拉伸刚度的影响。

The effect of variable relative insertion orientation of human knee bone-ligament-bone complexes on the tensile stiffness.

作者信息

Momersteeg T J, Blankevoort L, Huiskes R, Kooloos J G, Kauer J M, Hendriks J C

机构信息

Department of Anatomy and Embryology, University of Nijmegen, The Netherlands.

出版信息

J Biomech. 1995 Jun;28(6):745-52. doi: 10.1016/0021-9290(94)00121-j.

Abstract

In order to evaluate the contribution of the knee ligaments to restrain joint motions, knowledge about their structural properties is required. Due to the variable relative insertion orientation of the ligaments during knee motion, however, different fiber bundles are recruited, each with their specific mechanical properties. Hence, the structural properties vary as a function of knee motion. For this reason, a relationship between the structural tensile properties and the relative insertion orientation is required in order to define the role of the ligaments in knee mechanics. In the present study, this relationship is determined by performing a series of tensile tests in which the relative orientations of the insertion sites of human knee bone-ligament-bone preparations were varied systematically. The experimentally obtained stiffness was significantly affected by the relative orientation of the insertion sites, but more profoundly for the anterior and posterior cruciate ligaments (ACL and PCL) as compared to the medial and lateral collateral ligaments (MCL and LCL). The average decreases in stiffness per 5 degrees tilt of the insertion sites were estimated at -11.6 +/- 3.5 N mm-1 (ACL), -20.9 +/- 2.7 N mm-1 (PCL), -2.6 +/- 0.9 N mm-1 (MCL) and -3.7 +/- 0.3 N mm-1 (LCL). For the PCL and the MCL these changes in stiffness with tilt were rather insensitive to the side of the femoral insertion site which was lifted. The ACL and the LCL, conversely, displayed significant differences in stiffness changes between the different tilt directions.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

为了评估膝关节韧带对限制关节运动的贡献,需要了解它们的结构特性。然而,由于膝关节运动过程中韧带相对插入方向的变化,不同的纤维束会被募集,每束纤维都有其特定的力学特性。因此,结构特性会随着膝关节运动而变化。出于这个原因,为了确定韧带在膝关节力学中的作用,需要建立结构拉伸特性与相对插入方向之间的关系。在本研究中,通过进行一系列拉伸试验来确定这种关系,在这些试验中,人体膝关节骨-韧带-骨标本插入部位的相对方向被系统地改变。实验获得的刚度受到插入部位相对方向的显著影响,但与内侧和外侧副韧带(MCL和LCL)相比,前交叉韧带和后交叉韧带(ACL和PCL)受到的影响更为显著。插入部位每倾斜5度,刚度的平均降低估计为-11.6±3.5N/mm-1(ACL)、-20.9±2.7N/mm-1(PCL)、-2.6±0.9N/mm-1(MCL)和-3.7±0.3N/mm-1(LCL)。对于PCL和MCL,刚度随倾斜的这些变化对抬起的股骨插入部位的一侧相当不敏感。相反,ACL和LCL在不同倾斜方向之间的刚度变化显示出显著差异。(摘要截短于250字)

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