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关节约束对前交叉韧带原位力分布影响的评估。

Evaluation of the effect of joint constraints on the in situ force distribution in the anterior cruciate ligament.

作者信息

Livesay G A, Rudy T W, Woo S L, Runco T J, Sakane M, Li G, Fu F H

机构信息

Department of Orthopaedic Surgery, University of Pittsburgh, PA 15213, USA.

出版信息

J Orthop Res. 1997 Mar;15(2):278-84. doi: 10.1002/jor.1100150218.

Abstract

The function of the anterior cruciate ligament was investigated for different conditions of kinematic constraint placed on the intact knee using a six-degree-of-freedom robotic manipulator combined with a universal force-moment sensor. To do this, the in situ forces and force distribution within the porcine anterior cruciate ligament during anterior tibial loading up to 100 N were compared at 30, 60, and 90 degrees of flexion under: (a) unconstrained, five-degree-of-freedom knee motion, and (b) constrained, one-degree-of-freedom motion (i.e., anterior translations only). The robotic/universal force-moment sensor testing system was used to both apply the specified external loading to the intact joint and measure the resulting kinematics. After tests of the intact knee were completed, all soft tissues except the anterior cruciate ligament were removed, and these motions were reproduced such that the in situ force and force distribution could be determined. No significant differences in the magnitude of in situ forces in the anterior cruciate ligament were found between the unconstrained and constrained testing conditions. In contrast, the direction of in situ force changed significantly; the force vector in the unconstrained case was more parallel with the direction of the applied tibial load. In addition, the distribution of in situ force between the anteromedial and posterolateral bundles of the ligament was nearly equal for all flexion angles for the unconstrained case, whereas the anteromedial bundle carried higher forces than the posterolateral bundle at both 60 and 90 degrees of flexion for the constrained case. This demonstrates that the constraint conditions placed on the joint have a significant effect on the apparent role of the anterior cruciate ligament. Specifically, constraining joint motion to one degree of freedom significantly alters both the direction and distribution of the in situ force in the ligament from that observed for unconstrained joint motion (five degrees of freedom). Furthermore, the changes observed in the distribution of force between the anteromedial and posterolateral bundles for different constraint conditions may help elucidate mechanisms of injury by providing new insight into the response of the anterior cruciate ligament to different types of external knee loading.

摘要

使用六自由度机器人操纵器结合通用力-力矩传感器,研究了在完整膝关节施加不同运动学约束条件下前交叉韧带的功能。为此,在30°、60°和90°屈曲时,比较了猪前交叉韧带在高达100 N的胫骨前向加载过程中的原位力和力分布,条件如下:(a) 无约束的五自由度膝关节运动,以及(b) 有约束的一自由度运动(即仅前向平移)。机器人/通用力-力矩传感器测试系统用于向完整关节施加指定的外部载荷并测量由此产生的运动学。在完成完整膝关节的测试后,去除除前交叉韧带外的所有软组织,并再现这些运动,以便确定原位力和力分布。在无约束和有约束的测试条件之间,前交叉韧带原位力的大小没有发现显著差异。相比之下,原位力的方向发生了显著变化;无约束情况下的力矢量与施加的胫骨载荷方向更平行。此外,在无约束情况下,韧带的前内侧束和后外侧束之间的原位力分布在所有屈曲角度几乎相等,而在有约束情况下,在60°和90°屈曲时,前内侧束承受的力高于后外侧束。这表明施加在关节上的约束条件对前交叉韧带的表观作用有显著影响。具体而言,将关节运动限制为一自由度会显著改变韧带中与无约束关节运动(五自由度)所观察到的原位力的方向和分布。此外,不同约束条件下前内侧束和后外侧束之间力分布的变化可能有助于通过提供对前交叉韧带对不同类型外部膝关节载荷反应的新见解来阐明损伤机制。

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