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动物前交叉韧带模型与人类前交叉韧带的功能比较。

A functional comparison of animal anterior cruciate ligament models to the human anterior cruciate ligament.

作者信息

Xerogeanes J W, Fox R J, Takeda Y, Kim H S, Ishibashi Y, Carlin G J, Woo S L

机构信息

Musculoskeletal Research Center, Department of Orthopaedic Surgery, University of Pittsburgh Medical Center, PA 15213, USA.

出版信息

Ann Biomed Eng. 1998 May-Jun;26(3):345-52. doi: 10.1114/1.91.

Abstract

Many investigators have used animal models to clarify the role of the human anterior cruciate ligament (ACL). Because none of these models are anatomically and biomechanically identical to the human ACL, there exists a need for an objective comparison of these models. To do this, we used a universal force-moment sensor to measure and compare the in situ forces, including magnitude and direction, of the ACL and the anteromedial (AM) and posterolateral (PL) bundles of human, pig, goat, and sheep knees. An Instron was used to apply 50 and 100 N anterior tibial loads at 90 degrees of knee flexion, while a universal force-moment sensor was used to measure the forces applied by the ACL to the tibia, the in situ force of the ACL. We found significant differences between the magnitude of force experienced by the goat and sheep ACL and AM and PL bundles when compared with the human ACL and AM and PL bundles. Also, the direction of the in situ force in the ACL and AM bundles of the goat and sheep were different from the human. The pig knee differed from the human only in the magnitude and direction of the in situ force in the PL bundle in response under anterior tibial loading. A tally of the significant differences between the animal models and the human knees indicates that goat and sheep knees may have limitations in modeling the human ACL, while the pig knee may be the preferred model for experimental studies.

摘要

许多研究人员使用动物模型来阐明人类前交叉韧带(ACL)的作用。由于这些模型在解剖学和生物力学上均与人类ACL不完全相同,因此需要对这些模型进行客观比较。为此,我们使用通用力-力矩传感器来测量和比较人、猪、山羊和绵羊膝关节ACL以及前内侧(AM)束和后外侧(PL)束的原位力,包括大小和方向。在膝关节屈曲90度时,使用英斯特朗万能材料试验机施加50 N和100 N的胫骨前向载荷,同时使用通用力-力矩传感器测量ACL施加于胫骨的力,即ACL的原位力。我们发现,与人类ACL以及AM束和PL束相比,山羊和绵羊的ACL以及AM束和PL束所承受的力的大小存在显著差异。此外,山羊和绵羊ACL以及AM束的原位力方向与人类不同。猪膝关节仅在胫骨前向加载时PL束原位力的大小和方向上与人类有所不同。动物模型与人类膝关节之间显著差异的统计表明,山羊和绵羊膝关节在模拟人类ACL方面可能存在局限性,而猪膝关节可能是实验研究的首选模型。

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