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非生理性高初始张力对犬模型原位冷冻前交叉韧带力学性能的影响。

The effect of nonphysiologically high initial tension on the mechanical properties of in situ frozen anterior cruciate ligament in a canine model.

作者信息

Katsuragi R, Yasuda K, Tsujino J, Keira M, Kaneda K

机构信息

Department of Orthopaedic Surgery, Hokkaido University School of Medicine, Sapporo, Japan.

出版信息

Am J Sports Med. 2000 Jan-Feb;28(1):47-56. doi: 10.1177/03635465000280012001.

Abstract

An experimental study was performed in 32 adult beagle dogs to clarify the effect of nonphysiologically high initial tension on the mechanical and histologic properties of in situ frozen anterior cruciate ligaments. Both anterior cruciate ligaments in each dog underwent the in situ freeze-thaw treatment. The tibial insertion of the ligament was then made free from the tibia along with a cylindrical bone block. In the right knee, an initial tension of 20 N was applied on the anterior cruciate ligament by translocating the bone block in the distal direction. In the left knee, this bone block was anatomically reduced. Each bone block was firmly fixed with an interference screw. Ten animals were sacrificed at 6 weeks and 10 at 12 weeks. The tensile strength and the tangent modulus in the highly tensioned knee were significantly less than those in the physiologically tensioned knee at 12 weeks. Histologically, cell nuclei appeared to be spindle-shaped in the physiologically tensioned knee, while oval nuclei and focal degenerative changes with a number of vacuoles were occasionally found in the matrix in the highly tensioned knee. This study demonstrated that a nonphysiologically high tension significantly deteriorates the mechanical properties of the in situ frozen anterior cruciate ligament compared with physiologic tension.

摘要

在32只成年比格犬身上进行了一项实验研究,以阐明非生理性高初始张力对原位冷冻前交叉韧带的力学和组织学特性的影响。每只犬的两条前交叉韧带均接受原位冻融处理。然后将韧带的胫骨附着点连同圆柱形骨块一起从胫骨上分离下来。在右膝,通过向远侧移动骨块,在前交叉韧带上施加20 N的初始张力。在左膝,将该骨块进行解剖复位。每个骨块用一枚加压螺钉牢固固定。6周时处死10只动物,12周时处死10只。在12周时,高张力膝关节的拉伸强度和切线模量显著低于生理张力膝关节。组织学上,生理张力膝关节中的细胞核呈纺锤形,而在高张力膝关节的基质中偶尔发现椭圆形细胞核和伴有大量空泡的局灶性退行性改变。这项研究表明,与生理张力相比,非生理性高张力会显著降低原位冷冻前交叉韧带的力学性能。

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