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马前肢浅、深指屈肌 - 韧带 - 肌腱复合体被动力学特性的测定

Determination of passive mechanical properties of the superficial and deep digital flexor muscle-ligament-tendon complexes in the forelimbs of horses.

作者信息

Swanstrom Michael D, Stover Susan M, Hubbard Mont, Hawkins David A

机构信息

Biomedical Engineering Graduate Group, School of Veterinary Medicine, University of California, Davis, CA 95616, USA.

出版信息

Am J Vet Res. 2004 Feb;65(2):188-97. doi: 10.2460/ajvr.2004.65.188.

Abstract

OBJECTIVE

To determine the relative contributions of the muscles, tendons, and accessory ligaments to the passive force-length properties of the superficial (SDF) and deep digital flexor (DDF) myotendinous complexes.

SAMPLE POPULATION

8 cadaveric forelimbs from 6 adult Thoroughbreds.

PROCEDURE

In vitro, limb configurations during slack position and myotendinous lengths during subsequent axial loading of forelimbs were recorded before and after transection of accessory ligaments. Expressions were derived to describe the force-length behavior of each muscle, tendon, and accessory ligament-tendon unit; linear stiffness was computed for these components. The elastic modulus was established for the SDF and DDF tendons. RESULTS; Linear stiffness was 2.80 +/- 0.38 kN/cm for the SDF muscle, 3.47 +/- 0.66 kN/cm for the DDF muscle, 2.73 +/- 0.18 kN/cm for the SDF tendon, 3.22 +/- 0.20 kN/cm for the DDF tendon, 6.46 +/- 0.85 kN/cm for the SDF accessory ligament, 1.93 +/- 0.11 kN/cm for the SDF accessory ligament-tendon unit, and 2.47 +/- 0.11 kN/cm for the DDF accessory ligament-tendon unit. The elastic modulus for the SDF and DDF tendons was 920 +/- 77 and 843 +/- 56 MPa, respectively.

CONCLUSIONS AND CLINICAL RELEVANCE

Both the muscle-tendon and ligament-tendon portions of SDF and DDF myotendinous complexes had important roles in supporting the forelimb of horses. Although muscle tension can be enhanced by elbow joint flexion and active contraction, the accessory ligaments transmitted more force to the distal tendons than did the muscles under the conditions tested.

摘要

目的

确定肌肉、肌腱和副韧带对浅表指屈肌(SDF)和指深屈肌(DDF)肌腱复合体被动力-长度特性的相对贡献。

样本群体

来自6匹成年纯种马的8个尸体前肢。

程序

在体外,记录副韧带横断前后前肢松弛位置时的肢体构型以及随后轴向加载时的肌腱长度。推导表达式以描述每块肌肉、肌腱和副韧带-肌腱单元的力-长度行为;计算这些组件的线性刚度。确定SDF和DDF肌腱的弹性模量。结果:SDF肌肉的线性刚度为2.80±0.38 kN/cm,DDF肌肉为3.47±0.66 kN/cm,SDF肌腱为2.73±0.18 kN/cm,DDF肌腱为3.22±0.20 kN/cm,SDF副韧带为6.46±0.85 kN/cm,SDF副韧带-肌腱单元为1.93±0.11 kN/cm,DDF副韧带-肌腱单元为2.47±0.11 kN/cm。SDF和DDF肌腱的弹性模量分别为920±77和843±56 MPa。

结论及临床意义

SDF和DDF肌腱复合体的肌肉-肌腱和韧带-肌腱部分在支撑马的前肢方面均起重要作用。尽管肘关节屈曲和主动收缩可增强肌肉张力,但在测试条件下,副韧带比肌肉向远侧肌腱传递的力更多。

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