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首页> 外文期刊>Journal of Biomechanics >Different regions of bovine deep digital flexor tendon exhibit distinct elastic, but not viscous, mechanical properties under both compression and shear loading
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Different regions of bovine deep digital flexor tendon exhibit distinct elastic, but not viscous, mechanical properties under both compression and shear loading

机译:牛深指屈肌腱的不同区域在压缩和剪切载荷下均表现出独特的弹性,但不具有粘性机械性能

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摘要

Tendons in different locations function in unique, and at times complex, in vivo loading environments. Specifically, some tendons are subjected to compression, shear and/or torsion in addition to tensile loading, which play an important role in regulating tendon properties. To date, there have been few studies evaluating tendon mechanics when loaded in compression and shear, which are particularly relevant for understanding tendon regions that experience such non-tensile loading during normal physiologic function. The objective of this study was to evaluate mechanical responses of different regions of bovine deep digital flexor tendons (DDFT) under compressive and shear loading, and correlate structural characteristics to functional mechanical properties. Distal and proximal regions of DDFT were evaluated in a custom-made loading system via three-step incremental stress-relaxation tests. A two-relaxation-time solid linear model was used to describe the viscoelastic response. Results showed large differences in the elastic behavior between regions: distal region stresses were 4-5 times larger than proximal region stresses during compression and 2-3 times larger during shear. Surprisingly, the viscous (i.e., relaxation) behavior was not different between regions for either compression or shear. Histological analysis showed that collagen and proteoglycan in the distal region distributed differently from the proximal region. Results demonstrate mechanical differences between two regions of DDFT under compression and shear loading, which are attributed to variations of composition and microstructural organization. These findings deepen our understanding of structure-function relationships of tendon, particularly for tissues adapted to supporting combinations of tension, compression, and shear in physiological loading environments.
机译:不同位置的肌腱在独特的,有时复杂的体内加载环境中发挥作用。具体地,除了拉伸载荷之外,一些肌腱还经受压缩,剪切和/或扭转,这在调节肌腱特性中起重要作用。迄今为止,很少有研究评估受压和剪切加载时的肌腱力学,这对于理解在正常生理功能过程中会经历这种非拉伸加载的肌腱区域特别重要。这项研究的目的是评估在压缩和剪切载荷作用下,牛深指屈肌腱(DDFT)不同区域的力学响应,并将结构特征与功能力学性能相关联。 DDFT的远端和近端区域在定制的加载系统中通过三步增量应力松弛测试进行了评估。使用两个松弛时间的实心线性模型来描述粘弹性响应。结果表明,区域之间的弹性行为存在很大差异:在压缩过程中,远端区域的应力是近端区域应力的4-5倍,而在剪切过程中则增大2-3倍。令人惊讶地,对于压缩或剪切而言,区域之间的粘性(即松弛)行为没有区别。组织学分析表明,远端区域的胶原蛋白和蛋白聚糖与近端区域的分布不同。结果表明,在压缩和剪切载荷作用下,DDFT的两个区域之间存在机械差异,这归因于组成和微观组织的变化。这些发现加深了我们对肌腱结构-功能关系的理解,特别是对于适于在生理负荷环境中支持拉伸,压缩和剪切组合的组织。

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