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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Force Transmission Between the Gastrocnemius and Soleus Sub-Tendons of the Achilles Tendon in Rat
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Force Transmission Between the Gastrocnemius and Soleus Sub-Tendons of the Achilles Tendon in Rat

机译:大鼠肌腱肌腱的腓肠肌和Soleus亚肌腱之间的力传播

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The Achilles tendon (AT) is comprised of three distinct sub-tendons bound together by inter-subtendon matrix (ISTM). The interactions between sub-tendons will have important implications for AT function. The aim of this study was to investigate the extent to which the ISTM facilitates relative sliding between sub-tendons, and serves as a pathway for force transmission between the gastrocnemius (GAS) and soleus (SOL) sub-tendons of the rat AT. In this study, Achilles tendons were harvested from Wistar rats, and the mechanical properties and composition of the ISTM were explored. To determine force transmission between sub-tendons, the proximal and distal ends of the GAS and SOL sub-tendons were secured, and the forces at each of these locations were measured during proximal loading of the GAS. To determine the ISTM mechanical properties, only the proximal GAS and distal SOL were secured, and the ISTM was loaded in shear. Finally, for compositional analysis, histological examination assessed the distribution of matrix proteins throughout sub-tendons and the ISTM. The results revealed distinct differences between the forces at the proximal and distal ends of both sub-tendons when proximal loading was applied to the GAS, indicating force transmission between GAS and SOL sub-tendons. ISTM tests demonstrated an extended initial low stiffness toe region to enable some sub-tendon sliding, coupled with high stiffness linear region such that force transmission between sub-tendons is ensured. Histological data demonstrate an enrichment of proteins in the ISTM. We conclude that the ISTM composition and mechanical properties are specialised to allow some independent sub-tendon movement, whilst still ensuring capacity for force transmission between the sub-tendons of the AT.
机译:Achilles肌腱(AT)由次议度间基质(ISTM)结合在一起的三个不同的亚腱组成。子腱之间的相互作用将对在功能中具有重要意义。本研究的目的是研究ISTM促进亚腱之间相对滑动的程度,并用作大鼠腓肠肌(气体)和单胞菌(溶胶)子筋之间的力传递的途径。在这项研究中,从Wistar大鼠收获了Achilles肌腱,探索了ISTM的机械性能和组成。为了确定子筋之间的力传递,固定气体和溶胶子筋的近端和远端,并且在气体的近侧负载期间测量这些位置处的每一个的力。为了确定ISTM机械性能,仅固定近端气体和远端溶胶,并且ISTM剪切。最后,为了分析,组织学检查评估了整个亚腱和ISTM的基质蛋白的分布。结果显示在将近端载荷施加到气体时,两端腰带的近端和远端的力之间的不同差异,表明气体和溶胶亚腱之间的力传递。 ISTM测试证明了延伸的初始低刚度脚趾区域,以使一些亚腱滑动,与高刚度线性区域耦合,使得确保子筋之间的力传递。组织学数据表明ISTM中蛋白质的富集。我们得出结论,ISTM组成和机械性能专门用于允许一些独立的亚腱运动,同时仍然确保ats的子筋之间的力传输能力。

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