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Correlation between Pathological Characteristics and Young's Modulus Value of Spastic Gastrocnemius in a Spinal Cord Injury Rat Model

机译:脊髓损伤大鼠模型中痉挛性腓肠肌的病理特征与杨氏模量的相关性

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摘要

The goal of the present study were (1) to investigate the pathological characteristics of gastrocnemius muscle (GM) and quantitatively assess GM tissue stiffness in rat models with spinal cord injury (SCI) and (2) to explore the correlation between pathological characteristics changes and Young's modulus value of GM. 24 Sprague Dawley male rats were allocated into normal control groups and SCI model subgroups, respectively. GM stiffness was assessed with shear wave sonoelastography technology. All GMs were further analyzed by pathological examinations. GM weights were decreased, the ratio of type I fibers was decreased, and the ratio of type II fibers was increased in the GM in the model group. MyHC-I was decreased, while MyHC-II was increased according to the electrophoretic analysis in model subgroups. The elastic modulus value of GM was increased in the model group. A significant negative correlation was found between Young's modulus value of GM and the ratio of type I fibers of GM in model subgroup. Our studies showed that the stiffness of GM is correlated with pathological characteristics during the initial stages of SCI in rats. We also identified shear wave sonoelastography technology as a useful tool to assess GM stiffness in SCI rat models.
机译:本研究的目的是(1)研究腓肠肌(GM)的病理特征并定量评估脊髓损伤(SCI)大鼠模型中GM组织的刚度;(2)探讨病理特征变化与GM的杨氏模量值。将24只Sprague Dawley雄性大鼠分为正常对照组和SCI模型亚组。 GM刚度用剪切波超声弹性成像技术评估。通过病理检查进一步分析了所有GM。在模型组中,GM的GM重量减少,I型纤维的比例减少,II型纤维的比例增加。根据电泳分析,模型亚组中的MyHC-I降低,而MyHC-II升高。模型组中GM的弹性模量值增加。在模型亚组中,GM的杨氏模量值与GM的I型纤维比率之间存在显着的负相关。我们的研究表明,GM的刚度与大鼠SCI初始阶段的病理特征有关。我们还确定了剪切波超声弹性成像技术为评估SCI大鼠模型中GM刚度的有用工具。

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