首页> 外文会议>ASME Bioengineering Conference >THE ROLES OF ELASTIC FIBRES AND GLYCOSAMINOGLYCANS IN THE RADIAL TENSILE MECHANICS OF THE HUMAN LUMBAR ANULUS FIBROSUS
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THE ROLES OF ELASTIC FIBRES AND GLYCOSAMINOGLYCANS IN THE RADIAL TENSILE MECHANICS OF THE HUMAN LUMBAR ANULUS FIBROSUS

机译:弹性纤维和糖胺聚糖在人腰腺纤维杆菌径向拉伸力学中的作用

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The anulus fibrosus of the human lumbar disc has a complex, hierarchical structure comprised of collagen, proteoglycan and elastic fibres [1,2]. Individually and through interactions, these constituents govern the complex, anisotropic mechanical reponse of the anulus; the exact nature of their contributions, however, remains unclear [3]. In the radial direction, mechanical behaviour is heterogeneous, varies with degenerative condition, and is thought to be governed largely by the matrix at lamellar interfaces [4,5]. The objectives of this study were to quantify the contributions made by both elastic fibres and glycosaminoglycans to the radial tensile reponse of the human lumbar anulus, using a combination of targeted enzymatic degradation and biomechanical testing.
机译:人腰盘的血管纤维素具有由胶原蛋白,蛋白多糖和弹性纤维组成的复杂的等级结构[1,2]。单独和通过相互作用,这些成分控制血管的复杂,各向异性机械响应;然而,他们的贡献的确切性质仍然尚不清楚[3]。在径向方向上,机械行为是异质的,随着退行性条件而变化,并且被认为是基于层状界面的基质的基本来治理[4,5]。本研究的目的是使用靶向酶促降解和生物力学检测的组合来量化弹性纤维和糖胺聚糖对人腰血管的径向拉伸响应的贡献。

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