首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Surface characterisation and biomechanical analysis of the sclera by atomic force microscopy.
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Surface characterisation and biomechanical analysis of the sclera by atomic force microscopy.

机译:通过原子力显微镜对巩膜进行表面表征和生物力学分析。

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摘要

The sclera is an important collagenous based connective tissue that gives the eye its shape and protects the sensitive layers within the globe. The elasticity and resilience of the sclera mainly come from the stroma, which contains a dense network of collagen fibrils comprising 90% of the thickness of the tissue. However, the outermost layer of the scleral tissue ( approximately 10 mum) is known as the episclera, which is mostly uncharacterised and seldom investigated. Here, we use AFM scanning of porcine eyes to show that the surfaces of these two distinctive layers are structurally different. Furthermore, we use AFM nanoindentation to show that the episclera has significantly different mechanical properties than the stroma. The mechanical properties of the stroma are shown to be distributed between its two component parts (proteoglycan matrix and collagen fibrils).
机译:巩膜是一种重要的,基于胶原蛋白的结缔组织,可赋予眼睛其形状并保护眼球内的敏感层。巩膜的弹性和回弹力主要来自基质,基质中含有胶原纤维的致密网络,占组织厚度的90%。然而,巩膜组织的最外层(大约10毫米)被称为外巩膜,其特征不多,很少进行研究。在这里,我们使用AFM扫描猪眼来显示这两个不同层的表面在结构上是不同的。此外,我们使用原子力显微镜纳米压痕表明,巩膜具有比基质明显不同的机械性能。基质的机械性能显示为分布在其两个组成部分(蛋白聚糖基质和胶原原纤维)之间。

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