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Nanoindentation of Histological Specimens using an Extension of the Oliver and Pharr Method

机译:使用Oliver and Pharr方法的扩展对组织标本进行纳米压痕

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The micro-mechanical properties of 5 μm thick histological sections of ferret aorta and vena cava were mapped as a function of distance from the outer adventitial layer using nanoindentation. In order to decouple the effect of the glass substrate on the elastic modulus of these thin sections, the nanoindentation data were analyzed using the extended Oliver and Pharr method which is readily accessible for coatings and layered materials with the software package, FilmDoctor~?. In the aorta, the elastic modulus was found to decrease progressively from 35 MPa at the adventitia (outermost layer) to 8 MPa at the intima (innermost layer). This decrease in modulus was inversely correlated with elastic fibre density. In contrast, in the vena cava, the stiffest regions were found to be the adventitial (outer) and intimal (innermost) sections of the vessel cross-section. Both these regions were enriched in ECM components. The central region, thought to be largely cellular, had a relatively constant modulus of around 20 MPa. This study demonstrates that with this methodology it is possible to distinguish micro-mechanically between large arteries and veins, and therefore the same approach should allow age or disease related changes in the mechanical properties within a tissue to be quantified.
机译:利用纳米压痕,将5μm厚的雪貂主动脉和腔静脉的组织切片的微机械特性绘制为与外外膜层的距离的函数。为了消除玻璃基板对这些薄部分的弹性模量的影响,使用扩展的Oliver和Pharr方法分析了纳米压痕数据,该方法很容易通过软件包FilmDoctor?进行涂层和层状材料的访问。在主动脉中,发现弹性模量从外膜(最外层)的35 MPa逐渐降低到内膜(最内层)的8 MPa。模量的这种降低与弹性纤维密度成反比。相反,在腔静脉中,发现最硬的区域是血管横截面的外膜(外)和内膜(内)。这两个区域都富含ECM成分。被认为主要是蜂窝状的中心区域具有约20 MPa的相对恒定模量。这项研究表明,使用这种方法可以在大动脉和静脉之间进行微机械区分,因此相同的方法应该可以量化与年龄或疾病相关的组织内机械特性的变化。

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  • 会议地点 San Francisco CA(US)
  • 作者单位

    Manchester Materials Science Centre, School of Materials, The University of Manchester, Grosvenor Street, Manchester, M1 7HS, United Kingdom;

    rnTissue Injury and Repair Group, Faculty of Medical and Human Sciences, The University of Manchester, 1.581 Stopford Building, Oxford Road, Manchester, M13 9PT, United Kingdom;

    rnSaxonian Institute of Surface Mechanics (SIO), Tankow 1, Ummanz, 18569, Germany;

    rnManchester Materials Science Centre, School of Materials, The University of Manchester, Grosvenor Street, Manchester, M1 7HS, United Kingdom;

    rnManchester Materials Science Centre, School of Materials, The University of Manchester, Grosvenor Street, Manchester, M1 7HS, United Kingdom;

    rnDermatological Sciences Research Group, Faculty of Medical and;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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