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2
Regional arterial stiffness in patients with type 2 diabetes and chronic kidney disease.2型糖尿病合并慢性肾脏病患者的局部动脉僵硬度
J Am Soc Nephrol. 2006 Aug;17(8):2245-52. doi: 10.1681/ASN.2005101038. Epub 2006 Jul 12.
3
Effects of freezing and cryopreservation on the mechanical properties of arteries.冷冻和低温保存对动脉力学性能的影响。
Ann Biomed Eng. 2006 May;34(5):823-32. doi: 10.1007/s10439-005-9044-x. Epub 2006 Apr 18.
4
Effects of drying on the mechanical properties of bovine femur measured by nanoindentation.干燥对通过纳米压痕测量的牛股骨力学性能的影响。
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AGE-related cross-linking of collagen is associated with aortic wall matrix stiffness in the pathogenesis of drug-induced diabetes in rats.在大鼠药物性糖尿病发病机制中,与年龄相关的胶原蛋白交联与主动脉壁基质硬度有关。
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Nanoindentation of soft hydrated materials for application to vascular tissues.用于血管组织的柔软水合材料的纳米压痕技术。
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Fibrillin microfibrils are stiff reinforcing fibres in compliant tissues.原纤维微原纤维是顺应性组织中的刚性增强纤维。
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Altered vascular function in young women with polycystic ovary syndrome.多囊卵巢综合征年轻女性的血管功能改变
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组织学标本的纳米压痕:绘制软组织的弹性特性图。

Nanoindentation of histological specimens: Mapping the elastic properties of soft tissues.

作者信息

Akhtar R, Schwarzer N, Sherratt M J, Watson R E B, Graham H K, Trafford A W, Mummery P M, Derby B

机构信息

School of Materials, University of Manchester, Manchester M1 7HS, United Kingdom.

出版信息

J Mater Res. 2009 Mar;24(3):638-646. doi: 10.1557/JMR.2009.0130.

DOI:10.1557/JMR.2009.0130
PMID:20396607
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2854807/
Abstract

Although alterations in the gross mechanical properties of dynamic and compliant tissues have a major impact on human health and morbidity, there are no well-established techniques to characterize the micromechanical properties of tissues such as blood vessels and lungs. We have used nanoindentation to spatially map the micromechanical properties of 5-mum-thick sections of ferret aorta and vena cava and to relate these mechanical properties to the histological distribution of fluorescent elastic fibers. To decouple the effect of the glass substrate on our analysis of the nanoindentation data, we have used the extended Oliver and Pharr method. The elastic modulus of the aorta decreased progressively from 35 MPa in the adventitial (outermost) layer to 8 MPa at the intimal (innermost) layer. In contrast, the vena cava was relatively stiff, with an elastic modulus >30 MPa in both the extracellular matrix-rich adventitial and intimal regions of the vessel. The central, highly cellularized, medial layer of the vena cava, however, had an invariant elastic modulus of ~20 MPa. In extracellular matrix-rich regions of the tissue, the elastic modulus, as determined by nanoindentation, was inversely correlated with elastic fiber density. Thus, we show it is possible to distinguish and spatially resolve differences in the micromechanical properties of large arteries and veins, which are related to the tissue microstructure.

摘要

尽管动态和顺应性组织的宏观力学性能改变对人类健康和发病率有重大影响,但目前尚无成熟的技术来表征血管和肺等组织的微观力学性能。我们利用纳米压痕技术对雪貂主动脉和腔静脉5微米厚切片的微观力学性能进行空间映射,并将这些力学性能与荧光弹性纤维的组织学分布相关联。为了消除玻璃基板对我们纳米压痕数据分析的影响,我们采用了扩展的奥利弗和法尔方法。主动脉的弹性模量从外膜(最外层)的35兆帕逐渐降低到内膜(最内层)的8兆帕。相比之下,腔静脉相对较硬,在富含细胞外基质的血管外膜和内膜区域,其弹性模量均大于30兆帕。然而,腔静脉中央高度细胞化的中层弹性模量不变,约为20兆帕。在组织中富含细胞外基质的区域,通过纳米压痕测定的弹性模量与弹性纤维密度呈负相关。因此,我们表明可以区分并在空间上解析大动脉和大静脉微观力学性能的差异,这些差异与组织微观结构有关。