Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 60 checked references that resolve
resolves10.1016/S0021-9150(96)05947-3Changes in biomechanical properties, composition of collagen and elastin, and advanced glycation endproducts of the rat aorta in relation to age
resolves10.1053/ejvs.2002.1620Alteration of Elastin, Collagen and their Cross-links in Abdominal Aortic Aneurysms
resolves10.1016/S0021-9290(03)00133-7Possible role of decorin glycosaminoglycans in fibril to fibril force transfer in relative mature tendons—a computational study from molecular to microstructural level
resolves10.1016/j.jtbi.2010.10.007Equivalent stiffness after glycosaminoglycan depletion in tendon — an ultra-structural finite element model and corresponding experiments
resolves10.1016/0021-9290(96)00024-3Elongation mechanism of collagen fibrils and force-strain relations of tendon at each level of structural hierarchy
resolves10.1021/bm0100615Molecular Basis for Elastic Energy Storage in Mineralized Tendon
resolves10.1016/j.matbio.2007.10.008The three-dimensional micro- and nanostructure of the aortic medial lamellar unit measured using 3D confocal and electron microscopy imaging☆
resolves10.3109/03008208709006979Changes in Collagen Fibril Diameters Across Artery Walls Including a Correlation with Glycosaminoglycan Content
resolves10.1016/S0997-7538(01)01206-2A structural model for the viscoelastic behavior of arterial walls: Continuum formulation and finite element analysis
resolves10.1529/biophysj.104.055228Topography and Mechanical Properties of Single Molecules of Type I Collagen Using Atomic Force Microscopy
resolves10.1016/j.jmbbm.2007.04.001Nanomechanics of collagen fibrils under varying cross-link densities: Atomistic and continuum studies
resolves10.1243/095441104322984004An investigation into the effects of the hierarchical structure of tendon fascicles on micromechanical properties
resolves10.1007/s10237-007-0104-zA finite element model predicts the mechanotransduction response of tendon cells to cyclic tensile loading
resolves10.1016/0009-8981(95)06174-6Age-related changes in amounts and concentrations of collagen and elastin in normotensive human thoracic aorta
The 7 references without a DOI — listed, not checked
no DOI — not checkedvan Holde, K.E., Matthews, C.: Biochemistry. Benjamin/Cummings Publishing Company Inc., Menlo Park (1995)
no DOI — not checkedMaceri, F., Marino, M., Vairo, G.: Elasto-damage modeling of biopolymer molecules response. Comput. Model. Eng. Sci. (2012, to appear) ISSN: 1526-1492
no DOI — not checkedMartini, F.H., Timmons, M.J., Tallitsch, R.B.: Human Anatomy. Prentice Hall, Englewood Cliffs (1994)
no DOI — not checkedÅstrand, H., Stålhand, J., Karlsson, M., Sonesson, B., Länne, T.: In vivo estimation of the contribution of elastin and collagen to the mechanical properties in the human abdominal aorta: effects of age and sex. J. Appl. Phys. 110:176–187 (2011)
no DOI — not checkedZhang, W., Herrera, C., Atluri, S.N., Kassab, G.S.: The effect of longitudinal pre-stretch and radial constraint on the stress distribution in the vessel wall: a new hypothesis. Mech. Chem. Biosyst. 2, 41–52 (2005)
no DOI — not checkedFung, Y.C.: Biorheology of soft tissues. Biorheology 10, 199–212 (1973)
no DOI — not checkedMaceri, F., Marino, M., Vairo, G.: From cross-linked collagen molecules to arterial tissue: a nano-micro-macroscale elastic model. Acta Mech. Solida Sin. 23(S1), 98–108 (2010)
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