Origin of axial prestretch and residual stress in arteries

Author:

Cardamone L.,Valentín A.,Eberth J. F.,Humphrey J. D.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Modelling and Simulation,Biotechnology

Reference60 articles.

1. Alastrue V, Pena E, Martinez MA, Doblare M (2007) Assessing the use of the “opening angle method” to enforce residual stresses in patient-specific arteries. Ann Biomed Eng 35: 1821–1837

2. Alford PW, Humphrey JD, Taber LA (2008) Growth and remodeling in a thick-walled artery model: effects of spatial variations in wall constituents. Biomech Model Mechanobiol 7: 245–262

3. Arribas SM, Hinek A, Gonzalez MC (2006) Elastic fibres and vascular structure in hypertension. Pharmacol Therapeu 111: 771–791

4. Azeloglu EU, Albro MB, Thimmappa VA, Ateshian GA, Costa KD (2008) Heterogeneous transmural proteoglycan distribution provides a mechanism for regulating residual stresses in the aorta. Am J Physiol 294: H1197–1205

5. Badrek-Amoudi A, Patel CK, Kane TPC, Greenwald SE (1996) The effect of age on residual strain in the rat aorta. J Biomech Eng 118: 189–192

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