Biomedical Engineering Reference
In-Depth Information
19. Chiquet, M.: Regulation of extracellular matrix gene expression by mechanical stress.
Matrix Biology 18, 417-426 (1999)
20. Armentano, R., Barra, J., Levenson, J., Simon, A., Pichel, R.: Arterial wall mechanics in
conscious dogs: assessment of viscous, inertial and elastic moduli to characterize aortic wall
behaviour. Circ. Res. 76, 468-478 (1995)
21. Shadwick, R.: Mechanical design in arteries. J. Exp. Biology 202, 3305-3313 (1999)
22. Raghavan, M.L., Webster, M., Vorp, D.A.: Ex-vivo bio-mechanical behavior of AAA:
assessment using a new mathematical model. Ann. Biomed. Eng. 24, 573-582 (1999)
23. Kakisis, J.D., Liapis, C.D., Sumpio, B.E.: Effects of cyclic strain on vascular cells.
Endothelium 11, 17-28 (2004)
24. Gleason, R.L, Humphrey, J.D.: A 2d constrained mixture model for arterial adaptations to
large changes in flow, pressure and axial stretch. Math. Med. Biology 22, 347-369 (2005)
25. Gupta, V., Grande-Allen, K.J.: Effects of static and cyclic loading in regulating extracellular
matrix synthesis by cardiovascular cells. Cardiovasc. Res. 72, 375-383 (2006)
26. Alberts B., Bray D., Lewis J., Raff M., Roberts K., Watson J.D., (1994) Molecular biology
of the cell, 4th edn. Garland Publishing, New York
27. McAnulty, R.J.: Fibroblasts and myofibroblasts: their source, function and role in disease.
Int. J. Biochem. Cell Biology 39, 666-671 (2007)
28. He, C.M, Roach, M.: The composition and mechanical properties of abdominal aortic
aneurysms. J. Vasc. Surg. 20, 6-13 (1993)
29. Shimizu, K., Mitchell, R.N., Libby, P.: Inflammation and cellular immune responses in
abdominal aortic aneurysms. Arteriosclerosis Thromb. Vasc. Biology 26, 987-994 (2006)
30. Nissen, R., Cardinale, G.J., Udenfriend, S.: Increased turnover of arterial collagen in
hypertensive rats. Proc. Natl. Acad. Sci. U.S.A. Med. Sci. 75, 451-453 (1978)
31. Arribas,
S.M.,
Hinek,
A.,
Gonzalez,
M.C.:
Elastic
fibres
and
vascular
structure
in
hypertension. Pharm. Ther. 111, 771-791 (2006)
32. Holzapfel, G.A., Gasser, T.C., Ogden, R.W.: A new constitutive framework for arterial wall
mechanics and a comparative study of material models. J. Elast. 61, 1-48 (2000)
33. Watton, P.N., Ventikos, Y., Holzapfel, G.A.: Modelling the growth and stabilisation of
cerebral aneurysms. Math. Med. Biology 26, 133-164 (2009)
34. Watton, P.N, Ventikos, Y.: Modelling evolution of saccular cerebral aneurysms. J. Strain
Anal. 44, 375-389 (2009)
35. Watton, P.N., Raberger, N.B., Holzapfel, G.A., Ventikos, Y.: Coupling the hemodynamic
environment
to
the
evolution
of
cerebral
aneurysms:
computational
framework
and
numerical examples. ASME J. Biomech. Eng. 131, 101003 (2009)
36. Watton, P.N., Selimovic, A., Raberger, N.B., Huang, P., Holzapfel, G.A., Ventikos, Y.:
Modelling
evolution
and
the
evolving
mechanical
environment
of
saccular
cerebral
aneurysms. Biomech. Model. Mechanobiol. 11, 109-132 (2011)
37. Watton, P.N., Ventikos, Y., Holzapfel, G.A.: Modelling cerebral aneurysm evolution,
biomechanics and mechanobiology of aneurysms. Springer, Heidelberg (2011)
38. Dua, M.M, Dalman, R.L.: Hemodynamic influences on abdominal aortic aneurysm disease:
application of biomechanics to aneurysm pathophysiology. Vasc. Pharm. 53, 11-21 (2010)
39. Nakahashi, T.K., Tsao, K.H.P.S., Sho, E., Sho, M., Karwowski, J.K., Yeh, C., Yang, R.B.,
Topper, J.N., Dalman, R.L.: Flow loading inducesmacrophage antioxidative gene expression
in experimental aneurysms. Arteriosclerosis Thromb. Vasc. Biology 22, 2017-2022 (2002)
40. Hoshina, K., Sho, E., Sho, M., Nakahashi, T.K., Dalman, R.L.: Wall shear stress and strain
modulate experimental aneurysm cellularity. J. Vasc. Surg. 37, 1067-1074 (2003)
41. Sho, E., Sho, M., Hoshina, K., et al.: Hemodynamic forces regulate mural macrophage
infiltration in experimental aortic aneurysms. Exp. Mol. Pathol. 76, 108-116 (2004)
42. Heil, M.: The stability of cylindrical shells conveying viscous flow. J. Fluids Struct. 10,
173-196 (1996)
43. Watton, P.N.: Mathematical modelling of the abdominal aortic aneurysm. Ph.D. Thesis,
Department of Mathematics, University of Leeds, Leeds, UK (2002)
Search WWH ::




Custom Search