Biomedical Engineering Reference
In-Depth Information
[47] Hassler O.: Morphological studies on the large cerebral arteries, with reference to the aeti-
ology of subarachnoid haemorrhage. Acta psychiatrica Scandinavica 154 : 1-145, 1961.
[48] Higashida R.T., Halbach V.V., Dowd C.F., Dormandy B., Bell J., Hieshima G.B.: Intravas-
cular balloon dilatation therapy for intracranial arterial vasospasm: patient selection, tech-
nique, and clinical results. Neurosurg Rev 15 (2): 89-95, 1992.
[49] Hill M., Robertson A.M.: Combined histological and mechanical evaluation of isotropic
damage to elastin in cerebral arteries. In: 6th World Congress on Biomechanics. Singapore,
2010.
[50] Hill M., Robertson A.: Abrupt recruitment of medial collagen fibres in the rabbit carotid
artery - SBC2011-5341. Proceedings of the ASME 2011 Summer Bioengineering Con-
ference (SBC2011), June 22-25, Nemacolin Woodlands Resort. Farmington, PA, USA,
2 pages, 2011.
[51] Holzapfel A.P.G.A.: Three-dimensional modeling and computational analysis of the human
cornea considering distributed collagen fibril orientations. Journal of Biomechanical Engi-
neering 130 (6): 061,006-061,012, 2008.
[52] Holzapfel G., Gasser T., Ogden R.: A new constitutive framework for arterial wall mechanics
and a comparative study of material models. Journal of Elasticity 61 (1-3): 1-48, 2000.
[53] Holzapfel G.A.: Nonlinear Solid Mechanics A Continuum Approach for Engineering.
J.
Wiley & Sons, 2000.
[54] Holzapfel G.A., Ogden R.W.: Constitutive modelling of arteries. Proceedings of the Royal
Society A: Mathematical, Physical and Engineering Sciences 466 (2118): 1551-1597, 2010.
[55] Holzapfel G.A., Ogden R.W.: Modelling the layer-specific three-dimensional residual
stresses in arteries, with an application to the human aorta. Journal of The Royal Society
Interface 7 (46): 787-799, 2010.
[56] Holzapfel G.A., Sommer G., Gasser C.T., Regitnig P.: Determination of layer-specific me-
chanical properties of human coronary arteries with nonatherosclerotic intimal thickening
and related constitutive modeling. Am. J. Physiol. Heart Circ. Physiol. 289 : H2048-H2058,
2005.
[57] Honma Y., Fujiwara T., Irie K., Ohkawa M., Nagao S.: Morphological changes in human
cerebral arteries after pta for vasospasm caused by subarachnoid hemorrhage. Neurosurgery
36 (6): 1073-1081, 1995.
[58] Humphrey J.D., Baek S., Niklason L.E.: Biochemomechanics of cerebral vasospasm and its
resolution: I. a new hypothesis and theoretical framework. Annals of Biomedical Engineer-
ing 35 (9): 1485-1497, 2007.
[59] Humphrey J.D., Rajagopal K.R.: A constrained mixture model for growth and remodeling
of soft tissues.
Mathematical Models and Methods in Applied Sciences 12 (3): 407-430,
2002.
[60] Humphrey J.D., Rajagopal K.R.: A constrained mixture model for arterial adaptations to a
sustained step change in blood flow. Biomechanics And Modeling In Mechanobiology 2 (2):
109-126, 2003.
[61] Jiang C.F., Avolio A.P.: Characterisation of structural changes in the arterial elastic matrix
by a new fractal feature: directional fractal curve.
Medical & biological engineering &
computing 35 (3): 246-252, 1997.
[62] Kachanov L.: Time of rupture process under creep conditions. IVZ Akad. Nauk, S.S.R., Otd
Tech Nauk 8 : 26-31 (1958)
[63] Keeley F.W.: The synthesis of soluble and insoluble elastin in chicken aorta as a function
of development and age. effect of a high cholesterol diet. Canadian journal of biochemistry
57 (11): 1273-1280 (1979)
[64] Kondo S., Hashimoto N., Kikuchi H., Hazama F., Nagata I., Kataoka H.: Cerebral aneurysms
arising at nonbranching sites. an experimental study.
Stroke 28 (2): 398-403; discussion
403-394, 1997.
[65] Krex D., Schackert H.K., Schackert G.: Genesis of cerebral aneurysms-an update.
Acta
Neurochirurgica 143 (5): 429-448; discussion 448-429, 2001.
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