Philip H. Kao, Ph.D.

Affiliations: 
2010 Mechanical Engineering University of Colorado, Boulder, Boulder, CO, United States 
Area:
Applied Mechanics, Biomechanics Biophysics, Mechanical Engineering
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"Philip Kao"

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Jerry Qi grad student 2010 CU Boulder
 (Biaxial mechanical characterization and microstructure-driven modeling of elastic pulmonary artery walls of large mammals under hypertensive conditions.)
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Publications

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Yu K, Westbrook KK, Kao PH, et al. (2013) Design considerations for shape memory polymer composites with magnetic particles Journal of Composite Materials. 47: 51-63
Tian L, Lammers SR, Kao PH, et al. (2012) Impact of residual stretch and remodeling on collagen engagement in healthy and pulmonary hypertensive calf pulmonary arteries at physiological pressures. Annals of Biomedical Engineering. 40: 1419-33
Tian L, Lammers SR, Kao PH, et al. (2011) Linked opening angle and histological and mechanical aspects of the proximal pulmonary arteries of healthy and pulmonary hypertensive rats and calves. American Journal of Physiology. Heart and Circulatory Physiology. 301: H1810-8
Kao PH, Lammers SR, Tian L, et al. (2011) A microstructurally driven model for pulmonary artery tissue. Journal of Biomechanical Engineering. 133: 051002
Westbrook KK, Kao PH, Castro F, et al. (2011) A 3D finite deformation constitutive model for amorphous shape memory polymers: A multi-branch modeling approach for nonequilibrium relaxation processes Mechanics of Materials. 43: 853-869
Kao PH, Westbrook KK, Castro F, et al. (2011) Design considerations for shape memory polymer composites with magneto-sensitive particles Iccm International Conferences On Composite Materials
Kao PH, Lammers SR, Hunter K, et al. (2010) Constitutive Modeling of Anisotropic Finite-Deformation Hyperelastic Behaviors of Soft Materials Reinforced by Tortuous Fibers. The International Journal of Structural Changes in Solids : Mechanics and Applications. 2: 19-29
Hunter KS, Albietz JA, Lee PF, et al. (2010) In vivo measurement of proximal pulmonary artery elastic modulus in the neonatal calf model of pulmonary hypertension: development and ex vivo validation. Journal of Applied Physiology (Bethesda, Md. : 1985). 108: 968-75
Lammers SR, Kao PH, Tian L, et al. (2009) Quantification of elastin residual stretch in fresh artery tissue: Impact on artery material properties and pulmonary hypertension pathophysiology Proceedings of the Asme Summer Bioengineering Conference 2009, Sbc2009. 1147-1148
Lammers SR, Kao PH, Qi HJ, et al. (2008) Changes in the structure-function relationship of elastin and its impact on the proximal pulmonary arterial mechanics of hypertensive calves. American Journal of Physiology. Heart and Circulatory Physiology. 295: H1451-9
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