Hai-Chao Han, Ph.D.

Affiliations: 
2002 Mechanical Engineering Georgia Institute of Technology, Atlanta, GA 
 2003- Biomedical Engineering The University of Texas at San Antonio, San Antonio, TX, United States 
Area:
Biomedical Engineering
Website:
https://klesse.utsa.edu/faculty/profiles/han-hai-chao.html
Google:
"Hai-Chao Han"
Bio:

https://klesse.utsa.edu/faculty/documents/mechanical/han-cv-s2020-meweb.pdf

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Publications

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Han HC, Sultan S, Xiang M. (2023) The effects of axial twisting and material non-symmetry on arterial bent buckling. Journal of Biomechanics. 157: 111735
Han HC, Liu Q, Baek S. (2022) Numerical simulations of the nonsymmetric growth and remodeling of arteries under axial twisting. Journal of Biomechanics. 140: 111165
Han HC. (2022) Effects of material non-symmetry on the mechanical behavior of arterial wall. Journal of the Mechanical Behavior of Biomedical Materials. 129: 105157
Seddighi Y, Han HC. (2021) Buckling of Arteries With Noncircular Cross Sections: Theory and Finite Element Simulations. Frontiers in Physiology. 12: 712636
Sharzehee M, Seddighi Y, Sprague EA, et al. (2020) A Hemodynamic Comparison of Myocardial Bridging and Coronary Atherosclerotic Stenosis: A Computational Model with Experimental Evaluation. Journal of Biomechanical Engineering
Sharzehee M, Fatemifar F, Han HC. (2019) Computational simulations of the helical buckling behavior of blood vessels. International Journal For Numerical Methods in Biomedical Engineering. e3277
Sharzehee M, Chang Y, Song JP, et al. (2019) Hemodynamic effects of myocardial bridging in patients with hypertrophic cardiomyopathy. American Journal of Physiology. Heart and Circulatory Physiology
Oglesby M, Escobedo D, Escobar GP, et al. (2019) Trabecular Cutting: A Novel Surgical Therapy to Increase Diastolic Compliance. Journal of Applied Physiology (Bethesda, Md. : 1985)
Fatemifar F, Feldman M, Clarke G, et al. (2019) Computational modeling of human left ventricle to assess the role of trabeculae carneae on the diastolic and systolic functions. Journal of Biomechanical Engineering
Fatemifar F, Feldman M, Oglesby M, et al. (2018) Comparison of Biomechanical Properties and Microstructure of Trabeculae Carneae, Papillary muscles, and Myocardium in Human Heart. Journal of Biomechanical Engineering
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