Bahar Fata, Ph.D.

Affiliations: 
2012 University of Pittsburgh, Pittsburgh, PA, United States 
Area:
Biomedical Engineering, Mechanical Engineering, Biomechanics Biophysics
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"Bahar Fata"

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Michael S. Sacks grad student 2012 University of Pittsburgh
 (Biomechancial characterization of postnatal growth behavior in the ovine main pulmonary artery.)
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Publications

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Fata B, Zhang W, Amini R, et al. (2016) Mesoscale structural models in the growing pulmonary artery Structure-Based Mechanics of Tissues and Organs. 383-402
Fata B, Zhang W, Amini R, et al. (2014) Insights into regional adaptations in the growing pulmonary artery using a meso-scale structural model: effects of ascending aorta impingement. Journal of Biomechanical Engineering. 136: 021009
Gottlieb D, Fata B, Powell AJ, et al. (2013) Pulmonary artery conduit in vivo dimensional requirements in a growing ovine model: comparisons with the ascending aorta. The Journal of Heart Valve Disease. 22: 195-203
Fata B, Gottlieb D, Mayer JE, et al. (2013) Estimated in vivo postnatal surface growth patterns of the ovine main pulmonary artery and ascending aorta. Journal of Biomechanical Engineering. 135: 71010-12
Fata B, Carruthers CA, Gibson G, et al. (2013) Regional structural and biomechanical alterations of the ovine main pulmonary artery during postnatal growth. Journal of Biomechanical Engineering. 135: 021022
Fata B, Carruthers CA, Gibson GA, et al. (2012) Regional biomechanical and microstructural alterations of the ovine main pulmonary artery during postnatal growth Asme 2012 Summer Bioengineering Conference, Sbc 2012. 477-478
Fata B, Gottlieb D, Mayer JE, et al. (2011) Effect of in vivo physical interaction of the ascending aorta and main pulmonary artery on postnatal surface growth patterns in ovine Asme 2011 Summer Bioengineering Conference, Sbc 2011. 1203-1204
Fata B, Galdi E, Sacks MS. (2011) A comparative study of the main pulmonary artery and ascending aorta biomechanical behavior Asme 2011 Summer Bioengineering Conference, Sbc 2011. 811-812
Chen K, Fata B, Einstein DR. (2008) Characterization of the highly nonlinear and anisotropic vascular tissues from experimental inflation data: a validation study toward the use of clinical data for in-vivo modeling and analysis. Annals of Biomedical Engineering. 36: 1668-80
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