Lakshmi P. Dasi, Ph.D
Affiliations: | 2009-2015 | Mechanical Engineering | Colorado State University, Fort Collins, CO |
2015-2019 | Biomedical Engineering | Ohio State University, Columbus, Columbus, OH | |
2020- | Biomedical Engineering | Georgia Institute of Technology and Emory University, Atlanta, GA, United States |
Area:
Biomedical EngineeringGoogle:
"Lakshmi Dasi"Parents
Sign in to add mentorDonald R. Webster | grad student | (Biomechanics Tree) | |
Ajit P. Yoganathan | post-doc | (Biomechanics Tree) |
Children
Sign in to add traineeMarcio Forleo | grad student | Colorado State | |
Hoda Hatoum | grad student | Ohio State | |
Brandon Moore | grad student | Colorado State | |
Brennan M. Johnson | grad student | 2014 | Colorado State |
Khandakar N. Morshed | grad student | 2014 | Colorado State |
David L. Bark | post-doc | Colorado State (MathTree) |
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Publications
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Vogl BJ, Chavez-Ponce A, Wentworth A, et al. (2023) Differential Impact of Blood Pressure Control Targets on Epicardial Coronary Flow After Transcatheter Aortic Valve Replacement. Structural Heart : the Journal of the Heart Team. 8: 100230 |
Bhat SS, Bui HT, Farnan A, et al. (2023) Development of Novel Sutureless Balloon Expandable Fetal Heart Valve Device Using Absorbable Polycaprolactone Leaflets. Annals of Biomedical Engineering |
Esmailie F, Hatoum H, Thourani VH, et al. (2023) The impact of local blood residence time in neo-sinus on post transcatheter aortic valve replacement subclinical leaflet thrombosis-a commentary. Interdisciplinary Cardiovascular and Thoracic Surgery. 36 |
Chen H, Dasi LP. (2023) An In-Vitro Study of the Flow Past a Transcatheter Aortic Valve Using Time-Resolved 3D Particle Tracking. Annals of Biomedical Engineering |
Esmailie F, Razavi A, Yeats B, et al. (2022) Biomechanics of Transcatheter Aortic Valve Replacement Complications and Computational Predictive Modeling. Structural Heart : the Journal of the Heart Team. 6: 100032 |
Bui HT, Ishrat A, James SP, et al. (2022) Design consideration of a novel polymeric transcatheter heart valve through computational modeling. Journal of the Mechanical Behavior of Biomedical Materials. 135: 105434 |
Hatoum H, Samaee M, Sathananthan J, et al. (2022) Comparison of performance of self-expanding and balloon-expandable transcatheter aortic valves. Jtcvs Open. 10: 128-139 |
Samaee M, Hatoum H, Biersmith M, et al. (2022) Gradient and pressure recovery of a self-expandable transcatheter aortic valve depends on ascending aorta size: In vitro study. Jtcvs Open. 9: 28-38 |
Hatoum H, Ahn S, Lilly S, et al. (2022) Flow dynamics of surgical and transcatheter aortic valves: Past to present. Jtcvs Open. 9: 43-56 |
Yeats BB, Yadav PK, Dasi LP, et al. (2022) Transcatheter aortic valve replacement for bicuspid aortic valve disease: does conventional surgery have a future? Annals of Cardiothoracic Surgery. 11: 389-401 |