Dr. Andrea Corti, Ph.D.
Ph.D. in Biomedical Engineering with a focus on cardiovascular biomechanics using numerical simulations, material analysis and micro-computed tomography imaging
Research Expertise
About
Publications
The role of oxygen transport in atherosclerosis and vascular disease
Journal of The Royal Society Interface / Apr 01, 2020
Tarbell, J., Mahmoud, M., Corti, A., Cardoso, L., & Caro, C. (2020). The role of oxygen transport in atherosclerosis and vascular disease. Journal of The Royal Society Interface, 17(165), 20190732. https://doi.org/10.1098/rsif.2019.0732
Biaxial testing system for characterization of mechanical and rupture properties of small samples
HardwareX / Oct 01, 2022
Corti, A., Shameen, T., Sharma, S., De Paolis, A., & Cardoso, L. (2022). Biaxial testing system for characterization of mechanical and rupture properties of small samples. HardwareX, 12, e00333. https://doi.org/10.1016/j.ohx.2022.e00333
Stenting-induced Vasa Vasorum compression and subsequent flow resistance: a finite element study
Biomechanics and Modeling in Mechanobiology / Aug 04, 2020
Corti, A., De Paolis, A., Tarbell, J., & Cardoso, L. (2020). Stenting-induced Vasa Vasorum compression and subsequent flow resistance: a finite element study. Biomechanics and Modeling in Mechanobiology, 20(1), 121–133. https://doi.org/10.1007/s10237-020-01372-x
The effect of plaque morphology, material composition and microcalcifications on the risk of cap rupture: A structural analysis of vulnerable atherosclerotic plaques
Frontiers in Cardiovascular Medicine / Oct 06, 2022
Corti, A., De Paolis, A., Grossman, P., Dinh, P. A., Aikawa, E., Weinbaum, S., & Cardoso, L. (2022). The effect of plaque morphology, material composition and microcalcifications on the risk of cap rupture: A structural analysis of vulnerable atherosclerotic plaques. Frontiers in Cardiovascular Medicine, 9. https://doi.org/10.3389/fcvm.2022.1019917
Tunable elastomer materials with vascular tissue-like rupture mechanics behavior
Biomedical Physics & Engineering Express / Aug 02, 2022
Corti, A., Shameen, T., Sharma, S., De Paolis, A., & Cardoso, L. (2022). Tunable elastomer materials with vascular tissue-like rupture mechanics behavior. Biomedical Physics & Engineering Express, 8(5), 055022. https://doi.org/10.1088/2057-1976/ac82f6
Microcalcifications and plaque rupture
Biomechanics of Coronary Atherosclerotic Plaque / Jan 01, 2021
Cardoso, L., & Weinbaum, S. (2021). Microcalcifications and plaque rupture. Biomechanics of Coronary Atherosclerotic Plaque, 381–409. https://doi.org/10.1016/b978-0-12-817195-0.00017-2
Education
The City College of New York Department of Biomedical Engineering
PhD / December, 2022
Rijksuniversiteit Groningen
Master of Science, Biomedical Engineering
Politecnico di Milano
Bachelor of Science, Biomedical Engineering
Experience
The City College of New York
Graduate Researcher / September, 2018 — January, 2023
The City College of New York Department of Biomedical Engineering
Graudate Teaching Assistant in Dynamical Systems and Modeling / August, 2022 — December, 2022
Graduate Teaching Assistant in Dynamical Systems and Modeling / August, 2021 — December, 2021
Graduate Student Instructor in Cell and Tissue Mechanics / February, 2021 — May, 2021
Graduate Teaching Assistant in Cell and Tissue Transport / August, 2019 — December, 2019
Philips Consumer Lifestyle BV
Internship / April, 2017 — July, 2017
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