Journal article
Scientific Reports, vol. 13, Nature Publishing Group UK London, 2023, p. 8352
Research Assistant Professor | Medical Modeling & Simulation | OERI, VHS, NCCMMS, EnMed
Office of Enterprise Research and Innovation (OERI) | Macon and Joan Brock Virginia Health Sciences (VHS) | National Center for Collaboration in Medical Modeling & Simulation (NCCMMS) | Institute for Engineering in Medicine, Health, and Human Performance (EnMed)
APA
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Azarnoosh, J., Ghorbannia, A., Ibrahim, E.-S. H., Jurkiewicz, H., Kalvin, L., & LaDisa Jr, J. F. (2023). Temporal evolution of mechanical stimuli from vascular remodeling in response to the severity and duration of aortic coarctation in a preclinical model. Scientific Reports, 13, 8352.
Chicago/Turabian
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Azarnoosh, Jamasp, Arash Ghorbannia, El-Sayed H Ibrahim, Hilda Jurkiewicz, Lindsey Kalvin, and John F LaDisa Jr. “Temporal Evolution of Mechanical Stimuli from Vascular Remodeling in Response to the Severity and Duration of Aortic Coarctation in a Preclinical Model.” Scientific Reports 13 (2023): 8352.
MLA
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Azarnoosh, Jamasp, et al. “Temporal Evolution of Mechanical Stimuli from Vascular Remodeling in Response to the Severity and Duration of Aortic Coarctation in a Preclinical Model.” Scientific Reports, vol. 13, Nature Publishing Group UK London, 2023, p. 8352.
BibTeX Click to copy
@article{azarnoosh2023a,
title = {Temporal evolution of mechanical stimuli from vascular remodeling in response to the severity and duration of aortic coarctation in a preclinical model},
year = {2023},
journal = {Scientific Reports},
pages = {8352},
publisher = {Nature Publishing Group UK London},
volume = {13},
author = {Azarnoosh, Jamasp and Ghorbannia, Arash and Ibrahim, El-Sayed H and Jurkiewicz, Hilda and Kalvin, Lindsey and LaDisa Jr, John F}
}