Journal article
Circulation, vol. 150, Lippincott Williams \& Wilkins Hagerstown, MD, 2024, pp. A4117345--A4117345
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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Jensen, C., Ghorbannia, A., Urick, D., Moya-Mendez, M., Vekstein, A., Draeger, E., … Randles, A. (2024). Predicting Downstream Aneurysmal Degeneration Following Type A Dissection Repair With Computational Fluid Dynamics. Circulation, 150, A4117345–A4117345.
Chicago/Turabian
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Jensen, Christopher, Arash Ghorbannia, David Urick, Mary Moya-Mendez, Andrew Vekstein, Erik Draeger, Adam Williams, G Hughes, and Amanda Randles. “Predicting Downstream Aneurysmal Degeneration Following Type A Dissection Repair With Computational Fluid Dynamics.” Circulation 150 (2024): A4117345–A4117345.
MLA
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Jensen, Christopher, et al. “Predicting Downstream Aneurysmal Degeneration Following Type A Dissection Repair With Computational Fluid Dynamics.” Circulation, vol. 150, Lippincott Williams \& Wilkins Hagerstown, MD, 2024, pp. A4117345–A4117345.
BibTeX Click to copy
@article{jensen2024a,
title = {Predicting Downstream Aneurysmal Degeneration Following Type A Dissection Repair With Computational Fluid Dynamics},
year = {2024},
journal = {Circulation},
pages = {A4117345--A4117345},
publisher = {Lippincott Williams \& Wilkins Hagerstown, MD},
volume = {150},
author = {Jensen, Christopher and Ghorbannia, Arash and Urick, David and Moya-Mendez, Mary and Vekstein, Andrew and Draeger, Erik and Williams, Adam and Hughes, G and Randles, Amanda}
}