Patient-Specific Quantification of Normal and Bicuspid Aortic Valve Leaflet Deformations from Clinically Derived Images
Author:
Funder
National Heart, Lung, and Blood Institute
American Heart Association
National Science Foundation
Publisher
Springer Science and Business Media LLC
Subject
Biomedical Engineering
Link
https://link.springer.com/content/pdf/10.1007/s10439-021-02882-0.pdf
Reference31 articles.
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2. Aggarwal, A., A. M. Pouch, E. Lai, J. Lesicko, P. A. Yushkevich, J. H. Gorman, R. C. Gorman, and M. S. Sacks. In-vivo heterogeneous functional and residual strains in human aortic valve leaflets. J. Biomech. 49(12):2481–2490, 2016.
3. Ayoub, S., G. Ferrari, R. C. Gorman, J. H. Gorman, F. J. Schoen, and M. S. Sacks. Heart valve biomechanics and underlying mechanobiology. Compr. Physiol. 6(4):1743–1780, 2016.
4. Ayoub, S., C.-H. Lee, K. H. Driesbaugh, W. Anselmo, C. T. Hughes, G. Ferrari, R. C. Gorman, J. H. Gorman, and M. S. Sacks. Regulation of valve interstitial cell homeostasis by mechanical deformation: implications for heart valve disease and surgical repair. J. R. Soc. Interface. 14(135):20170580, 2017.
5. Balachandran, K., P. Sucosky, H. Jo, and A. P. Yoganathan. Elevated cyclic stretch alters matrix remodeling in aortic valve cusps: implications for degenerative aortic valve disease. Am. J. Physiol.-Heart Circ. Physiol. 296(3):H756–H764, 2009.
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