Mechanical and Structural Evaluation of Tricuspid Bicuspidization in a Porcine Model
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cardiology and Cardiovascular Medicine,Biomedical Engineering
Link
https://link.springer.com/content/pdf/10.1007/s13239-020-00480-0.pdf
Reference60 articles.
1. Adkins, A., et al. Force required to cinch the tricuspid annulus: an ex-vivo study. J. Heart Valve Dis. 24(5):644, 2015.
2. Aleman, J., et al. Effects of Cinching Force on the Tricuspid Annulus: A Species Comparison. J. Cardiovasc. Dis. Diagn. 5:4, 2017.
3. Amini Khoiy, K., et al. Surface strains of porcine tricuspid valve septal leaflets measured in ex vivo beating hearts. J. Biomech. Eng. 138(11):111006, 2016.
4. Besler, C., C. U. Meduri, and P. Lurz. Transcatheter treatment of functional tricuspid regurgitation using the trialign device. Interv. Cardiol. Rev. 13(1):8, 2018.
5. Bhattacharya, S., et al. Tension to passively cinch the mitral annulus through coronary sinus access: An ex vivo study in ovine model. J. Biomech. 47(6):1382–1388, 2014.
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1. The Early Effects on Tricuspid Annulus and Right Chambers Dimensions in Successful Tricuspid Valve Bicuspidization;Journal of Clinical Medicine;2023-06-16
2. Tricuspid annulus cinching force under pulmonary hypertensive right ventricle conditions: An ex vivo study;Journal of Biomechanics;2021-06
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