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SURGICAL HEART VALVES
MECHANICAL HEART VALVES (MHV)

 

Unique design features have established Abbott mechanical heart valves—including the Regent™ and Masters Series—as a gold standard for reliability and performance, while maintaining low complication rates over the long term.

MASTERS™ SERIES

IMPLANTABILITY OPTIONS WITH MASTERS™ SERIES

The Masters™ series mechanical heart valves are rotatable, bileaflet valves designed for secure implantation. The portfolio includes an expansive range of sizes to help you make the best decisions for your patients and the Hemodynamic Plus™ (HP) models are designed to provide a larger effective orifice area.


The 15 mm pediatric heart valves join the family of 17–27 mm Masters™ HP mechanical heart valves and is suitable for treating newborns and babies


Low valve implant height minimizes interference with subvalvular structures in the mitral position

TWO DISTINCT CUFF TYPES PROVIDE YOU WITH DIFFERENT OPTIONS

EXPANDED CUFF

STANDARD CUFF

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References
  1. Internal Sales Tracking Spreadsheet. Data on file at Abbott.
  2. MHV Paper List. Data on file at Abbott.
  3. Jun BH, Saikrishnan N, Yoganathan AP. Micro particle image velocimetry measurements of steady diastolic leakage flow in the hinge of a St. Jude Medical Regent™ mechanical heart valve. Ann Biomed Eng. 2014;42(3):526-540. Published online 2013 Oct 2.doi: 10.1007/s10439-013- 0919-y
  4. Pibarot P, Dumesnil JG. Hemodynamic and clinical impact of prosthesis-patient mismatch in the aortic valve position and its prevention. J Am Coll Cardiol. 2000;36(4):1131-1141. doi.org/10.1016/s0735-1097(00)00859-7
  5. Shipkowitz T, Ambrus J, Kurk J, et al. Evaluation technique for bileaflet mechanical valves. J Heart Valve Dis. 2002;11(2):275-282.
  6. Internal Design Prints. Data on file at Abbott.
  7. Alemu Y, Bluestein D. Flow induced platelet activation and damage accumulation in a mechanical heart valve: numerical studies. Artif Organs. 2007;31(9):677-688. doi: 10.1111/j.1525-1594.2007.00446.x.
  8. Gammie JS, Chikwe J, Badhwar V, et al. Isolated mitral valve surgery: The Society of Thoracic Surgeons Adult Cardiac Surgery Database analysis. Ann Thorac Surg. 2018;106(3):716-727.
  9. Satter Y, Rauf H, Bareeqa S, et al. Transcatheter aortic valve replacement versus surgical aortic valve replacement: A review of aortic stenosis management. Cureus. 2019;11(12):e6431. doi: 10.7759/cureus.6431
  10. Nishimura RA. 2017 AHA/ACC focused update of the 2014 AHA/ACC guideline for the management of patients with valvular heart disease: A report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines. Circulation. 2017;136(9):1-123.  
  11. Ren X. Aortic stenosis. Medscape. emedicine.medscape.com/article/150638-overview. Updated May 7, 2019.
  12. Dziadzko V, Clavel MA, Dziadzko M, et al. Outcome and undertreatment of mitral regurgitation: A community cohort study. Lancet. 2018;391(10124): 960-969.
  13. Regent Instructions for Use.
  14. Regent PMA Supplement.
  15. Okamura H, Yamaguchi A, Morita H, et al. Is the threshold for postoperative prosthesis-patient mismatch the same for all prostheses? Surg Today. 2013;43:871-876.
  16. Masters Series Instructions for Use.
  17. Baumgartner H, et al. 2017 ESC/EACTS Guidelines for the management of valvular heart disease: The Task Force for the Management of Valvular Heart Disease of the European Society of Cardiology (ESC) and the European Association for Cardio-Thoracic Surgery (EACTS). Eur Heart J. 2017;38(21):2739-2791.

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