Cardiovascular implant mineralization involving bioprosthetic materials, such as glutaraldehyde cross linked porcine aortic valves or synthetic materials such as polyurethanes, is an important problem that frequently leads to clinical failure of bioprosthetic heart valves, and complicates long-term experimental artificial heart device implants. Novel, proprietary, calcification resistant polyetherurethanes (PEU) as an alternative to bioprosthetic materials were the subject of these investigations. A series of PEU was derivatized through a proprietary reaction mechanism to achieve covalent binding of 100 to 500 n M /mg of bisphosphonate (2-hydroxyethane bisphosphonic acid, HEBP). The stability of HEBP (physically dispersed or covalently boun...
ABSTRACT Abigail J. Christian Robert J. Levy Harry Ischiropoulos Bioprosthetic heart valves (BHV) ar...
Synthetic polymer leaflets in prosthetic cardiac valves hold the potential to reduce calcification a...
Calcification is the major factor limiting the clinical use of bioprostheses. It may be prevented by...
Cardiovascular implant mineralization involving bioprosthetic materials, such as glutaraldehyde cros...
Calcification (CALC) of bioprosthetic heart valves (BHVs) fabricated from either glutaraldehyde-pret...
Calcification is a frequent cause of the clinical failure of bioprosthetic heart valves fabricated f...
Calcification (CALC) is the most frequent cause for the failure of bioprosthetic heart valves fabric...
Calcification has limited the clinical utility of bioprosthetic heart valves fabricated from either ...
Calcification of bioprosthetic heart valves fabricated from glutaraldehyde pretreated bovine pericar...
Calcification complicates the use of the polymer polyurethane in cardiovascular implants. To date on...
To investigate the correlation between blood compatibility and biostability as well as the calcific...
Calcification is the principal cause of the clinical failure of bioprosthetic heart valves fabricate...
Calcification of cardiovascular prosthetic implants is a common and important problem. This review p...
The principal cause of the clinical failure of bioprosthetic heart valves fabricated from glutaralde...
Synthetic polymer leaflets in prosthetic cardiac valves hold the potential to reduce calcification a...
ABSTRACT Abigail J. Christian Robert J. Levy Harry Ischiropoulos Bioprosthetic heart valves (BHV) ar...
Synthetic polymer leaflets in prosthetic cardiac valves hold the potential to reduce calcification a...
Calcification is the major factor limiting the clinical use of bioprostheses. It may be prevented by...
Cardiovascular implant mineralization involving bioprosthetic materials, such as glutaraldehyde cros...
Calcification (CALC) of bioprosthetic heart valves (BHVs) fabricated from either glutaraldehyde-pret...
Calcification is a frequent cause of the clinical failure of bioprosthetic heart valves fabricated f...
Calcification (CALC) is the most frequent cause for the failure of bioprosthetic heart valves fabric...
Calcification has limited the clinical utility of bioprosthetic heart valves fabricated from either ...
Calcification of bioprosthetic heart valves fabricated from glutaraldehyde pretreated bovine pericar...
Calcification complicates the use of the polymer polyurethane in cardiovascular implants. To date on...
To investigate the correlation between blood compatibility and biostability as well as the calcific...
Calcification is the principal cause of the clinical failure of bioprosthetic heart valves fabricate...
Calcification of cardiovascular prosthetic implants is a common and important problem. This review p...
The principal cause of the clinical failure of bioprosthetic heart valves fabricated from glutaralde...
Synthetic polymer leaflets in prosthetic cardiac valves hold the potential to reduce calcification a...
ABSTRACT Abigail J. Christian Robert J. Levy Harry Ischiropoulos Bioprosthetic heart valves (BHV) ar...
Synthetic polymer leaflets in prosthetic cardiac valves hold the potential to reduce calcification a...
Calcification is the major factor limiting the clinical use of bioprostheses. It may be prevented by...