Calcification (CALC) of bioprosthetic heart valves (BHVs) fabricated from either glutaraldehyde-pretreated bovine pericardial tissue or porcine aortic valves is the most frequent cause of clinical failure of these devices. Previous studies have demonstrated that calcification is inhibited by diphosphonate compounds released into the vicinity of bioprosthetic tissue implanted subcutaneously in rats. Controlled release of the anticalcification agent ethanehydroxy diphosphonate (EHDP), as a 1:1 mixture of Na2 EHDP and CaEHDP from cylindrical polyurethane (PU) reservoirs (o.d. = 0.36 cm i.d. = 0.33 cm, length = 4 cm) fabricated by solvent casting was assessed in vitro and in vivo. The diffusivity (D), determined independently using standard dif...
ABSTRACT Abigail J. Christian Robert J. Levy Harry Ischiropoulos Bioprosthetic heart valves (BHV) ar...
Calcification complicates the use of the polymer polyurethane in cardiovascular implants. To date on...
AbstractObjective: Calcification is the most important cause of structural deterioration of glutaral...
Calcification (CALC) is the most frequent cause for the failure of bioprosthetic heart valves fabric...
Calcification is a frequent cause of the clinical failure of bioprosthetic heart valves fabricated f...
Cardiovascular implant mineralization involving bioprosthetic materials, such as glutaraldehyde cros...
This study focused on the association of extrinsic alkaline phosphatase (AP) activity with both earl...
Calcification has limited the clinical utility of bioprosthetic heart valves fabricated from either ...
Controlled release of ethanehydroxy diphosphonate from polyurethane reservoirs to inhibit calcificat...
Calcification is the principal cause of the clinical failure of bioprosthetic heart valves fabricate...
Calcification is the most frequent cause of clinical dysfunction of glutaraldehyde treated bioprosth...
Heart valve disease is prevalent among Canadian population and worldwide; and for failing valves, th...
Calcification of bioprosthetic heart valves fabricated from glutaraldehyde pretreated bovine pericar...
The principal cause of the clinical failure of bioprosthetic heart valves fabricated from glutaralde...
Postimplant calcific degeneration is a frequent cause of clinical failures of glutaraldehyde cross-l...
ABSTRACT Abigail J. Christian Robert J. Levy Harry Ischiropoulos Bioprosthetic heart valves (BHV) ar...
Calcification complicates the use of the polymer polyurethane in cardiovascular implants. To date on...
AbstractObjective: Calcification is the most important cause of structural deterioration of glutaral...
Calcification (CALC) is the most frequent cause for the failure of bioprosthetic heart valves fabric...
Calcification is a frequent cause of the clinical failure of bioprosthetic heart valves fabricated f...
Cardiovascular implant mineralization involving bioprosthetic materials, such as glutaraldehyde cros...
This study focused on the association of extrinsic alkaline phosphatase (AP) activity with both earl...
Calcification has limited the clinical utility of bioprosthetic heart valves fabricated from either ...
Controlled release of ethanehydroxy diphosphonate from polyurethane reservoirs to inhibit calcificat...
Calcification is the principal cause of the clinical failure of bioprosthetic heart valves fabricate...
Calcification is the most frequent cause of clinical dysfunction of glutaraldehyde treated bioprosth...
Heart valve disease is prevalent among Canadian population and worldwide; and for failing valves, th...
Calcification of bioprosthetic heart valves fabricated from glutaraldehyde pretreated bovine pericar...
The principal cause of the clinical failure of bioprosthetic heart valves fabricated from glutaralde...
Postimplant calcific degeneration is a frequent cause of clinical failures of glutaraldehyde cross-l...
ABSTRACT Abigail J. Christian Robert J. Levy Harry Ischiropoulos Bioprosthetic heart valves (BHV) ar...
Calcification complicates the use of the polymer polyurethane in cardiovascular implants. To date on...
AbstractObjective: Calcification is the most important cause of structural deterioration of glutaral...