Heart valve replacement. 1985

P B Deverall, and G Campalani, and D R Anderson

UI MeSH Term Description Entries
D007223 Infant A child between 1 and 23 months of age. Infants
D002648 Child A person 6 to 12 years of age. An individual 2 to 5 years old is CHILD, PRESCHOOL. Children
D002675 Child, Preschool A child between the ages of 2 and 5. Children, Preschool,Preschool Child,Preschool Children
D006349 Heart Valve Diseases Pathological conditions involving any of the various HEART VALVES and the associated structures (PAPILLARY MUSCLES and CHORDAE TENDINEAE). Heart Valvular Disease,Valvular Heart Diseases,Disease, Heart Valvular,Heart Disease, Valvular,Heart Valve Disease,Heart Valvular Diseases,Valve Disease, Heart,Valvular Disease, Heart,Valvular Heart Disease
D006350 Heart Valve Prosthesis A device that substitutes for a heart valve. It may be composed of biological material (BIOPROSTHESIS) and/or synthetic material. Prosthesis, Heart Valve,Cardiac Valve Prosthesis,Cardiac Valve Prostheses,Heart Valve Prostheses,Prostheses, Cardiac Valve,Prostheses, Heart Valve,Prosthesis, Cardiac Valve,Valve Prostheses, Cardiac,Valve Prostheses, Heart,Valve Prosthesis, Cardiac,Valve Prosthesis, Heart
D006351 Heart Valves Flaps of tissue that prevent regurgitation of BLOOD from the HEART VENTRICLES to the HEART ATRIA or from the PULMONARY ARTERIES or AORTA to the ventricles. Cardiac Valves,Cardiac Valve,Heart Valve,Valve, Cardiac,Valve, Heart,Valves, Cardiac,Valves, Heart
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D001705 Bioprosthesis Prosthesis, usually heart valve, composed of biological material and whose durability depends upon the stability of the material after pretreatment, rather than regeneration by host cell ingrowth. Durability is achieved 1, mechanically by the interposition of a cloth, usually polytetrafluoroethylene, between the host and the graft, and 2, chemically by stabilization of the tissue by intermolecular linking, usually with glutaraldehyde, after removal of antigenic components, or the use of reconstituted and restructured biopolymers. Glutaraldehyde-Stabilized Grafts,Heterograft Bioprosthesis,Porcine Xenograft Bioprosthesis,Xenograft Bioprosthesis,Bioprostheses,Bioprostheses, Heterograft,Bioprostheses, Porcine Xenograft,Bioprostheses, Xenograft,Bioprosthesis, Heterograft,Bioprosthesis, Porcine Xenograft,Bioprosthesis, Xenograft,Glutaraldehyde Stabilized Grafts,Glutaraldehyde-Stabilized Graft,Graft, Glutaraldehyde-Stabilized,Grafts, Glutaraldehyde-Stabilized,Heterograft Bioprostheses,Porcine Xenograft Bioprostheses,Xenograft Bioprostheses,Xenograft Bioprostheses, Porcine,Xenograft Bioprosthesis, Porcine

Related Publications

P B Deverall, and G Campalani, and D R Anderson
August 1968, Kyobu geka. The Japanese journal of thoracic surgery,
P B Deverall, and G Campalani, and D R Anderson
August 1969, Kyobu geka. The Japanese journal of thoracic surgery,
P B Deverall, and G Campalani, and D R Anderson
August 1970, British medical journal,
P B Deverall, and G Campalani, and D R Anderson
September 1967, Nihon geka hokan. Archiv fur japanische Chirurgie,
P B Deverall, and G Campalani, and D R Anderson
March 1982, The Practitioner,
P B Deverall, and G Campalani, and D R Anderson
January 1981, Acta chirurgica Iugoslavica,
P B Deverall, and G Campalani, and D R Anderson
December 1968, California medicine,
P B Deverall, and G Campalani, and D R Anderson
January 1992, Grudnaia i serdechno-sosudistaia khirurgiia,
P B Deverall, and G Campalani, and D R Anderson
October 1968, Nursing mirror and midwives journal,
P B Deverall, and G Campalani, and D R Anderson
January 1968, Annals of the New York Academy of Sciences,
Copied contents to your clipboard!