Differences in Hancock and Carpentier-Edwards porcine xenograft aortic valve hemodynamics. Effect of valve size. 1990

S S Khan, and R S Mitchell, and G C Derby, and P E Oyer, and D C Miller
Division of Cardiology, Cedars-Sinai Medical Center, Los Angeles, CA 90048.

We prospectively compared the hemodynamic performance of Hancock and Carpentier-Edwards bioprosthetic aortic valves in a randomized study of 100 patients. A total of 47 patients received the Hancock valve, and 53 received the Carpentier-Edwards valve. Mean pressure gradients were measured using micromanometer catheters and cardiac outputs by thermodilution. Multiple measurements were made in each patient with atrial pacing, volume infusion, and inotropic drugs for a total of 319 observations. The pressure gradients and Gorlin valve areas showed significant scatter caused by both flow-dependent and patient-dependent variability. Mean transvalvular pressure gradients were therefore compared after adjustment for flow rate and for random interpatient differences using analysis of variance and covariance. Pressure gradients were lower and Gorlin valve areas larger for the Hancock valve than for the Carpentier-Edwards valve, but the differences were significant only for the smaller valve sizes. Compared with the Carpentier-Edwards valve, the mean pressure gradients were significantly lower for the Hancock 19-mm modified orifice (MO) valves (16.9 versus 31.7 mm Hg, p = 0.04), for the 21-mm valves (15.2 versus 22.4 mm Hg, p = 0.003), and for the 23-mm MO valve (9.2 versus 13.8 mm Hg, p = 0.04). The Gorlin areas were also significantly larger for the Hancock 19-mm MO valve (0.85 versus 0.77 cm2, p = 0.004) and the 21-mm MO valve (1.11 versus 0.89 cm2, p = 0.0009) but not for the 23-mm MO valve (1.59 versus 1.14, p = 0.08). Mean gradients and valve areas were not different for any of the larger valve sizes.(ABSTRACT TRUNCATED AT 250 WORDS)

UI MeSH Term Description Entries
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D011446 Prospective Studies Observation of a population for a sufficient number of persons over a sufficient number of years to generate incidence or mortality rates subsequent to the selection of the study group. Prospective Study,Studies, Prospective,Study, Prospective
D011474 Prosthesis Design The plan and delineation of prostheses in general or a specific prosthesis. Design, Prosthesis,Designs, Prosthesis,Prosthesis Designs
D003326 Coronary Circulation The circulation of blood through the CORONARY VESSELS of the HEART. Circulation, Coronary
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
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000704 Analysis of Variance A statistical technique that isolates and assesses the contributions of categorical independent variables to variation in the mean of a continuous dependent variable. ANOVA,Analysis, Variance,Variance Analysis,Analyses, Variance,Variance Analyses
D001021 Aortic Valve The valve between the left ventricle and the ascending aorta which prevents backflow into the left ventricle. Aortic Valves,Valve, Aortic,Valves, Aortic
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
D013815 Thermodilution Measurement of blood flow based on induction at one point of the circulation of a known change in the intravascular heat content of flowing blood and detection of the resultant change in temperature at a point downstream. Thermodilutions

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