In Vitro Mitral Valve Model with Unrestricted Ventricular Access: Using Vacuum to Close the Valve and Enable Static Trans-Mitral Pressure

Author:

Stephens Sam E.ORCID,Kammien Alexander J.ORCID,Paris Jacob C.ORCID,Applequist Alexis P.,Ingels Neil B.,Jensen Hanna K.ORCID,Rodgers Drew E.,Cole Charles R.,Wenk Jonathan F.ORCID,Jensen Morten O.ORCID

Abstract

AbstractCurrent in vitro models of the left heart establish the pressure difference required to close the mitral valve by sealing and pressurizing the ventricular side of the valve, limiting important access to the subvalvular apparatus. This paper describes and evaluates a system that establishes physiological pressure differences across the valve using vacuum on the atrial side. The subvalvular apparatus is open to atmospheric pressure and accessible by tools and sensors, establishing a novel technique for experimentation on atrioventricular valves. Porcine mitral valves were excised and closed by vacuum within the atrial chamber. Images were used to document and analyze closure of the leaflets. Papillary muscle force and regurgitant flow rate were measured to be 4.07 N at 120 mmHg and approximately 12.1 ml/s respectively, both of which are within clinically relevant ranges. The relative ease of these measurements demonstrates the usefulness of improved ventricular access at peak pressure/force closure. Graphical abstract

Funder

Foundation for the National Institutes of Health

Arkansas Research Alliance

Publisher

Springer Science and Business Media LLC

Subject

Genetics (clinical),Cardiology and Cardiovascular Medicine,Pharmaceutical Science,Genetics,Molecular Medicine

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