[[abstract]]Bubble cavitation occurs in the flow field when local pressure drops below vapor pressure. One hypothesis states that low-pressure regions in vortices created by instantaneous valve closure and occluder rebound promote bubble formation. To quantitatively analyze the role of vortices in cavitation, we applied particle image velocimetry (PIV) to reduce the instantaneous fields into plane flow that contains information about vortex core radius, maximum tangential velocity, circulation strength, and pressure drop. Assuming symmetrical flow along the center of the St. Jude Medical 25-mm valve, flow fields downstream of the closing valve were measured using PIV in the mitral position of a circulatory mock loop. Flow measurements were ...
[[abstract]]Background and aims of the study: Cavitation in the mechanical heart valve (MHV) was fir...
[[abstract]]When studying mechanical heart valve cavitation, a physical model allows direct flow fie...
[[abstract]]Mechanical artificial heart valves rely on reverse flow to close their leaflets. This me...
[[abstract]]Bubble cavitation occurs in the flow field when local pressure drops below vapor pressur...
[[abstract]]Background and aim of the study: Cavitation occurs during mechanical heart valve closure...
This study is aimed at refining our understanding of the role of vortex formation at mitral mechanic...
[[abstract]]Background and aim of the study: The induction of mechanical heart valve (MHV) cavitatio...
[[abstract]]Fluid between the reducing flow channel of the valve occluder and the orifice wall tends...
Late-diastolic mitral leaflet pre-closure occurs in patients with both natural and prosthetic mitral...
heart valves occur within a few milliseconds after valve closure and have been observed on the upstr...
[[abstract]]Accelerated testing provides a substantial amount of data on mechanical heart valve dura...
[[abstract]]Background and aim of the study: Mechanical heart valve (MHV) cavitation has been widely...
Objective: The goal of the present work was to create the closest possible in vitro fluid dynamic en...
Background and aim of the study: Bubble formation in blood, which has been observed during valve clo...
[[abstract]]Accelerated testing provides a substantial amount of data on mechanical heart valve dura...
[[abstract]]Background and aims of the study: Cavitation in the mechanical heart valve (MHV) was fir...
[[abstract]]When studying mechanical heart valve cavitation, a physical model allows direct flow fie...
[[abstract]]Mechanical artificial heart valves rely on reverse flow to close their leaflets. This me...
[[abstract]]Bubble cavitation occurs in the flow field when local pressure drops below vapor pressur...
[[abstract]]Background and aim of the study: Cavitation occurs during mechanical heart valve closure...
This study is aimed at refining our understanding of the role of vortex formation at mitral mechanic...
[[abstract]]Background and aim of the study: The induction of mechanical heart valve (MHV) cavitatio...
[[abstract]]Fluid between the reducing flow channel of the valve occluder and the orifice wall tends...
Late-diastolic mitral leaflet pre-closure occurs in patients with both natural and prosthetic mitral...
heart valves occur within a few milliseconds after valve closure and have been observed on the upstr...
[[abstract]]Accelerated testing provides a substantial amount of data on mechanical heart valve dura...
[[abstract]]Background and aim of the study: Mechanical heart valve (MHV) cavitation has been widely...
Objective: The goal of the present work was to create the closest possible in vitro fluid dynamic en...
Background and aim of the study: Bubble formation in blood, which has been observed during valve clo...
[[abstract]]Accelerated testing provides a substantial amount of data on mechanical heart valve dura...
[[abstract]]Background and aims of the study: Cavitation in the mechanical heart valve (MHV) was fir...
[[abstract]]When studying mechanical heart valve cavitation, a physical model allows direct flow fie...
[[abstract]]Mechanical artificial heart valves rely on reverse flow to close their leaflets. This me...