Experimental research results of hydrodynamic noise of pulsating flow through a bileaflet mechanical mitral valve are presented. The pulsating flow of pure water corresponds to the diastolic mode of the cardiac rhythm heart. The valve was located between the model of the left atrium and the model of the left ventricle of the heart. A coordinate device, on which a block of miniature sensors of absolute pressure and pressure fluctuations was installed, was located inside the model of the left ventricle. It is found that the hydrodynamic noise of the pulsating side jet of the semiclosed valve is higher than for the open valve. The pressure fluctuation levels gradually decrease with the removal from the mitral valve. It is established that at t...
This study was aimed at developing a physical model, supported by experimental observations, to desc...
A complete understanding of the flow past a mitral valve prosthesis require a new generation of puls...
In this paper an experimental test bench for mechanical heart valve and the procedure for non-invasi...
In this paper, in vitro experimental research results of the hydrodynamic noise of open and semi-clo...
Background. Numerical simulation and experimental research have been used as powerful tools to under...
The formation of thrombi on the streamlined surface of the bileaflet mechanical heart valves is one ...
The aim of this study is to compare the noise emitted by mechanical artificial valves to that produc...
Mechanical heart valves implanted in mitral position have a great effect on the ventricular flow. Ch...
The hemodynamics associated with scale-up models of mechanical bileaflet heart valve prostheses with...
This research project is aimed towards a better understanding of the flow field structure of a bi-le...
In vivo studies in both sheep and humans were plagued by a number of problems including movement art...
Objective: The goal of the present work was to create the closest possible in vitro fluid dynamic en...
Mechanical heart valve (MHV) flows are characterized by high shear-stress, regions of recirculation ...
[[abstract]]Background and aim of study: Strong interactions are believed to exist between the pulsa...
This project describes the design and development of a pulsating flow test rig suitable for flow inv...
This study was aimed at developing a physical model, supported by experimental observations, to desc...
A complete understanding of the flow past a mitral valve prosthesis require a new generation of puls...
In this paper an experimental test bench for mechanical heart valve and the procedure for non-invasi...
In this paper, in vitro experimental research results of the hydrodynamic noise of open and semi-clo...
Background. Numerical simulation and experimental research have been used as powerful tools to under...
The formation of thrombi on the streamlined surface of the bileaflet mechanical heart valves is one ...
The aim of this study is to compare the noise emitted by mechanical artificial valves to that produc...
Mechanical heart valves implanted in mitral position have a great effect on the ventricular flow. Ch...
The hemodynamics associated with scale-up models of mechanical bileaflet heart valve prostheses with...
This research project is aimed towards a better understanding of the flow field structure of a bi-le...
In vivo studies in both sheep and humans were plagued by a number of problems including movement art...
Objective: The goal of the present work was to create the closest possible in vitro fluid dynamic en...
Mechanical heart valve (MHV) flows are characterized by high shear-stress, regions of recirculation ...
[[abstract]]Background and aim of study: Strong interactions are believed to exist between the pulsa...
This project describes the design and development of a pulsating flow test rig suitable for flow inv...
This study was aimed at developing a physical model, supported by experimental observations, to desc...
A complete understanding of the flow past a mitral valve prosthesis require a new generation of puls...
In this paper an experimental test bench for mechanical heart valve and the procedure for non-invasi...