The aim of this study was to develop an integrated mock circulation system that functions in a physiological manner for testing cardiovascular devices under well-controlled circumstances. In contrast to previously reported mock loops, the model includes a systemic, pulmonary, and coronary circulation, an elaborate heart contraction model, and a realistic heart rate control model. The behavior of the presented system was tested in response to changes in left ventricular contractile states, loading conditions, and heart rate. For validation purposes, generated hemodynamic parameters and responses were compared to literature. The model was implemented in a servo-motor driven mock loop, together with a relatively simple lead-lag controller. The...
During the development process of active or passive cardio-vascular implants, such as ventri...
Patient-specific hemodynamic studies have attracted considerable attention in recent years due to th...
Rotary blood pumps (RBPs) have a low sensitivity to preload changes when run at constant speed, whic...
The aim of this study was to develop an integrated mock circulation system that functions in a physi...
The aim of this study was to develop an integrated mock circulation system that functions in a physi...
Comprehensive testing and evaluation of cardiovascular device function and performance is required p...
In vitro cardiovascular device performance evaluation in a mock circulation loop (MCL) is a necessar...
Mock circulation loops (MCLs) are used to evaluate cardiovascular devices prior to in-vivo trials; h...
A mock circulatory loop was constructed to facilitate total artificial heart development. The loop i...
Prior to in vivo testing of a left ventricular assist device (LVAD) it is necessary to test it in a ...
Heart disease is attributed as the highest cause of death in the world. Although this could be alle...
With the development of clinical diagnostic techniques to investigate the coronary circulation in co...
A new digital computer mock circulatory system has been developed in order to replicate the physiolo...
Advances in direct mechanical ventricular actuation devices have been limited by the inability to te...
Rotary blood pumps are emerging as a viable technology for total artificial hearts, and the developm...
During the development process of active or passive cardio-vascular implants, such as ventri...
Patient-specific hemodynamic studies have attracted considerable attention in recent years due to th...
Rotary blood pumps (RBPs) have a low sensitivity to preload changes when run at constant speed, whic...
The aim of this study was to develop an integrated mock circulation system that functions in a physi...
The aim of this study was to develop an integrated mock circulation system that functions in a physi...
Comprehensive testing and evaluation of cardiovascular device function and performance is required p...
In vitro cardiovascular device performance evaluation in a mock circulation loop (MCL) is a necessar...
Mock circulation loops (MCLs) are used to evaluate cardiovascular devices prior to in-vivo trials; h...
A mock circulatory loop was constructed to facilitate total artificial heart development. The loop i...
Prior to in vivo testing of a left ventricular assist device (LVAD) it is necessary to test it in a ...
Heart disease is attributed as the highest cause of death in the world. Although this could be alle...
With the development of clinical diagnostic techniques to investigate the coronary circulation in co...
A new digital computer mock circulatory system has been developed in order to replicate the physiolo...
Advances in direct mechanical ventricular actuation devices have been limited by the inability to te...
Rotary blood pumps are emerging as a viable technology for total artificial hearts, and the developm...
During the development process of active or passive cardio-vascular implants, such as ventri...
Patient-specific hemodynamic studies have attracted considerable attention in recent years due to th...
Rotary blood pumps (RBPs) have a low sensitivity to preload changes when run at constant speed, whic...