Due to improved durability and survival rates, rotary blood pumps (RBPs) are the preferred left ventricular assist device when compared to volume displacement pumps. However, when operated at constant speed, RBPs lack a volume balancing mechanism which may result in left ventricular suction and suboptimal ventricular unloading. Starling-like controllers have previously been developed to balance circulatory volumes; however, they do not consider ventricular workload as a feedback and may have limited sensitivity to adjust RBP workload when ventricular function deteriorates or improves. To address this, we aimed to develop a Starling-like total work controller (SL-TWC) that matched the energy output of a healthy heart by adjusting RBP hydraul...
Rotary ventricular assist devices (VADs) are less sensitive to preload than the healthy heart, resul...
Rotary ventricular assist devices (VADs) are less sensitive to preload than the healthy heart, resul...
The application of rotary left ventricular (LV) assist devices (LVADs) is expanding from bridge to t...
Due to improved durability and survival rates, rotary blood pumps (RBPs) are the preferred left vent...
Due to improved durability and survival rates, rotary blood pumps (RBPs) are the preferred left vent...
Due to a shortage of donor hearts, rotary left ventricular assist devices (LVADs) are used to provid...
Due to a shortage of donor hearts, rotary left ventricular assist devices (LVADs) are used to provid...
Due to a shortage of donor hearts, rotary left ventricular assist devices (LVADs) are used to provid...
Due to a shortage of donor hearts, rotary left ventricular assist devices (LVADs) are used to provid...
In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pum...
A clinically intuitive physiologic controller is desired to improve the interaction between implanta...
In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pum...
Rotary ventricular assist devices (VADs) are used to provide mechanical circulatory support. However...
In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pum...
Left ventricular assist devices (LVADs) are mechanical pumps that their usage expanded from bridging...
Rotary ventricular assist devices (VADs) are less sensitive to preload than the healthy heart, resul...
Rotary ventricular assist devices (VADs) are less sensitive to preload than the healthy heart, resul...
The application of rotary left ventricular (LV) assist devices (LVADs) is expanding from bridge to t...
Due to improved durability and survival rates, rotary blood pumps (RBPs) are the preferred left vent...
Due to improved durability and survival rates, rotary blood pumps (RBPs) are the preferred left vent...
Due to a shortage of donor hearts, rotary left ventricular assist devices (LVADs) are used to provid...
Due to a shortage of donor hearts, rotary left ventricular assist devices (LVADs) are used to provid...
Due to a shortage of donor hearts, rotary left ventricular assist devices (LVADs) are used to provid...
Due to a shortage of donor hearts, rotary left ventricular assist devices (LVADs) are used to provid...
In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pum...
A clinically intuitive physiologic controller is desired to improve the interaction between implanta...
In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pum...
Rotary ventricular assist devices (VADs) are used to provide mechanical circulatory support. However...
In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pum...
Left ventricular assist devices (LVADs) are mechanical pumps that their usage expanded from bridging...
Rotary ventricular assist devices (VADs) are less sensitive to preload than the healthy heart, resul...
Rotary ventricular assist devices (VADs) are less sensitive to preload than the healthy heart, resul...
The application of rotary left ventricular (LV) assist devices (LVADs) is expanding from bridge to t...