Due to a shortage of donor hearts, rotary left ventricular assist devices (LVADs) are used to provide mechanical circulatory support. To address the preload insensitivity of the constant speed controller (CSC) used in conventional LVADs, we developed a preload-based Starling- like controller (SLC). The SLC emulates the Starling law of the heart to maintain mean pump flow (QP ) with respect to mean left ventricular end diastolic pressure (PLVEDm) as the feedback signal. The SLC and CSC were compared using a mock circulation loop to assess their capacity to increase cardiac output during mild exercise while avoiding ventricular suction (marked by a negative PLVEDm) and maintaining circulatory stability during blood loss and severe reductions ...
A clinically intuitive physiologic controller is desired to improve the interaction between implanta...
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...
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...
In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pum...
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...
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...
The application of rotary left ventricular (LV) assist devices (LVADs) is expanding from bridge to t...
Left ventricular assist devices (LVADs) are mechanical pumps that their usage expanded from bridging...
A clinically intuitive physiologic controller is desired to improve the interaction between implanta...
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...
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...
In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pum...
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...
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...
The application of rotary left ventricular (LV) assist devices (LVADs) is expanding from bridge to t...
Left ventricular assist devices (LVADs) are mechanical pumps that their usage expanded from bridging...
A clinically intuitive physiologic controller is desired to improve the interaction between implanta...
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...