Minimally invasive surgery (MIS) during cardiovascular interventions reduces trauma and enables the treatment of high-risk patients who were initially denied surgery. However, restricted access, reduced visibility and control of the instrument at the treatment locations limits the performance and capabilities of such interventions during MIS. Therefore, the demand for technology such as steerable sheaths or catheters that assist the clinician during the procedure is increasing. In this study, we present and evaluate a robotically actuated delivery sheath (RADS) capable of autonomously and accurately compensating for beating heart motions by using a model-predictive control (MPC) strategy. We develop kinematic models and present online ultra...
Abstract. Robotic cardiac catheters have the potential to revolutionize heart surgery by extending m...
A major challenge during autonomous navigation in endovascular interventions is the complexity of op...
Purpose: Tracking of beating heart motion in a robotic surgery system is required for complex cardio...
Minimally invasive surgery (MIS) during cardiovascular interventions reduces trauma and enables the ...
Robotic catheters have the potential to revolutionize cardiac surgery by enabling minimally invasive...
Development of medical robots to assist with surgical operations has become an area of significant r...
The improved natural hemodynamics offered by mitral valve (MV) repair strategies aims to prevent hea...
This thesis describes the development of a heart motion compensation system on the da Vinci Research...
Cardiac catheters allow physicians to access the inside of the heart and perform therapeutic interve...
Abstract— Cardiac catheterization with ultrasound (US) imaging catheters provides real time US imagi...
Performing a surgical procedure on a beating heart is nearly impossible as the surgeon must simultan...
<p>In the push to improve patient outcomes in cardiac interventions, minimally invasive beating-hear...
3D ultrasound imaging has enabled minimally invasive, beating heart intracardiac procedures. However...
The result of various medical conditions and trauma, foreign bodies in the heart pose a serious heal...
Abstract—Performing surgery on fast-moving heart structures while the heart is freely beating is nex...
Abstract. Robotic cardiac catheters have the potential to revolutionize heart surgery by extending m...
A major challenge during autonomous navigation in endovascular interventions is the complexity of op...
Purpose: Tracking of beating heart motion in a robotic surgery system is required for complex cardio...
Minimally invasive surgery (MIS) during cardiovascular interventions reduces trauma and enables the ...
Robotic catheters have the potential to revolutionize cardiac surgery by enabling minimally invasive...
Development of medical robots to assist with surgical operations has become an area of significant r...
The improved natural hemodynamics offered by mitral valve (MV) repair strategies aims to prevent hea...
This thesis describes the development of a heart motion compensation system on the da Vinci Research...
Cardiac catheters allow physicians to access the inside of the heart and perform therapeutic interve...
Abstract— Cardiac catheterization with ultrasound (US) imaging catheters provides real time US imagi...
Performing a surgical procedure on a beating heart is nearly impossible as the surgeon must simultan...
<p>In the push to improve patient outcomes in cardiac interventions, minimally invasive beating-hear...
3D ultrasound imaging has enabled minimally invasive, beating heart intracardiac procedures. However...
The result of various medical conditions and trauma, foreign bodies in the heart pose a serious heal...
Abstract—Performing surgery on fast-moving heart structures while the heart is freely beating is nex...
Abstract. Robotic cardiac catheters have the potential to revolutionize heart surgery by extending m...
A major challenge during autonomous navigation in endovascular interventions is the complexity of op...
Purpose: Tracking of beating heart motion in a robotic surgery system is required for complex cardio...