Inadequate venous drainage during minimally invasive cardiac surgery becomes most evident when the blood trapped in the pulmonary circulation floods the surgical field. The present study was designed to assess the in vivo performance of new, thinner, virtually wall-less, venous cannulas designed for augmented venous drainage in comparison to traditional thin-wall cannulas. Remote cannulation was realized in 5 bovine experiments (74.0 ± 2.4 kg) with percutaneous venous access over the wire, serial dilation up to 18 F and insertion of either traditional 19 F thin wall, wire-wound cannulas, or through the same access channel, new, thinner, virtually wall-less, braided cannulas designed for augmented venous drainage. A standard minimal extracor...
Cannula design is of prime importance for venous drainage during cardiopulmonary bypass (CPB). To ev...
OBJECTIVE: The present study was designed to assess in vivo a new, optimized, virtually wall-less, d...
The present study was designed to assess in vivo a new, optimized, virtually wall-less, dual-lumen, ...
Inadequate venous drainage during minimally invasive cardiac surgery becomes most evident when the b...
OBJECTIVE: Inadequate venous drainage during minimally invasive cardiac surgery becomes most evident...
OBJECTIVE Inadequate peripheral venous drainage during minimally invasive cardiac surgery (MICS) is...
Peripheral cannulation for cardiopulmonary bypass (CPB) is of prime interest in minimally invasive o...
OBJECTIVES: A new caval tree system was designed for realistic in vitro simulation. The objective of...
OBJECTIVES: A new caval tree system was designed for realistic in vitro simulation. The objective of...
Venous cannula orifice obstruction is an underestimated problem during augmented cardiopulmonary byp...
BACKGROUND: During percutaneous cannulation, the diameter of the venous cannula is determined by the...
Venous cannula orifice obstruction is an underestimated problem during augmented cardiopulmonary byp...
Because of the risk of vein collapse, the benefits of using a centrifugal pump to assist venous drai...
During cardiopulmonary bypass (CPB), venous drainage may be impeded due to small vessel and cannula ...
Cannula design is of prime importance for venous drainage during cardiopulmonary bypass (CPB). To ev...
Cannula design is of prime importance for venous drainage during cardiopulmonary bypass (CPB). To ev...
OBJECTIVE: The present study was designed to assess in vivo a new, optimized, virtually wall-less, d...
The present study was designed to assess in vivo a new, optimized, virtually wall-less, dual-lumen, ...
Inadequate venous drainage during minimally invasive cardiac surgery becomes most evident when the b...
OBJECTIVE: Inadequate venous drainage during minimally invasive cardiac surgery becomes most evident...
OBJECTIVE Inadequate peripheral venous drainage during minimally invasive cardiac surgery (MICS) is...
Peripheral cannulation for cardiopulmonary bypass (CPB) is of prime interest in minimally invasive o...
OBJECTIVES: A new caval tree system was designed for realistic in vitro simulation. The objective of...
OBJECTIVES: A new caval tree system was designed for realistic in vitro simulation. The objective of...
Venous cannula orifice obstruction is an underestimated problem during augmented cardiopulmonary byp...
BACKGROUND: During percutaneous cannulation, the diameter of the venous cannula is determined by the...
Venous cannula orifice obstruction is an underestimated problem during augmented cardiopulmonary byp...
Because of the risk of vein collapse, the benefits of using a centrifugal pump to assist venous drai...
During cardiopulmonary bypass (CPB), venous drainage may be impeded due to small vessel and cannula ...
Cannula design is of prime importance for venous drainage during cardiopulmonary bypass (CPB). To ev...
Cannula design is of prime importance for venous drainage during cardiopulmonary bypass (CPB). To ev...
OBJECTIVE: The present study was designed to assess in vivo a new, optimized, virtually wall-less, d...
The present study was designed to assess in vivo a new, optimized, virtually wall-less, dual-lumen, ...