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- W2001539102 abstract "Background Today, there is still confusion about mismatch of the orifice area of the mechanical valve and body surface area of the patient in aortic valve surgery. Creating a larger effective orifice area is the aim with this new valve design. Method This valve is multi-planed, one housing is seated at the aortic annulus for the coronary orifices to receive blood in diastole, the other housing or housings are seated to the ascending aorta obliquely to increase the orifice area of the valve. The ascending aorta can be enlarged if necessary. Result Valves with orifice areas larger than 6 cm2 can be achieved with multi-planed aortic valves. Discussion The use of this valve depends on the fact that the aorta is a living tissue and can grow over time to normal values. Today, there is still confusion about mismatch of the orifice area of the mechanical valve and body surface area of the patient in aortic valve surgery. Creating a larger effective orifice area is the aim with this new valve design. This valve is multi-planed, one housing is seated at the aortic annulus for the coronary orifices to receive blood in diastole, the other housing or housings are seated to the ascending aorta obliquely to increase the orifice area of the valve. The ascending aorta can be enlarged if necessary. Valves with orifice areas larger than 6 cm2 can be achieved with multi-planed aortic valves. The use of this valve depends on the fact that the aorta is a living tissue and can grow over time to normal values." @default.
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- W2001539102 date "2006-06-01" @default.
- W2001539102 modified "2023-10-14" @default.
- W2001539102 title "A Novel Multi-Planed Mechanical Aortic Valve for Increasing the Effective Orifice Area" @default.
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- W2001539102 doi "https://doi.org/10.1016/j.hlc.2006.02.014" @default.
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