Transcatheter mitral valve design
A prosthetic mitral valve includes a collapsible and expandable stent extending from an inflow end to an outflow end. A collapsible and expandable valve assembly is disposed within the stent. The valve assembly includes a plurality of anterior leaflets and one posterior leaflet. The posterior leaflet has a larger surface area than any of the anterior leaflets. When implanted in the native mitral valve annulus, the smaller size of the anterior leaflets and the corresponding smaller size of an anterior portion of the stent reduce the likelihood of interference with blood flowing through the native aortic valve, while also reducing the likelihood of ventricular fibrillation.
1. A prosthetic mitral valve, comprising:
a collapsible and expandable stent extending from an inflow end to an outflow end, the stent including an anterior section and a posterior section; and
a collapsible and expandable valve assembly disposed within the stent, the valve assembly including a plurality of anterior leaflets each having a surface area and one posterior leaflet having a surface area, the surface area of the posterior leaflet being larger than the surface area of any of the anterior leaflets,
wherein a first entire length of the stent between the inflow end and the outflow end at the posterior section of the stent is larger than a second entire length of the stent between the inflow end and the outflow end at the anterior section of the stent, the first entire length being adapted to support the larger surface area of the posterior leaflet,
wherein, in an implanted condition of the prosthetic mitral valve, the one posterior leaflet of the valve assembly is configured to be positioned at a posterior side of a native mitral valve annulus, and the plurality of anterior leaflets of the valve assembly is configured to be positioned at an anterior side of the native mitral valve annulus, so that the one posterior leaflet is positioned farther away from a native aortic valve than is the plurality of anterior leaflets.
2. The prosthetic mitral valve of claim 1 , wherein the surface area of each anterior leaflet is about the same.
3. The prosthetic mitral valve of claim 1 , wherein each anterior leaflet has a first edge coupled to the stent and a free edge nearer the outflow end of the stent than the inflow end of the stent.
4. The prosthetic mitral valve of claim 1 , wherein the posterior leaflet has a first edge coupled to the stent adjacent the inflow end of the stent.
5. The prosthetic mitral valve of claim 4 , wherein the posterior leaflet includes a tapered portion extending away from the first edge, the tapered portion having a width that decreases in a direction from the inflow end of the stent toward the outflow end of the stent.
6. The prosthetic mitral valve of claim 5 , wherein the tapered portion of the posterior leaflet is coupled to the stent adjacent the outflow end of the stent.
7. The prosthetic mitral valve of claim 1 , wherein the stent includes a first circumferential row of cells, and a second row of cells coupled to the first row of cells, the first row of cells being positioned in the anterior section and the posterior section of the stent, the second row of cells being positioned only in the posterior section of the stent.
8. The prosthetic mitral valve of claim 7 , wherein the posterior section includes a third row having at least one cell coupled to the second row of cells.
9. The prosthetic mitral valve of claim 8 , wherein the third row includes a single cell.
10. The prosthetic mitral valve of claim 9 , wherein the posterior leaflet includes a first edge coupled to the stent adjacent the inflow end of the stent, and a second end opposite the first edge coupled to the single cell in the third row.
11. The prosthetic mitral valve of claim 1 , wherein the plurality of anterior leaflets includes exactly three anterior leaflets.