Prosthetic heart valves, scaffolding structures, and systems and methods for implantation of same
Prosthetic valves and their component parts are described, as are prosthetic valve delivery devices and methods for their use. The prosthetic valves are particularly adapted for use in percutaneous aortic valve replacement procedures. The delivery devices are particularly adapted for use in minimally invasive surgical procedures.
1. A support member for supporting a prosthetic heart valve, the support member having a longitudinal axis and being adapted to provide a scaffolding force to the interior of an anatomical vessel, the support member comprising:
three separate and independent metallic panels, each panel comprising a center portion between opposing side portions, wherein for each panel the center portion is radially inwardly disposed with respect to the opposing side portions; and
three mechanical hinges, each mechanical hinge having an axis, and each mechanical hinge attaching a pair of adjacent peripheral panels of said three metallic panels and being configured to permit the pair of adjacent panels to rotate about the axis of the mechanical hinge,
each pair of adjacent panels forming a lobe, each lobe having a vertex at one of the mechanical hinges and each lobe being curled in a same direction around the longitudinal axis of the support member,
wherein each panel is bendable to a radially outwardly disposed configuration such that the support member is expanded to an expanded state having a relatively larger cross-sectional dimension.
2. The support member of claim 1 , wherein the support member is transitionable to an intermediate state before the expanded state, wherein the support member has a star-shaped profile in the intermediate state.
3. The support member of claim 1 , wherein the support member is generally tubular in the expanded state.
4. The support member of claim 3 , wherein the support member is generally cylindrical in the expanded state.
5. The support member of claim 3 , wherein the support member has a generally oval cross-sectional shape when the support member is in the expanded state.
6. The support member of claim 1 , wherein each mechanical hinge has a removable pin.
7. The support member of claim 1 , further comprising an anchoring member.
8. The support member of claim 7 , wherein the anchoring member has a delivery position and a deployment position, and further comprising an actuator adapted to move the anchoring member from the anchoring member's delivery position to the anchoring member's deployment position.
9. The support member of claim 7 , wherein the anchoring member has a delivery position and a deployment position, and wherein the anchoring member is self-actuating from the anchoring member's delivery position to the anchoring member's deployment position.
10. The support member of claim 1 , wherein the three separate and independent metallic panels are formed into a generally tubular shape when the support member is in a contracted state.
11. The support member of claim 1 , wherein the panels are nitinol.
12. The support member of claim 1 , wherein a single semi-circular aperture is framed in the center portion of each panel.
13. The support member of claim 12 , wherein each panel further comprises sub-apertures smaller than the semi-circular aperture.
14. The support member of claim 1 , wherein each mechanical hinge comprises at least one member separate from the panels.
15. The support member of claim 1 , wherein a continuous metallic portion is present along at least a periphery of each panel.
16. The support member of claim 1 , wherein each panel has opposing side edges, the side edges of adjacent panels being coupled together by one of the mechanical hinges extending along the length of each side edge.
17. The support member of claim 1 , wherein each panel is a non-expandable solid metallic member.
18. The support member of claim 1 , wherein each panel is adapted to couple with a valve leaflet.