IP Library Granted Patent US 10,143,552
Granted Patent B2
US 10,143,552 · App. 15/669,805 · Granted Dec 4, 2018

Replacement mitral valves

Inventors: Dan Wallace (Santa Cruz, CA); Spencer Noe (Santa Cruz, CA); Peter Gregg (Santa Cruz, CA); Juan F. Granada (Upper Saddle River, NJ)
Assignee: Cephea Valve Technologies, Inc.
A61F2/2418A61F2/2409A61F2002/825A61F2220/0008A61F2230/0006A61F2230/0013A61F2230/0071A61F2250/006A61F2250/0018A61F2250/0069
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Quick Facts
Patent No.
US 10,143,552
App. No.
15/669,805
Granted
Dec 4, 2018
Kind
B2
Abstract

A prosthetic mitral valve includes an anchor assembly, an annular strut frame, and a plurality of replacement leaflets secured to the annular strut frame. The anchor assembly includes a ventricular anchor, an atrial anchor, and a central portion therebetween. The annular strut frame is disposed radially within the anchor assembly. An atrial end of the annular strut frame is attached to the anchor assembly such that a ventricular end of the annular strut frame is spaced away from the anchor assembly.

Claims (22)

1. A prosthetic mitral valve comprising:

an anchor assembly having an hour-glass shape an comprising a ventricular anchor configured to sit within a ventricle, an atrial anchor configured to sit within an atrium, and a central portion therebetween, the anchor assembly configured to compress native cardiac tissue at a mitral valve orifice between the ventricular anchor and the atrial anchor;

a plurality of replacement leaflets;

an annular strut frame disposed radially within the anchor assembly, and having a ventricular end and an atrial end, the annular strut frame flared radially outwards at the atrial end relative to the ventricular end; wherein the ventricular end includes a plurality of apertures therein for attachment of the plurality of replacement leaflets thereto; and wherein the atrial end is attached to the anchor assembly such that the entire ventricular end of the annular strut frame is spaced away from the anchor assembly in an inward radial direction.

2. The prosthetic mitral valve of claim 1 , wherein the strut frame includes a plurality of arches.

3. The prosthetic mitral valve of claim 1 , wherein the atrial end of the annular strut frame is attached to the anchor assembly with a plurality of rivets.

4. The prosthetic mitral valve of claim 1 , wherein the prosthetic mitral valve is configured to self-expand from a constrained configuration to an expanded configuration.

5. The prosthetic mitral valve of claim 1 , wherein the annular strut frame has a higher spring constant than the anchor assembly.

6. The prosthetic mitral valve of claim 1 , wherein the annular strut frame includes a plurality of apertures at the atrial end for connection of the annular strut frame to the anchor assembly.

7. The prosthetic mitral valve of claim 1 , wherein the strut frame includes a plurality of linear posts and a plurality of circumferential zig-zag features extending therearound.

8. The prosthetic mitral valve of claim 1 , wherein the ventricular end of the strut frame extends axially past the anchor assembly in a ventricular direction.

9. A prosthetic mitral valve comprising:

an anchor assembly having an hour-glass shape and comprising a ventricular anchor configured to sit within a ventricle, an atrial anchor configured to sit within an atrium, and a central portion therebetween;

a plurality of replacement leaflets;

an annular strut frame disposed radially within the anchor assembly, and having a ventricular end and an atrial end, the annular strut frame flared radially outwards at the atrial end relative to the ventricular end; wherein the ventricular end includes a plurality of apertures therein for attachment of the plurality of replacement leaflets thereto; and wherein the atrial end includes a plurality of arches defining peaks extending in an atrial direction and valleys extending in a ventricular direction, wherein one or more peaks of the arches are attached to the anchor assembly such that the entire ventricular end of the annular strut frame is spaced away from the anchor assembly in an inward radial direction.

10. The prosthetic mitral valve of claim 9 , wherein the atrial end of the annular strut frame is attached to the anchor assembly with a plurality of rivets.

11. The prosthetic mitral valve of claim 9 , wherein the prosthetic mitral valve is configured to self-expand from a constrained configuration to an expanded configuration.

12. The prosthetic mitral valve of claim 9 , wherein the annular strut frame has a higher spring constant than the anchor assembly.

13. The prosthetic mitral valve of claim 9 , wherein the annular strut frame includes a plurality of apertures at the atrial end for connection of the annular strut frame to the anchor assembly.

14. The prosthetic mitral valve of claim 9 , wherein the strut frame includes a plurality of linear posts and a plurality of circumferential zig-zag features extending therearound.

15. The prosthetic mitral valve of claim 9 , wherein the ventricular end of the strut frame extends axially past the anchor assembly in a ventricular direction.

16. The prosthetic mitral valve of claim 9 , wherein the atrial and ventricular anchors are flared radially outwards relative to the central portion so as to compress native cardiac tissue at a mitral valve orifice between the atrial and ventricular anchors.

Assignments (2)
SECURITY INTEREST Recorded Oct 12, 2018
From: CEPHEA VALVE TECHNOLOGIES, INC.
To: ABBOTT VASCULAR INC.
Reel/Frame 047151/0729 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2018
From: WALLACE, DAN; NOE, SPENCER; GREGG, PETER; GRANADA, JUAN F.
To: CEPHEA VALVE TECHNOLOGIES, INC.
Reel/Frame 046032/0841 →
Continuity (4)
Continuation PCTUS2016032550 · May 13, 2016
Provisional Application 62161743 · May 14, 2015
Provisional Application 62259565 · Nov 24, 2015
Related Publication 20170325948A1 · Nov 16, 2017
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