IP Library › Granted Patent US 11,554,010
Granted Patent B2
US 11,554,010 · App. 16/908,974 · Granted Jan 17, 2023

Transcatheter valve with torsion spring fixation and related systems and methods

Inventors: Jason Quill (Forest Lake, MN); Cynthia T. Clague (Minnetonka, MN); Paul T. Rothstein (Elk River, MN)
Assignee: MEDTRONIC, INC.
A61F2/2418A61F2/2436A61F2220/0008A61F2220/0016A61F2220/0091A61F2230/0013
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Quick Facts
Patent No.
US 11,554,010
App. No.
16/908,974
Granted
Jan 17, 2023
Kind
B2
Abstract

Described is a prosthetic valve, comprising: an expandable stent including an inner lumen and having a first and a second end; and a spring attached to the first end of the expandable stent; wherein the expandable stent and the spring can expand radially to a desired diametric configuration in order to anchor the prosthetic valve at an implantation position in a body lumen. Related systems and methods.

Claims (36)

1. A prosthetic valve, comprising:

a first expandable annular member defining an inner lumen, and having a longitudinal axis;

a valvular element disposed in the inner lumen of the first expandable annular member;

a second expandable annular member having a circumference greater than a circumference of the first expandable annular member when the prosthetic valve is in an expanded configuration; and

a connecting element connecting the first expandable annular member to the second expandable annular member, the connecting element being a separate element from each of the first and second expandable annular members, the connecting element having a loop or eyelet for connecting with the first expandable annular member, the connecting element configured to allow movement between the first and second expandable annular members such that the connecting element is configured to laterally rotate outward from the first expandable annular member during expansion of the second expandable annular member, wherein the second expanded annular member is configured to assist in the proper placement of the prosthetic valve within a body.

2. The prosthetic valve of claim 1 , wherein the second expandable annular member comprises a wire that forms an expandable circular loop.

3. The prosthetic valve of claim 2 , wherein the wire comprises a shape memory alloy.

4. The prosthetic valve of claim 2 , wherein the wire forms a torsion spring.

5. The prosthetic valve of claim 1 , wherein the valvular element comprises at least one leaflet.

6. The prosthetic valve of claim 1 , wherein the prosthetic valve is a prosthetic heart valve.

7. The prosthetic valve of claim 6 , wherein the prosthetic heart valve is a prosthetic mitral valve.

8. The prosthetic valve of claim 6 , wherein the prosthetic heart valve is a prosthetic aortic valve.

9. The prosthetic valve of claim 1 , wherein the second expandable annular member comprises a radiopaque material.

10. The prosthetic valve of claim 1 , wherein the connecting element has a second loop or eyelet for connecting with the second expandable annular member.

11. A method of implanting a prosthetic valve, comprising:

inserting a delivery system with a prosthetic valve into a body lumen, the prosthetic valve comprising

a first expandable annular member having an inner lumen, and a longitudinal axis,

a valvular element disposed in the inner lumen of the first expandable annular member, and

a second expandable annular member connected by a connecting element to the first expandable annular member, the connecting element being a separate element from each of the first and second expandable annular members, the connecting element having a loop or eyelet for connecting with the first expandable annular member, wherein the circumference of the second expandable annular member is greater than a circumference of the first expandable annular member when the prosthetic valve is in an expanded configuration;

at least partially deploying the prosthetic valve at an implantation location such that the connecting element pivots outwardly relative to the first expandable annular member to permit expansion of the second expandable annular member; and

proximally pulling the prosthetic valve to engage at least a portion of the second expandable annular member with a wall of the body lumen.

12. The method of claim 11 , wherein the step of inserting the delivery system into the body lumen comprises transapically inserting the delivery system into a heart.

13. The method of claim 11 , wherein the step of proximally pulling the prosthetic valve engages at least a portion of the second expandable annular member with a heart wall in a left atrium adjacent a mitral valve annulus.

14. The method of claim 11 , wherein the second expandable annular member comprises a wire.

15. The method of claim 11 , wherein the second expandable annular member comprises a radiopaque material.

16. The method of claim 11 , wherein the step of at least partially deploying the prosthetic valve includes viewing the prosthetic valve using image guidance.

17. The method of claim 16 , wherein the image guidance may be selected from the group consisting of fluoroscopy, ultrasonic means, magnetic resonance, X-ray, and computer tomography.

18. The method of claim 11 , wherein the connecting element has a second loop or eyelet for connecting with the second expandable annular member.

19. A method of implanting a prosthetic valve, comprising:

inserting a delivery system with a prosthetic valve into a body lumen, the prosthetic valve comprising

a first expandable annular portion having an inner lumen, and a longitudinal axis,

a valvular element disposed in the inner lumen of the first expandable annular portion, and

a second expandable annular portion rotatably connected to the first expandable annular portion by a connecting element, the connecting element being a separate element from each of the first and second expandable annular portions, the connecting element having a loop or eyelet for connecting with the first expandable annular portion, wherein the circumference of the second expandable annular portion is greater than a circumference of the first expandable annular portion when the prosthetic valve is in an expanded configuration;

at least partially deploying the prosthetic valve at an implantation location such that the connecting element rotates outwardly relative to the first expandable annular portion to permit expansion of the second expandable annular portion; and

proximally pulling the prosthetic valve to engage at least a portion of the second expandable annular portion with a heart wall in a left atrium adjacent a mitral valve annulus.

20. The method of claim 19 , wherein the second expandable annular portion comprises a wire.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2020
From: QUILL, JASON; CLAGUE, CYNTHIA T.; ROTHSTEIN, PAUL T.
To: MEDTRONIC, INC.
Reel/Frame 053557/0245 →
Continuity (5)
Continuation 15903642 · Feb 23, 2018
Continuation 14156076 · Jan 15, 2014
Continuation 12846962 · Jul 30, 2010
Provisional Application 61320111 · Apr 1, 2010
Related Publication 20200315794A1 · Oct 8, 2020