IP Library Granted Patent US 8,945,172
Granted Patent B2
US 8,945,172 · App. 13/341,186 · Granted Feb 3, 2015

Devices for restoring blood flow and clot removal during acute ischemic stroke

Inventors: David A. Ferrera (Redondo Beach, CA); Andrew H. Cragg (Edina, MN); John Fulkerson (Rancho Santa Margarita, CA)
Assignee: Covidien LP
A61F2/013A61B17/221A61M25/09A61M25/09025A61B17/320783A61B2017/22039A61B2017/22094A61B2017/2212A61F2002/016A61F2230/0069A61F2230/0076A61F2230/0097
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Quick Facts
Patent No.
US 8,945,172
App. No.
13/341,186
Granted
Feb 3, 2015
Kind
B2
Abstract

Devices for restoring blood flow to facilitate lysis of clots and/or enable capture of clots are disclosed. The devices can be configured to be disposed within a lumen of a microcatheter that is inserted within neurovasculature above a carotid siphon to a location of a clot. The devices can include an elongate pusher member and a self-expandable capturing member coupled to a distal end of the elongate pusher member. The capturing member can comprise a generally cylindrical body having an cell structure that is configured to compress the clot against an inner wall of the neurovasculature and capture the clot at least partially on a surface of the generally cylindrical body upon deployment of the capturing member from the microcatheter, thereby restoring blood flow to the neurovasculature downstream of the clot.

Claims (41)

1. A catheter-based blood-flow restoration system configured to restore blood flow in an occluded blood vessel of a subject's neurovasculature, comprising:

a microcatheter having a lumen,

a blood flow restoration device configured to be disposed within the lumen of the microcatheter,

wherein the blood flow restoration device comprises a self-expandable capturing member coupled to a distal end of an elongate delivery member, the elongate delivery member comprising a tubular member, a coil, and a shrink tube, the tubular member joined to the coil at a joint, the shrink tube surrounding the joint and extending proximally and distally of the joint,

wherein the self-expandable capturing member is configured to be delivered through the microcatheter in a compressed configuration and deployed to an expanded configuration upon retraction of the microcatheter at a location of a clot,

wherein the capturing member comprises a generally cylindrical body having an open-cell structure that is configured to compress the clot against an inner wall of the neurovasculature upon deployment of the capturing member from the microcatheter, thereby restoring blood flow through the neurovasculature downstream of the clot,

wherein the generally cylindrical body comprises a mouth at a side of the body, the mouth being configured to accept passage of the clot to within the capturing device, the mouth being larger than any cell of the open-cell structure, and an entire perimeter of the mouth being positioned at a radially outermost periphery of the body,

wherein a proximal end of the generally cylindrical body is closed and tapered in the expanded configuration; and

wherein a distal end of the generally cylindrical body is closed in the expanded configuration.

2. The blood flow restoration system of claim 1 , wherein the generally cylindrical body comprises a woven mesh.

3. The blood flow restoration system of claim 1 , wherein the mouth is positioned at approximately a mid-section of the generally cylindrical body.

4. The blood flow restoration system of claim 1 , wherein the clot is located within a cerebral artery of the neurovasculature above the carotid siphon.

5. The blood flow restoration system of claim 1 , wherein the generally cylindrical body is configured to exert a sufficient force on the clot to hold the clot against the inner wall of the neurovasculature such that the clot is not displaced while blood flow is restored.

6. The blood flow restoration system of claim 1 , wherein the open-cell structure allows passage of at least a portion of the clot from the exterior of the cylindrical body to the interior of the cylindrical body.

7. The blood flow restoration system of claim 1 , wherein the capturing member is coupled to the elongate delivery member by a plurality of tether lines.

8. The blood flow restoration system of claim 7 , wherein the capturing member is tethered off-center to the elongate delivery member.

9. The blood flow restoration system of claim 1 , wherein a distal end of the self-expandable capturing member forms a distal end of the blood flow restoration system when the self-expandable capturing member is deployed to the expanded configuration.

10. A blood flow restoration device configured to be disposed within a lumen of a microcatheter, comprising:

an elongate pusher member comprising a tubular member, a coil, and a shrink tube, the tubular member joined to the coil at a joint, the shrink tube surrounding the joint and extending proximally and distally of the joint; and

a self-expandable capturing member coupled to a distal end of the elongate pusher member,

wherein the self-expandable capturing member is configured to be delivered through a microcatheter in a compressed configuration and deployed to an expanded configuration upon retraction of the microcatheter at the location of a clot within a vessel,

wherein the capturing member comprises a generally cylindrical body having an open-cell structure that is configured to compress the clot against an inner wall of the vessel upon deployment of the capturing member from the microcatheter, thereby restoring blood flow through the vessel downstream of the clot,

wherein the generally cylindrical body comprises a mouth at a side of the body, the mouth being configured to accept passage of the clot to within the capturing device, the mouth being larger than any cell of the open-cell structure, and an entire perimeter of the mouth being positioned at a radially outermost periphery of the body, and

wherein both a proximal end and a distal end of the generally cylindrical body are closed in the expanded configuration.

11. The blood flow restoration device of claim 10 , wherein the generally cylindrical body comprises a woven mesh.

12. The blood flow restoration device of claim 10 , wherein the generally cylindrical body is configured to exert a sufficient force on the clot to hold the clot against the inner wall of the vessel such that the clot is not displaced while blood flow is restored.

13. The blood flow restoration device of claim 10 , wherein the open-cell structure allows passage of at least a portion of the clot from the exterior of the generally cylindrical body to the interior of the generally cylindrical body.

14. The blood flow restoration device of claim 10 , wherein the capturing member is tethered off-center to the elongate pusher member by a plurality of tether lines.

15. The blood flow restoration device of claim 10 , wherein the proximal end of the generally cylindrical body is tapered in the expanded configuration.

16. The blood flow restoration device of claim 10 , wherein a distal end of the self-expandable capturing member forms a distal end of the blood flow restoration device when the self-expandable capturing member is deployed to the expanded configuration.

17. A blood flow restoration device configured to be disposed within a lumen of a microcatheter, comprising:

an elongate pusher member comprising a tubular member, a coil, and a shrink tube, the tubular member joined to the coil at a joint, the shrink tube surrounding the joint and extending proximally and distally of the joint; and

a self-expandable capturing member coupled to a distal end of the elongate pusher member,

wherein the self-expandable capturing member is configured to be delivered through a microcatheter in a compressed configuration and deployed to an expanded configuration upon retraction of the microcatheter at the location of a clot within a blood vessel of a subject's neurovasculature,

wherein the capturing member comprises a generally cylindrical body having an open-cell structure that is configured to compress the clot against an inner wall of the blood vessel upon deployment of the capturing member from the microcatheter, thereby restoring blood flow through the blood vessel downstream of the clot,

wherein the generally cylindrical body comprises a mouth at a side of the body, the mouth being configured to accept passage of the clot to within the capturing device, the mouth being larger than any cell of the open-cell structure, and an entire perimeter of the mouth being positioned at a radially outermost periphery of the body,

wherein a proximal end of the generally cylindrical body is closed and tapered in the expanded configuration,

wherein a distal end of the generally cylindrical body is closed in the expanded configuration, and

wherein the capturing member is tethered off-center to the elongate pusher member by a plurality of tether lines.

18. The blood flow restoration device of claim 17 , wherein the generally cylindrical body is configured to exert a sufficient force on the clot to hold the clot against the inner wall of the blood vessel such that the clot is not displaced while blood flow is restored.

19. The blood flow restoration device of claim 17 , wherein a distal end of the self-expandable capturing member forms a distal end of the blood flow restoration device when the self-expandable capturing member is deployed to the expanded configuration.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2012
From: MINDFRAME LLC
To: COVIDIEN LP
Reel/Frame 029160/0235 →
CHANGE OF NAME Recorded Oct 8, 2012
From: MINDFRAME, INC.
To: MINDFRAME LLC
Reel/Frame 029093/0835 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2012
From: FERRERA, DAVID A.; CRAGG, ANDREW; FULKERSON, JOHN
To: MINDFRAME, INC.
Reel/Frame 029048/0967 →
Continuity (13)
Continuation 12475389 · May 29, 2009
Continuation In Part 12182370 · Jul 30, 2008
Continuation In Part 12123390 · May 19, 2008
Continuation In Part 12422105 · Apr 10, 2009
Provisional Application 61057613 · May 30, 2008
Provisional Application 61166725 · Apr 4, 2009
Provisional Application 60980736 · Oct 17, 2007
Provisional Application 60989422 · Nov 20, 2007
Provisional Application 61015154 · Dec 19, 2007
Provisional Application 61019506 · Jan 7, 2008
Provisional Application 61044392 · Apr 11, 2008
Provisional Application 60987384 · Nov 12, 2007
Related Publication 20120116443A1 · May 10, 2012