IP Library Granted Patent US 9,226,813
Granted Patent B2
US 9,226,813 · App. 12/904,452 · Granted Jan 5, 2016

Low profile non-symmetrical stent

Inventors: David Brocker (Carmel, IN); William K. Dierking (Louisville, KY); Alan R. Leewood (Lafayette, IN); Timothy A. M. Chuter (San Francisco, CA); Blayne A. Roeder (Lafayette, IN); Steven J. Charlebois (West Lafayette, IN); Richard A. Swift (South Bend, IN); Sharath Gopalakrishnamurthy (West Lafayette, IN); Matthew S. Huser (West Lafayette, IN)
Assignee: COOK MEDICAL TECHNOLOGIES LLC
A61F2/07A61F2/915A61F2/848A61F2/852A61F2/856A61F2/89A61F2002/061A61F2002/065A61F2002/075A61F2002/826A61F2002/8483A61F2002/8486A61F2002/91508A61F2002/91516A61F2002/91533A61F2002/91541A61F2210/0014A61F2220/0016A61F2220/0075A61F2230/005A61F2230/0054A61F2230/0067A61F2250/006
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Quick Facts
Patent No.
US 9,226,813
App. No.
12/904,452
Granted
Jan 5, 2016
Kind
B2
Abstract

Various stents and stent-graft systems for treatment of medical conditions are disclosed. In one embodiment, an exemplary stent-graft system may be used for endovascular treatment of a thoracic aortic aneurysm. The stent-graft system may comprise proximal and distal components, each comprising a graft having proximal and distal ends, where upon deployment the proximal and distal components at least partially overlap with one another to provide a fluid passageway therebetween. The proximal component may comprise a proximal stent having a plurality of proximal and distal apices connected by a plurality of generally straight portions, where a radius of curvature of at least one of the proximal apices may be greater than the radius of curvature of at least one of the distal apices. The distal component may comprise a proximal z-stent coupled to the graft, where the proximal end of the graft comprises at least scallop formed therein that generally follows the shape of the proximal z-stent. Further, the distal component may comprise at least one z-stent stent coupled to the distal end of the graft and extending distally therefrom that reduces proximal migration of the distal component.

Claims (43)

1. A stent-graft system for treatment of a medical condition, the stent-graft system comprising:

a proximal component comprising a graft having proximal and distal ends, and further comprising a proximal stent having a plurality of proximal and distal apices connected by a plurality of generally straight portions, where at least one of the distal apices of the proximal stent is attached to the graft using one or more sutures,

where each proximal apex comprises a first curved portion and each distal apex comprises a second curved portion, where the first curved portion and the second curved portion each comprises at least one radius of curvature, and the radius of curvature of at least one of the proximal apices is greater than the radius of curvature of at least one of the distal apices; and

a distal component comprising a graft having proximal and distal ends, where, upon deployment, the proximal and distal components at least partially overlap with one another to permit continuous fluid flow therebetween,

where the distal component further comprises a proximal z-stent coupled to the graft, and where the proximal end of the graft comprises at least one scallop formed therein that generally follows the shape of the proximal z-stent,

where a first radius of curvature of one of the distal apices is from about 0.5 mm to about 1.5 mm,

where a second radius of curvature of one of the proximal apices is from about 4 mm to about 9 mm,

where a ratio of the first radius of curvature to the second radius of curvature is about 1:2.6 to about 1:18, and

where the proximal stent comprises at least one uncovered region.

2. The stent-graft system of claim 1 where the distal component further comprises at least one z-stent stent coupled to the distal end of the graft and extending distally therefrom that reduces proximal migration of the distal end of the distal component.

3. The stent-graft system of claim 2 wherein the at least one z-stent stent coupled to the distal end of the graft comprises at least one barb oriented in a proximal direction.

4. The stent-graft system of claim 1 where each of the proximal apices of the proximal stent are circumferentially offset from the distal apices.

5. The stent-graft system of claim 1 where the first radius of curvature is about 1 mm, and the second radius of curvature is about 6 mm.

6. The stent-graft system of claim 1 where the proximal component comprises at least five additional z-stents coupled to the graft at locations distal to the proximal stent.

7. The stent-graft system of claim 6 where, of the at least five additional z-stents, proximal and distal z-stents are coupled to an inner surface of the graft and at least three intermediate z-stents are coupled to an outer surface of the graft.

8. A stent-graft system for treatment of a medical condition, the stent-graft system comprising:

a proximal component comprising a graft having proximal and distal ends, and further comprising a proximal stent having a plurality of proximal and distal apices connected by a plurality of generally straight portions, where at least one of the distal apices of the proximal stent is attached to the graft using one or more sutures,

where each proximal apex comprises a first curved portion and each distal apex comprises a second curved portion, where the first curved portion and the second curved portion each comprises at least one radius of curvature, and the radius of curvature of at least one of the proximal apices is greater than the radius of curvature of at least one of the distal apices; and

a distal component comprising a graft having proximal and distal ends, where, upon deployment, the proximal and distal components at least partially overlap with one another to provide a fluid passageway therebetween,

where the distal component further comprises a proximal z-stent coupled to the graft, and where the proximal end of the graft comprises at least one scallop formed therein that generally follows the shape of the proximal z-stent, and

where the distal component further comprises at least one z-stent stent coupled to the distal end of the graft and extending distally therefrom that reduces proximal migration of the distal end of the distal component,

where a first radius of curvature of one of the distal apices is from about 0.5 mm to about 1.5 mm,

where a second radius of curvature of one of the proximal apices is from about 4 mm to about 9 mm,

where a ratio of the first radius of curvature to the second radius of curvature is about 1:2.6 to about 1:18, and

where the proximal stent comprises at least one uncovered region.

9. The stent-graft system of claim 8 where the at least one z-stent stent coupled to the distal end of the graft comprises at least one barb oriented in a proximal direction.

10. The stent-graft system of claim 8 where each of the proximal apices of the proximal stent are circumferentially offset from the distal apices.

11. The stent-graft system of claim 8 where the proximal component comprises at least five additional z-stents coupled to the graft at locations distal to the proximal stent.

12. The stent-graft system of claim 8 where the first radius of curvature is about 1 mm, and the second radius of curvature is about 6 mm.

13. A stent-graft system for treatment of a medical condition, the stent-graft system comprising:

a proximal component comprising a graft having proximal and distal ends, and further comprising a proximal stent having a plurality of proximal and distal apices connected by a plurality of generally straight portions, where at least one of the distal apices of the proximal stent is attached to the graft using one or more sutures,

where each proximal apex comprises a first curved portion and each distal apex comprises a second curved portion, where the first curved portion and the second curved portion each comprises at least one radius of curvature, and the radius of curvature of at least one of the proximal apices is greater than the radius of curvature of at least one of the distal apices; and

a distal component comprising a graft having proximal and distal ends, where, upon deployment, the proximal and distal components at least partially overlap with one another to provide a fluid passageway therebetween,

where the distal component further comprises at least one z-stent stent coupled to the distal end of the graft and extending distally therefrom that reduces proximal migration of the distal end of the distal component,

where a first radius of curvature of one of the distal apices is from about 0.5 mm to about 1.5 mm,

where a second radius of curvature of one of the proximal apices is from about 4 mm to about 9 mm,

where a ratio of the first radius of curvature to the second radius of curvature is about 1:2.6 to about 1:18, and

where the proximal stent comprises at least one uncovered region.

14. The stent-graft system of claim 13 where the distal component further comprises a proximal z-stent coupled to the graft, and where the proximal end of the graft comprises at least one scallop formed therein that generally follows the shape of the proximal z-stent.

15. The stent-graft system of claim 14 where the at least one z-stent stent coupled to the distal end of the graft comprises at least one barb oriented in a proximal direction.

16. The stent-graft system of claim 13 where each of the proximal apices of the proximal stent are circumferentially offset from the distal apices.

17. The stent-graft system of claim 13 where the first radius of curvature is about 1 mm, and the second radius of curvature is about 6 mm.

18. The stent-graft system of claim 13 where the proximal component comprises at least five additional z-stents coupled to the graft at locations distal to the proximal stent.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2011
From: COOK INCORPORATED
To: COOK MEDICAL TECHNOLOGIES LLC
Reel/Frame 026680/0758 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2011
From: MEDICAL ENGINEERING AND DEVELOPMENT INSTITUTE, INC. D/B/A MED INSTITUTE, INC.
To: COOK MEDICAL TECHNOLOGIES LLC
Reel/Frame 026680/0784 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2011
From: CHUTER, TIMOTHY A.M.; BROCKER, DAVID; DIERKING, WILLIAM K.; LEEWOOD, ALAN R.; ROEDER, BLAYNE A.; CHARLEBOIS, STEVEN J.; SWIFT, RICHARD A.; GOPALAKRISHNAMURTHY, SHARATH; HUSER, MATTHEW S.
To: COOK INCORPORATED; MED INSTITUTE, INC.
Reel/Frame 025652/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2010
From: CHUTER, TIMOTHY A.M.; BROCKER, DAVID; DIERKING, WILLIAM K.; LEEWOOD, ALAN R.; ROEDER, BLAYNE A.; CHARLEBOIS, STEVEN J.; SWIFT, RICHARD A.; GOPALAKRISHNAMURTHY, SHARATH; HUSER, MATTHEW S.
To: COOK INCORPORATED; MED INSTITUTE, INC.
Reel/Frame 025140/0045 →
Priority Claims (2)
GB 0920235.9 · Nov 18, 2009 · national
GB 0920327.4 · Nov 19, 2009 · national
Continuity (6)
Continuation In Part 12841807 · Jul 22, 2010
Continuation In Part 12622351 · Nov 19, 2009
Continuation 12472082 · May 26, 2009
Continuation In Part 12332904 · Dec 11, 2008
Provisional Application 61016753 · Dec 26, 2007
Related Publication 20110118821A1 · May 19, 2011