IP Library Granted Patent US 8,475,489
Granted Patent B2
US 8,475,489 · App. 12/041,241 · Granted Jul 2, 2013

Apparatus for occluding body lumens

Inventors: Rupesh Desai (San Jose, CA); Alexander L. Huang (Menlo Park, CA); Steven Yee (Sunnyvale, CA); Jennifer Hodor (Sunnyvale, CA)
Assignee: Percutaneous Systems, Inc.
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Quick Facts
Patent No.
US 8,475,489
App. No.
12/041,241
Granted
Jul 2, 2013
Kind
B2
Abstract

A luminal occlusion device comprises a tension member, an elongate shaft, and a flat film having an axial receptacle which is received over a distal portion of the tension member. The flat film has proximal and distal ends which are attached to the distal ends of the tension member and the elongate shaft, respectively. Thus, distal advancement of the tension member relative to the shaft will cause the flat film to assume a low profile configuration, while proximal retraction of the tension member relative to the elongate shaft will cause the flat film to assume a foreshortened, compacted configuration. The film usually includes one or more radioopaque markers which help shape the compacted film.

Claims (40)

1. A luminal occlusion device comprising:

a tension member having a proximal end and a distal end;

an elongate shaft having a guide structure along at least a distal portion thereof for receiving the tension member and permitting the tension member to shift between a distally extended position and a proximally retracted position relative to the shaft; and

a flat film having an axial receptacle for receiving a distal portion of the tension member, a first wing on one side of the receptacle, and a second wing on the other side of the receptacle, wherein a distal end of the film is attached to a distal location on the tension member and a proximal end of the film is attached to a distal end of the elongate shaft,

a first elastic wire extending along an outer peripheral edge of the first wing and a second elastic wire extending along an outer peripheral edge of the second wing, each wire movably coupled at a distal end to the tension member and at a proximal end to the elongate shaft,

wherein proximally translating the tension member relative to the shaft axially compacts the wires to compact the flat film and distally translating the tension member relative to the shaft straightens the wires to stretch the film.

2. A device as in claim 1 , wherein the peripheral edges are parallel and spaced apart by a distance in the range from 2 mm to 15 mm.

3. A device as in claim 2 , wherein the flat film has a length in the axial direction in the range from 10 mm to 100 mm when the tension member is neither proximally nor distally translated.

4. A device as in claim 3 , wherein prior to compacting, the flat film comprises a polymeric sheet structure having a total thickness in the range from 0.1 mm to 0.5 mm.

5. A device as in claim 1 , wherein the flat film comprises at least one radioopaque marker formed on a surface thereof

6. A device as in claim 5 , wherein the flat film comprises at least two radioopaque markers, with one disposed on each side of the axial receptacle.

7. A device as in claim 5 , wherein the flat film comprises a plurality of individual radiopaque markers arranged in a line parallel to the outer peripheral edge of each wing.

8. A device as in claim 7 , wherein the radioopaque markers comprise gold foil strips.

9. A device as in claim 1 , wherein the elastic wires are composed of a highly elastic alloy.

10. A device as in claim 1 , wherein the first and second elastic wires are radioopaque.

11. A device as in claim 1 , wherein the first and second elastic wires bias the flat film radially outward from the axial receptacle.

12. A device as in claim 1 , wherein the first and second elastic wires assume a helical configuration as the tension member is proximally translated.

13. A device as in claim 1 , wherein the flat film includes a third wing portion aligned with but spaced proximally apart from the first wing portion and a fourth wing portion aligned with but spaced proximally of the second wing portion.

14. A device as in claim 13 , wherein the first elastic wire is disposed continuously along the outer edges of the first and third wing portions and the second elastic wire is disposed continuously along the outer edges of the second and fourth wing portions.

15. A device as in claim 14 , wherein the first and second elastic wires assume two axially spaced-apart helical configurations as the tension member is proximally translated.

16. A device as in claim 1 , further comprising a distal tip extending distally from the distal end of the tension member.

17. A device as in claim 16 , wherein the distal tip comprises a polymeric tube which tapers down in the distal direction.

18. A device as in claim 17 , wherein the polymeric tube comprises polyurethane having a durometer in the range from 25 D to 55 D.

19. A device as in claim 1 , wherein the tension member comprises a solid core wire.

20. A device as in claim 19 , wherein the solid core wire comprises stainless steel with a width in the range from 0.2 mm to 0.6 mm.

21. A device as in claim 1 , wherein the elongate shaft comprises a polymeric tube having an outside width in the range from 0.5 mm to 1.5 mm and a length in the range from 50 cm to 250 cm.

22. A device as in claim 21 , wherein the polymeric tube comprises polyether block amide having a durometer in the range from 50 D to 80 D.

23. A device as in claim 22 , wherein at least a portion of the polymeric tube is reinforced.

24. A device as in claim 23 , wherein the entire length of the polymeric tube is reinforced with a steel braid.

25. A device as in claim 1 , further comprising a handle assembly at the proximal end of the elongate shaft.

26. A device as in claim 25 , further comprising a grip at the proximal end of the tension member.

27. A device as in claim 26 , wherein the handle is removably attached to the proximal end of the shaft and the grip can be covered by the handle when the tension member is positioned fully distally relative to the shaft.

28. A device as in claim 1 , further comprising a detent near the proximal end of the tension member, wherein the detent expands when the tension member is proximally retracted to deploy the film and wherein the expanded detent inhibits inadvertent distal movement of the tension member after deployment.

29. A device as in claim 28 , wherein the detent comprises one or more bends in the tension member.

30. A device as in claim 1 , wherein the flat film has one or more slits.

31. A device as in claim 30 , wherein the slits are oriented axially to facilitate radial expansion when the film is compacted.

32. A device as in claim 30 , wherein the slits are oriented laterally to facilitate stretching as the tension member is distally translated.

33. A device as in claim 1 , wherein the flat film is arranged symmetrically on either side of the axial receptacle.

34. A device as in claim 1 , wherein the flat film is arranged asymmetrically on either side of the axial receptacle.

35. A device as in claim 1 , wherein at least a distal edge of each wing of the flat film has a tapered profile.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2019
From: PERCUTANEOUS SYSTEMS INC; PERCSYS SECURED CREDITORS LLC
To: TAKAI HOSPITAL SUPPLY CO., LTD
Reel/Frame 049832/0440 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2014
From: PERCUTANEOUS SYSTEMS, INC.
To: TAKAI HOSPITAL SUPPLY CO., LTD.
Reel/Frame 032316/0387 →
SECURITY AGREEMENT Recorded Sep 24, 2009
From: PERCUTANEOUS SYSTEMS, INC.
To: SILICON VALLEY BANK
Reel/Frame 023273/0986 →
SECURITY AGREEMENT Recorded May 15, 2009
From: PERCUTANEOUS SYSTEMS, INC.
To: VENTURE LENDING & LEASING IV, INC., AND VENTURE LENDING & LEASING V, INC.
Reel/Frame 022703/0757 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 15, 2008
From: DESAI, RUPESH; HUANG, ALEXANDER L.; YEE, STEVEN; HODOR, JENNIFER
To: PERCUTANEOUS SYSTEMS, INC.
Reel/Frame 020806/0917 →
Continuity (2)
Continuation In Part 11777522 · Jul 13, 2007
Related Publication 20090018569A1 · Jan 15, 2009