Claims
- 1. An expandable intraluminal stent, comprising:
a tubular member comprising a clear through-lumen, and having proximal and distal ends and a longitudinal length defined therebetween, a circumference, and a diameter which is adjustable between at least a first collapsed diameter and at least a second expanded diameter, said tubular member comprising: at least one module comprising a series of sliding and locking radial elements, wherein each radial element defines a portion of the circumference of the tubular member and wherein no radial element overlaps with itself in either the first collapsed diameter or the second expanded diameter; and at least one articulating mechanism which permits one-way sliding of the radial elements from the first collapsed diameter to the second expanded diameter, but inhibits radial recoil from the second expanded diameter.
- 2. The expandable intraluminal stent of claim 1, wherein each radial element comprises at least one elongated rib disposed between first and second end portions.
- 3. The expandable intraluminal stent of claim 2, wherein the radial elements that comprise a module alternate between radial elements having an odd number of elongated ribs and radial elements having an even number of elongated ribs.
- 4. The expandable intraluminal stent of claim 3, wherein the radial elements that comprise a module alternate between radial elements having one elongated rib and radial elements having two elongated ribs.
- 5. The expandable intraluminal stent of claim 1, wherein the tubular member comprises at least two modules which are coupled to one another by at least one linkage element.
- 6. The expandable intraluminal stent of claim 5, wherein the at least one linkage element is made from a degradable material.
- 7. The expandable intraluminal stent of claim 1, further comprising a frame element which surrounds at least one radial element in each module.
- 8. The expandable intraluminal stent of claim 7, wherein the tubular member comprises at least two modules, and wherein the frame elements from adjacent modules are coupled.
- 9. The expandable intraluminal stent of claim 8, wherein the frame elements from adjacent modules are coupled by a linkage element extending between the frame elements.
- 10. The expandable intraluminal stent of claim 8, wherein the frame elements from adjacent modules are coupled by interlinking of the frame elements.
- 11. The expandable intraluminal stent of claim 1, wherein any amount of overlap among the radial elements within in a module remains constant as the tubular member is adjusted from the first collapsed diameter to the second expanded diameter.
- 12. The expandable intraluminal stent of claim 1, wherein the amount of overlap among radial elements in the module is less than about 15%.
- 13. The expandable intraluminal stent of claim 1, wherein the radial recoil is less than about 5%.
- 14. The expandable intraluminal stent of claim 1, wherein said tubular member has a stiffness of less than about 0.01 Newtons force/millimeter deflection.
- 15. The expandable intraluminal stent of claim 1, wherein said tubular member provides a surface area coverage of greater than about 20%.
- 16. The expandable intraluminal stent of claim 1, wherein the tubular member is at least partially radiopaque.
- 17. The expandable intraluminal stent of claim 1, wherein said radial elements are made substantially from a material which is work hardened to between about 80% and 95%.
- 18. The expandable intraluminal stent of claim 1, wherein the radial elements are made from a material selected from the group consisting of a polymer, a metal, a ceramic, and combinations thereof.
- 19. The expandable intraluminal stent of claim 1, wherein the radial elements are made from a material which is degradable.
- 20. The expandable intraluminal stent of claim 18, wherein said material further comprises a bioactive agent.
- 21. The expandable intraluminal stent of claim 20, wherein said material is adapted to deliver an amount of the bioactive agent which is sufficient to inhibit restenosis at a site of stent deployment.
- 22. The expandable intraluminal stent of claim 20, wherein the radial elements are adapted to release the bioactive agent during stent deployment when the tubular member is adjusted from the first collapsed diameter to the second expanded diameter.
- 23. The expandable intraluminal stent of claim 20, wherein the bioactive agent is selected from the group consisting of antiplatelet agents, antithrombin agents, antiproliferative agents and antiinflammatory agents.
- 24. The expandable intraluminal stent of claim 1, wherein the tubular member further comprises a sheath.
- 25. The expandable intraluminal stent of claim 1, comprising at least two modules, wherein the expanded diameters of the first and second modules are different.
- 26. The expandable intraluminal stent of claim 1, wherein each articulating mechanism comprises a slot and a tab on one radial element and at least one stop on an adjacent radial element which is slideably engaged in the slot, wherein the tab is adapted to engage the at least one stop.
- 27. The expandable intraluminal stent of claim 26, wherein the at least one stop comprises a hole with a chamfered edge.
- 28. The expandable intraluminal stent of claim 26, wherein the least one articulating mechanism further comprises an expansion resistor on the slideably engaged radial element, wherein the expansion resistor resists passing through the slot during expansion until further force is applied, such that the radial elements in the module expand in a substantially uniform manner.
- 29. The expandable intraluminal stent of claim 1, wherein the articulating mechanism further comprises a release, such that actuation of the release permits sliding of the radial elements from the second expanded diameter back to the first collapsed diameter.
- 30. The expandable intraluminal stent of claim 1, further comprising a floating coupling element with an articulating mechanism.
- 31. An expandable intraluminal stent, comprising:
a tubular member comprising a clear through-lumen and a diameter which is adjustable between at least a first collapsed diameter and at least a second expanded diameter, said tubular member comprising: a series of sliding and locking radial elements made from a degradable material, wherein each radial element in the series defines a portion of the circumference of the tubular member and wherein no radial element overlaps itself; and at least one articulating mechanism which permits one-way sliding of the radial elements from the first collapsed diameter to the second expanded diameter, but inhibits radial recoil from the second expanded diameter.
- 32. The expandable intraluminal stent of claim 31, wherein the degradable material is selected from the group consisting of polyarylates (L-tyrosine-derived), free acid polyarylates, polycarbonates (L-tyrosine-derived), poly(ester-amides), poly(propylene fumarate-co-ethylene glycol) copolymer, polyanhydride esters, polyanhydrides, polyorthoesters, silk-elastin polymers, calcium phosphate and magnesium alloys.
- 33. The expandable intraluminal stent of claim 31, wherein said degradable material further comprises at least one bioactive agent, which is released as the material degrades.
- 34. The expandable intraluminal stent of claim 33, wherein the at least one bioactive agent is selected from the group consisting of antiplatelet agents, antithrombin agents, antiproliferative agents and antiinflammatory agents.
- 35. An expandable intraluminal stent, comprising a tubular member having a wall and a clear through-lumen, said tubular member comprising a series of sliding and locking radial elements which do not overlap with themselves, said radial elements comprising a ratcheting mechanism that permits one-way sliding of the radial elements from a first collapsed diameter to a second expanded diameter, wherein the tubular member has a stiffness of less than about 0.01 Newtons force/millimeter deflection and said wall has a thickness of less than about 0.006 inches when the tubular member is in either the first collapsed diameter or the second expanded diameter.
RELATED APPLICATIONS
[0001] This is a continuation-in-part application and claims priority under 35 U.S.C. §120 to co-pending U.S. patent application Ser. No. 09/283,800 filed on Apr. 1, 1999, which is a continuation-in-part of U.S. patent application Ser. No. 09/024,571 filed on Feb. 17, 1998, now U.S. Pat. No. 6,033,436.
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09283800 |
Apr 1999 |
US |
Child |
09739552 |
Dec 2000 |
US |
Parent |
09024571 |
Feb 1998 |
US |
Child |
09283800 |
Apr 1999 |
US |