Claims
- 1. A stent for use in the intravascular treatment of blood vessels, comprising:
a first half-frame and a second half-frame, each comprising a plurality of arcuate sections connected by longitudinal sections; and a plurality of connecting segments securing a plurality of first half-frame longitudinal sections to a plurality of second half-frame longitudinal sections such that the first half-frame and the second half-frame form a cylinder.
- 2. The stent of claim 1 wherein the arcuate sections have a chevron configuration.
- 3. The stent of claim 2 wherein the point of the chevron is directed toward the proximal end of the stent.
- 4. The stent of claim 1 wherein the arcuate sections have a bowed configuration.
- 5. The stent of claim 4 wherein the arcuate sections bow toward the proximal end of the stent.
- 6. The stent of claim 1 wherein connecting segments are located on only one side of the cylinder.
- 7. The stent of claim 1 wherein connecting segments are located on both sides of the cylinder.
- 8. The stent of claim 1 wherein each of the first and second half-frames are formed from a piece of elongate resilient wire with a first end extending distally from the proximal end of the half frame, thereafter transitioning at a first point to a first arcuate section, thereafter transitioning to a first longitudinal section for a length to a second point, thereafter transitioning to a second arcuate section and a second longitudinal section and proceeding similarly to the distal end of the half frame.
- 9. The stent of claim 8 wherein each of the half frames has a predeployed essentially flat configuration and a deployed generally cylindrical configuration.
- 10. The stent of claim 8 wherein each of the half frames has a predeployed radially compressed cylindrical configuration and a deployed generally cylindrical configuration.
- 11. The stent of claim 8 wherein the resilient wire has an essentially flat cross section.
- 12. The stent of claim 8 wherein the connecting segments comprise:
a first band around one of the first half-frame longitudinal sections; and a second band around one of the second half-frame longitudinal sections; wherein the first and second bands are secured together.
- 13. The stent of claim 12 wherein the first and second bands are metallic and are secured together by solder.
- 14. The stent of claim 8 wherein the connecting segments comprise a band secured around one of the first half-frame longitudinal sections and one of the second half-frame longitudinal sections.
- 15. The stent of claim 8 wherein the connecting segments comprise a piece of solder.
- 16. The stent of claim 1 wherein the first and second half-frames and the connecting segments are formed from a single piece of hypotubing with portions removed to form:
first and second half-frame patterns, each having a first end extending distally from the proximal end of the half frame, thereafter transitioning at a first point to a first arcuate section, thereafter transitioning to a first longitudinal section for a length to a second point, thereafter transitioning to a second arcuate section and a second longitudinal section and proceeding similarly to the distal end of the half frame; and the plurality of connecting segments.
- 17. The stent of claim 16 wherein each of the half frames has a predeployed essentially flat configuration and a deployed generally cylindrical configuration.
- 18. The stent of claim 16 wherein each of the half frames has a predeployed radially compressed configuration and a deployed generally cylindrical configuration.
- 19. A stent for use in the intravascular treatment of blood vessels, comprising:
a first half-frame and a second half-frame, each comprising a plurality of arcuate loop sections which comprise a pair of arcuate sections connected at each end by a longitudinal connecting section; and a plurality of connecting segments securing a plurality of first half-frame arcuate loop sections to a plurality of second half-frame arcuate loop sections such that the first half-frame and the second half-frame form a cylinder.
- 20. The stent of claim 19 wherein the first and second half-frames are formed from a material having properties that provide it with a predeployed radially compressed configuration and a deployed generally cylindrical configuration.
- 21. The stent of claim 19 wherein the arcuate sections have a chevron configuration.
- 22. The stent of claim 21 wherein the point of the chevron is directed toward the proximal end of the stent.
- 23. The stent of claim 19 wherein the arcuate sections have a bowed configuration.
- 24. The stent of claim 23 wherein the arcuate sections bow toward the proximal end of the stent.
- 25. The stent of claim 19 wherein connecting segments are located on only one side of the cylinder.
- 26. The stent of claim 19 wherein connecting segments are located on both sides of the cylinder.
- 27. The stent of claim 19 wherein the first and second half-frame arcuate loop sections are secured such that the first half-frame arcuate loop sections are longitudinally offset from the second half-frame arcuate loop sections.
- 28. A stent for use in the intravascular treatment of blood vessels, comprising:
a generally cylindrical frame formed of an elongate resilient wire, the two free ends of the wire extending distally from the proximal end of the frame, thereafter transitioning at a first point to a pair of opposed first arcuate sections, thereafter transitioning to a pair of opposed first longitudinal sections for a length to a second point, thereafter transitioning to a pair of opposed second arcuate sections and a pair of opposed second longitudinal sections and proceeding in a like pattern to the distal end of the frame; and a plurality of connecting segments, connecting a plurality of opposed longitudinal sections.
- 29. The stent of claim 28 wherein the frame is formed from a material having properties that provide it with a predeployed essentially flat configuration and a deployed generally cylindrical configuration.
- 30. The stent of claim 28 wherein connecting segments are located on both sides of the frame.
- 31. The stent of claim 28 wherein connecting segments are located on only one side of the frame.
- 32. The stent of claim 28 wherein the connecting segments comprise a pair of bands, one around each of opposed longitudinal sections, wherein the first and second bands are secured together.
- 33. The stent of claim 32 wherein the bands are metallic and are secured together by solder.
- 34. The stent of claim 32 wherein the bands are plastic and are secured together by bonding material.
- 35. The stent of claim 28 wherein the connecting segments comprise a single band secured around both of an opposed pair of longitudinal sections.
- 36. The stent of claim 28 wherein the connecting segments comprise a piece of solder spanning between a pair of opposed longitudinal sections.
- 37. The stent of claim 28 wherein the connecting segments comprise a radiopaque material.
- 38. The stent of claim 28 wherein the free ends of the frame are attached to deployment means at the distal end of a pusher for deploying the frame in the vasculature of a patient.
- 39. The stent of claim 28 wherein the arcuate sections are spaced apart distally along the frame by a predetermined distance sufficient to allow passage of an embolic coil between the adjacent sections.
- 40. The stent of claim 28 wherein the distal end of the stent comprises a continuous loop extending between the most distal longitudinal sections.
RELATED APPLICATIONS
[0001] This is a continuation-in-part of application Ser. No. 09/747,456, filed Dec. 22, 2000 which is a divisional of application Ser. No. 09/122,243 filed Jul. 24, 1998, now U.S. Pat. No. 6,165,194.
Divisions (1)
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Number |
Date |
Country |
| Parent |
09122243 |
Jul 1998 |
US |
| Child |
09747456 |
Dec 2000 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
09747456 |
Dec 2000 |
US |
| Child |
10122257 |
Apr 2002 |
US |