Claims
- 1. A catheter for removing occlusive material from a body lumen, said catheter comprising:
a catheter body having a proximal end, a distal end, and a lumen therethrough; a radially expansible positioning cage near the distal end of the catheter body, wherein the catheter body has a lumen and at least one infusion port disposed t deliver an agent from the lumen to within the interior of the cage; and a radially expansible macerator configured to break up occlusive material within the cage and draw the material into the catheter body lumen.
- 2. A catheter as in claim 1, further comprising means for selectively adjusting the diameter of the radially expansible positioning cage.
- 3. A catheter as in claim 1, wherein the radially expansible cage is self-expanding and has a predetermined unconstrained diameter.
- 4. A catheter as in claim 1, further comprising means for selectively adjusting the diameter of the macerator.
- 5. A catheter as in claim 1, wherein the macerator is self-expanding and has a predetermined unconstrained diameter.
- 6. A catheter as in claim 1, wherein the cage is expansible from an initial width in the range from 1 mm to 4 mm to an expanded width in the range from 2 mm to 40 mm and the macerator has an initial width in the range from 1 mm to 4 mm and an expanded width in the range from 2 mm to 35 mm.
- 7. A catheter as in claim 1, wherein adjustment of the radial dimension of the macerator is not coupled to expansion of the positioning cage.
- 8. A catheter as in claim 1, wherein the macerator is rotatable.
- 9. A catheter as in claim 8, further comprising a drive unit at the proximal end of the catheter body, wherein the drive unit is mechanically coupled to the macerator.
- 10. A catheter as in claim 1, wherein the macerator is positioned over said at least one infusion port.
- 11. A catheter as in claim 1, wherein the catheter body has a plurality of axially spaced-apart infusion ports.
- 12. A method for thrombus in a blood vessel, said method comprising:
positioning a catheter within a region of thrombus in the blood vessel; centering the catheter along an axis of the blood vessel within a positioning cage; releasing a thrombolytic agent through the catheter to said region; and rotating a macerator to disrupt the clot.
- 13. A method as in claim 12, wherein releasing comprises infusing the thrombolytic agent from a port within the centering cage.
- 14. A method as in claim 13, wherein releasing comprises infusing the thrombolytic agent from a plurality of axially spaced-apart ports within the centering cage.
- 15. A catheter for removing occlusive material from a body lumen, said catheter comprising:
a catheter body having a proximal end, a distal end, and a lumen therethrough; a radially expansible positioning cage near the distal end of the catheter body; a radially expansible macerator configured to break up occlusive material within the cage and draw the material into the catheter body lumen; and means for within the catheter body for aspirating material disrupted by the macerator from within the cage.
- 16. A catheter as in claim 15, further comprising means for selectively adjusting the diameter of the radially expansible positioning cage.
- 17. A catheter as in claim 15, wherein the radially expansible cage is self-expanding and has a predetermined unconstrained diameter.
- 18. A catheter as in claim 15, further comprising means for selectively adjusting the diameter of the macerator.
- 19. A catheter as in claim 15, wherein the macerator is self-expanding and has a predetermined unconstrained diameter.
- 20. A catheter as in claim 15, wherein the cage is expansible from an initial width in the range from 1 mm to 4 mm to an expanded width in the range from 2 mm to 40 mm and the macerator has an initial width in the range from 1 mm to 4 mm and an expanded width in the range from 2 mm to 35 mm.
- 21. A catheter as in claim 15, wherein adjustment of the radial dimension of the macerator is not coupled to expansion of the positioning cage.
- 22. A catheter as in claim 15, wherein the macerator is rotatable.
- 23. A catheter as in claim 22, further comprising a drive unit at the proximal end of the catheter body, wherein the drive unit is mechanically coupled to the macerator.
- 24. A catheter as in claim 15, wherein the aspirating means comprises a lumen within the catheter body and a connection at the proximal end of the catheter body adapted to be connected to an aspiration source.
- 25. A catheter as in claim 24, wherein the aspirating means further comprises a helical rotor disposed within the lumen.
- 26. A catheter for removing occlusive material from a body lumen, said catheter comprising:
a catheter body having a proximal end, a distal end, and a lumen therethrough; a radially expansible positioning cage near the distal end of the catheter body; a radially expansible macerator configured to break up occlusive material within the cage and draw the material into the catheter body lumen; and means for selectively adjusting the diameter of the radially expansible positioning cage and the radially expansible macerator.
- 27. A catheter as in claim 26, wherein the means for selectively adjusting the diameters comprises an axially positionable shaft coupled to the cage and macerator, said shaft adapted to selectively axially elongate the cage and macerator to cause radial contraction.
- 28. A catheter as in claim 26, wherein the cage is expansible from an initial width in the range from 1 mm to 4 mm to an expanded width in the range from 2 mm to 40 mm and the macerator has an initial width in the range from 1 mm to 4 mm and an expanded width in the range from 2 mm to 35 mm.
- 29. A catheter as in claim 26, wherein adjustment of the radial dimension of the macerator is not coupled to expansion of the positioning cage.
- 30. A catheter as in claim 26, wherein the macerator is rotatable.
- 31. A catheter as in claim 30, further comprising a drive unit at the proximal end of the catheter body, wherein the drive unit is mechanically coupled to the macerator.
- 32. A method for disrupting and removing occlusive material from a blood vessel, said method comprising:
introducing a first catheter into the blood vessel from one side of the occlusive material; introducing a second catheter into the blood vessel from another side of the clot; releasing a thrombolytic agent and mechanically disrupting the clot with the first catheter; and aspirating the disrupted clot with the second catheter.
- 33. A method as in claim 32, wherein aspirating comprises filtering the blood to separate the clot and allow blood to pass second catheter.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This present application is a continuation of application Ser. No. 10/162,276 (Attorney Docket No. 19744P-000410US), filed Jun. 3, 2002, which was a continuation of application Ser. No. 09/454,517 (Attorney Docket No. 19744P-000400) filed Dec. 6, 1999, the full disclosures of which are incorporated herein by reference.
Continuations (2)
|
Number |
Date |
Country |
Parent |
10162276 |
Jun 2002 |
US |
Child |
10680367 |
Oct 2003 |
US |
Parent |
09454517 |
Dec 1999 |
US |
Child |
10162276 |
Jun 2002 |
US |