Claims
- 1. Apparatus for disrupting clot over a luminal length of a blood vessel, the apparatus comprising:
a catheter body having a proximal end, a distal end, and at least one lumen, the lumen having a distal-end opening for allowing passage of a guidewire and fluid flow and at least one side opening proximal to the distal-end opening for allowing fluid flow, wherein the distal-end opening and the at least one side opening allow preferential fluid flow through the at least one side opening; and a first radially expandable body between the distal-end opening and the at least one side opening for inhibiting flow of clot beyond the luminal length of the blood vessel.
- 2. Apparatus as in claim 1, further comprising a flow resistor between the distal-end opening and the at least one side opening for inhibiting fluid flow through the at least one lumen.
- 3. Apparatus as in claim 2, wherein the flow resistor inhibits flow such that between about 0.1% and about 20% of fluid flows through the distal-end opening and between about 80% and about 99.9% of fluid flows through the at least one side opening.
- 4. Apparatus as in claim 2, wherein the flow resistor comprises a cylindrical material having at least one channel.
- 5. Apparatus as in claim 4, wherein the cylindrical material comprises an elastomeric material.
- 6. Apparatus as in claim 4, wherein the outer diameter of the cylindrical material is equal to the inner diameter of the at least one lumen.
- 7. Apparatus as in claim 4, wherein the at least one channel comprises a cylindrical hole having an inner diameter sufficient to allow passage of the guidewire.
- 8. Apparatus as in claim 4, wherein the at least one channel comprises one or more flexible slits.
- 9. Apparatus as in claim 4, wherein the at least one channel comprises a valve for allowing passage of the guidewire and one or more holes for allowing passage of fluid.
- 10. Apparatus as in claim 2, wherein the flow resistor comprises a membrane with at least one aperture.
- 11. Apparatus as in claim 2, wherein the flow resistor comprises a ball valve for partially blocking flow of fluid through the at least one lumen, the ball valve having at least one channel, a ball, and a widened area within the channel into which the ball may be displaced to allow passage of a guidewire through the channel.
- 12. Apparatus as in claim 2, wherein the flow resistor comprises a compliant membrane coupled to the at least one lumen, the compliant membrane communicating with an inflation lumen, the inflation lumen communicating with an inflation port, wherein inflation via the inflation port and inflation lumen moves the compliant membrane to partially or wholly block fluid flow through the at least one lumen of the catheter body.
- 13. Apparatus as in claim 1, wherein a cross-sectional area of the distal-end opening is between about 0.1% and about 20% of a cross-sectional area of the at least one side opening.
- 14. Apparatus as in claim 1, wherein the at least one side opening comprises one opening in the at least one lumen and in a side wall of the catheter body.
- 15. Apparatus as in claim 1, wherein the at least one side opening comprises a plurality of spaced-apart openings in the at least one lumen and in a side wall of the catheter body.
- 16. Apparatus as in claim 1, wherein the at least one lumen comprises a first lumen communicating with the distal-end opening and the at least one side opening and a second lumen communicating with at least one additional opening.
- 17. Apparatus as in claim 16, wherein a guidewire passes through the first lumen, an agent is distributed through the first lumen, and one or more substances are aspirated through the second lumen.
- 18. Apparatus as in claim 16, wherein a guidewire passes through the first lumen, one or more substances are aspirated through the first lumen, and an agent is distributed through the second lumen.
- 19. Apparatus as in claim 1, further comprising means for distributing an agent through the distal-end opening and the at least one side opening.
- 20. Apparatus as in claim 17, 18 or 19, wherein the agent is a member selected from the group consisting of a thrombolytic agent, a fibrinolytic agent, a calcium dissolving agent, a gene therapy agent, and a group GP IIb/IIIa Inhibitor.
- 21. Apparatus as in claim 1, further comprising an agitator near the distal end of the catheter body for agitating clot over the length of the blood vessel.
- 22. Apparatus as in claim 21, wherein the agitator comprises a mechanical agitator.
- 23. Apparatus as in claim 21, wherein the agitator agitates at a frequency of 0-20,000 Hertz.
- 24. Apparatus as in claim 21, wherein the agitator comprises a rotatable and/or axially translatable agitator.
- 25. Apparatus as in claim 24, wherein the agitator comprises a resilient element which may be radially constrained to have a low profile or may be freed from radial constraint to have an enlarged profile having a non-linear geometry.
- 26. Apparatus as in claim 24, wherein the agitator comprises a resilient element which may be axially shortened to assume an enlarged profile having a non-linear geometry.
- 27. Apparatus as in claim 25 or 26, wherein the resilient element has a non-linear geometry selected from the group consisting of helical, spiral, serpentine, zig-zag, alternating helical, and random.
- 28. Apparatus as in claim 1, wherein the first radially expandable body comprises a balloon.
- 29. Apparatus as in claim 1, wherein the first radially expandable body comprises a filter.
- 30. Apparatus as in claim 1, further comprising a second radially expandable body, proximal to the at least one side opening, for inhibiting flow of clot beyond the luminal length of the blood vessel.
- 31. Apparatus for disrupting clot over a luminal length of a blood vessel, the apparatus comprising:
a catheter body having a proximal end, a distal end, and at least one lumen; means near the distal end of the catheter body for distributing an agent from the at least one lumen over the length of the blood vessel; and means near the distal end of the catheter body for resisting fluid flow through the at least one lumen.
- 32. Apparatus as in claim 31, further comprising means near the distal end of the catheter body for mechanically agitating clot over the luminal length of the blood vessel, the mechanical agitating means extending along a length of the catheter body.
- 33. Apparatus as in claim 31, wherein the flow resisting means comprises a cylindrical material for partially blocking flow of fluid through the at least one lumen, the cylindrical material having at least one channel.
- 34. Apparatus as in claim 33, wherein the outer diameter of the cylindrical material is equal to the inner diameter of the at least one lumen.
- 35. Apparatus as in claim 33, wherein the at least one channel comprises a cylindrical hole having an inner diameter sufficient to allow passage of the guidewire.
- 36. Apparatus as in claim 33, wherein the at least one channel comprises one or more flexible slits to allow passage of the guidewire and fluid.
- 37. Apparatus as in claim 33, wherein the at least one channel comprises a valve for allowing passage of the guidewire and one or more holes for allowing passage of fluid.
- 38. Apparatus as in claim 31, wherein the flow resisting means comprises a membrane with at least one aperture.
- 39. Apparatus as in claim 31, wherein the flow resisting means comprises a ball valve for partially blocking flow of fluid through the at least one lumen, the ball valve having at least one channel, a ball, and a widened area within the channel into which the ball may be displaced to allow passage of a guidewire through the channel.
- 40. Apparatus as in claim 31, wherein the flow resisting means comprises a compliant membrane coupled to the at least one lumen, the compliant membrane communicating with an inflation lumen, the inflation lumen communicating with an inflation port, wherein inflation via the inflation port and inflation lumen moves the compliant membrane to partially or wholly block fluid flow through the at least one lumen of the catheter body.
- 41. Apparatus as in claim 31, wherein the agent distributing means comprises a porous sheath disposed over the mechanical agitating means.
- 42. Apparatus as in claim 41, wherein the porous sheath is flexible and wherein the mechanical agitating means presses the sheath into the clot.
- 43. Apparatus as in claim 31, further comprising means for isolating at least one location on the catheter body to reduce blood flow through a region in a blood vessel being treated.
- 44. Apparatus as in claim 43, wherein the isolating means isolates both a proximal end and the distal end of the region being treated.
- 45. Apparatus as in claim 44, wherein the isolating means comprised a pair of axially spaced-apart balloons on the catheter body.
- 46. Apparatus as in claim 31, further comprising means for aspirating disrupted clot from a region around the mechanical agitation means.
- 47. A method for disrupting clot over a luminal length of a blood vessel, said method comprising:
positioning a catheter body at a location within the luminal length of the blood vessel, the catheter body having at least one lumen having a distal-end opening and at least one side opening; and infusing an agent through the distal-end opening and the at least one side opening, wherein the infusing occurs predominantly through the at least one side opening.
- 48. A method as in claim 47, wherein positioning the catheter body includes passing the catheter body over a guidewire.
- 49. A method as in claim 50, wherein infusing the agent is performed with the catheter body remaining positioned over the guidewire.
- 50. A method as in claim 47, further comprising agitating the clot over the luminal length.
- 51. A method as in claim 50, wherein agitating the clot comprises mechanically agitating the clot.
- 52. A method as in claim 50, wherein agitating the clot comprises agitating the clot at a frequency of 0-20,000 Hertz.
- 53. A method as in claim 50, wherein agitating the clot comprises rotating and/or axially translating a radially expansible agitator within the blood vessel and against the clot.
- 54. A method as in claim 53, wherein the radially expansible agitator is resilient and radially constrained by the blood vessel so that the agitator presses against the clot as it is rotated and/or axially translated.
- 55. A method as in claim 53, wherein infusing the agent comprises delivering the agent through a porous sheath disposed over the agitator, wherein the agent is delivered to the clot while it is being mechanically disrupted by the agitator.
- 56. A method as in claim 53, wherein the agitator comprises a resilient tube which has a non-linear geometry when expanded against the clot, wherein infusing the agent comprises delivering the agent through a lumen of the tube to ports or porous regions distributed over the length of the tube which is in contact with the clot.
- 57. A method as in claim 47, wherein the luminal length is at least 3 cm.
- 58. A method as in claim 47, wherein the blood vessel is a vein.
- 59. A method as in claim 58, wherein the vein is selected from the group consisting of vena cava, iliac vein, femoral vein, popliteal vein, common iliac vein, external iliac vein, brachial vein, and subclavian vein.
- 60. A method as in claim 47, wherein the blood vessel is an artery.
- 61. A method as in claim 60, wherein the artery is selected from the group consisting of the internal iliac artery, external iliac artery, popliteal artery, coronary arteries, superficial femoral artery, and the brachial artery.
- 62. A method as in claim 47, wherein the blood vessel comprises one or more grafts.
- 63. A method as in claim 47, wherein infusing predominantly through the at least one side opening comprises partially blocking flow of the agent through the at least one lumen distal to the at least one side opening.
- 64. A method as in claim 47, further comprising isolating at least one end of the luminal length of the blood vessel.
- 65. A method as in claim 64, further comprising isolating both a proximal end and a distal end of the luminal length.
- 66. A method as in claim 64, wherein isolating comprises inflating at least one occlusion balloon.
- 67. A method as in claim 64, wherein isolating is performed prior to infusing the agent.
- 68. A method as in claim 67, wherein isolating is maintained until after infusing the agent has stopped.
- 69. A method as in claim 47, further comprising aspirating disrupted clot material from along the luminal length of the blood vessel.
- 70. A method as in claim 69, wherein aspirating disrupted clot and infusing the agent are performed through a common lumen.
- 71. A method as in claim 69, wherein the at least one lumen comprises two lumens, aspirating clot being performed through one lumen and infusing the agent being performed through the other lumen.
- 72. A method as in claim 69, wherein the clot material is agitated by an agitator supported by the catheter body, and wherein the disrupted clot material is aspirated through an aspiration lumen within the catheter body.
- 73. A method as in claim 72, wherein the disrupted clot material is aspirated using a pump disposed within the aspiration lumen.
- 74. A method as in claim 69, wherein the clot material is agitated by an agitator supported by the catheter body, and wherein the disrupted clot material is aspirated through an aspiration lumen of an aspiration catheter.
- 75. A method as in claim 69, further comprising providing reduced aspiration of fluid through the distal-end opening of the at least one lumen.
- 76. A method as in claim 75, wherein providing reduced aspiration comprises resisting fluid flow through the at least one lumen proximal to the distal-end opening.
- 77. A method for disrupting clot over a luminal length within a blood vessel, said method comprising:
isolating the luminal length from blood flow; infusing an agent along the luminal length; providing reduced infusion of the agent at a location distal to the luminal length; and mechanically agitating the clot along the luminal length.
- 78. A kit comprising:
a catheter having an agitator and a thrombolytic agent delivery means; and instructions for use according to the method of claim 47.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] The present application is a continuation in part of U.S. patent application Ser. No. 09/491,401 filed on Jan. 25, 2000, and of PCT/US01/02406, filed on Jan. 24, 2001, the full disclosures of which are incorporated herein by reference.
Continuations (2)
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Number |
Date |
Country |
Parent |
09491401 |
Jan 2000 |
US |
Child |
10142005 |
May 2002 |
US |
Parent |
PCT/US01/02406 |
Jan 2001 |
US |
Child |
09491401 |
Jan 2000 |
US |