Claims
- 1. A device to treat tissue, comprising:
an outer tube; an inner tube disposed at least partially within the outer tube; and a dual balloon including an inner balloon and an outer balloon, the inner balloon coupled to the inner tube at a proximal end and at a distal end, the outer balloon having at least one pore therein and coupled to the inner tube at a distal end and to the outer tube at a proximal end, a first interior volume defined between the outer balloon and the inner balloon in fluid communication with an inlet in the volume between the outer tube and the inner tube.
- 2. The device of claim 1, wherein the inner tube further defines:
a guidewire lumen; a supply lumen; and a return lumen.
- 3. The device of claim 2, wherein the supply lumen defines a hole such that a fluid flowing in the supply lumen may be caused to flow into a volume defined by the inner balloon, and wherein the return lumen defines a hole such that a fluid flowing in a volume defined by the inner balloon may be caused to flow into the return lumen.
- 4. The device of claim 2, wherein the guidewire lumen extends from a proximal end of the inner tube to a distal end of the inner tube.
- 5. The device of claim 1, further comprising at least two radially extending tabs disposed around a circumference of the inner tube to substantially center the inner tube within the dual balloon.
- 6. The device of claim 1, further comprising at least one marker band disposed on the inner tube to locate a working region of the device at a desired location.
- 7. The device of claim 1, further comprising a source of chilled fluid having a supply tube and a return tube, the supply tube coupled in fluid communication to the supply lumen and the return tube coupled in fluid communication to the return lumen.
- 8. The device of claim 1, further comprising a source of fluid, the source of fluid coupled in fluid communication to the volume between the inner balloon and the outer balloon.
- 9. The device of claim 7, wherein the chilled fluid is a perfluorocarbon.
- 10. The device of claim 9, wherein the fluid is Galden® fluid.
- 11. The device of claim 1, wherein the outer balloon is a porous or microporous balloon having pores with a size on the order of a micron.
- 12. The device of claim 11, wherein the pores are shaped in a configuration selected from the group consisting of: a band, a ring, a single pore.
- 13. The device of claim 7, wherein the source of fluid includes a gear pump.
- 14. The device of claim 13, wherein the gear pump is one selected from the group consisting of a radial spur gear pump and a helical tooth gear pump.
- 15. A method of reducing restenosis after angioplasty in a blood vessel, comprising:
inserting a catheter into a blood vessel, the catheter having a balloon, the balloon having at least one pore formed therein; inflating the balloon with a perfluorocarbon such that an exterior surface of the balloon, and the leaked perfluorocarbon, is in contact with at least a partial inner perimeter of the blood vessel, the perfluorocarbon having a temperature in the range of about −10° C. to −50° C.
- 16. The method of claim 15, further comprising the step of disposing the catheter at a desired location using at least one marker band.
- 17. The method of claim 15, further comprising flowing the perfluorocarbon into the balloon using a supply lumen and exhausting the perfluorocarbon from the balloon using a return lumen.
- 18. The method of claim 15, wherein the balloon is a dual balloon, and further comprising providing a heat transfer fluid in the volume between the dual balloons.
- 19. The method of claim 17, wherein the perfluorocarbon is circulated by a gear pump.
- 20. The method of claim 15, further comprising disposing the catheter such that at least a portion of the balloon is in a coronary artery.
- 21. The method of claim 15, further comprising disposing the catheter such that at least a portion of the balloon is in a carotid artery.
- 22. A method of reducing atrial fibrillation, comprising:
inserting a catheter at least partially into the heart, the catheter having a cold balloon having at least one pore formed therein, a portion of the balloon located in the left atrium and a portion of the balloon located in a pulmonary vein; inflating the cold balloon with a perfluorocarbon such that an exterior surface of the cold balloon, and the portion of the perfluorocarbon emergent from the at least one pore, is in contact with at least a partial circumference of the portion of the pulmonary vein adjacent the left atrium, the perfluorocarbon having a temperature in the range of about −10° C. to −50° C.
- 23. The method of claim 22, wherein the cold balloon has a working region having a length of between about 5 mm and 10 mm.
- 24. The method of claim 22, wherein the perfluorocarbon is circulated by a gear pump.
- 25. The method of claim 22, further comprising:
inserting a wire capable of rupturing the atrial septum from the femoral vein into the right atrium; forming a hole using the wire in the interatrial septum between the right atrium and the left atrium; inserting a guide catheter into the right atrium; inserting a guide wire through the guide catheter into the right atrium and further into a pulmonary vein; disposing the catheter over the guidewire into a volume defined by the joint of the right atrium and the pulmonary vein.
- 26. The method of claim 22, further comprising disposing a warm fluid balloon distal of the cold balloon.
- 27. A catheter system to treat restenosis or atrial fibrillation, comprising:
a catheter shaft; a warm balloon disposed on the catheter shaft, said warm balloon fluidically coupled to at least one lumen for inflating and deflating the warm balloon; and a cold balloon disposed on the catheter shaft, said cold balloon having at least one pore formed therein, and fluidically coupled to two lumens for circulating a cold working fluid to and from the cold balloon, such that said cold balloon is located adjacent but proximal to said warm balloon.
- 28. The system of claim 27, wherein said warm balloon is made of silicone tubing.
- 29. The system of claim 28, wherein said warm balloon is secured by heat shrink tubing.
- 30. The system of claim 28, wherein said warm balloon is secured by an adhesive.
- 31. The system of claim 28, wherein said warm balloon is secured by bands.
- 32. The system of claim 31, wherein said bands are metal.
- 33. The system of claim 27, wherein said working fluid is a perfluorocarbon.
- 34. The system of claim 33, wherein said working fluid is Galden fluid.
- 35. The system of claim 27, wherein said warm balloon is structured and configured to anchor in a pulmonary vein.
- 36. The system of claim 35, wherein said cold balloon is structured and configured to be disposed partially in a pulmonary vein and partially in the left atrium.
- 37. The system of claim 36, wherein said cold balloon has a length of between about 1 to 2½ cm and a diameter of between about 1 to 2½ cm.
- 38. The system of claim 27, further comprising at least one marker band disposed within one or both of the cold balloon and the warm balloon.
- 39. The system of claim 27, further comprising a set of mapping electrodes disposed distal of the warm balloon.
- 40. The system of claim 27, further comprising an insulation sleeve disposed around the catheter shaft.
- 41. The system of claim 40, wherein the insulation sleeve is formed of a foamed extrusion.
- 42. The system of claim 27, further comprising a silicone sleeve disposed circumferentially about the catheter shaft adjacent a point at which at least one of the cold or warm balloons attaches to the catheter shaft.
- 43. The system of claim 27, further comprising a gear pump, and wherein the cold working fluid is circulated by said gear pump.
- 44. A method of reducing atrial fibrillation, comprising:
inserting a catheter at least partially into the heart, the catheter having a warm balloon and a cold balloon proximal of the warm balloon, at least a portion of the cold balloon located in the left atrium and at least a portion of the warm balloon located in a pulmonary vein; inflating the warm balloon with a biocompatible fluid; inflating the cold balloon with a perfluorocarbon such that an exterior surface of the cold balloon is in contact with at least a partial circumference of the portion of the pulmonary vein adjacent the left atrium, the perfluorocarbon having a temperature in the range of about −10° C. to −70° C.; wherein the cold balloon has at least one pore formed therein; and further comprising leaking a portion of the perfluorocarbon into the space defined between the cold balloon and the at least a partial circumference of the portion of the pulmonary vein adjacent the left atrium.
- 45. The method of claim 44, wherein inflating the warm balloon includes pressurizing the warm balloon to a pressure of between about 1 to 2 atmospheres.
- 46. The method of claim 44, wherein inflating the cold balloon includes pressurizing the cold balloon to a pressure of between about 1 to 2 atmospheres.
- 47. The method of claim 44, further comprising circulating said cold perfluorocarbon with a gear pump.
- 48. A device to reduce atrial fibrillation, comprising:
a catheter, the catheter having a warm balloon and a cold balloon proximal of the warm balloon, at least a portion of the cold balloon locatable in the left atrium and at least a portion of the warm balloon locatable in a pulmonary vein; a source of warm biocompatible fluid to inflate the warm balloon; a source of cold perfluorocarbon to inflate the cold balloon, such that an exterior surface of the cold balloon is contactable with at least a partial circumference of the portion of the pulmonary vein adjacent the left atrium, the perfluorocarbon having a temperature in the range of about −10° C. to −70° C.; wherein the cold balloon has at least one pore formed therein.
- 49. The device of claim 48, further comprising a gear pump, and wherein the cold perfluorocarbon is circulated by said gear pump.
- 50. A catheter system to treat restenosis or atrial fibrillation, comprising:
a catheter shaft; a warm balloon disposed on the catheter shaft, said warm balloon fluidically coupled to at least one lumen for inflating and deflating the warm balloon; a cold balloon disposed on the catheter shaft, said cold balloon fluidically coupled to two lumens for circulating a cold working fluid to and from the cold balloon, such that said cold balloon is located adjacent but proximal to said warm balloon; and a gear pump for circulating the cold working fluid.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of co-pending U.S. patent application Ser. No. 09/932,402 filed on Aug. 17, 2001, entitled “Method And Device For Performing Cooling- Or Cryo-Therapies For, E.G., Angioplasty With Reduced Restenosis or Pulmonary Vein Cell Necrosis To Inhibit Atrial Fibrillation Employing Microporous Balloon”, which is a continuation-in-part of U.S. patent application Ser. No. 09/787,599 filed Mar. 21, 2001, entitled “Method and Device for Performing Cooling-or Cryo-Therapies for, e.g., Angioplasty with Reduced Restenosis or Pulmonary Vein Cell Necrosis to Inhibit Atrial Fibrillation” which is a continuation-in-part of U.S. patent application Ser. No. 09/516,319, filed Mar. 1, 2000, entitled “Method and Device for Performing Cooling- or Cryo-Therapies for, e.g., Angioplasty with Reduced Restenosis or Pulmonary Vein Cell Necrosis to Inhibit Atrial Fibrillation” which is a continuation-in-part of U.S. patent application Ser. No. 09/052,545, filed Mar. 31, 1998, entitled “Circulating Fluid Hypothermia Method and Apparatus” and U.S. patent application Ser. No. 09/215,038, filed Dec. 16, 1998, entitled “Inflatable Catheter for Selective Organ Heating and Cooling and Method of Using the Same”.
Divisions (1)
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Number |
Date |
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Parent |
09932402 |
Aug 2001 |
US |
Child |
10753913 |
Jan 2004 |
US |
Continuation in Parts (4)
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09787599 |
Mar 2001 |
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Child |
09932402 |
Aug 2001 |
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Parent |
09516319 |
Mar 2000 |
US |
Child |
09787599 |
Mar 2001 |
US |
Parent |
09052545 |
Mar 1998 |
US |
Child |
09516319 |
Mar 2000 |
US |
Parent |
09215038 |
Dec 1998 |
US |
Child |
09516319 |
Mar 2000 |
US |