Claims
- 1. An ablation catheter which is compatible with MRI systems, comprising a shaft and a distal tip assembly, each being made of MRI compatible material, at least one electrode supported on said tip assembly, said electrode being made of MRI compatible material, and at least one wire connected to said electrode and extending from said electrode to the proximal end of said shaft, said wire being made of MRI compatible material.
- 2. An ablation catheter according to claim 1, wherein said catheter is steerable and includes a plurality of steering cables extending through said shaft and distal tip assembly, said steering cables being made of MRI compatible material.
- 3. An ablation catheter according to claim 1, wherein said shaft is made of one of polyurethane tubing, braided extrusion and woven Dacron.
- 4. An ablation catheter according to claim 1, wherein said shaft is made of polyurethane tubing and braided extrusion.
- 5. An ablation catheter according to claim 1, wherein said shaft is made of polyurethane tubing and woven Dacron.
- 6. An ablation catheter according to claim 1, wherein said shaft is made of polyurethane tubing, braided extrusion and woven Dacron.
- 7. An ablation catheter according to claim 1, wherein said wire is made of one of copper, copper alloy and copper beryllium.
- 8. An ablation catheter according to claim 1, further including a snap-fit distal assembly made of MRI compatible material.
- 9. An ablation catheter according to claim 8, wherein said snap-fit distal assembly is made of polyurethane.
- 10. An ablation catheter according to claim 8, wherein said snap-fit distal assembly includes a plurality of engagable components providing a snap-fit structure, said engagable components being made of intrinsically compressible plastic.
- 11. An ablation catheter according to claim 10, wherein said engageable components are made of one of polycarbonate and ULTEM®.
- 12. An ablation catheter according to claim 7, wherein said snap-fit distal assembly further includes a core into which a potting compound is injected.
- 13. An ablation catheter according to claim 12, wherein said core is contained within a distal tip electrode.
- 14. An ablation catheter according to claim 12, wherein said potting compound is TRA-BOND FDA-2 epoxy.
- 15. An ablation catheter according to claim 1, further including a temperature sensor and a temperature sensor conductive wire made of MRI compatible material, and said temperature sensor conductive wire extends from said temperature sensor to the proximal end of said shaft.
- 16. An ablation catheter according to claim 15, wherein said temperature sensor conductive wire is made of copper and Constantine.
- 17. An ablation catheter according to claim 1, wherein said shaft has a proximal portion and said catheter further includes a stiffening spring in said proximal portion of said shaft, said stiffening spring being made of MRI compatible material.
- 18. An ablation catheter according to claim 17, wherein said stiffening spring is made of brass.
- 19. An ablation catheter which is compatible with MRI systems, comprising:
a shaft and a distal tip assembly, each being made of MRI compatible material, said shaft having a proximal portion; an electrode supported on said tip assembly, said electrode being made of MRI compatible material, and a first wire connected to said electrode and extending from said electrode to the proximal end of said shaft, said first wire being made of MRI compatible material; said catheter being steerable and including a plurality of steering cables extending through said shaft and said distal tip assembly, said steering cables being made of MRI compatible material; a snap-fit distal assembly made of MRI compatible material; a stiffening spring in said proximal portion of shaft, said stiffening spring being made of MRI compatible material; and a temperature sensor being made of MRI compatible material and a second wire connected to said temperature sensor and extended from said temperature sensor to said proximal portion of said shaft, said second wire being made of MRI compatible material.
- 20. An ablation catheter according to claim 19 wherein
said shaft is made of one of polyurethane tubing, woven Dacron and braided extrusion; said first wire is made of one of copper, copper alloy and copper beryllium; at least one of said steering cables is made of stainless steel; at least one component of said snap-fit distal assembly is made of polyurethane; said stiffening spring is made of brass; and said second wire is made of copper and Constantine.
- 21. An ablation catheter which is compatible with MRI systems, comprising a shaft and a distal tip assembly, each being made of a nonmagnetic material, at least one electrode supported on said tip assembly, said electrode being made of a nonmagnetic material, and at least one wire connected to said electrode and extending from said electrode to the proximal end of said shaft, said wire being made of a nonmagnetic material.
- 22. An ablation catheter according to claim 21, wherein said catheter is steerable and includes a plurality of steering cables extending through said shaft and distal tip assembly, said steering cables being made of a nonmagnetic material.
- 23. An ablation catheter according to claim 21, wherein said shaft is made of one of polyurethane tubing, braided extrusion and woven Dacron.
- 24. An ablation catheter according to claim 21, wherein said shaft is made of polyurethane tubing and braided extrusion.
- 25. An ablation catheter according to claim 21, wherein said shaft is made of polyurethane tubing and woven Dacron.
- 26. An ablation catheter according to claim 21, wherein said shaft is made of polyurethane tubing, braided extrusion and woven Dacron.
- 27. An ablation catheter according to claim 21, wherein said wire is made of one of copper, copper alloy and copper beryllium.
- 28. An ablation catheter according to claim 21, further including a snap-fit distal assembly made of a nonmagnetic material.
- 29. An ablation catheter according to claim 28, wherein said snap-fit distal assembly is made of polyurethane.
- 30. An ablation catheter according to claim 28, wherein said snap-fit distal assembly includes a plurality of engagable components providing a snap-fit structure, said engagable components being made of intrinsically compressible plastic.
- 31. An ablation catheter according to claim 30, wherein said engageable components are made of one of polycarbonate and ULTEM®.
- 32. An ablation catheter according to claim 27, wherein said snap-fit distal assembly further includes a core into which a potting compound is injected.
- 33. An ablation catheter according to claim 32, wherein said core is contained within a distal tip electrode.
- 34. An ablation catheter according to claim 32, wherein said potting compound is TRA-BOND FDA-2 epoxy.
- 35. An ablation catheter according to claim 21, further including a temperature sensor and a temperature sensor conductive wire made of a nonmagnetic material, and said temperature sensor conductive wire extends from said temperature sensor to the proximal end of said shaft.
- 36. An ablation catheter according to claim 35, wherein said temperature sensor conductive wire is made of copper and Constantine.
- 37. An ablation catheter according to claim 21, wherein said shaft has a proximal portion and said catheter further includes a stiffening spring in said proximal portion of said shaft, said stiffening spring being made of a nonmagnetic material.
- 38. An ablation catheter according to claim 37, wherein said stiffening spring is made of brass.
- 39. An ablation catheter which is compatible with MRI systems, comprising:
a shaft and a distal tip assembly, each being made of a nonmagnetic material, said shaft having a proximal portion; an electrode supported on said tip assembly, said electrode being made of a nonmagnetic material, and a first wire connected to said electrode and extending from said electrode to the proximal end of said shaft, said first wire being made of a nonmagnetic material; said catheter being steerable and including a plurality of steering cables extending through said shaft and said distal tip assembly, said steering cables being made of a nonmagnetic material; a snap-fit distal assembly made of a nonmagnetic material; a stiffening spring in said proximal portion of shaft, said stiffening spring being made of a nonmagnetic material; and a temperature sensor being made of a nonmagnetic material and a second wire connected to said temperature sensor and extended from said temperature sensor to said proximal portion of said shaft, said second wire being made of a nonmagnetic material.
- 40. An ablation catheter according to claim 39 wherein
said shaft is made of one of polyurethane tubing, woven Dacron and braided extrusion; said first wire is made of one of copper, copper alloy and copper beryllium; at least one of said steering cables is made of stainless steel; at least one component of said snap-fit distal assembly is made of polyurethane; said stiffening spring is made of brass; and said second wire is made of copper and Constantine.
RELATED APPLICATION DATA
[0001] This application claims priority under 35 U.S.C. 119 from U.S. provisional application serial No. 60/204,419, filed May 12, 2000 which is hereby incorporated by reference in its entirety.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US01/15475 |
5/14/2001 |
WO |
|