Claims
- 1. A balloon for use as a surgical device in a body lumen, said balloon comprising:
an axially elongate tubular core, said core comprising:
a proximal end configured to be in fluid communication with a pressurizable fluid source; a distal end; a hollow central region extending from said proximal end to said distal end; and a plurality of axially spaced apertures each of which extends from said hollow central region to an outer radial surface of said axially elongate tubular core, each of said axially spaced apertures defining a fluid communication path therethrough; a plurality of expandable chambers disposed on said outer radial surface such that each of said chambers is in fluid communication with said hollow central region through at least one of said plurality of axially spaced apertures; and a plurality of flexibly compliant links, each disposed between adjacent chambers to effect improved flexibility of said balloon.
- 2. A balloon according to claim 1, wherein said plurality of expandable chambers are axially adjacent one another.
- 3. A balloon according to claim 1, wherein said flexibly compliant links are hinges.
- 4. A balloon according to claim 1, wherein said plurality of expandable chambers and said plurality of flexibly compliant links are made from a single piece of material.
- 5. A balloon according to claim 4, wherein said material is of substantially constant thickness throughout said plurality of chambers and flexibly compliant links.
- 6. A balloon according to claim 1, wherein each of said plurality of chambers is defined by an outer surface that comprises:
a body lumen inner wall engaging portion; and a pair of flange portions, each extending between said body lumen inner wall engaging portion and said one of said plurality of flexibly compliant links.
- 7. A balloon according to claim 6, wherein each of said plurality of flexibly compliant links possess an axial length such that upon inflation of said balloon, opposing said flange portions between axially adjacent chambers are substantially parallel to one another.
- 8. A balloon according to claim 6, wherein each of said plurality of flexibly compliant links possess an axial length such that, upon inflation of said balloon, opposing said flange portions between axially adjacent chambers are farther apart near said body lumen inner wall engaging portion than they are near said flexibly compliant links.
- 9. A balloon according to claim 6, wherein each of said plurality of flexibly compliant links possess an axial length such that, upon inflation of said balloon, opposing said flange portions between axially adjacent chambers are farther apart near said flexibly compliant links than they are near said body lumen inner wall engaging portion.
- 10. A balloon according to claim 1, wherein at least a portion of said plurality of expandable chambers are enveloped within an axially elongate flexible sleeve.
- 11. A balloon according to claim 1, further comprising a drug disposed on at least a portion of said balloon such that, upon insertion of said balloon into a predetermined location within said body lumen, said drug is situated adjacent said predetermined location.
- 12. A balloon according to claim 11, wherein said drug is a restenosis inhibitor.
- 13. A surgical device assembly for insertion into a body lumen, said assembly comprising:
a balloon comprising:
an axially elongate tubular core, said core comprising:
a proximal end configured to be in fluid communication with a pressurizable fluid source; a distal end; a hollow central region extending from said proximal end to said distal end; and a plurality of axially spaced apertures each of which extends from said hollow central region to an outer radial surface of said axially elongate tubular core, each of said axially spaced apertures defining a fluid communication path therethrough; a plurality of expandable chambers disposed on said outer radial surface such that each of said chambers is in fluid communication with said hollow central region through at least one of said plurality of axially spaced apertures; and a plurality of flexibly compliant links, each connected to said outer surface of said axially elongate tubular core and disposed between adjacent chambers to effect improved flexibility of said balloon; a guide wire configured to assist in transporting said balloon through said body lumen; and an expandable stent disposed over said balloon.
- 14. A surgical device assembly according to claim 13, further comprising at least one perfusion channel configured to permit blood perfusion therethrough at least while said plurality of expandable chambers are in an expanded state.
- 15. A surgical device assembly according to claim 14, wherein said at least one perfusion channel is an integral part of said expandable chamber.
- 16. A surgical device assembly according to claim 14, wherein said axially elongate tubular core and said plurality of expandable chambers are made from a single piece of material.
- 17. A perfusion balloon for use as a surgical device comprising:
a plurality of ring-shaped expandable chambers, said chambers configured to be substantially axially aligned upon inflation, each comprising:
a flange portion made up of a proximal flange and a distal flange, said proximal and distal flanges configured to be substantially axially aligned with one another upon expansion of said chamber; and a generally circumferential body lumen inner wall engaging portion disposed between said flange portion; a chamber connecting channel integrally formed with said plurality of chambers, said channel comprising:
a proximal end configured to be in fluid communication with a pressurizable fluid source; a distal end; and a hollow central region extending from said proximal end to said distal end to enable fluid communication between said pressurizable fluid source and said chambers.
- 18. A perfusion balloon for use as a surgical device according to claim 17, further comprising a plurality of balloon interchamber webs, each disposed between and coupled to adjacent chambers such that said plurality of balloon interchamber webs provide enhanced flexibility to said balloon.
- 19. A perfusion balloon for use as a surgical device according to claim 18, wherein each web of said plurality of balloon interchamber webs is fluidly isolated from said pressurizable fluid source.
- 20. A perfusion balloon for use as a surgical device according to claim 18, wherein said enhanced flexibility of said balloon is further enhanced by a pattern of radially projecting cutouts in said balloon interchamber web.
- 21. A perfusion balloon for use as a surgical device according to claim 18, wherein flexibility can be tailored by variations in axial length of said balloon interchamber web.
- 22. A perfusion balloon for use as a surgical device according to claim 18, wherein dimensions of said connecting channel are configured to promote an inflation gradient between chambers.
- 23. A perfusion balloon according to claim 17, further comprising a drug disposed on at least a portion of said balloon such that, upon insertion of said balloon into a predetermined location within said body lumen, said drug is situated adjacent said predetermined location.
- 24. A perfusion balloon according to claim 23, wherein said drug is a restenosis inhibitor.
- 25. A perfusion balloon according to claim 17, further comprising a second catheter concentrically disposed within said perfusion canal, said second catheter adapted to pass through said perfusion canal such that it can be used for additional procedures selected from the group consisting of distal protection against emboli, distal angioplasty, distal stenting, pressure monitoring, and ultrasonic, radiation, laser, thermal or related treatment.
- 26. A method of performing a percutaneous transluminal coronary angioplasty with an improved flexibility balloon catheter, said method comprising:
inserting said balloon catheter into a body lumen, said balloon catheter comprising:
an axially elongate tubular core, said core comprising:
a proximal end configured to be in fluid communication with a pressurizable fluid source; a distal end; a hollow central region extending from said proximal end to said distal end; and a plurality of axially spaced apertures each of which extends from said hollow central region to an outer radial surface of said axially elongate tubular core, each of said axially spaced apertures defining a fluid communication path therethrough; a plurality of expandable chambers disposed on said outer surface of said axially elongate tubular core such that each of said chambers is in fluid communication with said hollow central region through at least one of said plurality of axially spaced apertures; and a plurality of flexibly compliant links, each disposed between adjacent chambers to effect improved flexibility of said balloon; advancing said balloon catheter through said body lumen such that curvature, if any, in said body lumen is mimicked by said balloon catheter; positioning said balloon catheter adjacent a predetermined location within said body lumen; inflating said plurality of expandable chambers such that, due to the improved flexibility of said balloon catheter caused at least in part by said plurality of flexibly compliant links, said balloon catheter substantially engages the inner wall of said body lumen.
- 27. A method according to claim 26, further comprising the steps of:
mounting a stent on said balloon catheter; and expanding said stent in response to said step of inflating said plurality of elastically expandable chambers.
- 28. A method according to claim 26, wherein said plurality of expandable chambers are enveloped within an axially elongate flexible sleeve.
- 29. A method according to claim 26 or claim 28, further comprising the step of incorporating a drug into at least a portion of said balloon such that said drug is situated adjacent said predetermined location within said body lumen.
- 30. A method according to claim 29, wherein said drug is a restenosis inhibitor.
- 31. A method of performing a percutaneous transluminal coronary angioplasty with an improved flexibility perfusion balloon catheter, said method comprising:
inserting said perfusion balloon catheter into a body lumen, said perfusion balloon catheter comprising:
a plurality of substantially axially aligned expandable chambers, each comprising:
a flange portion made up of a proximal flange and a distal flange substantially axially aligned with one another, said flange portion defining a substantially axial perfusion aperture therethrough such that in an inflated configuration, a perfusion canal is formed by substantial alignment of said axial perfusion apertures in said plurality of substantially aligned expandable chambers; and a generally circumferential body lumen inner wall engaging portion disposed between said proximal and distal flanges; an axially elongate chamber connecting channel coupled to said plurality of substantially axially aligned expandable chambers, said channel comprising:
a proximal end configured to be in fluid communication with a pressurizable fluid source; a distal end; and a hollow central region extending from said proximal end to said distal end to enable fluid communication between said pressurizable fluid source and said chambers; advancing said perfusion balloon catheter through said body lumen such that curvature, if any, in said body lumen is mimicked by said perfusion balloon catheter; positioning said perfusion balloon catheter adjacent a predetermined location within said body lumen; inflating said plurality of expandable chambers such that, due to the improved flexibility of said perfusion balloon catheter caused at least in part by said plurality of expandable chambers, said perfusion balloon catheter substantially engages the inner wall of said body lumen.
- 32. A method according to claim 31, further comprising the steps of:
mounting a stent on said perfusion balloon catheter; and expanding said stent in response to said step of inflating said plurality of expandable chambers.
- 33. A method according to claim 31, further comprising the step of incorporating a drug into at least a portion of said perfusion balloon catheter such that said drug is situated adjacent said predetermined location within said body lumen.
- 34. A method according to claim 33, wherein said drug is a restenosis inhibitor.
- 35. A method according to claim 31, wherein said axially elongate chamber connecting channel is integrally connected with said substantially axially aligned expandable chambers.
- 36. A method according to claim 31, wherein said perfusion balloon catheter further comprises a second catheter concentrically disposed within said perfusion canal, said second catheter adapted to pass through said perfusion canal such that it can be used for additional procedures selected from the group consisting of distal protection against emboli, distal angioplasty, distal stenting, pressure monitoring, and ultrasonic, radiation, laser, thermal or related treatment.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application 60/232,382, filed Sep. 14, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60232382 |
Sep 2000 |
US |