Claims
- 1. A combination of an endovascular stent with an intravascular multi-leaflet, one-way valve to serve as a prosthesis for diseased native valve of a mammal, the combination being adapted for percutaneous delivery, and comprising:
(1) a valve including a tubular member formed of one of a naturally occurring tubular body channel and of a membrane, the membrane being selected from a group of materials consisting of biocompatible polymer and biologic flat membrane, said membrane configured as a truncated cone, the tubular body having an inflow orifice and an outflow orifice, the leaflets forming the outflow orifice and forming a plurality of comissures; a first encircling support consisting essentially of material selected from the group consisting of thin metal wire, thin plastic ring, or suture filament, said first encircling support being affixed in a substantially circular fashion around the tubular body in proximity of the inflow orifice, and a second encircling support consisting essentially of material selected from the group consisting of thin metal wire, thin plastic ring, or suture filament, said second encircling support being affixed at the location of the comissures to form a circle around the tubular body in proximity of the outflow orifice; (2) an endovascular stent larger in diameter than the valve, the valve being contained in the endovascular stent and attached to the endovascular stent by affixing the inflow orifice of the valve to the endovasular stent and by affixing the second encircling support to the endovascular stent.
- 2. A combination in accordance with claim 1 where the endovascular stent includes an outwardly extended bulge in the area where the valve is attached within the endovacular stent.
- 3. A combination in accordance with claim 2 wherein the bulge of the endovascular stent comprises material of the endovascular stent that is longer than the length of the valve and that is held as the bulge by sutures placed at the inflow and outflow orifices of the valve.
- 4. A combination in accordance with claim 1 where the endovascular stent is collapsible and self-expandable.
- 5. A combination in accordance with claim 1 where the endovascular stent is collapsible and balloon inflatable.
- 6. A combination in accordance with claim 1 wherein the valve is a tri-leaflet valve.
- 7. A combination in accordance with claim 1 wherein the valve is a bi-leaflet valve.
- 8. A combination in accordance with claim 1 where the valve is attached to the endovascular stent by sutures.
- 9. A combination in accordance with claim 1 where the valve further comprises a plurality of members interconnecting the first and second circular supports, the length of the interconnecting members determining the maximum height of the valve.
- 10. A combination of two endovascular stents with an intravascular multi-leaflet, one-way valve to serve as a prosthesis for diseased native valve of a mammal, the combination being adapted for percutaneous delivery, and comprising:
(1) a valve including a tubular member formed of one of a naturally occurring tubular body channel and of a membrane, the membrane being selected from a group of materials consisting of biocompatible polymer and biologic flat membrane, said membrane configured as a truncated cone, the tubular body having an inflow orifice and an outflow orifice, the leaflets forming the outflow orifice and forming a plurality of comissures; a first encircling support consisting essentially of material selected from the group consisting of thin metal wire, thin plastic ring, or suture filament, said first encircling support being affixed in a substantially circular fashion around the tubular body in proximity of the inflow orifice, and a second encircling support consisting essentially of material selected from the group consisting of thin metal wire, thin plastic ring, or suture filament, said second encircling support being affixed at the location of the comissures to form a circle around the tubular body in proximity of the outflow orifice; (2) a first endovascular stent larger in diameter than the valve, the valve being attached to the first endovascular stent by affixing the inflow orifice of the valve to the first endovascular stent; (3) a second endovascular stent larger in diameter than the valve, the valve being attached to the second endovascular stent by affixing the second encircling support to the second endovascular stent.
- 11. A combination in accordance with claim 10 where the first and second endovascular stents are collapsible and self-expandable.
- 12. A combination in accordance with claim 10 where the first and second endovasular stents are collapsible and balloon inflatable.
- 13. A combination in accordance with claim 10 wherein the valve is a tri-leaflet valve.
- 14. A combination in accordance with claim 10 wherein the valve is a bi-leaflet valve.
- 15. A combination in accordance with claim 10 where the valve is attached to the first and second endovascular stents by sutures.
- 16. A combination in accordance with claim 10 where the valve further comprises a plurality of members interconnecting the first and second circular supports, the length of the interconnecting members determining the maximum height of the valve.
- 17. A combination of two sleeves with an intravascular multi-leaflet, one-way valve to serve as a prosthesis for diseased native valve of a mammal, the combination being adapted for percutaneous delivery, and comprising:
(1) a valve including a tubular member formed of one of a naturally occurring tubular body channel and of a membrane, the membrane being selected from a group of materials consisting of biocompatible polymer and biologic flat membrane, said membrane configured as a truncated cone, the tubular body having an inflow orifice and an outflow orifice, the leaflets forming the outflow orifice and forming a plurality of comissures; a first encircling support consisting essentially of material selected from the group consisting of thin metal wire, thin plastic ring, or suture filament, said first encircling support being affixed in a substantially circular fashion around the tubular body in proximity of the inflow orifice, and a second encircling support consisting essentially of material selected from the group consisting of thin metal wire, thin plastic ring, or suture filament, said second encircling support being affixed at the location of the comissures to form a circle around the tubular body in proximity of the outflow orifice; (2) a first sleeve larger in diameter than the valve, the valve being attached to the first sleeve by affixing the inflow orifice of the valve to the first sleeve; (3) a second sleeve larger in diameter than the valve, the valve being attached to the second sleeve by affixing the second encircling support to the second sleeve, each of the sleeves having an exterior surface and a plurality of hooks attached to the exterior surfaces, the hooks being adapted for anchoring the combination to the vessel wall of a patient.
- 18. A combination in accordance with claim 16 where each of the sleeves is formed of DACRON™ material.
- 19. A combination in accordance with claim 17 wherein the valve is a bi-leaflet valve.
- 20. A combination in accordance with claim 17 where the valve is attached to the endovasular stent by sutures.
- 21. A combination in accordance with claim 17 where the valve further comprises a plurality of members interconnecting the first and second circular supports, the length of the interconnecting members determining the maximum height of the valve.
- 22. A method of percutaneously implanting a prosthetic valve into the circulatory system of a mammal to replace a diseased native valve, the method comprising the steps of:
collapsing a combination of an endovascular stent with an intravascular multi-leaflet, one way valve as described in claim 1 on a catheter led by a guide wire; introducing the combination to a desired place of destination in the circulatory system by pushing said collapsed combination with the catheter on the guide wire; causing the combination to expand and lodge itself in the desired place of destination in the circulatory system, and withdrawing the catheter and the guide wire.
- 23. A method in accordance with claim 22 wherein the collapsed combination further includes an inflatable ballon, and wherein the step of causing the combination to expand comprises inflating the balloon.
- 24. A method in accordance with claim 22 wherein the endovascular stent of the combination is self-expandable.
- 25. A method of percutaneously implanting a prosthetic valve into the circulatory system of a mammal to replace a diseased native valve, the method comprising the steps of:
collapsing a combination of two endovascular stents with an intravascular multi-leaflet, one way valve as described in claim 10 on a catheter led by a guide wire; introducing the combination to a desired place of destination in the circulatory system by pushing said collapsed combination with the catheter on the guide wire; causing the combination to expand and lodge itself in the desired place of destination in the circulatory system, and withdrawing the catheter and the guide wire.
- 26. A method of percutaneously implanting a prosthetic valve into the circulatory system of a mammal to replace a diseased native valve, the method comprising the steps of:
collapsing a combination of two sleeves with an intravascular multi-leaflet, one way valve as described in claim 17 on a catheter led by a guide wire; introducing the combination to a desired place of destination in the circulatory system by pushing said collapsed combination with the catheter on the guide wire; causing the combination to expand and lodge itself in the desired place of destination in the circulatory system, and withdrawing the catheter and the guide wire.
CROSS-REFERENCE TO PRIORITY APPLICATION
[0001] The present application claims the priority of provisional application serial No. 60/373,171 filed on Apr. 16, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60373171 |
Apr 2002 |
US |