Claims
- 1. An implantable intraluminal device implantable in a body lumen having an atheroma therein in the vicinity of a side-branch orifice, comprising:
a mesh-like tube of bio-compatible material formed with liquid-permeable window openings; said mesh-like tube having an expanded condition in which the tube diameter is slightly larger than the diameter of the body lumen in which it is to be implanted, and the tube length is sufficient to cover said atheroma and side-branch orifice to be anchored to the body lumen around the periphery of the atheroma; said mesh-like tube also having a contracted condition wherein it is sufficiently flexible so as to be easily manipulatable through the body lumen to the site of the atheroma; said mesh-like tube, in its expanded condition, having window openings of a size and distribution such as to:
structurally stabilize said atheroma and to keep embolic material originatable from the atheroma in place on the wall of said body lumen, while diverting embolic material of predetermined size present in the blood flowing through the mesh-like tube from said side-branch orifice, without substantially impeding the blood flow, or increasing the thrombogenitic properties, of the blood flowing into said side-branch orifice.
- 2. The implantable device according to claim 1, wherein said mesh-like tube has a porosity index in the expanded condition of the mesh-like tube within the range of 65-95%.
- 3. The implantable device according to claim 2, wherein said porosity index in the expanded condition of the mesh-like tube is within the range of 80-90%.
- 4. The implantable device according to claim 1, wherein said mesh-like tube has two end sections having a porosity index in in the expanded condition of the mesh-like tube within the range of 20-95% and a diverting section in between having a porosity index in the expanded condition of the mesh-like tube within the range of 65-95%.
- 5. The implantable device according to claim 1, wherein said mesh-like tube has two end sections having a porosity index in in the expanded condition of the mesh-like tube within the range of 20-80% and a diverting section in between having a porosity index in the expanded condition of the mesh-like tube within the range of 80-90%.
- 6. The implantable device according to claim 1, wherein said window openings in the expanded condition of the mesh-like tube are of a length along one side within the range of 100-1500 μm.
- 7. The implantable device according to claim 1, wherein said window openings in the expanded condition of the mesh-like tube are of a length along one side within the range of 400-1000 μm.
- 8. The implantable device according to claim 1, wherein said window openings in the expanded condition of the mesh-like tube have an inscribed diameter within the range of 30-800 μm.
- 9. The implantable device according to claim 1, wherein said window openings in the expanded condition of the mesh-like tube have an inscribed diameter within the range of 50-320 μm.
- 10. The implantable device according to claim 1, wherein said mesh-like tube is composed of a braid of filaments.
- 11. The implantable device according to claim 10, wherein the number of filaments in said braid is within the range of 60-300.
- 12. The implantable device according to claim 10, wherein the number of filaments in said braid is within the range of 100-160.
- 13. The implantable device according to claim 10, wherein said filaments have a circular cross-section of a diameter within the range of 20-500 μm.
- 14. The implantable device according to claim 10, wherein said filaments have a circular cross-section of a diameter within the range of 50-100 μm.
- 15. The implantable device according to claim 10, wherein said filaments have a non-circular cross-section of a circumference within the range of 60-800 μm.
- 16. The implantable device according to claim 10, wherein said mesh-like tube has, in its expanded condition, a porosity index within the range of 20-95%, window openings of a length along one side within the range of 100-1500 μm, a number of filaments within the range of 60-300, and a circular cross-section within the range of 20-500 μm.
- 17. The implantable device according to claim 10, wherein said mesh-like tube has, in its expanded condition, a porosity index within the range of 80-90%, window openings of a length along one side within the range of 400-1000 μm, a number of filaments within the range of 100-160, and a circular cross-section within the range of 50-100 μm.
- 18. The implantable device according to claim 1, wherein said device is made of a material selected from the group consisting of 316L stainless steel tantalum, superelastic Nitinol, cobalt base alloy, mixtures of such metals and alloys, bio compatible plastic and complex materials.
- 19. The implantable device according to claim 1, wherein said body lumen is the aortic arch.
- 20. The implantable device according to claim 2, wherein said mesh-like tube is of a length in its expanded condition such that its ends can be implanted in one or more of the body lumens of the ascending aorta, aortic arch, and or descending aorta.
- 21. The implantable device according to claim 1, wherein the mesh-like tube, in its expanded condition, exerts an average radial force of above 150 pascals on the wall of said body lumen.
- 22. A method for stabilizing atheromas in the aortic arch and preventing embolic material from being detached from the wall of said aortic arch, thus preventing physiological damage caused by protruding aortic arch atheroma, and also preventing emboli from proximal sources from entering into side-branches of said aortic arch, without substantially impeding the flow of blood through said aortic arch and said side-branches, comprising: implanting in said aortic arch an intraluminal device according to claim 1.
- 23. A method for stabilizing an atheroma in a body lumen and preventing embolic material from being detached from the atheroms, without substantially impeding the flow of blood through said lumen and a side-branch branching from said lumen, the method comprising: implanting an expandable mesh-like tube of a bio-compatible material in said body lumen to cover said atheroma; said mesh-like tube having a contracted state of a first diameter, and an expanded state of a second diameter greater than said first diameter, said mesh-like tube being flexible in its contracted state for manipulation through said body lumen to the implantation site and being suitable to keep said embolic material in place on said wall of said body lumen, said mesh-like tube being also suitable to divert embolic material passing therethrough from entering said side-branch.
- 24. The method according to claim 22, wherein said body lumen is the aortic arch.
Parent Case Info
[0001] This application claims the benefit of priority from U.S. Provisional Patent Application No. 60/332,048, filed Nov. 23, 2001, the contents of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60332048 |
Nov 2001 |
US |