Claims
- 1. A device for closing an opening in a tissue structure of a subject, said device consisting of:
an implantable flexible segment adapted to conform to and seal with an inner surface of said tissue structure over said opening and further adapted to utilize the internal tissue structure pressure exerted thereon to form a substantially fluid-tight seal with said inner surface over said opening of said tissue structure whereby substances within said tissue structure are prevented from leaking from said opening in said tissue structure under normal physiological conditions.
- 2. The device according to claim 1, wherein said flexible segment is further adapted to be permanently implanted.
- 3. The device according to claim 1, wherein said flexible segment is further adapted to be biodegradable or bioresorbable.
- 4. The device according to claim 1, wherein said flexible segment forms said substantially fluid-tight seal without compressing, tensioning or puncturing said conduit wall.
- 5. The device according to claim 1, wherein said tissue structure is a septal wall of a heart.
- 6. The device according to claim 1, wherein said tissue structure is a blood vessel.
- 7. The device according to claim 1, wherein said device comprises one or more thrombogenic substances.
- 8. The device according to claim 1, wherein said device comprises an aperture.
- 9. The device according to claim 8, wherein one or more thrombogenic substances are associated with said aperture.
- 10. The device according to claim 8, aperture has a cover over said aperure.
- 11. The device according to claim 10, wherein said cover is a thin membrane.
- 12. The device according to claim 11, wherein said thin membrane is penetrable by a guide wire or other delivery device.
- 13. The device according to claim 8, wherein said aperture is self-closing and self-sealing such that an opening created by said guide wire or other delivery device is automatically closed and sealed following removal of said guide wire or other delivery device from said aperture.
- 14. The device according to claim 8, wherein a metal mesh is associated with said aperture.
- 15. The device according to claim 8, wherein said device further comprises a stoma and said stoma provides said aperture.
- 16. The device according to claim 15, wherein said stoma comprises a transition portion.
- 17. The device according to claim 16, wherein said transition portion is fabricated from at least one of nitinol or other shaped memory material, stainless steel, a polymer or a combination thereof.
- 18. The device according to claim 17, wherein said transition portion comprises one or more radially extending fingers.
- 19. The device according to claim 8, further comprises a valve associated with said aperture, wherein said valve prevents substances from within said tissue structure from flowing out of said aperture.
- 20. The device according to claim 8, wherein said device is configured to be delivered over a guide wire insterted through said aperture.
- 21. The device according to claim 1, wherein said device is biodegradable or bioresobable.
- 22. The device according to claim 1, wherein said device is coated with at least one substance beneficial to said subject.
- 23. The device according to claim 1, wherein said device is embedded with at least one substance beneficial to said subject.
- 24. The device according to claim 1, wherein at least one surface of said device is modified.
- 25. A device for closing an opening in a tissue structure of a subject wherein the device is implantable to a site within said tissue structure of a subject through said opening, said device consisting of:
a segment having a configuration and comprised of a compliant material whereby said segment is constrictable to a size sufficient to fit through said opening and is expandable to be securely and permanently self-retained within said tissue structure upon implantation whereby substances within said tissue structure are prevented from leaking from said opening in said tissue structure under normal physiological conditions.
- 26. The device according to claim 25, wherein said segment readily conforms to and seals with an inner surface of said conduit upon deployment within said tissue structure to form a substantially fluid-tight seal with an inner surface of said tissue structure.
- 27. The device according to claim 25, wherein said segment comprises a tissue-contacting surface and a non tissue-facing surface, wherein, upon implantation of said compliant material, said tissue-contacting surface is adapted to readily conform to and seal with the inner surface of said tissue structure.
- 28. The device according to claim 27, wherein said non tissue-facing surface is adapted to utilize the internal conduit pressure exerted thereon to form a substantially fluid-tight seal between the tissue-contacting surface and said inner surface of said tissue structure.
- 29. The device according to claim 25, wherein said segment comprises a thin membrane.
- 30. The device according to claim 25, wherein said segment has a generally planar configuration in an original state.
- 31. The device according to claim 25, wherein said segment has a generally curved configuration in an original state.
- 32. The device according to claim 25, wherein said segment has at least a partially cylindrical configuration when in an original state.
- 32. The device according to claim 25, wherein said segment has a cylindrical configuration when in an original state.
- 33. The device according to claim 25, wherein said segment has a rectangular shape.
- 34. The according to claim 25, wherein said segment has a circular shape when in an original state.
- 35. The according to claim 25, wherein said segment has an elliptical shape when in an original state.
- 36. The according to claim 25, wherein said segment has petalled shape when in an original state.
- 37. The device according to claim 25, wherein said segment has a cylindrical configuration when implanted across said opening.
- 38. The device according to claim 25, wherein the surface area of said segment is at least about 40 mm2.
- 39. The device according to claim 25, wherein the thickness of said segment is in the range from about 100 microns to about 500 microns.
- 40. The device according to claim 25, wherein said segment comprises an elastomer.
- 41. The device according to claim 25, wherein said segment comprises a biocompatible material.
- 42. The device according to claim 25, wherein said segment comprises a biodegradable or bioresorbable material.
- 43. The device according to claim 25, wherein at least a portion of said segment comprises a metal.
- 44. The device according to claim 43, wherein said metal comprises stainless steel, vitalium, titanium or nitinol.
- 45. The device according to claim 43, wherein said metal is in the form of a wire mesh.
- 46. The device according to claim 25, wherein said segment comprises PTFE or Dacron.
- 47. The device according to claim 25, wherein said segment comprises a polymer material.
- 48. The device according to claim 47, wherein said polymer is an elastomer.
- 49. The device according to claim 48, wherein said elastomer comprises polysiloxane or polyurethane.
- 50. The device according to claim 48, wherein said elastomer has a durometer ranging from about 80 Shore A to 55 Shore D.
- 51. The device according to claim 25, wherein said segment comprises a bioprosthetic material.
- 52. The device according to claim 51, wherein said bioprosthetic material is fabricated from autologous, allogenic or xenogenic tissue.
- 53. The device according to claim 25, wherein said device is coated with at least one substance that is beneficial to said subject.
- 54. The device according to claim 25, wherein said device is embedded with at least one substance that is beneficial to said subject.
- 55. The device according to claim 25, wherein said device is surface modified.
- 56. The device according to claim 25, wherein said device comprises one or more thrombogenic substances.
- 57. The device according to claim 25, wherein said device comprises an aperture.
- 58. The device according to claim 57, wherein one or more thrombogenic substances are associated with said aperture.
- 59. The device according to claim 57, aperture has a cover over said aperure.
- 60. The device according to claim 59, wherein said cover is a thin membrane.
- 61. The device according to claim 60, wherein said thin membrane is penetrable by a guide wire or other delivery device.
- 62. The device according to claim 57, wherein said aperture is self-closing and self-sealing such that an opening created by said guide wire or other delivery device is automatically closed and sealed following removal of said guide wire or other delivery device from said aperture.
- 63. The device according to claim 57, wherein a metal mesh is associated with said aperture.
- 64. The device according to claim 57, wherein said device further comprises a stoma and said stoma provides said aperture.
- 65. The device according to claim 64, wherein said stoma comprises a transition portion.
- 66. The device according to claim 65, wherein said transition portion is fabricated from at least one of nitinol or other shaped memory material, stainless steel, a polymer or a combination thereof.
- 67. The device according to claim 65, wherein said transition portion comprises one or more radially extending fingers.
- 68. The device according to claim 57, further comprises a valve associated with said aperture, wherein said valve prevents substances from within said tissue structure from flowing out of said aperture.
- 69. The device according to claim 57, wherein said device is configured to be delivered over a guide wire insterted through said aperture.
- 70. A method for closing an opening in a tissue structure of a subject, said method comprising:
providing a device according to claim 1;positioning said device inside a tissue structure, whereby said device is operatively aligned with an opening in said tissue structure to be closed; conforming said device to and sealing said device against an inner surface of said tissue structure, wherein said opening is closed by said device; and permanently forming a substantially fluid-tight seal between said device and said inner surface of said tissue structure utilizing the internal tissue structure pressure exerted upon said device, whereby substances within said tissue structure are prevented from leaking from said opening in said tissue structure under normal physiological conditions.
- 71. The method according to claim 70, wherein said device is biodegraded or reabsorbed.
- 72. The method according to claim 70, further comprising forming a natural and permanent closure at said opening.
- 73. The method according to claim 70, wherein said step of positioning includes inserting a guide wire through said opening and delivering said device over said guide wire to said opening.
- 74. The method according to claim 70, wherein said tissue structure is a blood vessel.
- 75. The method according to claim 70, wherein said tissue structure is a septal wall of a heart.
- 76. A method for forming a connection in situ between two conduits substantially adjacent to each other, said method comprising:
forming a first opening in a wall of a first conduit; forming a second opening in said wall of said first conduit; penetrating through the tissue between said first conduit and a second conduit; forming an opening in said second conduit; inserting an anastomotic connector device through said first opening of said first conduit; inserting a portion of said device through said second opening of said first conduit; inserting said portion through said first opening of said second conduit; and deploying said device within said conduits such that said device provides a fluid connection between said conduits, wherein said device conforms to and seals with the inner surfaces of said first and second conduits utilizing the internal conduit pressures exerted thereon.
- 77. The method according to claim 76, wherein one of said conduits is a artery and the other is a vein.
- 78. The method according to claim 76, further comprising closing and sealing said first opening of said first conduit with the device of claim 1.
- 79. A method of patching and sealing an irregularity on an inner surface of a conduit, said method comprising:
positioning a patch comprising a flexible segment over said irregularity on said inner surface of said conduit; and by utilizing the internal conduit pressure, conforming said flexible segment to and sealing said flexible segment with said inner surface of said conduit, whereby said irregularity is patched and sealed by said patch.
- 80. A kit for closing an opening in a conduit of a subject, said kit comprising:
at least one device according to claim 1; and instructions for using said at least one device for closing an opening in a tissue structure of a subject or for patching and sealing an irregularity on a surface of a conduit.
- 81. The kit according to claim 80, further comprising means for delivering said at least one device.
- 82. The kit according to claim 80, further comprising an element for sizing at least one of: an opening to be closed, an irregularity to be patched and sealed and said tissue structure.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of application Ser. No. 09/771,007 filed on Jan. 26, 2001, which is a continuation-in-part of application serial no. PCT/US00/20588 filed on Jul. 28, 2000; which application is a continuation-in-part of application Ser. No. 09/363,309 filed on Jul. 28, 1999 and application Ser. No. 09/363,310 filed on Jul. 28, 1999, now U.S. Pat. No. 6,165,185 issued on Dec. 26, 2000; the disclosures of which are herein incorporated by reference.
Continuation in Parts (4)
|
Number |
Date |
Country |
Parent |
09771007 |
Jan 2001 |
US |
Child |
10235948 |
Sep 2002 |
US |
Parent |
PCT/US00/20588 |
Jul 2000 |
US |
Child |
09771007 |
Jan 2001 |
US |
Parent |
09363309 |
Jul 1999 |
US |
Child |
PCT/US00/20588 |
Jul 2000 |
US |
Parent |
09363310 |
Jul 1999 |
US |
Child |
09363309 |
Jul 1999 |
US |