EP1554995A2

Self-broaching, rotatable, push-in interbody spinal implant

Abstract

An interbody spinal fusion implant (20) for insertion across a disc space between adjacent vertebral bodies of a human spine has a body (22) two top side and two bottom side junctions, with at least a pair of diagonally opposed junctions having a distance therebetween that does not significantly exceed the implant body height. The implant (20) also includes one or more bone penetrating protrusions (36) extending outwardly from at least the upper and lower walls of the implant. The implant (20) is inserted on its side (28,28') between adjacent vertebral bodies and then rotated 90 degrees into place. The protrusions (36) penetrate the endplates upon rotation, thereby securing the implant (36) within the spine. The implant (20) has at least one passage (38,38') therethrough from the upper wall (30) to the lower wall (30') to promote fusion through the implant (20). Because of the specialized opposed junctions overdistraction between the adjacent vertebral bodies is avoided when the implant (20) is rotated from an initial insertion position to a final deployed position.

EP1554995A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 29 October 2019, 6.9 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

16 claims: 13 independent, 3 dependent

  1. 1
    An interbody spinal implant for insertion across the surgically corrected height a disc space between adjacent vertebral bodies of a human spine, the implant comprising:a body having an insertion end, a trailing end, an upper wall, a lower wall, and opposed side walls, said body having a cross-section with a height measured between said upper and lower walls and a width measured between said side walls, said side walls intersecting said upper and lower walls at four junctions, a first pair of diagonally opposed junctions having a distance therebetween substantially the same as the height of said body, a second pair of diagonally opposed junctions having a distance therebetween greater than the distance between said first pair of diagonally opposed junctions, each of said first pair of diagonally opposed junctions being arcs of the same circle;andfins extending outwardly from said opposed upper and lower walls adapted to penetrate and extend within the vertebral endplates of the adjacent vertebral bodies upon rotation of the implant approximately 90 degrees from an initial insertion position to a final deployed position.
  2. 2
    An interbody spinal implant for insertion across the surgically corrected height a disc space between adjacent vertebral bodies of a human spine, the implant comprising:a body having an insertion end, a trailing end, an upper wall, a lower wall, and opposed side walls, said body having a cross-section with a height measured between said upper and lower walls and a width measured between said side walls, said side walls intersecting said upper and lower walls at four junctions, a first pair of diagonally opposed junctions having a distance therebetween substantially the same as the height of said body, a second pair of diagonally opposed junctions having a distance therebetween greater than the distance between said first pair of diagonally opposed junctions;andfins extending outwardly from said opposed upper and lower walls adapted to penetrate and extend within the vertebral endplates of the adjacent vertebral bodies upon rotation of the implant less than 90 degrees from an initial insertion position to a final deployed position.
  3. 5
    The implant of any one of the above claims, wherein each of said side walls are planar.
  4. 6
    The implant of any one of the above claims, wherein said upper and lower walls are disposed at least in part in a diverging angular relationship to each other from said insertion end to said trailing end of said body.
  5. 7
    The implant of any one of claims 1-5, wherein said upper and lower walls are disposed at least in part in a converging angular relationship to each other from said insertion end to said trailing end of said body.
  6. 8
    The implant of any one of the above claims, wherein said second pair of diagonally opposed junctions are corners.
  7. 9
    The implant of any one of the above claims, wherein said fins have a sharp leading edge for penetrating the vertebral endplates upon rotation of said implant.
  8. 10
    The implant of any one of the above claims, wherein said implant is configured to have a single direction of rotation such that in rotating said implant 45 degrees said first pair of diagonally opposed junctions has a diagonal substantially the same as the height of said body of said implant contacting the adjacent vertebral bodies prior to rotation.
  9. 11
    The implant of any one of claims 1-9, wherein said implant is configured to have a single direction of rotation such that in rotating said implant 45 degrees said first pair of diagonally opposed junctions has a diagonal slightly less than the width of said body of said implant contacting the adjacent vertebral bodies prior to rotation.
  10. 12
    The implant of any one of the above claims, wherein said upper and lower walls have at least one opening for permitting for the growth of bone from adjacent vertebral body to adjacent vertebral body through said implant.
  11. 13
    The implant of any one of the above claims, wherein said implant is at least in part bioabsorbable.
  12. 14
    The implant of any one of the above claims, in combination with a fusion promoting substance.
  13. 16
    The implant of any one of the above claims, in combination with a broach having cutting portions adapted to cut a groove corresponding to the shape of said fins into the adjacent vertebral bodies.