Device for preparing a space in bone to receive an insert
A device and method for use in a human spine to prepare a space between adjacent vertebral bodies and into the vertebral end plates to receive an implantable insert. The device includes a handle, a shaft, and a mounting member at one end of the shaft. An abrading element is mounted on the mounting member and is coupled to a drive mechanism. The drive mechanism is operable to move the abrading element in at least one degree of freedom to create surfaces having predetermined contours in the end plates of the adjacent vertebral bodies.
1. An instrument for preparing a space between adjacent vertebral bodies to receive an insert, said instrument comprising:
a shaft with a longitudinal axis;
a drive mechanism;
a power source; and
an abrading element mountable on said shaft, said abrading element including at least one abrading surface having a width selected to substantially match the overall width of the insert to be received between the adjacent vertebral bodies, said abrading element being adapted to rotate by said drive mechanism about an axis generally perpendicular to the longitudinal axis of said shaft and about a plane generally aligned with the vertebral end plate to create at least one surface having a predetermined contour in the end plate of at least one of the adjacent vertebral bodies.
2. The instrument of claim 1 , wherein said abrading element has a top surface and bottom surface.
3. The instrument of claim 2 , wherein at least one of said top and bottom surfaces of said abrading element are roughened to provide said abrading surface.
4. The instrument of claim 1 , wherein said abrading element has a leading edge configured to cut into at least one vertebral body as said abrading element is inserted into the spine.
5. The instrument of claim 1 , wherein said abrading element is convex.
6. The instrument of claim 1 , wherein said abrading element is tapered outwardly from a front surface of said abrading element.
7. The instrument of claim 1 , wherein said abrading element includes at least two abrading surfaces for simultaneously creating predetermined surface contours on the respective end plates of the adjacent vertebral bodies.
8. The instrument of claim 7 , wherein said abrading surfaces include teeth formed thereon to cooperatively engage said drive mechanism, said teeth being configured such that said abrading surfaces are rotated by said drive mechanism.
9. The instrument of claim 7 , wherein said abrading surfaces are substantially planar.
10. The instrument of claim 7 , wherein said abrading surfaces are configured to rotate in different directions from one another.
11. The instrument of claim 1 , wherein said abrading element includes outwardly facing first and second abrading surfaces, said first and second abrading surfaces being inclined relative to one another.
12. The instrument of claim 1 , wherein said abrading element includes a wheel having cutter teeth along its perimeter.
13. The instrument of claim 1 , wherein said drive mechanism is adapted to produce an oscillating rotation of said abrading element.
14. The instrument of claim 1 , further comprising said insert, said insert being sized and shaped to match the space formed in the spine by said abrading element.
15. The instrument of claim 14 , wherein said insert is a motion preserving device.
16. The instrument of claim 14 , wherein said insert is a bone graft.
17. The instrument of claim 14 , wherein said insert is a fusion implant.