Abstract: A method of removing a nucleus pulposus from an intervertebral disc, involving rotating a distal end head of an instrument so that flexible protrusions thereon will cut nucleus pulposus native material.
Abstract: An method and apparatus is provided for achieving stability of an implant in an intervertebral space of the human body, including an implant having a superior surface and an inferior surface, the surfaces having no significant protrusions extending therefrom and at least one modular projection mateable with one of each superior and inferior surface of the implant to achieve stability within the intervertebral space. The implants can be selected form a group of artificial discs and spinal fusion cages.
Type:
Application
Filed:
March 31, 2003
Publication date:
September 30, 2004
Applicant:
DePuy AcroMed
Inventors:
Robert Fraser, John Riley Hawkins, Christopher Rogers, Andrew Dooris, Mark Lionetto
Abstract: A surgical retractor system comprises a support frame and an instrument mounting assembly. The instrument mounting assembly includes a fastening member for securing the mounting assembly to the support frame, a loading member for attaching to the mounting assembly, and a lockable rotational member providing for rotational or angular motion of the instruments about the support frame.
Abstract: A modular fusion cage and tool for the insertion of the fusion cage is provided. The fusion cage includes a ramp member having superior and inferior bone contacting surfaces, and anterior and posterior sides. The ramp member is adapted to be positioned between adjacent vertebral bodies. The implant also includes a ring member slidably matable with the ramp member. The ring member includes superior and inferior bone contacting surfaces, and anterior and posterior sides. The implant according to the present invention is particularly useful for facilitating the safe and accurate insertion of the implant between adjacent vertebral bodies.