Interbody implantation system and method
A system for implanting an interbody device between adjacent vertebrae comprises an interbody device having a plurality of lobes extending outwardly from a longitudinal rib, and having a relaxed shape approximating the shape of the disc being replaced. An insertion guide has a bore therein from a proximal end to a distal end thereof to accept the interbody device in an unrelaxed shape. The distal end is shaped for insertion into an intervertebral space. The insertion rod may be positioned within the bore of the insertion guide whereby the interbody device is positioned within the intervertebral space by advancing the insertion rod into the insertion guide.
1. An interbody device for replacing a spinal disc between adjacent vertebrae or fusing adjacent vertebrae, the interbody device comprising:
a flexible longitudinal rib having a length of shape memory metal disposed therein, said length of shape memory metal having a relaxed shape and an unrelaxed shape, and
a plurality of discrete lobes, each of the plurality of discrete lobes having an upper vertebral contacting surface, a lower vertebral contacting surface, two lateral sides, an opening extending from said upper vertebral contacting surface to said lower vertebral contacting surface, and a channel extending transversely through an end of the lobe,
wherein the longitudinal rib enters each of the plurality of discrete lobes through said channel, and the plurality of discrete lobes are therefore connected together by the longitudinal rib and disposed in spaced-apart relation to one another along the longitudinal rib,
wherein the plurality of discrete lobes extend from a same side of the longitudinal rib,
wherein each lobe of the plurality of lobes includes at least one chamfered surface at a location in the channel where the longitudinal rib enters into the respective lobe to facilitate flexing movement of the interbody device,
wherein the at least one chamfered surface includes a first chamfered surface positioned on one side of the longitudinal rib, the first chamfered surface positioned to selectively contact the longitudinal rib in response to flexing movement between the respective lobe and the longitudinal rib in a first direction,
wherein the at least one chamfered surface includes a second chamfered surface positioned on another side of the longitudinal rib, the second chamfered surface positioned to selectively contact the longitudinal rib in response to flexing movement between the respective lobe and the longitudinal rib in a second direction,
wherein in the unrelaxed shape, the length of shape memory metal is deformed and said longitudinal rib and said plurality of discrete lobes have a straightened shape capable of being inserted through an insertion guide, and wherein adjacent sides from adjacent lobes are unconnected from one another, and
wherein in the relaxed shape, the length of shape memory metal is not deformed and said longitudinal rib and said plurality of discrete lobes have a shape approximating the shape of a spinal disc being replaced, and wherein adjacent sides from adjacent lobes are connected to one another.
2. The interbody device of claim 1 , wherein the opening is positioned to receive bone graft material in a manner sufficient to aid in spinal fusion.
3. The interbody device of claim 1 , wherein the opening is positioned to enable at least one of the plurality of discrete lobes to deform under load from a spine in a manner sufficient to enhance at least one of stability and flexibility of the spine.