Apparatus, systems, and methods for stabilizing a spondylolisthesis
View Patent ↗Assemblies of one or more implant structures make possible the achievement of diverse interventions involving the fusion and/or stabilization of lumbar and sacral vertebra in a non-invasive manner, with minimal incision, and without the necessitating the removing the intervertebral disc. The representative lumbar spine interventions, which can be performed on adults or children, include, but are not limited to, lumbar interbody fusion; translaminar lumbar fusion; lumbar facet fusion; trans-iliac lumbar fusion; and the stabilization of a spondylolisthesis.
1. A method for stabilizing a spondylolisthesis at an articulation of a lumbar vertebra L5 and a sacral vertebra S1 comprising creating an insertion path that extends in a cranial direction from a posterolateral region of a sacral vertebra S1, through the adjoining intervertebral disc, and terminates in an opposite anterolateral region of the lumbar vertebra L5, providing a bone fixation implant comprises an elongated implant structure having a rectilinear cross section along at least a proximal portion of the implant structure and including an exterior surface region treated to provide bony in-growth or through-growth along the implant structure, and inserting the bone fixation implant through the insertion path from the posterolateral region of the sacral vertebra S1, through the adjoining intervertebral disc, and terminating in an opposite anterolateral region of the lumbar vertebra L5.
2. A method according to claim 1 wherein the elongated implant structure has a triangular cross section.
3. A method according to claim 1 wherein the insertion path is created in a non-invasive manner without prior removal of the intervertebral disc.
4. A method according to claim 1 wherein the insertion path comprises a bore sized approximately at or approximately about an outer maximum dimension of the bone fixation implant.
5. A method according to claim 1 wherein at least two elongated implant structures are inserted in separate insertion paths from the posterolateral region of the sacral vertebra S1, through the adjoining intervertebral disc, and terminating in an opposite anterolateral region of the lumbar vertebra L5.
6. The method according to claim 1 , wherein the proximal portion of the elongated implant structure is configured to engage the cortical bone of the lumbar vertebra L5 after implantation and resist rotation.
7. A system comprising at least one bone fixation implant comprising an elongated implant structure having a rectilinear cross section along at least a proximal portion of the implant structure and including an exterior surface region treated to provide bony in-growth or through-growth along the implant structure inserted through an insertion path that that extends in a cranial direction from a posterolateral region of a sacral vertebra S1, through the adjoining intervertebral disc, and terminates in an opposite anterolateral region of the lumbar vertebra L5.
8. A system according to claim 7 wherein the elongated implant structure has a triangular cross section.
9. A system according to claim 7 wherein the bony in-growth region or through-growth region comprises a porous plasma spray coating on the implant structure.