IP Library › Granted Patent US 10,729,555
Granted Patent B1
US 10,729,555 · App. 15/798,114 · Granted Aug 4, 2020

Implantable spinal support structure and method

Inventors: James R. Rappaport (Reno, NV); David A. Poirier (Alamo, CA)
Assignee: Presidio Surgical, Inc.
A61F2/4465A61F2/30767A61B17/1637A61B17/1655A61B17/1671A61B17/1757A61F2002/30405A61F2002/30777A61F2002/30785A61F2002/30851
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Quick Facts
Patent No.
US 10,729,555
App. No.
15/798,114
Filed
Oct 30, 2017
Granted
Aug 4, 2020
Kind
B1
Art Unit
3775
USPC
623/17.11
Abstract

A beam acts as an implantable spinal support structure. The beam is generally cylindrical in form with two semi-cylindrical shells defining a cylindrical contour of the beam and with a web passing through a central axis of the beam and joining midpoints of the two shells together. The shells preferably have threads on an outer surface thereof to engage bone within a cylindrical hole passing through two adjacent vertebrae spanning a disk space, for support of the vertebrae such as for fusion thereof together. One end of the beam can be tapered to maximize structural support for the vertebrae. This tapered end can be provided as a separate extension removably attachable to other portions of the beam in one embodiment. A method for implantation is also disclosed where the beam is implanted at an angle to the spinal axis and intersecting a disk space between adjacent vertebrae.

Claims (33)

1. A method for fusing two vertebrae together, including the steps of:

boring a substantially cylindrical hole through a first vertebrae, through a disk space and at least into a second vertebrae on a side of the disk space opposite the first vertebrae;

providing an implantable structure having an elongate form extending from a leading end to a trailing end, the structure having a generally cylindrical outer contour adapted to be routed axially into the hole formed in the first and second vertebrae, the structure including a central web, the structure including at least two shells forming at least a portion of the outer contour of the structure, and the web joining the two shells together the at least two shells each having a semi-cylindrical contour, the at least two shells each extending from the leading end to the trailing end of the structure, the shells spaced from adjacent shells by gaps; and

inserting the structure into the hole of said boring step with the structure spanning the disk space and extending at least partially into the first vertebrae and at least partially into the second vertebrae.

2. The method of claim 1 including the further step of encouraging fusion of the first vertebrae with the second vertebrae and to the implantable structure.

3. The method of claim 1 wherein said boring step includes the step of placing a guide wire along a path desired for the bore and providing a bone boring tool adapted to follow a guide wire and utilizing the bone boring tool to form at least a portion of the hole through the first and second vertebrae according to said boring step.

4. The method of claim 3 wherein said inserting step includes the step of keeping the guide wire of said boring step in after said boring step and routing the implantable structure over the guide wire within the hole to place the structure within the hole formed in the first and second vertebrae.

5. The method of claim 4 wherein said web includes an axial bore passing therethrough sized sufficiently large to receive the guide wire therein.

6. The method of claim 1 including the further step of providing threads on the implantable structure of said providing step, said threads being self-tapping in nature.

7. The method of claim 1 including the further steps of:

said providing step including the implantable structure having male threads on an outer surface of the implantable structure; and

tapping the hole of said boring step with a thread tapping instrument separate from the implantable structure, to form female threads adapted to receive the male threads on the implantable structure of said providing step.

8. The method of claim 1 wherein at least one of said ends of said structure is adapted to be coupled to an extension, said extension formed of rigid material, said extension having a first end adapted to be attached to the implantable structure and a second end with a flat surface oriented at an angle tapered to be neither perpendicular nor parallel with a central axis of the implantable structure.

9. The method of claim 8 including the further steps of:

forming at least one surface of the extension to have a flat surface which is tapered;

selecting an extension having a length and taper angle desired; and

attaching the extension of said selecting step to the implantable structure to extend a length of the implantable structure.

10. The method of claim 1 wherein said providing step includes the gaps between adjacent ones of the shells extending from the leading edge to the trailing edge of the structure.

11. The method of claim 1 wherein said providing step includes the web having a planar form extending from the leading edge to the trailing edge.

12. The method of claim 11 wherein said providing step includes the web joined to each of the at least two shells at junctions spaced from the gaps.

13. A method for fusing two vertebrae together, including the steps of:

boring a substantially cylindrical hole through a first vertebrae, through a disk space and at least into a second vertebrae on a side of the disk space opposite the first vertebrae;

inserting into the cylindrical hole of said boring step an implantable structure having an elongate form extending from a leading end to a trailing end, the structure having a generally cylindrical outer contour adapted to be routed axially into the hole formed in the first and second vertebrae, the structure including a central web, the structure including at least two shells forming at least a portion of the outer contour of the structure, and the web joining the two shells together the at least two shells each having a semi-cylindrical contour, the at least two shells each extending from the leading end to the trailing end of the structure, the shells spaced from adjacent shells by gaps; and

said inserting step orienting the structure spanning the disk space and extending at least partially into the first vertebrae and at least partially into the second vertebrae.

14. The method of claim 13 including the further step of encouraging fusion of the first vertebrae with the second vertebrae and to the implantable structure.

15. The method of claim 13 wherein said boring step includes the step of placing a guide wire along a path desired for the bore and providing a bone boring tool adapted to follow a guide wire and utilizing the bone boring tool to form at least a portion of the hole through the first and second vertebrae according to said boring step.

16. The method of claim 15 wherein said inserting step includes the step of keeping the guide wire of said boring step in after said boring step and routing the implantable structure over the guide wire within the hole to place the structure within the hole formed in the first and second vertebrae.

17. The method of claim 13 wherein at least one of said ends of said structure is adapted to be coupled to an extension, said extension formed of rigid material, said extension having a first end adapted to be attached to the implantable structure and a second end with a flat surface oriented at an angle tapered to be neither perpendicular nor parallel with a central axis of the implantable structure;

selecting an extension having a length and taper angle desired; and

attaching the extension of said selecting step to the implantable structure to extend a length of the implantable structure.

18. The method of claim 10 wherein said providing step includes the gaps between adjacent ones of the shells extending from the leading edge to the trailing edge of the structure.

19. The method of claim 13 wherein said providing step includes the web having a planar form extending from the leading edge to the trailing edge.

20. The method of claim 13 wherein said providing step includes the web joined to each of the at least two shells at junctions spaced from the gaps.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2026
From: PRESIDIO SURGICAL, INC.
To: POIRIER, DAVID
Reel/Frame 075707/0009 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2018
From: POIRIER, DAVID A.; RAPPAPORT, JAMES R.
To: PRESIDIO SURGICAL, INC.
Reel/Frame 045364/0721 →
Cited By (4)
US 12,465,491 US 12,472,069 US 12,496,193 US 12,544,231