IP Library Granted Patent US 11,491,023
Granted Patent B2
US 11,491,023 · App. 16/266,788 · Granted Nov 8, 2022

Methods and apparatus for minimally invasive modular interbody fusion devices

Inventors: Jeffrey C. Felt (Greenwood, MN); Britt Norton (Eden Prairie, MN); Mark A. Rydell (Golden Valley, MN); Stephen H. Crosbie (Prior Lake, MN)
Assignee: Next Orthosurgical, Inc.
A61F2/4465A61F2/4611A61F2/0095A61F2002/2835A61F2002/3008A61F2002/30062A61F2002/30383A61F2002/30522A61F2002/30593A61F2002/30604A61F2002/30677A61F2002/30841A61F2002/4629A61F2210/0004A61F2220/0025A61F2250/0098A61F2310/00023
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Quick Facts
Patent No.
US 11,491,023
App. No.
16/266,788
Granted
Nov 8, 2022
Kind
B2
Abstract

The invention is a modular interbody fusion device for fusing adjacent spinal vertebrae that is adapted to be implanted in a prepared interbody space including a first modular segment having a width including a first rail extending at least partially along one side of the width and beyond a periphery of a body portion of the first modular segment, a second modular segment having a width and slidably connected to the first rail on one side of the width and having a second rail extending at least partially along another side of the width and beyond a periphery of a body portion of the second modular segment, a third modular segment having a width and slidably connected to the second rail on one side of the width and wherein the device has an expanded position in which the second and third modular segments are extended along the first and second rails and positioned in a generally end to end configuration spaced apart by the rails prior to implantation and an implanted position in which the modular segments are positioned in a generally side by side configuration that defines a unitary body that mimics the planar shape of the vertebra such that the device contacts and supports the adjacent vertebra.

Claims (14)

1. A modular interbody fusion device for fusing adjacent spinal vertebrae that is adapted to be implanted in a prepared interbody space, the device comprising:

a first modular segment having a first width including a first rail, the first rail having an elongated stem portion and extending at least partially along one side of the first width of the first modular segment, the elongated stem portion having a length of 6 to 20 centimeters;

a second modular segment having a second width and a body portion structure on one side of the second width slidably connectable to the stem portion of the first rail; and

an insertion guide rod and guide mechanism for sliding the second modular segment along the stem portion of the first rail to mate and interlock with the first modular segment wherein the device has an implanted position in which the modular segments are positioned in a generally side by side configuration that defines a unitary body including multiple holes therethrough adapted for tissue ingrowth and adapted to contact and support adjacent vertebra,

wherein one or more insertion guide rods, including the insertion guide rod, may be mechanically attached to and detached from one or more modular segments thus allowing assembly of the fusion device through an access tube that is inserted partially into the intervertebral space;

and wherein the modular interbody fusion device is a unitary implant such that the first modular segment, the second module segment, the insertion guide rod, and the guide mechanism, are pre-assembled in an expanded position from which the second modular segment slides along the stem portion of the first rail to interlock with the first modular segment via the insertion guide rod and guide mechanism.

2. The modular fusion device of claim 1 wherein each of the multiple holes couples to a channel in the unitary body to enable a fill material to be injected through each channel and into each one of the multiple holes.

3. The modular fusion device of claim 2 wherein the fill material is selected from the group consisting of: bone graft, bone graft substitute, agents to promote bone growth, antibiotics, anti-cancer agents, stem cells, fibroblast growth factors, bone derivative, biologically active cytokines, cytokine inhibitors, osteoconductive material, osteoinductive material and any combination thereof.

4. The modular fusion device of claim 1 wherein the one or more additional modular segments can be slidably connected sequentially to a previous modular segment wherein the device has an implanted position in which the first modular segment, the second modular segment and the one or more modular segments are positioned in a generally side by side configuration that defines a unitary body.

5. The modular fusion device of claim 1 , wherein the second modular segment includes a second rail extending at least partially along another side of the second width of the second modular segment.

6. The modular fusion device of claim 1 , wherein the multiple holes vary in size and shape.

7. The modular fusion device of claim 1 , wherein each of the multiple holes is elongated.

8. The modular fusion device of claim 1 , wherein each of the modular segments is manufactured from a material selected from the group consisting of titanium, trabecular metal, polyetheretherketone (PEEK), carbon-filled PEEK, or mixtures thereof.

9. The modular fusion device of claim 1 , wherein the multiple holes are spaced in a manner such that a compressive modulus of the unitary body corresponds to a compressive modulus of the adjacent spinal vertebrae.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2020
From: VERTEBRAL TECHNOLOGIES, INC.
To: NEXT ORTHOSURGICAL, INC.
Reel/Frame 053400/0150 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2019
From: FELT, JEFFREY; NORTON, BRITT; RYDELL, MARK; CROSBIE, STEVE
To: VERTEBRAL TECHNOLOGIES, INC.
Reel/Frame 049019/0647 →
Continuity (4)
Continuation 15682033 · Aug 21, 2017
Continuation 11974185 · Oct 11, 2007
Provisional Application 60860329 · Nov 21, 2006
Related Publication 20190269524A1 · Sep 5, 2019