IP Library › Granted Patent US 11,129,731
Granted Patent B2
US 11,129,731 · App. 16/730,151 · Granted Sep 28, 2021

Pivoting wedge expanding spinal implant and method of implanting same

Inventors: Keith E. Miller (Germantown, TN); Anthony J. Melkent (Germantown, TN)
Assignee: WARSAW ORTHOPEDIC, INC.
A61F2/447A61F2/4455A61F2002/30405A61F2002/30462A61F2002/30471A61F2002/30507A61F2002/30515A61F2002/30538A61F2002/30593A61F2002/30904A61F2220/0041
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Quick Facts
Patent No.
US 11,129,731
App. No.
16/730,151
Granted
Sep 28, 2021
Kind
B2
Abstract

A pivoting wedge expandable spinal implant. An upper portion and a lower portion are pivotally connected together. The implant, in a collapsed position, is inserted into a disc space. A driving screw engages and applies a force to a pushing portion, driving the pushing portion toward the implant's distal end. The pushing portion engages and drives a wedge toward the implant's distal end. The wedge pivots upward against an inner surface of the lower portion. The wedge continues to pivot along an inner surface of the upper portion, translating the force to the upper portion, pivoting and expanding the upper portion to an expanded position.

Claims (37)

1. An expandable spinal implant for insertion into a patient's disc space between an upper vertebral body and a lower vertebral body, the implant comprising:

a proximal end, an opposite distal end, a length extending between the proximal end and the distal end, and a mid-longitudinal axis extending through the proximal end and the distal end;

an upper portion extending between the proximal end and the distal end of the expandable spinal implant, the upper portion having an upper inner surface;

a lower portion extending between the proximal end and the distal end of the expandable spinal implant, the lower portion being pivotally engaged with the upper portion, and having a lower inner surface, the lower inner surface including a ramp portion proximate the distal end of the expandable spinal implant, the ramp portion extending upwardly toward the upper portion in a direction transverse to the mid-longitudinal axis;

a force application device, at least a portion of the force application device being moveable relative to at least the proximal end of the expandable spinal implant, the force application device including at least a distal surface, and being configured to alternately move the distal surface toward or away from the distal end of the implant via actuation thereof; and

a moveable portion positioned between the upper portion and the lower portion, and having a proximal end portion and a distal end portion pivotally attached to one another, the proximal end portion being positioned to contact the distal surface of the force application device, and the distal end portion being configured for contact with the upper portion and for slidable movement along the lower inner surface and the ramp portion between a first position proximate the proximal end and a second position proximate the distal end,

wherein movement of the force application device causes corresponding slidable movement of at least a portion of the distal end portion along the lower inner surface and the ramp portion, wherein the ramp portion forces the portion of the distal end portion upwardly relative to the proximal end portion to contact the upper portion, and wherein contact of the proximal end portion with the upper portion via movement of the portion of the distal end portion along the ramp portion moves the upper portion and the lower portion apart from one another from a collapsed position to an expanded position.

2. The expandable spinal implant of claim 1 , wherein the upper portion includes a first outer surface that is configured to engage a vertebral endplate of the upper vertebral body, and the lower portion includes a second outer surface that is configured to engage a vertebral endplate of the lower vertebral body.

3. The expandable spinal implant of claim 2 , wherein at least one of the first outer surface and the second outer surface includes an aperture defined therein to allow bone growth therethrough.

4. The expandable spinal implant of claim 1 , wherein the force application device comprises a threaded screw.

5. The expandable spinal implant of claim 1 , wherein a distal end surface of the distal end portion is substantially arcuate, the arcuate distal end surface being configured to contact portions of the lower inner surface and the upper inner surface.

6. The expandable spinal implant of claim 1 , wherein the distal end of the implant further comprises a collapsed position return structure, the collapsed position return structure being configured to pull the upper portion and the lower portion at the distal end in the direction of the collapsed position upon retraction of the force application device.

7. The expandable implant of claim 1 , further comprising a hook-shaped projection positioned proximate the force application device, the hook-shaped projection being engageable with a locking portion positioned on the upper portion, to at least temporarily hold the implant in the collapsed position.

8. The expandable implant of claim 1 , wherein the lower portion includes an opening defined in the proximal end, the opening including an inner peripheral surface, the inner peripheral surface including at least one thread defined thereon.

9. The expandable implant of claim 8 , wherein the force application device includes an elongated shaft, the elongated shaft including an outer peripheral surface, the outer peripheral surface including at least one thread defined thereon, the at least one thread on the outer peripheral surface of the shaft being configured to engage the at least one thread on the inner peripheral surface of the opening.

10. The expandable implant of claim 1 , further comprising a pin for pinning the proximal end portion and the distal end portion to one another to facilitate pivotal attachment thereof.

11. An expandable spinal implant for insertion into a patient's disc space between an upper vertebral body and a lower vertebral body, the implant comprising:

a proximal end, an opposite distal end, a length extending between the proximal end and the distal end, and a mid-longitudinal axis extending through the proximal end and the distal end;

an upper portion extending between the proximal end and the distal end of the expandable spinal implant, the upper portion having an upper inner surface;

a lower portion extending between the proximal end and the distal end of the expandable spinal implant, the lower portion being pivotally engaged with the upper portion, and having a lower inner surface, the lower inner surface including a ramp portion proximate the distal end;

a force application device having a distal end surface and being alternately moveable toward or away from the distal end of the implant via actuation of the force application device; and

a moveable portion positioned between the upper portion and the lower portion, and having a proximal end portion and a distal end portion pivotally attached to one another, the proximal end portion being positioned to contact the distal end surface of the force application device, and the distal end portion being configured for slidable movement along the lower surface and the ramp portion and contact with the upper portion,

wherein movement of the force application device causes corresponding slidable movement of at least a portion of the distal end portion along the lower inner surface and the ramp portion, wherein the ramp portion forces the portion of the distal end portion upwardly relative to the proximal end portion to contact the upper portion, and wherein the ramp portion directs the portion of the distal end portion upwardly to contact the upper portion to move the upper portion away from the lower portion, and move the implant from a collapsed position to an expanded position.

12. The expandable spinal implant of claim 11 , wherein the upper portion includes a first outer surface and the lower portion includes a second outer surface, and at least one of the first outer surface of the upper portion and the second outer surface of the lower portion includes an aperture defined therein to allow bone growth therethrough.

13. The expandable spinal implant of claim 11 , wherein a distal end surface of the distal portion is substantially arcuate, the arcuate distal end surface being configured to contact portions of the lower inner surface and the upper inner surface.

14. The expandable implant of claim 11 , further comprising a hook-shaped projection positioned proximate the force application device, the hook-shaped projection being engageable with a locking portion positioned on the upper portion, to at least temporarily hold the implant in the collapsed position.

15. The expandable implant of claim 11 , wherein the lower portion includes an opening defined in the proximal end, the opening including an inner peripheral surface, the inner peripheral surface including at least one thread defined thereon.

16. The expandable implant of claim 15 , wherein the force application device includes an elongated shaft, the elongated shaft including an outer peripheral surface, the outer peripheral surface including at least one thread defined thereon, the at least one thread on the outer peripheral surface of the shaft being configured to engage the at least one thread on the inner peripheral surface of the opening.

17. The expandable implant of claim 11 , further comprising a pin for pinning the proximal end portion and the distal end portion to one another to facilitate pivotal attachment thereof.

18. An expandable spinal implant for insertion into a patient's disc space between an upper vertebral body and a lower vertebral body, the implant comprising:

a proximal end, an opposite distal end, a length extending between the proximal end and the distal end, and a mid-longitudinal axis extending through the proximal end and the distal end;

an upper portion having an upper inner surface;

a lower portion being pivotally engaged with the upper portion, and having a lower inner surface, the lower inner surface including a ramp portion proximate the distal end of the expandable spinal implant, the lower surface and the upper surface defining an internal cavity therebetween;

a force application device, at least a portion of the force application device being moveable relative to at least the proximal end of the expandable spinal implant, the force application device including at least a distal surface, and being configured to alternately move the distal surface toward or away from the distal end of the implant via actuation thereof;

a moveable portion positioned in the internal cavity, and having a proximal end portion and a distal end portion pivotally attached to one another, the proximal end portion being positioned to contact the distal surface of the force application device, and the distal end portion being configured for slidable movement along the lower surface and the ramp portion between a first position and a second position, wherein movement of the force application device causes corresponding slidable movement of at least a portion of the proximal end portion along the lower surface and the ramp portion, the ramp portion forcing the portion of the distal end portion pivot upwardly with respect to the proximal end portion to contact the upper portion to move the upper portion and the lower portion apart from one another.

19. The expandable implant of claim 18 , wherein the lower portion includes an opening defined in the proximal end, the opening including an inner peripheral surface, the inner peripheral surface including at least one thread defined thereon, and wherein the force application device includes an elongated shaft, the elongated shaft including an outer peripheral surface, the outer peripheral surface including at least one thread defined thereon, the at least one thread on the outer peripheral surface of the shaft being configured to engage the at least one thread on the inner peripheral surface of the opening.

20. The expandable implant of claim 18 , further comprising a hook-shaped projection positioned proximate the force application device, the hook-shaped projection being engageable with a locking portion positioned on the upper portion, to at least temporarily hold the implant in the collapsed position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2019
From: MILLER, KEITH E.; MELKENT, ANTHONY J.
To: WARSAW ORTHOPEDIC, INC.
Reel/Frame 051447/0123 →
Continuity (3)
Continuation 16115726 · Aug 29, 2018
Division 14987519 · Jan 4, 2016
Related Publication 20200129306A1 · Apr 30, 2020
Cited By (10)
US 12,239,544 US 12,295,865 US 12,318,308 US 12,364,529 US 12,414,863 US 12,440,349 US 12,485,019 US 12,521,252 US 12,533,241 US 12,635,998