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Last Updated: March 28, 2024

Claims for Patent: 9,492,283


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Summary for Patent: 9,492,283
Title:Expandable spacer and method of use thereof
Abstract: An expandable implant is disclosed having an adjustable height for insertion between two adjacent bony structures or joint surfaces, for example between two adjacent spinal vertebrae. The implant includes at least one gear associated with at least one threaded shaft. Rotation of the gear engages the threaded shaft to expand the implant. The implant can be inserted in a collapsed configuration and expanded in situ. The invention also provides methods for using the implant to facilitate arthrodesis or fusion of adjacent joint surfaces or spinal vertebrae.
Inventor(s): Glerum; Chad (Pennsburg, PA)
Assignee: GLOBUS MEDICAL, INC. (Audubon, PA)
Application Number:13/713,263
Patent Claims:1. A method for facilitating fusion of two adjacent joint surfaces in a patient comprising the steps of: accessing a site in the patient's body having two adjacent joint surfaces to be fused; providing an expandable implant having a first, collapsed height; preparing a space between the two adjacent joint surfaces for insertion of the implant; inserting the implant into the prepared space; wherein the expandable implant comprises: a first and a second threaded shaft; a first gear and a second gear; a base plate, the first and second gears are rotatably and non-translatable coupled to the base plate; and the first and second gears operably coupled with the first and second threaded shafts, said first and second gear having interior surfaces including threads matably engaged with said first and second threaded shafts, whereby rotation of said first and second gears initiates displacement of said first and second threaded shafts, whereby said first and second threaded shafts are extendable in a direction away from said base plate; wherein the first and second shafts are coupled to a top plate, wherein the first and second gears are positioned substantially perpendicular to the base plate and adjacent to one another, wherein the first and second gears engage with each other, expanding the expandable implant; and closing the site in the patient's body.

2. The method of claim 1, further comprising a step of selecting a material for inserting through an opening in said first threaded shaft to fill a hollow interior of said first threaded shaft.

3. The method of claim 2, further including a step of inserting the material through an opening in said second threaded shaft to fill a hollow interior of the second threaded shaft.

4. The method of claim 2, wherein the selecting step comprises selecting a bone graft material from the group consisting of autografts, allografts, xenografts, artificial mixtures, synthetic mixtures, demineralized bone matrix, hydroxyapatite mixtures, and combinations thereof.

5. The method according to claim 4, wherein the selecting step further comprises selecting a growth factor or differentiation factor.

6. The method according to claim 5, wherein the selecting step comprises selecting a growth factor or differentiation factor from the group consisting of bone morphogenic protein (BMP), transforming growth factor, insulin-like growth factor, platelet-derived growth factor (PDGF), activin, parathyroid hormone, fibroblast growth factor (FGF), LIM mineralization protein (LMP), and combinations thereof.

7. A method for facilitating fusion of two adjacent joint surfaces in a patient comprising the steps of: providing an expandable implant for insertion in a space between adjacent bony structures, comprising: a first and a second threaded shaft; a first gear and a second gear; a base plate, the first and second gears are rotatably and non-translatably coupled to the base plate; and the first and second gears operably coupled with the first and second threaded shafts, said first and second gears having interior surfaces including threads matably engaged with said first and second threaded shafts, whereby rotation of said first and second gears initiates displacement of said first and second threaded shafts, whereby said first and second threaded shafts are extendable in a direction away from said base plate; wherein the first and second gears are positioned substantially perpendicular to the base plate and adjacent to one another, wherein the first and second gears are engaged to each other, expanding the expandable implant.

8. The method according to claim 7, wherein the implant has a first, collapsed height prior to extension of said first and second threaded shaft and a second, expanded height after extension of said first and second threaded shaft.

9. The method according to claim 8, wherein the second, expanded height is adjustable.

10. The method according to claim 7, wherein the implant is operable to distract the adjacent bony structures.

11. The method according to claim 7, wherein the space for insertion is an intervertebral space between two adjacent spinal vertebrae.

12. The method according to claim 7, wherein said first and second threaded shaft have a hollow interior.

13. The method according to claim 7, wherein a top end of said first and second threaded shaft includes an opening, the opening operable for insertion of material into a hollow interior.

14. The method according to claim 13, wherein the material is a bone graft material selected from the group consisting of autograft, allograft, xenograft, artificial mixtures, synthetic mixtures, demineralized bone matrix, hydroxyapatite mixtures, and combinations thereof.

15. A method for facilitating fusion of two adjacent joint surfaces in a patient comprising the steps of: providing an expandable implant for insertion in a space between adjacent bony structures, comprising: a first and a second threaded shaft, each having an upper surface and a lower surface, the upper surfaces coupled a top plate; a first gear and a second gear; a base plate, the first and second gears are rotatably and non-translatably coupled to the base plate; and the first and second gear operably coupled with the first and second threaded shafts, said first and second gears having interior surfaces including threads matably engaged with said first and second threaded shafts, whereby rotation of said first and second gears initiates displacement of said first and second threaded shafts, whereby said first and second threaded shafts are extendable in a direction away from said base plate; wherein the first and second gears engage with each other, wherein the top plate includes a first hole and a second hole extending into the first and second threaded shafts, wherein the first and second holes are configured to receive bone graft material, expanding the expandable implant.

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