IP Library Granted Patent US 8,858,601
Granted Patent B2
US 8,858,601 · App. 13/898,415 · Granted Oct 14, 2014

Apparatus, systems, and methods for achieving lumbar facet fusion

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Quick Facts
Patent No.
US 8,858,601
App. No.
13/898,415
Granted
Oct 14, 2014
Kind
B2
Abstract

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.

Claims (38)

1. A method for translaminal lumbar fusion, the method comprising:

creating an insertion path that extends from a superior articular process of a selected lumbar vertebra, cranially through the adjoining facet capsule into a corresponding inferior articular process of an adjacent lumbar vertebra, and, from there, further through the lamina of the adjacent vertebra into an interior opposite posterolateral region adjacent the spinous process of the adjacent vertebra,

providing a bone fixation implant comprising an elongated implant structure having a longitudinal axis and a cross-sectional profile transverse to the longitudinal axis that is defined by at least one apex, wherein the elongated implant structure comprises 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 superior articular process of the selected lumbar vertebra, cranially through the adjoining facet capsule into the inferior articular process of the adjacent lumbar vertebra, and, from there, further through the lamina of the adjacent vertebra into an interior opposite posterolateral region adjacent the spinous process of the adjacent vertebra.

2. The method according to claim 1 wherein the bony in-growth region or through-growth region comprises a porous plasma spray coating on the implant structure.

3. The method according to claim 1 wherein the insertion path is created in a non-invasive manner.

4. The 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. The method according to claim 1 wherein at least a first implant structure extends from a superior articular process of the selected lumbar vertebra, in a cranial direction through the adjoining facet capsule into the corresponding inferior articular process of the adjacent lumbar vertebra, and, from there, further through the lamina of the adjacent lumbar vertebra into an interior opposite posterolateral region adjacent the spinous process of the adjacent lumbar vertebra, and wherein at least a second implant structure extends from an opposite superior articular process of the selected lumbar vertebra, through the adjoining facet capsule into the corresponding inferior articular process of the adjacent vertebra, and, from there, further through the lamina of the adjacent lumbar vertebra into an interior opposite posterolateral region adjacent the spinous process of the adjacent lumbar vertebra, the first and second implant structures crossing each other within the medial lamina of adjacent lumbar vertebra.

6. The method according to claim 1 wherein the insertion path extends from the superior articular process of lumbar vertebra L5, cranially through the adjoining facet capsule into an inferior articular process of the lumbar vertebra L4, and, from there, further through the lamina of the lumbar vertebra L4 into an interior opposite posterolateral region adjacent the spinous process of the lumbar vertebra L4.

7. The method according to claim 1 wherein at least a first implant structure extends from a left superior articular process of the lumbar vertebra L5, in a cranial direction through the adjoining facet capsule into the corresponding left inferior articular process of the adjacent lumbar vertebra L4, and, from there, further through the lamina of the adjacent lumbar vertebra L4 into an interior right posterolateral region adjacent the spinous process of the adjacent lumbar vertebra L4, and wherein at least a second implant structure extends from a right superior articular process of the selected lumbar vertebra L5, through the adjoining facet capsule into the corresponding right inferior articular process of the adjacent lumbar vertebra L4, and, from there, further through the lamina of the adjacent lumbar vertebra L4 into an interior left posterolateral region adjacent the spinous process of the adjacent lumbar vertebra L4, the first and second implant structures crossing each other within the medial lamina of adjacent lumbar vertebra L4.

8. The method according to claim 1 , wherein the elongated implant structure has a cross-sectional profile transverse to the longitudinal axis that is defined by at least two apices.

9. The method according to claim 1 , wherein the elongated implant structure has a cross-sectional profile transverse to the longitudinal axis that is defined by at least three apices.

10. A system comprising at least one bone fixation implant comprising an elongated implant structure having a longitudinal axis and a cross-sectional profile transverse to the longitudinal axis that is defined by at least one apex, wherein the elongated implant structure comprises an exterior surface region treated to provide bony in-growth or through-growth along the implant structure inserted through an insertion path from a superior articular process of a selected lumbar vertebra, cranially through the adjoining facet capsule into the corresponding inferior articular process of the adjacent lumbar vertebra, and, from there, further through the lamina of the adjacent vertebra into an interior opposite posterolateral region adjacent the spinous process of the adjacent vertebra to affect translaminal lumbar fusion.

11. The system according to claim 10 wherein the elongated implant structure has a triangular cross section.

12. The system according to claim 11 wherein the bony in-growth region or through-growth region comprises a porous plasma spray coating on the implant structure.

13. The system according to claim 10 , wherein the elongated implant structure has a cross-sectional profile transverse to the longitudinal axis that is defined by at least two apices.

14. The system according to claim 10 , wherein the elongated implant structure has a cross-sectional profile transverse to the longitudinal axis that is defined by at least three apices.

15. A system comprising at least a first implant structure comprising an elongated implant structure having a longitudinal axis and a cross-sectional profile transverse to the longitudinal axis that is defined by at least one apex, wherein the elongated implant structure comprises an exterior surface region treated to provide bony in-growth or through-growth along the implant structure inserted through an insertion path from a superior articular process of the selected lumbar vertebra, in a cranial direction through the adjoining facet capsule into the corresponding inferior articular process of the adjacent lumbar vertebra, and, from there, further through the lamina of the adjacent lumbar vertebra into an interior opposite posterolateral region adjacent the spinous process of the adjacent lumbar vertebra, and at least a second implant structure comprising an elongated implant structure having a longitudinal axis and a cross-sectional profile transverse to the longitudinal axis that is defined by at least one apex, wherein the elongated implant structure comprises an exterior surface region treated to provide bony in-growth or through-growth along the implant structure inserted through an insertion path from an opposite superior articular process of the selected lumbar vertebra, through the adjoining facet capsule into the corresponding inferior articular process of the adjacent vertebra, and, from there, further through the lamina of the adjacent lumbar vertebra into an interior opposite posterolateral region adjacent the spinous process of the adjacent lumbar vertebra, the first and second implant structures crossing each other within the medial lamina of adjacent lumbar vertebra to affect translaminal lumbar fusion.

16. The system according to claim 15 wherein the bony in-growth region or through-growth region comprises a porous plasma spray coating on the implant structure.

17. The system according to claim 15 , wherein both the first elongated implant structure and the second elongated implant structure have a cross-sectional profile transverse to the longitudinal axis that is defined by at least two apices.

18. The system according to claim 15 , wherein both the first elongated implant structure and the second elongated implant structure have a cross-sectional profile transverse to the longitudinal axis that is defined by at least three apices.

19. A method for lumbar facet fusion comprising creating an insertion path that extends from an inferior articular process of a selected lumbar vertebra, in a caudal direction through the adjoining facet capsule into a corresponding superior articular process of an adjacent lumbar vertebra and into a pedicle of the adjacent lumbar vertebra, providing a bone fixation implant comprising an elongated implant structure having a longitudinal axis and a cross-sectional profile transverse to the longitudinal axis that is defined by at least one apex 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 inferior articular process of the selected lumbar vertebra, in a caudal direction through the adjoining facet capsule into the corresponding superior articular process of the adjacent lumbar vertebra and into a pedicle of the adjacent lumbar vertebra.

20. The method according to claim 19 wherein the bony in-growth region or through-growth region comprises a porous plasma spray coating on the implant structure.

21. The method according to claim 19 wherein the insertion path is created in a non-invasive manner.

22. The method according to claim 19 wherein the insertion path comprises a bore sized approximately at or approximately about an outer maximum dimension of the bone fixation implant.

23. The method according to claim 19 wherein at least a first implant structure extends from a left inferior articular process of the selected lumbar vertebra, in a caudal direction through the adjoining facet capsule into the corresponding superior articular process of the adjacent lumbar vertebra and into a pedicle of the adjacent lumbar vertebra, and wherein at least a second implant structure extends from a right inferior articular process of the selected lumbar vertebra, in a caudal direction through the adjoining facet capsule into the corresponding superior articular process of the adjacent lumbar vertebra and into a pedicle of the adjacent lumbar vertebra.

24. The method according to claim 19 wherein at least a first implant structure extends from an inferior articular process of the lumbar vertebra L4, in a caudal direction through the adjoining facet capsule into the corresponding superior articular process of the adjacent lumbar vertebra L5 and into a pedicle of the adjacent lumbar vertebra L5.

25. The method according to claim 19 wherein at least a first implant structure extends from a left inferior articular process of the lumbar vertebra L4, in a caudal direction through the adjoining facet capsule into the corresponding superior articular process of the adjacent lumbar vertebra L5 and into a pedicle of the adjacent lumbar vertebra L5, and wherein at least a second implant structure extends from a right inferior articular process of the selected lumbar vertebra L4, in a caudal direction through the adjoining facet capsule into the corresponding superior articular process of the adjacent lumbar vertebra L5 and into a pedicle of the adjacent lumbar vertebra L5.

26. The method according to claim 19 , wherein the elongated implant structure has a cross-sectional profile transverse to the longitudinal axis that is defined by at least two apices.

27. The method according to claim 19 , wherein the elongated implant structure has a cross-sectional profile transverse to the longitudinal axis that is defined by at least three apices.

28. A system comprising a bone fixation implant comprising an elongated implant structure having a longitudinal axis and a cross-sectional profile transverse to the longitudinal axis that is defined by at least one apex and including an exterior surface region treated to provide bony in-growth or through-growth along the implant structure inserted through an insertion path from an inferior articular process of a selected lumbar vertebra, in a caudal direction through the adjoining facet capsule into a corresponding superior articular process of an adjacent lumbar vertebra and into a pedicle of the adjacent lumbar vertebra to affect lumbar facet fusion.

29. The system according to claim 28 wherein the bony in-growth region or through-growth region comprises a porous plasma spray coating on the implant structure.

30. The system according to claim 28 , wherein the elongated implant structure has a cross-sectional profile transverse to the longitudinal axis that is defined by at least two apices.

31. The system according to claim 28 , wherein the elongated implant structure has a cross-sectional profile transverse to the longitudinal axis that is defined by at least three apices.

32. A system comprising at least a first implant structure comprising an elongated implant structure having a longitudinal axis and a cross-sectional profile transverse to the longitudinal axis that is defined by at least one apex and including an exterior surface region treated to provide bony in-growth or through-growth along the implant structure that extends from a left inferior articular process of a selected lumbar vertebra, in a caudal direction through the adjoining facet capsule into a corresponding superior articular process of an adjacent lumbar vertebra and into a pedicle of the adjacent lumbar vertebra, and at least a second implant structure comprising an elongated implant structure having a longitudinal axis and a cross-sectional profile transverse to the longitudinal axis that is defined by at least one apex including an exterior surface region treated to provide bony in-growth or through-growth along the implant structure that extends from a right inferior articular process of the selected lumbar vertebra, in a caudal direction through the adjoining facet capsule into the corresponding superior articular process of the adjacent lumbar vertebra and into a pedicle of the adjacent lumbar vertebra, the first and second implant structures affecting lumbar facet fusion.

33. The system according to claim 32 wherein the bony in-growth region or through-growth region comprises a porous plasma spray coating on the implant structure.

34. The system according to claim 32 , wherein both the first elongated implant structure and the second elongated implant structure have a cross-sectional profile transverse to the longitudinal axis that is defined by at least two apices.

35. The system according to claim 32 , wherein both the first elongated implant structure and the second elongated implant structure have a cross-sectional profile transverse to the longitudinal axis that is defined by at least three apices.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Aug 12, 2021
From: SLR INVESTMENT CORP. (F/K/A SOLAR CAPITAL LTD., AS COLLATERAL AGENT)
To: SI-BONE, INC.
Reel/Frame 057182/0104 →
RELEASE OF SECURITY INTEREST IN PATENT COLLATERAL AT REEL/FRAME NO. 043975/0669 Recorded May 29, 2020
From: BIOPHARMA CREDIT INVESTMENTS IV SUB LP
To: SI-BONE, INC.
Reel/Frame 052794/0423 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded May 29, 2020
From: SI-BONE, INC.
To: SOLAR CAPITAL LTD., AS COLLATERAL AGENT
Reel/Frame 052795/0289 →
SECURITY INTEREST Recorded Oct 27, 2017
From: SI-BONE, INC.
To: BIOPHARMA CREDIT INVESTMENTS IV SUB LP
Reel/Frame 043975/0669 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2013
From: REILEY, MARK A.
To: SI-BONE INC.
Reel/Frame 031322/0905 →