Flanged interbody fusion device with fastener insert and retaining ring

US9936984B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9936984-B2
Application numberUS-201715413778-A
CountryUS
Kind codeB2
Filing dateJan 24, 2017
Priority dateMar 17, 2005
Publication dateApr 10, 2018
Grant dateApr 10, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Methods and devices are disclosed for treating the vertebral column. An integrated fixation plate and spacer having a retaining structure within the screw holes of the fixation plate to resist backout of screws attaching the fixation plate to the bone is provided. A movable joint may be provided between the fixation plate and spacer. In some embodiments, a screw hole insert is also provided to resist shear forces acting between the screw and fixation plate. In some embodiments, an integrated fixation plate and spacer system is provided, comprising two or more integrated fixation plate and spacer implants, wherein the fixation plates of each implant has a complementary configuration to allow attachment of the implants at adjacent intervertebral spaces. Alternative fixation systems are also contemplated.

First claim

Opening claim text (preview).

What is claimed is: 1. An implant system for treating the spine, comprising: a first stabilization plate comprising: a first access surface and a first bone facing surface; a first attachment lumen between the first access surface and the first bone facing surface, the first attachment lumen disposed on a lower portion of the first stabilization plate; a second attachment lumen between the first access surface and the first bone facing surface, the second attachment lumen disposed on an upper portion of the first stabilization plate; and a feature configured to prevent an anchor from backing out of the first attachment lumen, the feature configured to be located within the first attachment lumen; wherein the lower portion of the first stabilization plate is offset to a first side and the upper portion of the first stabilization plate is offset to a second side that is opposite to the first side. 2. The implant system for treating the spine as in claim 1 , wherein the feature is a first retaining ring. 3. The implant system for treating the spine as in claim 1 , wherein the feature is a first retaining ring configured to be positioned within a first recess, wherein the first recess is located between the first access surface and the first bone facing surface. 4. The implant system for treating the spine as in claim 1 , wherein the feature is an expandable member configured to be located at least partially within a groove of an anchor. 5. The implant system for treating the spine as in claim 4 , further comprising an internal screw comprising a screw body and a screw head, the internal screw having a proximal position and a distal position, wherein, in the distal position, the screw head is located distal to the groove such that the expandable member is in a reduced configuration and, when rotated from said distal position to the proximal position, the screw head is located about the groove and displaces the expandable member into an expanded configuration. 6. The implant system for treating the spine as in claim 1 , further comprising a second stabilization plate comprising: a second access surface and a second bone facing surface; a third attachment lumen between the second access surface and the second bone facing surface, the third attachment lumen disposed on a lower portion of the second stabilization plate; and a fourth attachment lumen between the second access surface and the second bone facing surface, the fourth attachment lumen disposed on an upper portion of the second stabilization plate; wherein the lower portion of the second stabilization plate is offset to a first side and the upper portion of the second stabilization plate is offset to a second side that is opposite to the first side; wherein the lower portion of the first stabilization plate has a configuration complementary to the configuration of the upper portion of the second stabilization plate. 7. The implant system for treating the spine as in claim 1 , further comprising a spacer extending from the first bone facing surface. 8. The implant system for treating the spine as in claim 1 , wherein the first stabilization plate comprises a flange configured to form a complementary shape with a second stabilization plate. 9. The implant system for treating the spine as in claim 8 , wherein the flange comprises the first attachment lumen. 10. An implant system for treating the spine, comprising: a first stabilization plate comprising: a first access surface and a first bone facing surface; a first attachment lumen between the first access surface and the first bone facing surface, the first attachment lumen disposed on a lower portion of the first stabilization plate; a second attachment lumen between the first access surface and the first bone facing surface, the second attachment lumen disposed on an upper portion of the first stabilization plate; and a first retaining ring configured to be located within the first attachment lumen between the first access surface and the first bone facing surface, wherein the first retaining ring is configured to prevent an anchor from backing out of the first attachment lumen; wherein the lower portion of the first stabilization plate is offset to a first side and the upper portion of the first stabilization plate is offset to a second side that is opposite to the first side. 11. The implant system for treating the spine as in claim 10 , wherein the first retaining ring is configured to be positioned within a first recess, wherein the first recess is located between the first access surface and the first bone facing surface. 12. The implant system for treating the spine as in claim 10 , further comprising a second stabilization plate comprising: a second access surface and a second bone facing surface; a third attachment lumen between the second access surface and the second bone facing surface, the third attachment lumen disposed on a lower portion of the second stabilization plate; and a fourth attachment lumen between the second access surface and the second bone facing surface, the fourth attachment lumen disposed on an upper portion of the second stabilization plate; wherein the lower portion of the second stabilization plate is offset to a first side and the upper portion of the second stabilization plate is offset to a second side that is opposite to the first side; wherein the lower portion of the first stabilization plate has a configuration complementary to the configuration of the upper portion of the second stabilization plate. 13. The implant system for treating the spine as in claim 12 , further comprising a third retaining ring configured to be positioned within the third attachment lumen between the second access surface and the second bone facing surface, wherein the third retaining ring is configured to prevent an anchor from backing out of the third attachment lumen. 14. The implant system for treating the spine as in claim 10 , further comprising a spacer extending from the first bone facing surface. 15. An implant system for treating the spine, comprising: a first stabilization plate comprising: a first access surface and a first bone facing surface; a first attachment lumen between the first access surface and the first bone facing surface, the first attachment lumen disposed on a lower portion of the first stabilization plate; and a second attachment lumen between the first access surface and the first bone facing surface, the second attachment lumen disposed on an upper portion of the first stabilization plate; wherein the lower portion of the first stabilization plate is offset to a first side and the upper portion of the first stabilization plate is offset to a second side that is opposite to the first side; an expandable member configured to be located within the first attachment lumen and at least partially within a groove of an anchor, the expandable member configured to prevent the anchor from backing out of the first attachment lumen; an internal screw comprising a screw body and a screw head, the internal screw having a proximal position and a distal position, wherein, in the distal position, the screw head is located distal to the groove such that the expandable member is in a reduced configuration and, when rotated from said distal position to the proximal position, the screw head is located about the groove and displaces the expandable member into an expanded configuration. 16. The implant system for treating the spine as in claim 15 , further comprising the anchor, the anchor comprising a proximal head comprising a central

Assignees

Inventors

Classifications

  • Stepped or enlarged apertures, e.g. having discrete diameter changes · CPC title

  • made by longitudinally pushing a protrusion into a complementary-shaped recess, e.g. held by friction fit · CPC title

  • Connections or couplings between prosthetic parts, e.g. between modular parts; Connecting elements · CPC title

  • connected by a hinged linkage mechanism, e.g. of the single-bar or multi-bar linkage type · CPC title

  • spring biased · CPC title

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Frequently asked questions

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What does patent US9936984B2 cover?
Methods and devices are disclosed for treating the vertebral column. An integrated fixation plate and spacer having a retaining structure within the screw holes of the fixation plate to resist backout of screws attaching the fixation plate to the bone is provided. A movable joint may be provided between the fixation plate and spacer. In some embodiments, a screw hole insert is also provided to …
Who is the assignee on this patent?
Spinal Elements Inc
What technology area does this patent fall under?
Primary CPC classification A61B17/7059. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Apr 10 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 5 related publications on this page (citations in our corpus or others sharing the same primary CPC).