IP Library Granted Patent US 12,295,861
Granted Patent B2
US 12,295,861 · App. 18/082,031 · Granted May 13, 2025

Cervical implant systems

Inventors: John Parry (West Chester, PA); Jeffrey Johnson (West Midlands, GB)
Assignee: SILONY SPINE CORP.
A61F2/447A61F2002/30062A61F2002/3008A61F2002/30517A61F2002/30593A61F2002/3069A61F2002/30784A61F2002/3079A61F2002/30892A61F2/4465A61F2210/0004A61F2220/0025A61F2250/0098
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Quick Facts
Patent No.
US 12,295,861
App. No.
18/082,031
Granted
May 13, 2025
Kind
B2
Abstract

The present invention provides cervical implant ( 30 ) comprising an upper surface ( 38 ), a lower surface ( 40 ), a posterior portion ( 34 ) and an anterior portion ( 36 ) and including a perimeter ( 42 ) and one or more apertures ( 44,46 ) within said anterior portion for receiving securing means, said apertures having respective longitudinal axes M 1 , M 2 , characterised in that said axes extend in a direction substantially through said anterior portion ( 36 ) and converge at a point in a plane outside of said perimeter ( 42 ).

Claims (30)

1. A cervical implant system comprising:

a first cervical implant and a second cervical implant;

wherein the first cervical implant is formed of a first material and comprises:

a single cage portion comprising an upper surface having a contact area configured for engaging an inferior surface of a first cervical vertebral body and a lower surface having a contact area configured for engaging a superior surface of a second cervical vertebral body, wherein the second cervical vertebral body is at an adjacent level inferior to the first cervical body and no other cervical vertebral body exists between the first and second cervical vertebral bodies, an opening formed through the upper and lower surfaces to define an interior portion for receiving bone growth material, an outer perimeter surface extending in between said upper and lower surfaces, said outer perimeter surface including an anterior side and an opposite posterior side, one upwardly projecting aperture that is centrally located on the anterior side and extends through said anterior side and said upper surface and projects upwardly towards the first cervical vertebral body, and two downwardly projecting apertures that extend through said anterior side and said lower surface and project downwardly towards the second cervical vertebral body for receiving fastening devices, each of said apertures being formed through the first material and having proximal and distal openings and a channel extending therebetween, the proximal openings of said apertures lying within angled planes relative to said outer perimeter surface, such that said proximal opening of said one upwardly projecting aperture intersects with said anterior side and said lower surface, and said proximal openings of said two downwardly projecting apertures intersect with said anterior side and said upper surface, and said distal openings of said apertures lying within angled planes relative to said interior portion, such that said distal opening of said one upwardly projecting aperture intersects with said opening formed through said upper and lower surfaces and said upper surface, and said distal openings of said two downwardly projecting apertures intersect with said opening formed through said upper and lower surfaces and said lower surface, each of said apertures further comprising a longitudinal axis converging to a midline of the first cervical implant;

wherein the second cervical implant is formed of a second material and comprises:

a single cage portion comprising: an upper surface having a contact area configured for engaging an inferior surface of the second cervical vertebral body, a lower surface having a contact area configured for engaging a superior surface of a third cervical vertebral body, wherein the third cervical vertebral body is at an adjacent level that is inferior to the second cervical vertebral body and no other cervical vertebral body exists between the second and third cervical vertebral bodies, an opening formed through the upper and lower surfaces to define an interior portion for receiving bone growth material, and an outer perimeter surface extending in between said upper and lower surfaces, said outer perimeter surface including an anterior side and an opposite posterior side, one upwardly projecting aperture that is centrally located on the anterior side and extends through said anterior side and said upper surface, and two downwardly projecting apertures that extend through said anterior side and said lower surface for receiving fastening devices, each of said apertures being formed through the second material and having proximal and distal openings and a channel extending therebetween, the proximal openings of said apertures lying within angled planes relative to said outer perimeter surface, such that said proximal opening of said one upwardly projecting aperture intersects with said anterior side and said lower surface, and said proximal openings of said two downwardly projecting apertures intersect with said anterior side and said upper surface, and said distal openings of said apertures lying within angled planes relative to said interior portion, such that said distal opening of said one upwardly projecting aperture intersects with said opening formed through said upper and lower surfaces and said upper surface, and said distal openings of said two downwardly projecting apertures intersect with said opening formed through said upper and lower surfaces and said lower surface, each of said apertures further comprising a longitudinal axis converging to a midline of the second cervical implant;

wherein the longitudinal axes of the two downwardly projecting apertures of each of the first and second cervical implants extend at an angle between about 5 degrees and about 10 degrees from the midline to converge at a point outside of the posterior side of said outer perimeter surface,

wherein, in each of the first and second cervical implants, the distal opening of said upwardly projecting aperture and said interior portion intersect; and

wherein the first cervical implant is configured for insertion into a first level between the first and second cervical bodies, and the second cervical implant is configured for insertion into a second level between the second and third cervical bodies, the first level being adjacent to the second level.

2. The cervical implant system of claim 1 , wherein, in each of the first and second cervical implants, the longitudinal axes of the two downwardly projecting apertures extend at an angle between about 6 degrees and about 8 degrees from the midline.

3. The cervical implant system of claim 1 , wherein, in each of the first and second cervical implants, the anterior and posterior sides have superior and inferior curved edges that adjoin said outer perimeter surface to the upper and lower surfaces, respectively, and are configured to reduce frictional interference with adjacent body portions.

4. The cervical implant system of claim 1 , wherein, in each of the first and second cervical implants, the upper and lower surfaces of the cervical implant further include ridges for engaging the first, second and third cervical vertebral bodies.

5. The cervical implant system of claim 1 , wherein the fastening devices comprise screws, pins, staples, or bollards.

6. The cervical implant system of claim 1 , wherein, in each of the first and second cervical implants, at least one of the upper and lower surfaces is a domed surface.

7. A cervical implant system comprising:

a plurality of cervical implants, each of said cervical implants formed of a first material and comprising:

an upper surface having a contact area configured for engaging an inferior surface of a first cervical vertebral body, and a lower surface having a contact area configured for engaging a superior surface of a second cervical vertebral body;

an opening formed through the upper and lower surfaces to define an interior portion for receiving bone growth material;

an outer perimeter surface extending in between said upper and lower surfaces, said outer perimeter surface including an anterior side and an opposite posterior side;

one upwardly projecting aperture that is centrally located on the anterior side and extends through said anterior side and said upper surface and projects upwardly towards the first cervical vertebral body; and

two downwardly projecting apertures that extend through said anterior side and said lower surface and project downwardly towards the second cervical vertebral body for receiving fastening devices, each of said apertures being formed through the first material and having proximal and distal openings and a channel extending therebetween, the proximal openings of said apertures lying within angled planes relative to said outer perimeter surface, such that said proximal opening of said one upwardly projecting aperture intersects with said anterior side and said lower surface, and said proximal openings of said two downwardly projecting apertures intersect with said anterior side and said upper surface, and said distal openings of said apertures lying within angled planes relative to said interior portion, such that said distal opening of said one upwardly projecting aperture intersects with said opening formed through said upper and lower surfaces and said upper surface, and said distal openings of said two downwardly projecting apertures intersect with said opening formed through said upper and lower surfaces and said lower surface, each of said apertures further comprising a longitudinal axis converging to a midline of the cervical implant and extending at an angle between about 5 degrees and about 10 degrees from the midline to converge at a point outside of the posterior side of said outer perimeter surface, and wherein the distal opening of said upwardly projecting aperture and said interior portion intersect;

wherein the plurality of cervical implants comprises a first cervical implant and a second cervical implant, wherein the contact area of the upper surface of the first cervical implant is configured for engaging the inferior surface of the first cervical vertebral body, and the contact area of the lower surface of the first cervical implant is configured for engaging the superior surface of the second cervical vertebral body, and further wherein the second cervical vertebral body is at an adjacent level inferior to the first cervical body and no other cervical vertebral body exists between the first and second cervical vertebral bodies;

wherein the contact area of the upper surface of the second cervical implant is configured for engaging the inferior surface of the second cervical vertebral body, and the contact area of the lower surface of the second cervical implant is configured for engaging a superior surface of a third cervical vertebral body, and further wherein the third cervical vertebral body is at an adjacent level that is inferior to the second cervical vertebral body and no other cervical vertebral body exists between the second and third cervical vertebral bodies; and

wherein the plurality of cervical implants are configured for insertion into a plurality of levels within the cervical spine, and the plurality of levels are adjacent levels.

8. The cervical implant system of claim 7 , wherein, in each of the cervical implants, the longitudinal axes of the two downwardly projecting apertures extend at an angle between about 6 degrees and about 8 degrees from the midline.

9. The cervical implant system of claim 7 , wherein, in each of the cervical implants, the longitudinal axes of the two downwardly projecting apertures extend at an angle between about 40 degrees and about 50 degrees from an axis extending perpendicularly through the cervical implant.

10. The cervical implant system of claim 7 , wherein, in each of the cervical implants, the longitudinal axis of the two downwardly projecting apertures extends at an angle between about 44 degrees and about 46 degrees from an axis extending perpendicularly through the cervical implant.

11. The cervical implant system of claim 7 , wherein, in each of the cervical implants, the outer perimeter surface includes two opposing sides connecting the anterior side to the posterior side, and wherein the outer perimeter surface comprises superior and inferior curved edges that adjoin said two opposing sides to the anterior and posterior sides, respectively, and are configured to reduce frictional interference with adjacent body portions.

12. The cervical implant system of claim 7 , wherein, in each of the cervical implants, one or more of the apertures comprises guide portions configured for engagement with corresponding guide portions of a fastening device.

13. The cervical implant system of claim 12 , wherein, in each of the cervical implants, the guide portions each comprise a substantially annular projection between the proximal and distal openings, the substantially annular projection extending outward into the channel and being configured to maintain the fastening device substantially within a three degree cone angle.

Assignments (3)
CHANGE OF NAME Recorded Feb 27, 2024
From: SILONY MEDICAL CORP
To: SILONY SPINE CORP
Reel/Frame 066697/0257 →
RELEASE OF SECURITY INTEREST Recorded Jan 11, 2024
From: INNOVATUS LIFE SCIENCES LENDING FUND I, LP
To: CENTINEL SPINE, LLC
Reel/Frame 066101/0861 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2024
From: CENTINEL SPINE, LLC
To: SILONY MEDICAL CORP
Reel/Frame 066102/0483 →
Continuity (4)
Continuation 16742103 · Jan 14, 2020
Division 14282315 · May 20, 2014
Division 11938476 · Nov 12, 2007
Related Publication 20230121518A1 · Apr 20, 2023
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US 20080249575A1 · Waugh · 2008 [cited by examiner]
US 20090080997A1 · Johnson · 2009 [cited by applicant]
US 20100305704A1 · Messerli et al. · 2010 [cited by applicant]
WO 2007098288A2 · 2007 [cited by applicant]