IP Library Granted Patent US 12,167,872
Granted Patent B2
US 12,167,872 · App. 16/719,561 · Granted Dec 17, 2024

Bottom loaded pivotal bone anchor assembly with locking and blocking rings and insert tool deployment

Inventors: Roger P. Jackson (Prairie Village, KS); James L. Surber (Kansas City, KS)
A61B17/7037A61B17/7038A61B17/8605A61B17/864
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,167,872
App. No.
16/719,561
Granted
Dec 17, 2024
Kind
B2
Abstract

A medical implant assembly includes a shank having a head and an anchor portion, and a receiver having a central bore with a locking recess adjacent a bottom opening, an expansion recess above the locking recess, and a horizontal ridge extending circumferentially above the expansion recess. The assembly also includes an insert uploadable into a first position within the central bore with outer surfaces engageable with the horizontal ridge in a first position, a locking ring initially positionable within the lower locking recess or the upper expansion recess, and a blocking ring positionable within the central bore at least partially above the locking ring. The locking ring is first expanded within the expansion recess during uploading the shank head through the bottom opening, and then moves downward into the locking recess to capture the shank head within the central bore. The insert is downwardly displaceable by tooling to a second position with the insert engagement with the shank head, and with the blocking ring occupying the expansion recess to inhibit the locking ring from moving back up into the expansion recess.

Claims (53)

1. A medical implant assembly for securing an elongate rod to a bone of a patient via tooling and a closure top, the medical implant assembly comprising:

a shank comprising a longitudinal axis, a head at a proximal end, and a body extending distally from the head with an anchor portion configured for anchoring to the bone, the head having an at least partial spherical outer surface with a hemisphere diameter defined as a maximum diameter in a plane perpendicular to the longitudinal axis of the shank;

a receiver comprising a base defining a lower portion of a central bore centered about a vertical centerline axis and configured to receive the head of the shank, and an upper portion defining a first channel configured to receive the elongate rod, the central bore communicating with a bottom of the receiver through a lower opening and extending upward through the first channel to a top of the receiver and including a closure mating structure adjacent the top of the receiver configured to mate with the closure top, a lower locking recess adjacent the lower opening, an upper expansion recess with a distally facing upper stop surface above the lower locking recess, and a discontinuous and non-resilient horizontal ridge protruding inwardly and extending circumferentially around the central bore between the upper expansion recess and the closure mating structure;

an insert uploadable through the lower opening into the central bore of the receiver prior to the head of the shank, the insert having discontinuous top surfaces with adjacent upper side surfaces separated by a second channel that is alignable with the first channel and configured to receive the elongate rod, with the discontinuous top surfaces configured to remain below a top of the elongate rod and the upper side surfaces configured to initially extend at least partially above the horizontal ridge for overlapping engagement with the horizontal ridge so as at least partially hold and inhibit downward movement of the insert in the first channel of the receiver;

a resilient upper open ring uploadable through the lower opening and positionable within the central bore below the insert; and

a resilient lower open ring uploadable through the lower opening and initially positionable within at least one of the lower locking recess or the upper expansion recess below the upper open ring,

wherein the head of the shank is uploadable through the lower opening of the receiver so as to expand the lower open ring within the upper expansion recess until the hemisphere diameter of the head passes upward through the lower open ring, after which the lower open ring is configured to move downward into the lower locking recess so as to capture the head of the shank within the central bore of the receiver, and

wherein prior to positioning the elongate rod in the first channel and the second channel, the insert is configured for downward displacement within the central bore via direct force from the tooling so as to become engageable with the head of the shank, and the upper open ring is configured to occupy simultaneously abut the upper stop surface and the lower open ring when occupying the upper expansion recess so as to inhibit the lower open ring from moving entirely back up into the upper expansion recess and re-expanding therein.

2. The medical implant assembly of claim 1 , wherein the upper stop surface is substantially perpendicular to the vertical centerline axis of the receiver.

3. The medical implant assembly of claim 1 ,

wherein the upper portion of the receiver further comprises a pair of upright arms extending upward from the base, the upright arms including opposite inwardly-facing planar surfaces located on both sides of the closure mating structure to define front and back end portions of the first channel, and

wherein the horizontal ridge extends circumferentially around the central bore of the receiver to the opposite inwardly-facing planar surfaces of the upright arms.

4. The medical implant assembly of claim 3 , wherein the pair of upright arms of the receiver are configured for separation with a splay tool during the uploading of the insert into the central bore to provide for the positioning of the upper side surfaces of the insert into the overlapping engagement with the horizontal ridge.

5. The medical implant assembly of claim 1 ,

wherein the top surfaces of the insert include top outer edges above the upper side surfaces, and

wherein the downward displacement of the insert within the central bore is configured to move the top outer edges of the insert into an overlapping arrangement with the horizontal ridge to inhibit the insert from moving back upwards within the central bore.

6. The medical implant assembly of claim 5 , wherein the overlapping arrangement between the horizontal ridge and the top outer edges of the insert is a biased overlapping engagement configured to bias the insert against the head of the shank to establish a non-floppy friction fit between the shank and the receiver prior to securing the elongate rod within the first channel and the second channel with the closure top.

7. The medical implant assembly of claim 1 and further comprising the elongate rod and the closure top, wherein the closure top is configured for positioning entirely within the first channel of the receiver above the elongate rod and in engagement with the closure mating structure to apply a downward pressure to the top of the elongate rod, so as to secure the elongate rod to the bone of the patient.

8. A medical implant assembly for securing an elongate rod to a bone of a patient via tooling and a closure top, the medical implant assembly comprising:

a shank comprising a longitudinal axis, a head having an at least partial spherical outer surface at a proximal end, and an anchor portion opposite the head configured for anchoring to the bone;

a receiver comprising a base defining a lower portion of a central bore centered about a vertical centerline axis and configured to receive the head of the shank, and an upper portion integral with the base defining a first channel configured to receive the elongate rod, the central bore communicating with a bottom of the receiver through a lower opening and extending upward through the first channel to a top of the receiver and including a closure mating structure adjacent the top of the receiver configured to mate with the closure top, a lower locking recess adjacent the lower opening, an upper expansion recess above the lower locking recess defined in part by a downward facing upper stop surface, and a discontinuous and non-resilient horizontal ridge with a curvate lower portion protruding inwardly and extending circumferentially around the central bore between the upper expansion recess and the closure mating structure;

an insert uploadable through the lower opening into the central bore of the receiver prior to the head of the shank, the insert having discontinuous top surfaces separated by a second channel alignable with the first channel and configured to receive the elongate rod with the discontinuous top surfaces configured to remain below a top of the elongate rod, the discontinuous top surfaces further configured to move upward above the horizontal ridge until adjacent upper side surfaces below the discontinuous top surfaces enter into overlapping engagement with the horizontal ridge to initially maintain the insert in a first position within the first channel of the receiver;

a resilient upper open ring uploadable through the lower opening and positionable within the central bore below the insert; and

a resilient lower open ring uploadable through the lower opening and initially positionable within at least one of the lower locking recess or the upper expansion recess below the upper open ring,

wherein the head of the shank is uploadable through the lower opening of the receiver so as to expand the lower open ring within the upper expansion recess, after which:

the lower open ring is configured to move downward into the lower locking recess so as to capture the head of the shank within the central bore of the receiver,

the insert is configured for downward displacement to a second position within the central bore via direct force from the tooling to become engageable with the head of the shank, and

the upper open ring is configured to simultaneously abut the upper stop surface and the lower open ring while occupying the upper expansion recess so as to inhibit the lower open ring from moving entirely back up into the upper expansion recess and re-expanding therein.

9. The medical implant assembly of claim 8 , wherein inner surface portions of the lower open ring include a discontinuous cylindrical midline surface spaced an equal distance between a planar top surface and a planar bottom surface of the lower open ring.

10. The medical implant assembly of claim 8 ,

wherein the upper portion of the receiver further comprises a pair of upright arms extending upward from the base, the upright arms including opposite inwardly-facing planar surfaces located on both sides of the closure mating structure to define front and back end portions of the first channel of the receiver, and

wherein the horizontal ridge extends circumferentially around the central bore of the receiver to the opposite inwardly-facing planar surfaces.

11. The medical implant assembly of claim 10 , wherein the pair of upright arms of the receiver are configured for separation with a splay tool during the uploading of the insert into the central bore to provide for the positioning of the upper side surfaces of the insert into the overlapping engagement with the horizontal ridge.

12. The medical implant assembly of claim 8 , wherein the downward displacement of the insert within the central bore is configured to move outer edges of the top surfaces of the insert downward into an overlapping arrangement with the curvate lower portion of the horizontal ridge to prevent the insert from moving back upwards above the horizontal ridge.

13. The medical implant assembly of claim 12 , wherein the overlapping arrangement between the curvate lower portion of the horizontal ridge and the outer edges of the top surface of the insert further comprises a biased overlapping engagement configured to bias the insert against the head of the shank to establish a non-floppy friction fit between the shank and the receiver prior to securing the elongate rod within the first channel with the closure top.

14. The medical implant assembly of claim 8 and further comprising the elongate rod and the closure top, wherein the closure top is configured for positioning entirely within the first channel of the receiver above the elongate rod and in engagement with the closure mating structure to apply a downward pressure to a top of the elongate rod, so as to secure the elongate rod to the bone of the patient.

15. A medical implant assembly for securing an elongate rod to a bone of a patient via tooling and a closure top, the medical implant assembly comprising:

a shank comprising a longitudinal axis, a head at a proximal end, and an anchor portion opposite the head configured for anchoring to the bone, the head having an at least partial spherical outer surface with a hemisphere diameter defined as a maximum diameter in a plane perpendicular to the longitudinal axis of the shank;

a receiver comprising a base defining a lower portion of a central bore centered about a vertical centerline axis and configured to receive the head of the shank, and a pair of upright arms extending upwardly from the base to define an open first channel configured to receive the elongate rod, the central bore communicating with a bottom of the receiver through a lower opening and extending upward through the open first channel to tops of the uprights arms and including a discontinuous closure mating structure adjacent the tops of the of the upright arms configured to mate with the closure top, a lower locking recess adjacent the lower opening, an upper expansion recess above the lower locking recess defined in part by a downward facing upper stop surface, and a discontinuous and non-resilient horizontal ridge protruding inwardly and extending circumferentially around the central bore below the closure mating structure;

an insert uploadable through the lower opening into the central bore of the receiver prior to the head of the shank, the insert having discontinuous top surfaces with adjacent upper side surfaces configured to extend above the horizontal ridge for overlapping engagement with the horizontal ridge to initially maintain the insert in a first position within the open first channel of the receiver, the discontinuous top surfaces being separated by an open second channel alignable with the open first channel and configured to receive the elongate rod without the discontinuous top surfaces extending above a top of the elongate rod;

a resilient upper open ring uploadable through the lower opening and positionable within the central bore below the insert; and

a resilient lower open ring uploadable through the lower opening and initially positionable within at least one of the lower locking recess or the upper expansion recess below the upper open ring,

wherein upon the head of the shank being uploaded through the lower opening of the receiver,

the head is configured to expand the lower open ring within the upper expansion recess until the hemisphere diameter of the head passes upward through the lower open ring, after which the lower open ring is configured to snap around the head and move downward into the lower locking recess so as to capture the head within the central bore of the receiver,

the insert is configured for downward displacement to a second position within the central bore via direct force from the tooling to become engageable with the head of the shank, and

after the downward displacement of the insert, the upper open ring is configured to simultaneously abut the upper stop surface and the lower open ring while occupying the upper expansion recess so as to inhibit the lower open ring from moving entirely back up into the upper expansion recess and re-expanding therein.

16. The medical implant assembly of claim 15 , wherein inner surface portions of the lower open ring include a discontinuous cylindrical midline surface spaced an equal distance between a planar top surface and a planar bottom surface of the lower open ring.

17. The medical implant assembly of claim 16 ,

wherein the upright arms include opposite inwardly-facing planar surfaces defining front and back end portions of the open first channel on both sides of the closure mating structure, and

wherein the horizontal ridge extends circumferentially around the central bore of the receiver to the opposite inwardly-facing planar surfaces of the upright arms.

18. The medical implant assembly of claim 15 , wherein the pair of upright arms of the receiver are configured for separation with a splay tool during the uploading of the insert into the central bore to provide for the positioning of upper side surfaces of the insert into the overlapping engagement with the horizontal ridge.

19. The medical implant assembly of claim 15 , wherein the downward displacement of the insert within the central bore is configured to move the top surfaces of the insert into an overlapping arrangement with the horizontal ridge to prevent the insert from moving back upwards within the central bore.

20. The medical implant assembly of claim 15 and further comprising the elongate rod and the closure top, wherein the closure top is configured for positioning entirely within the open first channel of the receiver above the elongate rod and in engagement with the closure mating structure to apply a downward pressure to a top of the elongate rod, so as to secure the elongate rod to the bone of the patient.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2019
From: SURBER, JAMES L.
To: JACKSON, ROGER P.
Reel/Frame 051324/0859 →
Continuity (16)
Continuation 15897486 · Feb 15, 2018
Continuation 15629709 · Jun 21, 2017
Continuation In Part 15521163
Provisional Application 62362830 · Jul 15, 2016
Provisional Application 62352876 · Jun 21, 2016
Provisional Application 62212253 · Aug 31, 2015
Provisional Application 62200501 · Aug 3, 2015
Provisional Application 62200491 · Aug 3, 2015
Provisional Application 62194955 · Jul 21, 2015
Provisional Application 62137713 · Mar 24, 2015
Provisional Application 62137707 · Mar 24, 2015
Provisional Application 62078154 · Nov 11, 2014
Provisional Application 62078173 · Nov 11, 2014
Provisional Application 62066813 · Oct 21, 2014
Provisional Application 62066806 · Oct 21, 2014
Related Publication 20200121368A1 · Apr 23, 2020
Cited By (2)
US 12,295,621 US 12,661,155