IP Library › Granted Patent US 11,559,335
Granted Patent B2
US 11,559,335 · App. 17/581,797 · Granted Jan 24, 2023

Pivotal bone anchor assembly with insert tool deployment

Inventors: Roger P Jackson (Prairie Village, KS); James L Surber (Kansas City, KS)
A61B17/7037A61B17/7032
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Quick Facts
Patent No.
US 11,559,335
App. No.
17/581,797
Granted
Jan 24, 2023
Kind
B2
Abstract

A pivotal bone anchor assembly includes a bone anchor having a capture portion and an anchor portion opposite the capture portion, and a receiver assembly in a pre-assembled configuration that includes a receiver, a retainer, and a pressure insert. The receiver has a central bore configured to receive the capture portion through a bottom opening, with a lower portion of the central bore including a narrower engagement portion adjacent the bottom opening and a wider expansion portion above the narrower engagement portion. The pre-assembled retainer is configured to widen within the wider expansion portion to receive the capture portion of the bone anchor during its uploading through the bottom opening, then to close around and secure the capture portion while providing for pivotal motion of the bone anchor relative to the receiver. The pre-assembled insert is downwardly deployable with tooling, prior to the installation of a longitudinal connecting member and closure, until an outer surface of the insert comes into forced interference wedged engagement with interference wedging surfaces formed into the central bore so as to inhibit the pressure insert from moving back up within the receiver.

Claims (51)

1. A pivotal bone anchor assembly comprising:

a bone anchor having a capture portion with a partially spherical outer surface and an integral anchor portion opposite the capture portion configured for fixation to a bone;

a longitudinal connecting member having a circular cross-section; and

a receiver assembly in a pre-assembled configuration configured to receive the capture portion of the bone anchor, the receiver assembly in the pre-assembled configuration including:

a receiver comprising a base defining a lower portion of a central bore centered about a vertical centerline axis and communicating with a bottom surface of the receiver through a bottom opening, and a pair of upright arms integrally formed with and extending upwardly from the base to define an open channel extending between a front side and a back side of the receiver and configured to downwardly receive the longitudinal connecting member, the central bore extending upwardly through the open channel to tops of the upright arms and flanked on both sides by opposed substantially-planar surfaces extending between the central bore and the front side and the back side of the receiver and extending parallel with the respect to the vertical centerline axis, the central bore configured to receive the capture portion of the bone anchor through the bottom opening and having a narrower engagement portion adjacent the bottom opening, a wider expansion portion above the narrower engagement portion, and inwardly-facing interference wedging surfaces above the wider expansion portion extending to the opposed substantially-planar surfaces flanking the central bore;

a retainer disposed within the wider expansion portion of the central bore and having a concave interior surface operable to grip the at least partially spherical outer surface of the capture portion of the bone anchor, the retainer configured to widen within the wider expansion portion so as to receive the capture portion within the retainer when the capture portion is uploaded through the bottom opening, and then to close around and secure the capture portion within the central bore while providing for pivotal motion of the bone anchor relative to the receiver; and

a pressure insert positioned within the central bore above the retainer disposed within the wider expansion portion, the pressure insert having an upwardly-open rod seat configured to downwardly receive the longitudinal connecting member through the open channel, and a recess below the rod seat configured to receive an upper portion of the retainer prior to the capture portion of the bone anchor being uploaded through the bottom opening,

wherein after the capture portion of the bone anchor is uploaded through the bottom opening and secured within the retainer, and prior to the installation of the longitudinal connecting member,

the pressure insert with an empty rod seat is downwardly deployable within the central bore of the receiver by tooling until an outer surface of the pressure insert comes into forced interference wedged engagement with the interference wedging surfaces of the central bore so as to inhibit the pressure insert from moving back up within the receiver, and

the retainer together with the capture portion of the bone anchor secured therein are downwardly displaceable within the central bore with outer surfaces of the retainer entering into engagement with the narrower engagement portion of the central bore to impede repeated widening of the retainer, and

wherein the empty rod seat of the pressure insert and the open channel of the receiver are configured to downwardly receive at least a portion of the longitudinal connecting member when the pressure insert, in the downwardly deployed position, is in the forced interference wedged engagement with the interference wedging surfaces.

2. The pivotal bone anchor assembly of claim 1 , wherein the upwardly-open rod seat of the pressure insert further comprises a curvate surface with at least one seat radius that is substantially equal to a radius of the circular cross-section of the longitudinal connecting member.

3. The pivotal bone anchor assembly of claim 1 , wherein the retainer includes at least one slot extending from a top surface to a bottom surface of the retainer.

4. The pivotal bone anchor assembly of claim 1 , wherein the upper portion of the retainer extends above a top surface of the capture portion of the bone anchor when the capture portion is captured within the retainer.

5. The pivotal bone anchor assembly of claim 1 , wherein the retainer is configured to frictionally engage the capture portion of the bone anchor when the capture portion is received within the retainer so as to provide an unlocked but non-floppy friction fit positioning of the bone anchor relative to the receiver prior to a final locking of the pivotal bone anchor assembly.

6. The pivotal bone anchor assembly of claim 1 , wherein the retainer is non-pivotal with respect to the receiver after the capture portion of the bone anchor is secured therein.

7. The pivotal bone anchor assembly of claim 1 , wherein the retainer is in a non-contracted state when in a downwardly deployed and locked position within the narrower engagement portion of the central bore.

8. The pivotal bone anchor assembly of claim 1 , wherein the pressure insert is configured to engage the capture portion of the bone anchor.

9. The pivotal bone anchor assembly of claim 1 ,

wherein the pressure insert further includes a downwardly-facing surface configured for engagement by the tooling, and

wherein the pressure insert is configured to be released from the forced interference wedged engagement and moved back up within the central bore by the tooling in engagement with the downwardly-facing surface.

10. The pivotal bone anchor assembly of claim 9 , wherein the downwardly-facing surface of the pressure insert is engageable by the tooling through the central bore of the receiver.

11. The pivotal bone anchor assembly of claim 1 , wherein the inwardly-facing interference wedging surfaces of the central bore are cylindrical and the outer surface of the pressure insert is non-cylindrical and configured for becoming wedged against the cylindrical inwardly-facing interference wedging surfaces.

12. The pivotal bone anchor assembly of claim 1 , wherein the inwardly-facing interference wedging surfaces of the central bore are non-cylindrical and the outer surface of the pressure insert is cylindrical and configured for becoming wedged against the non-cylindrical inwardly-facing interference wedging surfaces.

13. The pivotal bone anchor assembly of claim 1 and further comprising a closure,

wherein the closure has a receiver-mating structure formed into an outer sidewall surface of the closure that is complementary with a closure-mating structure formed into an upper portion of the central bore of the receiver adjacent the tops of the upright arms, and

wherein after the longitudinal connecting member is positioned within the open channel, the receiver-mating structure is configured to engage with the closure-mating structure so as to apply a downward pressure to a top of the longitudinal connecting member to secure the longitudinal connecting member to the bone.

14. The pivotal bone anchor assembly of claim 13 , wherein the receiver-mating structure of the closure and the closure-mating structure of the receiver each further comprise complementary helical threads formed on the outer sidewall surface of the closure and on inner surfaces of the central bore adjacent the tops of the upright arms, respectively.

15. The pivotal bone anchor assembly of claim 13 , wherein the pressure insert is further configured for downward deployment within the central bore and into the forced interference wedged engagement with the inwardly-facing interference wedging surfaces of the central bore by the downward pressure applied to the top of the longitudinal connecting member during the engagement between the receiver-mating structure with the closure-mating structure.

16. A pivotal bone anchor assembly comprising:

a bone anchor having an capture portion with an at least partially spherical outer surface and an integral anchor portion opposite the capture portion configured for fixation to a bone;

a longitudinal connecting member having a circular cross-section;

a receiver comprising a base defining a lower portion of a central bore centered about a vertical centerline axis and communicating with a bottom surface of the receiver through a bottom opening, and a pair of upright arms extending upwardly from the base to define an open channel extending between a front side and a back side of the receiver and configured to downwardly receive the longitudinal connecting member, the central bore extending upwardly through the open channel to tops of the upright arms and flanked on both sides by opposed inner planar surfaces extending between the central bore and the front side and the back side of the receiver and extending parallel with the respect to the vertical centerline axis, the central bore configured to receive the capture portion of the bone anchor through the bottom opening and having a narrower engagement portion adjacent the bottom opening, a wider expansion portion above the narrower engagement portion, and inwardly-facing interference wedging surfaces above the wider expansion portion extending to each of the opposed inner planar surfaces flanking the center bore;

a retainer having a concave interior surface operable to grip the at least partially spherical outer surface of the capture portion of the bone anchor, the retainer configured for initial positioning within the wider expansion portion of the central bore and to widen so as to receive the capture portion when the capture portion is uploaded through the bottom opening, and then to close around and secure the capture portion within the central bore while providing for pivotal motion of the bone anchor relative to the receiver; and

a pressure insert configured for initial positioning within the central bore above and in a partially side-to-side overlapping relationship with the retainer that is disposed within the wider expansion portion prior to the capture portion of the bone anchor being captured by the retainer, the pressure insert having an upwardly-open rod seat configured to downwardly receive the longitudinal connecting member,

wherein after the capture portion of the bone anchor is uploaded through the bottom opening and secured within the retainer, and prior to the installation of the longitudinal connecting member, the retainer and the pressure insert with an empty rod seat are configured to be downwardly deployed within the central bore by tooling until an outer surface of the retainer engages an interior surface of the narrower engagement portion to impede repeat widening of the retainer and an outer surface of the pressure insert comes into forced interference wedged engagement with the interference wedging surfaces of the central bore to inhibit the pressure insert from moving back up within the receiver, and

wherein the empty rod seat of the pressure insert and open channel of the receiver are configured to downwardly receive the longitudinal connecting member when the pressure insert, in the downwardly deployed position, is in the forced interference wedged engagement with the interference wedging surfaces.

17. The pivotal bone anchor assembly of claim 16 , wherein the upwardly-open rod seat of the pressure insert further comprises a curvate surface with at least one seat radius that is equal to or about a radius of the circular cross-section of the longitudinal connecting member.

18. The pivotal bone anchor assembly of claim 16 , wherein the retainer includes at least one through-and-through slot extending through the interior surface and an exterior surface and a top and a bottom thereof.

19. The pivotal bone anchor assembly of claim 16 , wherein an upper portion of the retainer extends above a top surface of the capture portion of the bone anchor after the capture portion is received and secured therein.

20. The pivotal bone anchor assembly of claim 16 , wherein the retainer is non-pivotal with respect to the receiver after the capture portion of the bone anchor is received and secured therein.

21. The pivotal bone anchor assembly of claim 16 , wherein the retainer is a resilient expandable structure.

22. The pivotal bone anchor assembly of claim 16 , wherein the outer surface of the retainer is at least partially tapered.

23. The pivotal bone anchor assembly of claim 16 , wherein the pressure insert is configured to engage the capture portion of the bone anchor.

24. The pivotal bone anchor assembly of claim 16 ,

wherein the pressure insert further includes a downwardly-facing surface configured for engagement by the tooling, and

wherein the pressure insert is configured to be released from the forced interference wedged engagement and moved back up within the central bore by the tooling in engagement with the downwardly-facing surface.

25. The pivotal bone anchor assembly of claim 24 , wherein the downwardly-facing surface of the pressure insert is engageable by the tooling through the central bore of the receiver.

26. The pivotal bone anchor assembly of claim 16 and further comprising a closure,

wherein the closure has a receiver-mating structure formed into an outer sidewall surface of the closure that is complementary with a closure-mating structure formed into an upper portion of the central bore of the receiver adjacent the tops of the upright arms, and

wherein after the longitudinal connecting member is positioned within the open channel, the receiver-mating structure is configured to engage with the closure-mating structure so as to apply a downward pressure to a top of the longitudinal connecting member to secure the longitudinal connecting member to the bone.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2022
From: SURBER, JAMES L.
To: ROGER P. JACKSON
Reel/Frame 059289/0820 →
Continuity (19)
Continuation 14658721 · Mar 16, 2015
Continuation 13317387 · Oct 19, 2011
Continuation In Part 12924802 · Oct 5, 2010
Continuation In Part 12802849 · Jun 15, 2010
Provisional Application 61455482 · Oct 21, 2010
Provisional Application 61403915 · Sep 23, 2010
Provisional Application 61403696 · Sep 20, 2010
Provisional Application 61402959 · Sep 8, 2010
Provisional Application 61400504 · Jul 29, 2010
Provisional Application 61398807 · Jul 1, 2010
Provisional Application 61396390 · May 26, 2010
Provisional Application 61395752 · May 17, 2010
Provisional Application 61395564 · May 14, 2010
Provisional Application 61343737 · May 3, 2010
Provisional Application 61336911 · Jan 28, 2010
Provisional Application 61278240 · Oct 5, 2009
Provisional Application 61270754 · Jul 13, 2009
Provisional Application 61268708 · Jun 15, 2009
Related Publication 20220142678A1 · May 12, 2022
Cited By (3)
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