IP Library Granted Patent US 8,672,978
Granted Patent B2
US 8,672,978 · App. 13/041,031 · Granted Mar 18, 2014

Transverse connector

Inventors: Jack Dant (St. Paul, MN); Christopher Bargsten (New Brighton, MN); Peter Schulte (Richmond, MN); Hugh Hestad (Edina, MN); Brad Kessler (Bloomington, MN)
Assignee: Zimmer Spine, Inc.
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 8,672,978
App. No.
13/041,031
Granted
Mar 18, 2014
Kind
B2
Abstract

A transverse connector for coupling between first and second vertebral anchors of a spinal stabilization system. The transverse connector includes a first coupling assembly proximate a first end, a second coupling assembly proximate a second end, a first fastener having external threading configured to threadably engage an internal threaded portion of a housing of the first vertebral anchor, and a second fastener having external threading configured to threadably engage an internal threaded portion of a housing of the second vertebral anchor. Each of the first and second fasteners includes a spherical upper surface, such as a spherically concave upper surface. A spherical surface of each of the first and second coupling assemblies mates with the spherical upper surface of the respective fastener to provide multi-axial rotation of the transverse connector relative to the housings to permit a desired orientation of the transverse connector.

Claims (42)

1. A transverse connector for coupling between first and second vertebral anchors of a spinal stabilization system, the transverse connector comprising:

a first coupling assembly proximate a first end of the transverse connector;

a second coupling assembly proximate a second end of the transverse connector;

a first fastener having external threading configured to threadably engage an internal threaded portion of a housing of the first vertebral anchor, the first fastener including a spherical upper surface;

a second fastener having external threading configured to threadably engage an internal threaded portion of a housing of the second vertebral anchor, the second fastener including a spherical upper surface;

wherein a spherical surface of the first coupling assembly mates with the spherical upper surface of the first fastener and a spherical surface of the second coupling assembly mates with the spherical upper surface of the second fastener;

wherein each of the first and second fasteners is a monolithic member including an upper spherical portion including the spherical upper surface and a lower threaded portion including the external threading;

wherein the upper spherical portion includes a threaded bore extending along a longitudinal axis of each of the first and second fasteners, the threaded bore having a major diameter that is constant from an upper portion of the threaded bore to a lower portion of the threaded bore, and a minor diameter that tapers from a larger diameter proximate the upper portion of the threaded bore to a smaller diameter proximate the lower portion of the threaded bore; and

wherein the threaded bore includes a thread having a crest defining the minor diameter, where the crest includes a planar surface parallel to the longitudinal axis.

2. The transverse connector of claim 1 , wherein each of the first and second coupling assemblies includes a coupling housing having an aperture therethrough receiving the upper spherical portion of the first or second fastener, respectively, therein.

3. The transverse connector of claim 2 , further comprising:

a set screw threadably received in the threaded bore of the upper spherical portion of each of the first and second fasteners configured to exert a radially outward force on the upper spherical portion to prevent rotation of the upper spherical portion in the aperture of the respective coupling housing.

4. The transverse connector of claim 3 , wherein the set screw includes external threading having a major diameter that is constant from an upper portion of the set screw to a lower portion of the set screw, and a minor diameter that tapers from a larger diameter proximate the upper portion of the set screw to a smaller diameter proximate the lower portion of the set screw.

5. The transverse connector of claim 3 , wherein the threaded bore of each of the first and second fasteners includes a root defining a major diameter;

wherein the set screw includes a thread having a root defining a minor diameter and a crest defining a major diameter;

wherein a portion of the root of the set screw contacts a portion of the crest of one of the threaded bores of the first and second fasteners; and

wherein a portion of the crest of the set screw within the one of the threaded bores is spaced from the root of the one of the threaded bores of the first and second fasteners when the root of the set screw contacts a portion of the crest of the one of the threaded bores of the first and second fasteners.

6. The transverse connector of claim 4 , wherein the set screw is configured to exert the radially outward force on the upper spherical portion without generating appreciable force axially.

7. The transverse connector of claim 1 , wherein the first fastener is configured to secure a first elongate member in the housing of the first vertebral anchor and the second fastener is configured to secure a second elongate member in the housing of the second vertebral anchor.

8. The transverse connector of claim 1 , wherein the threaded bore of each of the first and second fasteners includes a root defining the major diameter and parallel upper and lower flanks extending from the crest to the root.

9. The transverse connector of claim 8 , wherein the upper and lower flanks are oriented substantially perpendicular to the longitudinal axis.

10. The transverse connector of claim 1 , wherein the threaded bore of each of the first and second fasteners includes a root defining a major diameter, where the root is substantially parallel to the crest.

11. A spinal stabilization system comprising:

a first elongate member;

a second elongate member;

a first vertebral anchor including a housing and a bone engagement portion extending from the housing;

a second vertebral anchor including a housing and a bone engagement portion extending from the housing;

a third vertebral anchor including a housing and a bone engagement portion extending from the housing;

a fourth vertebral anchor including a housing and a bone engagement portion extending from the housing;

the first elongate member extending between the first and third vertebral anchors;

the second elongate member extending between the second and fourth vertebral anchors;

a first fastener securing the first elongate member in a channel of the housing of the first vertebral anchor, the first fastener including a spherical upper portion having a threaded bore disposed therein and a spherically convex surface, and a threaded lower portion threadably engaging the housing of the first vertebral anchor;

a second fastener securing the second elongate member in a channel of the housing of the second vertebral anchor, the second fastener including a spherical upper portion having a threaded bore disposed therein and a spherically convex surface, and a threaded lower portion threadably engaging the housing of the second vertebral anchor;

a transverse connector including a first coupling housing proximate a first end of the transverse connector and a second coupling housing proximate a second end of the transverse connector;

the first coupling housing including an aperture therethrough for receiving the spherical upper portion of the first fastener, the aperture having a concave annular sidewall configured to mate with the spherically convex surface of the spherical upper portion of the first fastener to allow rotational movement therebetween; and

the second coupling housing including an aperture therethrough for receiving the spherical upper portion of the second fastener, the aperture having a concave annular sidewall configured to mate with the spherically convex surface of the spherical upper portion of the second fastener to allow rotational movement therebetween;

wherein the threaded bore of the upper spherical portion of each of the first and second fasteners has a major diameter that is constant from an upper portion of the threaded bore to a lower portion of the threaded bore, and a minor diameter that tapers from a larger diameter proximate the upper portion of the threaded bore to a smaller diameter proximate the lower portion of the threaded bore; and

wherein the threaded bore of the upper spherical portion of each of the first and second fasteners includes a thread having a crest defining the minor diameter, where the crest includes a planar surface parallel to the longitudinal axis.

12. The spinal stabilization system of claim 11 , further comprising:

a first set screw threadably received in the threaded bore of the upper spherical portion of the first fastener configured to exert a radially outward force on the upper spherical portion of the first fastener to prevent rotation of the upper spherical portion in the aperture of the first coupling housing; and

a second set screw threadably received in the threaded bore of the upper spherical portion of the second fastener configured to exert a radially outward force on the upper spherical portion of the second fastener to prevent rotation of the upper spherical portion in the aperture of the second coupling housing.

13. The spinal stabilization system of claim 12 , wherein each of the first and second set screws includes external threading having a major diameter that is constant from an upper portion of the set screw to a lower portion of the set screw, and a minor diameter that tapers from a larger diameter proximate the upper portion of the set screw to a smaller diameter proximate the lower portion of the set screw.

Assignments (8)
CHANGE OF NAME Recorded Dec 24, 2024
From: ZIMMER BIOMET SPINE, LLC
To: HIGHRIDGE MEDICAL, LLC
Reel/Frame 069772/0248 →
CHANGE OF NAME Recorded Dec 24, 2024
From: ZIMMER BIOMET SPINE, INC.
To: ZIMMER BIOMET SPINE, LLC
Reel/Frame 069772/0121 →
RELEASE OF SECURITY INTEREST Recorded Apr 2, 2024
From: JPMORGAN CHASE BANK, N.A.
To: EBI, LLC; ZIMMER BIOMET SPINE, LLC (F/K/A ZIMMER BIOMET SPINE, INC.)
Reel/Frame 066973/0833 →
GRANT OF A SECURITY INTEREST -- PATENTS Recorded Apr 1, 2024
From: ZIMMER BIOMET SPINE, LLC; EBI, LLC
To: CERBERUS BUSINESS FINANCE AGENCY, LLC
Reel/Frame 066970/0806 →
MERGER Recorded Mar 25, 2024
From: ZIMMER SPINE, INC.
To: ZIMMER BIOMET SPINE, INC.
Reel/Frame 066891/0022 →
SECURITY INTEREST Recorded Mar 2, 2022
From: BIOMET 3I, LLC; EBI, LLC; ZIMMER BIOMET SPINE, INC.; ZIMMER DENTAL INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 059293/0213 →
MERGER Recorded Feb 18, 2022
From: ZIMMER SPINE, INC.
To: ZIMMER BIOMET SPINE, INC.
Reel/Frame 059232/0356 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2011
From: DANT, JACK; BARGSTEN, CHRISTOPHER; SCHULTE, PETER; HESTAD, HUGH; KESSLER, BRAD
To: ZIMMER SPINE, INC.
Reel/Frame 025905/0236 →
Continuity (1)
Related Publication 20120226316A1 · Sep 6, 2012