IP Library Granted Patent US 11,272,964
Granted Patent B2
US 11,272,964 · App. 16/278,274 · Granted Mar 15, 2022

Vertebral joint implants and delivery tools

Inventors: Bruce M. McCormack (San Francisco, CA); Jeffrey D. Smith (Clayton, CA); Shigeru Tanaka (Half Moon Bay, CA); Edward Liou (Pleasanton, CA); Edward Fletcher Eyster (St. Helena, CA); Jonathan Carver (Millbrae, CA); Joshua Druker (Redwood City, CA); Martin Leugers (San Francisco, CA); Kurin Tu (San Mateo, CA); Peter Lombrozo (Scotts Valley, CA)
Assignee: Providence Medical Technology, Inc.
A61B17/7074A61B17/025A61B17/1604A61B17/1659A61B17/1671A61B17/1735A61B17/1757A61B17/7064A61B17/863A61B17/8811A61B17/8819A61B17/8822A61F2/4611H04L45/00H04L45/02H04L45/22H04L45/28A61B17/0642A61B2017/00424A61B2017/00429A61B2017/0256A61B2017/320028A61B2090/031A61B2090/034A61B2090/037H04W28/04
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Quick Facts
Patent No.
US 11,272,964
App. No.
16/278,274
Granted
Mar 15, 2022
Kind
B2
Abstract

A spinal joint distraction system for treating a facet joint including articular surfaces having a contour is disclosed and may include a delivery device including a generally tubular structure adapted to engage a facet joint, an implant adapted to be delivered through the delivery device and into the facet joint, the implant comprising two members arranged in opposed position, and an implant distractor comprising a generally elongate member adapted to advance between the two members of the implant causing separation of the members and distraction of the facet joint, wherein the implant is adapted to conform to the shape of the implant distractor and/or the articular surfaces of the facet upon being delivered to the facet joint. Several embodiments of a system, several embodiments of an implant, and several methods are disclosed including a method for interbody fusion.

Claims (40)

1. A system for delivery of a facet joint implant to a facet joint space comprising:

a facet joint implant; and

a driver assembly device comprising:

an elongated tubular body having a proximal end and a distal end;

a longitudinal shaft extending through the elongated tubular body, the longitudinal shaft having proximal and distal portions and adapted for slidable longitudinal and/or rotational movement relative to the elongated tubular body; and

an implant engagement feature, wherein the implant engagement feature is adjacent the distal end of the elongated tubular body and receives at least a portion of a proximal face of the facet joint implant,

wherein the longitudinal shaft displaces within the elongated tubular body to release the facet joint implant.

2. The system of claim 1 , wherein the implant engagement feature comprises at least one arm.

3. The system of claim 2 , wherein an outer surface of the arm is approximately coplanar with an outer surface of the elongated tubular body.

4. The system of claim 1 , wherein the longitudinal shaft comprises a rod.

5. The system of claim 4 , wherein the rod is proximally displaced within the elongated tubular body to disengage the implant and the implant engagement feature.

6. The system of claim 4 , wherein the rod is distally displaced within the elongated tubular body to disengage the implant and the implant engagement feature.

7. The system of claim 1 , wherein the facet joint space is the cervical facet joint space.

8. The system of claim 1 , wherein at least one of the longitudinal shaft and the implant engagement feature is configured to support the implant.

9. The system of claim 1 , wherein the implant comprises a proximal end including the proximal end face, a distal end, and upper and lower members extending therebetween, wherein at least one of the upper and lower members comprises a plurality of teeth projecting outwardly from an outer surface of the upper and/or lower member, the teeth adapted to engage bone facet surfaces.

10. The system of claim 9 , wherein the implant is made of stainless steel, titanium, ceramic, nitinol, PEEK or other polymer.

11. The system of claim 1 further comprising a handle configured to couple to a proximal portion of the longitudinal shaft.

12. A spinal facet implant system, comprising:

a driver assembly device comprising:

an elongated tubular body having a proximal end and a distal end;

a longitudinal shaft extending through the elongated tubular body, the longitudinal shaft having proximal and distal portions and adapted for slidable longitudinal and/or rotational movement relative to the elongated tubular body; and

an implant engagement feature, wherein the implant engagement feature is adjacent the distal end of the elongated tubular body,

a delivery device comprising:

a tubular body having proximal and distal regions, the tubular body configured to receive the driver assembly device; and

a facet joint implant having a proximal face, wherein at least a portion of the proximal face is adjacent to and releasably coupled to at least one of the implant engagement feature and the longitudinal shaft,

wherein, the longitudinal shaft displaces within the elongated tubular body to release the facet joint implant into a facet joint space.

13. The system of claim 12 , wherein the implant engagement feature comprises at least one arm.

14. The system of claim 12 , wherein the longitudinal shaft comprises a rod.

15. The system of claim 14 , wherein the rod is proximally displaced within the elongated tubular body to disengage the implant and the implant engagement feature.

16. The system of claim 14 , wherein the rod is distally displaced within the elongated tubular body to disengage the implant and the implant engagement feature.

17. The system of claim 12 , wherein the facet joint space is the cervical facet joint space.

18. The system of claim 12 , wherein at least one of the longitudinal shaft and the implant engagement feature is configured to support the implant.

19. A spinal facet implant system, comprising:

a driver assembly device comprising:

an elongated tubular body;

a longitudinal shaft extending through the elongated tubular body, the longitudinal shaft having proximal and distal portions and adapted for movement relative to the elongated tubular body; and

an implant engagement feature, wherein the implant engagement feature is adjacent a distal end of the elongated tubular body; and

a facet joint implant having a proximal face, wherein at least a portion of the proximal face is adjacent to and releasably coupled to at least one of the implant engagement feature and the longitudinal shaft,

wherein, the longitudinal shaft displaces within the elongated tubular body to release the facet joint implant.

20. The system of claim 19 , wherein the longitudinal shaft comprises a rod and the rod rotates within the elongated tubular body of the driver assembly to disengage the implant and the implant engagement feature.

Assignments (5)
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Aug 2, 2021
From: PROVIDENCE MEDICAL TECHNOLOGY, INC.
To: INNOVATUS LIFE SCIENCES LENDING FUND I, LP
Reel/Frame 057650/0016 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2021
From: EYSTER, EDWARD FLETCHER
To: PROVIDENCE MEDICAL TECHNOLOGY, INC.
Reel/Frame 057016/0152 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2021
From: TANAKA, SHIGERU; LIOU, EDWARD; CARVER, JONATHAN; DRUKER, JOSHUA; LEUGERS, MARTIN; TU, KURIN; LOMBROZO, PETER
To: SPECK PRODUCT DESIGN, INC.
Reel/Frame 054907/0658 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2021
From: MCCORMACK, BRUCE M; SMITH, JEFFREY D.
To: PROVIDENCE MEDICAL TECHNOLOGY, INC.
Reel/Frame 054907/0696 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2021
From: SPECK PRODUCT DESIGN, INC.
To: PROVIDENCE MEDICAL TECHNOLOGY, INC.
Reel/Frame 054978/0927 →
Continuity (10)
Continuation 15198718 · Jun 30, 2016
Continuation 14297861 · Jun 6, 2014
Continuation 13627825 · Sep 26, 2012
Continuation 12653283 · Dec 10, 2009
Continuation In Part 12455814 · Jun 5, 2009
Continuation In Part 12317682 · Dec 23, 2008
Provisional Application 61169601 · Apr 15, 2009
Provisional Application 61109776 · Oct 30, 2008
Provisional Application 61059723 · Jun 6, 2008
Related Publication 20190328429A1 · Oct 31, 2019
Cited By (8)
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