IP Library Granted Patent US 11,298,162
Granted Patent B2
US 11,298,162 · App. 16/039,592 · Granted Apr 12, 2022

Load sensing assembly for a spinal implant

Inventors: Nicholas M. Benson (Collierville, TN); Richard L. Brown (Mesa, AZ); Newton H. Metcalf (Memphis, TN); Clark B. Norgaard (Phoenix, AZ); Steven D. Glassman (Louisville, KY); Shane Burch (San Anselmo, CA); Domagoj Coric (Charlotte, NC); Robert A Fields (Memphis, TN)
Assignee: WARSAW ORTHOPEDIC, INC.
A61B17/7074A61B5/076A61B5/6878A61B17/7032A61B17/7035A61F2/4657A61B5/0031A61B5/01A61B17/705A61B17/7041A61B17/7044A61B17/7055A61B17/7059A61F2002/3067A61F2002/4666
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 11,298,162
App. No.
16/039,592
Granted
Apr 12, 2022
Kind
B2
Abstract

A load sensing assembly for a spinal implant includes a set screw having a central opening that extends from a first end of the set screw toward a second end of the set screw. The second end of the set screw is configured to engage with an anchoring member. The load sensing assembly includes an antenna, an integrated circuit in communication with the antenna, where the integrated circuit is positioned within the central opening of the set screw, and a strain gauge in connection with the integrated circuit. The strain gauge is located within the central opening of the set screw in proximity to the second end of the set screw.

Claims (34)

1. A load sensing assembly for a spinal implant, the load sensing assembly comprising:

a set screw extending in a longitudinal direction from a first end to a second end and having an outside surface comprising a thread pattern and an inside surface comprising a driving feature, the set screw further comprising a central opening that extends in the longitudinal direction from the first end of the set screw toward the second end of the set screw, wherein the thread pattern of the set screw is configured to engage with an anchoring member supporting a longitudinal rod;

an antenna positioned within the central opening;

an integrated circuit in communication with the antenna, wherein the integrated circuit is positioned within the central opening of the set screw; and

a strain gauge in connection with the integrated circuit, wherein the strain gauge is located within the central opening of the set screw in proximity to the second end of the set screw and is configured to measure a localized force between the second end of the set screw and the longitudinal rod when the second end contacts the longitudinal rod.

2. The load sensing assembly of claim 1 , wherein the set screw comprises a breakoff portion.

3. The load sensing assembly of claim 1 , further comprising an electronics component, wherein the electronics component comprises a top surface, a bottom surface, and one or more electrical circuits.

4. The load sensing assembly of claim 3 , wherein the integrated circuit is positioned on the top surface of the electronics component.

5. The load sensing assembly of claim 3 , wherein the strain gauge is operably connected to the bottom surface of the electronics component.

6. The load sensing assembly of claim 1 , wherein the integrated circuit comprises memory, wherein the integrated circuit is configured to:

store one or more measurements made by the strain gauge in the memory; and transmit the one or more measurements to a reader when the reader is in proximity to the integrated circuit.

7. The load sensing assembly of claim 1 , wherein the integrated circuit comprises memory, wherein the integrated circuit is configured to:

store a unique identifier associated with the set screw in the memory; and transmit the unique identifier to a reader when the reader is in proximity to the integrated circuit.

8. The load sensing assembly of claim 1 , further comprising an anchoring member comprising a channel that is configured to receive the longitudinal rod and a second strain gauge located within the channel, wherein the second strain gauge is configured to measure a localized force between the anchoring member and the longitudinal rod.

9. The load sensing assembly of claim 1 , wherein the integrated circuit comprises one or more of the following:

radio frequency identification (RFID) chip; or

near-field communication (NFC) chip.

10. The load sensing assembly of claim 1 , wherein the central opening comprises a circular opening defined by a consistent internal diameter.

11. A load sensing assembly for a spinal implant, the load sensing assembly comprising:

a set screw extending in a longitudinal direction from a first end to a second end and having an outside surface comprising a thread pattern and an inside surface comprising a driving feature, the set screw further comprising a central opening that is coaxially aligned with the driving feature and extends in the longitudinal direction from the first end of the set screw to the second end of the set screw, wherein the thread pattern of the set screw is configured to engage with an anchoring member supporting a longitudinal rod while the second end of the set screw directly contacts the longitudinal rod;

an antenna;

an electronics component comprising one or more electrical circuits, wherein the electronics component is operably connected to the antenna;

an integrated circuit operably connected to at least a portion of the electronics component; and

a strain gauge in communication with the integrated circuit, wherein the strain gauge is located within the central opening of the set screw in proximity to the second end of the set screw and is configured to measure a localized force between the second end of the set screw and the longitudinal rod.

12. The load sensing assembly of claim 11 , wherein the electronics component is operably connected to the antenna via a connecting member having a longitudinal axis that extends in a perpendicular direction with respect to the antenna.

13. The load sensing assembly of claim 11 , wherein:

the antenna comprises a radio frequency identification coil,

the antenna is configured to circumferentially surround at least a portion of the set screw or a pedicle screw.

14. The load sensing assembly of claim 11 , wherein at least a portion of the antenna is positioned in a the central opening of the set screw.

15. The load sensing assembly of claim 11 , wherein the integrated circuit comprises memory, wherein the integrated circuit is configured to:

store one or more measurements made by the strain gauge in the memory; and transmit the one or more measurements to a reader when the reader is in proximity to the integrated circuit.

16. The load sensing assembly of claim 11 , wherein the integrated circuit comprises memory, wherein the integrated circuit is configured to:

store a unique identifier associated with the implant in the memory; and

transmit the unique identifier to a reader when the reader is in proximity to the integrated circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2018
From: BENSON, NICHOLAS M.; BROWN, RICHARD L.; METCALF, NEWTON H.; NORGAARD, CLARK B.; GLASSMAN, STEVEN D.; BURCH, SHANE; CORIC, DOMAGOJ; FIELDS, ROBERT A.
To: WARSAW ORTHOPEDIC, INC
Reel/Frame 047042/0892 →
Continuity (1)
Related Publication 20200022739A1 · Jan 23, 2020
Cited By (3)
US 12,458,417 US 12,478,413 US 12,496,103