IP Library Granted Patent US 11,908,125
Granted Patent B2
US 11,908,125 · App. 18/084,692 · Granted Feb 20, 2024

Surgical kit inspection systems and methods for inspecting surgical kits having parts of different types

Inventors: Perry J. Simson (Bradenton, FL); Graeme A. Field (Jacksonville, FL); Patrick M. Caldwell (Jacksonville, FL)
Assignee: Howmedica Osteonics Corp.
G06T7/0008A61B34/70B25J19/0066G06F18/214G06T7/001G06T7/60G06T7/73G06V10/141G06V10/82G06V20/10G06V30/1437G06V30/153G06T2207/30164G06V2201/034
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Quick Facts
Patent No.
US 11,908,125
App. No.
18/084,692
Granted
Feb 20, 2024
Kind
B2
Abstract

Surgical kit inspection systems and methods are provided for inspecting surgical kits having parts of different types. The surgical kit inspection system comprises a vision unit including a first camera unit and a second camera unit to capture images of parts of a first type and a second type in each kit and to capture images of loose parts from each kit that are placed on a light surface. A robot supports the vision unit to move the first and second camera units relative to the parts in each surgical kit. One or more controllers obtain unique inspection instructions for each of the surgical kits to control inspection of each of the surgical kits and control movement of the robot and the vision unit accordingly to provide output indicating inspection results for each of the surgical kits.

Claims (39)

1. A surgical kit inspection system for inspecting a surgical kit of parts, the surgical kit inspection system comprising:

a first camera having a first lens to obtain images of unique geometric features of parts;

a second camera having a second lens, different than the first lens, to obtain images of characters on parts;

a robotic manipulator supporting the first and second cameras such that the first and second cameras are capable of being moved by the robotic manipulator relative to the surgical kit; and

one or more controllers being configured to:

obtain unique inspection instructions for the surgical kit to control inspection of the surgical kit;

position the robotic manipulator at a plurality of poses relative to the surgical kit in accordance with the unique inspection instructions;

operate one or both of the first camera and the second camera at each of the plurality of poses to capture images at each of the plurality of poses;

detect parts in the images captured at each of the plurality of poses using a first identification method when utilizing the first camera and using a second identification method when utilizing the second camera;

compare the detected parts of the surgical kit to a predefined list of parts for the surgical kit; and

generate output indicating inspection results for the surgical kit.

2. The surgical kit inspection system of claim 1 , wherein the robotic manipulator supports the first and second cameras such that the first and second cameras are capable of being moved by the robotic manipulator.

3. The surgical kit inspection system of claim 1 , comprising a light surface to receive loose parts from the surgical kit, the first camera being configured to capture one or more images of the loose parts.

4. The surgical kit inspection system of claim 3 , comprising a light source to illuminate the loose parts and the light surface.

5. The surgical kit inspection system of claim 4 , wherein the light source is arranged beneath the light surface to back-illuminate the loose parts.

6. The surgical kit inspection system of claim 4 , wherein the one or more controllers are configured to operate the light source in accordance with the unique inspection instructions.

7. The surgical kit inspection system of claim 1 , wherein the robotic manipulator includes a collaborative robotic arm having one or more sensors to detect forces or torques applied to at least one of the first camera, the second camera, and the robotic manipulator by the operator to control movement of the collaborative robotic arm.

8. The surgical kit inspection system of claim 1 , wherein the one or more controllers are configured to employ a deep learning algorithm to detect the parts in the surgical kit.

9. An inspection system for inspecting a kit of parts, the inspection system comprising:

one or more cameras configured to obtain images of at least one of: unique geometric features of parts, and characters on parts;

a robotic manipulator supporting the one or more cameras such that the one or more cameras are capable of being moved by the robotic manipulator relative to the kit; and

one or more controllers being configured to:

obtain unique inspection instructions for the kit to control inspection of the kit;

position the robotic manipulator at a plurality of poses relative to the kit in accordance with the unique inspection instructions;

operate the one or more cameras at each of the plurality of poses to capture images at each of the plurality of poses;

detect parts in the images captured at each of the plurality of poses;

compare the detected parts in the kit to a predefined list of parts for the kit; and

generate output indicating inspection result for the kit.

10. The inspection system of claim 9 , wherein the one or more cameras includes a first camera having a first imaging lens and a first liquid lens to obtain images of unique geometric features of the parts.

11. The inspection system of claim 10 , wherein the one or more controllers are further configured to use a first identification method to detect unique geometric features of parts in the images.

12. The inspection system of claim 10 , wherein the one or more cameras includes a second camera having a second imaging lens, different than the first imaging lens, and a second liquid lens to obtain images of characters on the parts.

13. The inspection system of claim 12 , wherein the robotic manipulator supports the first and second cameras such that the first and second cameras are capable of being moved by the robotic manipulator.

14. The inspection system of claim 12 , wherein the one or more controllers are further configured to use a second identification method to detect characters on parts in the images.

15. The inspection system of claim 9 , comprising a light surface to receive loose parts from the kit, the one or more cameras configured to capture one or more images of the loose parts.

16. The inspection system of claim 15 , comprising a light source to illuminate the loose parts and the light surface.

17. The inspection system of claim 16 , wherein the light source is arranged beneath the light surface to back-illuminate the loose parts.

18. The inspection system of claim 16 , wherein the one or more controllers are configured to operate the light source in accordance with the unique inspection instructions.

19. The inspection system of claim 9 , wherein the robotic manipulator includes a collaborative robotic arm having one or more sensors to detect forces or torques applied to the one or more cameras by the operator to control movement of the collaborative robotic arm.

20. The inspection system of claim 9 , wherein the output generated by the one or more controllers indicates one or more of the following: if any parts are missing; if any parts are in a wrong location; or if any parts have a defect.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2023
From: FIELD, GRAEME A.; CALDWELL, PATRICK M.
To: TEKNICAL, LLC
Reel/Frame 062594/0329 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2023
From: SIMSON, PERRY J.
To: HOWMEDICA OSTEONICS CORP.
Reel/Frame 062594/0336 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2023
From: TEKNICAL, LLC
To: HOWMEDICA OSTEONICS CORP.
Reel/Frame 062594/0345 →
Continuity (3)
Continuation 17342664 · Jun 9, 2021
Provisional Application 63036596 · Jun 9, 2020
Related Publication 20230117419A1 · Apr 20, 2023