IP Library › Granted Patent US 9,866,742
Granted Patent B2
US 9,866,742 · App. 14/732,852 · Granted Jan 9, 2018

Camera system for surgical applications

Inventors: Lim Chueng (Concord, MA); Garry Womack (Edmond, OK); Jonathan Yuen (Arlington, MA)
Assignee: Smith & Nephew, Inc.
H04N5/23203A61B1/00059A61B1/042H04N5/2178H04N5/2252H04N5/23229H04N2005/2255
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Quick Facts
Patent No.
US 9,866,742
App. No.
14/732,852
Granted
Jan 9, 2018
Kind
B2
Abstract

The present disclosure relates to a camera system for use in surgical applications. The camera system comprises an image processor; and an imaging device coupled to the image processor, wherein calibration of the imaging device occurs automatically upon coupling the imaging device to the image processor. A method of transmitting data is also disclosed.

Claims (71)

1. A camera system comprising:

a remote camera head, the remote camera head comprising:

a steam and chemical corrosion resistant housing composed of a high thermal conductivity material,

an optical window composed of an optical ceramic material and attached to the steam and chemical corrosion resistant housing by way of a bridge at an interface lid between the optical window and the steam and chemical corrosion resistant housing, the steam and chemical corrosion resistant housing hermetically sealed to the bridge and the bridge hermetically sealed to the optical window;

a memory storing camera head alignment calibration factors; and

a microprocessor; and

a digital image processor including a memory,

the remote camera head optically coupled to an endoscope by a coupler to receive an optical image, and the microprocessor of the remote camera head electrically coupled to the digital image processor by an electrical link configured to transmit a resulting digital image.

2. The camera system of claim 1 wherein the steam and chemical corrosion resistant housing is composed of aluminum.

3. The camera system of claim 1 wherein the optical window is composed of an optical sapphire.

4. The camera system of claim 1 wherein the camera head alignment calibration factors include:

a blemish factor;

a black pedestal factor;

a white shading factor; and

a white balance factor.

5. The camera system of claim 4 wherein the camera head alignment calibration factors further include:

a color matching factor;

an ELC factor;

a RGB spatial interpolation factor; and

a RGB to YCbCr factor.

6. The camera system of claim 5 wherein the camera head alignment calibration factors further include:

a horizontal aperture factor;

a motion adaptive deinteriacing factor;

a vertical aperture correction; and

a unsharp masking factor.

7. The camera system of claim 6 wherein the camera head alignment calibration factors further include:

a coring factor;

a level dependent noise suppression factor;

a digital zoom factor; and

a YCbCr to RGB factor.

8. The camera system of claim 7 wherein the camera head alignment calibration factors further include:

a RGB to HSV factor;

a hue control factor;

a saturation control factor; and

a HSV to RGB factor.

9. The camera system of claim 8 wherein the camera head alignment calibration factors further include:

a gamma/knee/decimation factor;

an hour meter factor;

a camera serial number; and

a spare factor.

10. The camera system of claim 1 wherein the memory of digital image processor includes memory requirements.

11. The camera system of claim 10 wherein the memory requirements include:

a memory space for a blemish factor;

a memory space for a black pedestal factor;

a memory space for a white shading factor; and

a memory space for a white balance factor.

12. The camera system of claim 11 wherein the memory requirements further include:

a memory space for a color matching factor;

a memory space for an ELC factor;

a memory space for a RGB spatial interpolation factor; and

a memory space for a RGB to YCbCr factor.

13. The camera system of claim 12 wherein the memory requirements further include:

a memory space for a horizontal aperture factor;

a memory space for a motion adaptive deinteriacing factor;

a memory space for a vertical aperture correction; and

a memory space for a unsharp masking factor.

14. The camera system of claim 13 wherein the memory requirements further include:

a memory space for a coring factor;

a memory space for a level dependent noise suppression factor;

a memory space for a digital zoom factor; and

a memory space for a YCbCr to RGB factor.

15. The camera system of claim 14 wherein the memory requirements further include:

a memory space for a RGB to HSV factor;

a memory space for a hue control factor;

a memory space for a saturation control factor; and

a memory space for a HSV to RGB factor.

16. The camera system of claim 15 wherein the memory requirements further include:

a memory space for a gamma/knee/decimation factor;

a memory space for an hour meter factor; and

a memory space for a camera serial number.

17. The camera system of claim 1 wherein calibration of the remote camera head occurs automatically upon coupling to the digital image processor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2017
From: YUEN, JONATHAN; WOMACK, GARRY; CHEUNG, LIM
To: SMITH & NEPHEW, INC.
Reel/Frame 044261/0020 →
Continuity (3)
Continuation 12598643
Provisional Application 60915997 · May 4, 2007
Related Publication 20150271384A1 · Sep 24, 2015