IP Library › Granted Patent US 12,555,507
Granted Patent B2
US 12,555,507 · App. 19/029,382 · Granted Feb 17, 2026

System and method for a multi-primary wide gamut color system

Inventors: Corey P. Carbonara (Waco, TX); Michael F. Korpi (Hewitt, TX); Gary B. Mandle (Los Altos, CA); Mitchell J. Bogdanowicz (Somis, CA); James M. DeFilippis (Pacific Palisades, CA); Matthew R. Brantley (China Spring, TX)
Assignee: Baylor University
G09G3/2003G02B5/201G02F1/133514G09G3/3413G09G5/02G09G2300/0452G09G2320/0242G09G2340/06
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Quick Facts
Patent No.
US 12,555,507
App. No.
19/029,382
Granted
Feb 17, 2026
Kind
B2
Abstract

The present invention includes systems and methods for a multi-primary color system for display. A multi-primary color system increases the number of primary colors available in a color system and color system equipment. Increasing the number of primary colors reduces metameric errors from viewer to viewer. One embodiment of the multi-primary color system includes Red, Green, Blue, Cyan, Yellow, and Magenta primaries. The systems of the present invention maintain compatibility with existing color systems and equipment and provide systems for backwards compatibility with older color systems.

Claims (49)

1 . A system for displaying a primary color system, comprising:

a set of image data including a set of primary color signals, wherein the set of primary color signals corresponds to a set of values in an International Commission on Illumination (CIE) Yxy color space, wherein the set of values in the CIE Yxy color space includes a luminance (Y) and two colorimetric coordinates (x,y);

an image data converter, wherein the image data converter includes a digital interface, and wherein the digital interface is operable to encode and decode the set of values in the CIE Yxy color space; and

at least one viewing device;

wherein the set of image data further includes hyperspectral data, ultraviolet (UV) data, and/or infrared (IR) data;

wherein the image data converter is operable to create two different three-coordinate format elements, wherein the first three-coordinate format element is Yxy and the second three-coordinate format element includes a first coordinate related to the UV data, a second coordinate related to the IR data, and a third coordinate proportional to an intensity of the UV data and the IR data;

wherein processed Yxy data is transported between the encode and the decode;

wherein the image data converter is operable to convert the set of image data for display on the at least one viewing device;

wherein a learning algorithm is operable to output a visualization from the set of image data, wherein the visualization comprises a plurality of visually distinct colors; and

wherein the at least one viewing device is operable to display the visualization.

2 . The system of claim 1 , wherein the image data converter is operable to convert the set of values in the CIE Yxy color space to a plurality of color gamuts.

3 . The system of claim 1 , wherein the learning algorithm is operable to extract a feature from the set of image data, and wherein the feature is at least one intensity, at least one edge, at least one texture, at least one segment, at least one color, at least one luminance, at least one color gradient, at least one tone gradient, at least one histogram diagram, at least one heat diagram, and/or at least one wavelength.

4 . The system of claim 1 , wherein the image data converter includes a look-up table.

5 . The system of claim 1 , wherein the set of image data includes colors outside of an International Telecommunication Union Recommendation (ITU-R) BT.2020 color gamut.

6 . The system of claim 1 , wherein the image data converter is operable to fully sample the processed Yxy data on a first channel and subsample the processed Yxy data on a second channel and a third channel.

7 . The system of claim 1 , wherein the processed Yxy data on a first channel, a second channel, and a third channel are fully sampled.

8 . The system of claim 1 , wherein the encode includes scaling of the two colorimetric coordinates (x,y), thereby creating a first scaled colorimetric coordinate and a second scaled colorimetric coordinate and/or the decode includes rescaling of data related to the first scaled colorimetric coordinate and data related to the second scaled colorimetric coordinate.

9 . The system of claim 1 , wherein the encode includes converting the set of primary color signals to XYZ data and then converting the XYZ data to create the set of values in the CIE Yxy color space and/or the decode includes converting the processed Yxy data to XYZ data and then converting the XYZ data to a format operable to display on the at least one viewing device.

10 . The system of claim 1 , further including at least one non-linear function.

11 . The system of claim 1 , further including at least one imager, wherein one or more of the at least one imager is operable to provide the set of image data.

12 . The system of claim 1 , wherein the system is compatible with Digital Imaging Communication in Medicine standards for metadata.

13 . The system of claim 1 , wherein the at least one viewing device is operable to modify display parameters of the set of image data.

14 . The system of claim 1 , further comprising at least one chip chart or at least one tele-med-chart with a plurality of colors and/or at least one reference to calibrate the system.

15 . A system for displaying a primary color system, comprising:

a set of image data including a set of primary color signals, wherein the set of primary color signals corresponds to a set of values in an International Commission on Illumination (CIE) Yxy color space, wherein the set of values in the CIE Yxy color space includes a luminance (Y) and two colorimetric coordinates (x,y);

at least one imager;

at least one processor coupled to at least one memory;

a learning algorithm; and

an image data converter, wherein the image data converter includes a digital interface, and wherein the digital interface is operable to encode and decode the set of values in the CIE Yxy color space;

wherein the set of image data further includes hyperspectral data, ultraviolet (UV) data, and/or infrared (IR) data;

wherein the image data converter is operable to create two different three-coordinate format elements, wherein the first three-coordinate format element is Yxy and the second three-coordinate format element includes a first coordinate related to the UV data, a second coordinate related to the IR data, and a third coordinate proportional to an intensity of the UV data and the IR data;

wherein processed Yxy data is transported between the encode and the decode;

wherein the set of image data is operable to be converted for display;

wherein the learning algorithm is operable to output a visualization from the set of image data, wherein the visualization comprises a plurality of visually distinct colors; and

wherein the visualization is operable to be displayed.

16 . A system for displaying a primary color system, comprising:

a set of image data including a set of primary color signals, wherein the set of primary color signals corresponds to a set of values in an International Commission on Illumination (CIE) Yxy color space, wherein the set of values in the CIE Yxy color space includes a luminance (Y) and two colorimetric coordinates (x,y);

at least one imager, wherein one or more of the at least one imager is operable to provide the set of image data;

at least one display device;

wherein the imager and the at least one display device are in communication;

wherein the set of image data further includes hyperspectral data, ultraviolet (UV) data, and/or infrared (IR) data;

wherein the image data converter is operable to create two different three-coordinate format elements, wherein the first three-coordinate format element is Yxy and the second three-coordinate format element includes a first coordinate related to the UV data, a second coordinate related to the IR data, and a third coordinate proportional to an intensity of the UV data and the IR data;

wherein processed Yxy data is transported between an encode and a decode;

wherein the set of image data is operable to be converted for display;

wherein an artificial intelligence model is operable to output a visualization from the set of image data, wherein the visualization comprises a plurality of visually distinct colors; and

wherein the at least one display device is operable to display the visualization.

17 . The system of claim 16 , wherein the at least one display device includes at least four primaries.

18 . The system of claim 16 , wherein the at least one display device is operable to display colors outside of an International Telecommunication Union Recommendation (ITU-R) BT.2020 color gamut.

19 . The system of claim 16 , wherein the one or more of the at least one imager is incorporated into at least one medical device.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2026
From: BRANTLEY, MATTHEW R.
To: BAYLOR UNIVERSITY
Reel/Frame 073793/0468 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2025
From: DEFILIPPIS, JAMES M.; BOGDANOWICZ, MITCHELL J.; CARBONARA, COREY P.; KORPI, MICHAEL F.; MANDLE, GARY B.
To: BAYLOR UNIVERSITY
Reel/Frame 071114/0365 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2025
From: BOGDANOWICZ, MITCHELL J.; CARBONARA, COREY P.; KORPI, MICHAEL F.; DEFILIPPIS, JAMES M.; MANDLE, GARY B.
To: BAYLOR UNIVERSITY
Reel/Frame 070133/0557 →
Continuity (21)
Continuation In Part 18652237 · May 1, 2024
Continuation 18170315 · Feb 16, 2023
Continuation 17976347 · Oct 28, 2022
Continuation In Part 17727372 · Apr 22, 2022
Continuation In Part 17671074 · Feb 14, 2022
Continuation In Part 17670018 · Feb 11, 2022
Continuation In Part 17516143 · Nov 1, 2021
Continuation In Part 17338357 · Jun 3, 2021
Continuation In Part 17225734 · Apr 8, 2021
Continuation In Part 17076383 · Oct 21, 2020
Continuation In Part 17009408 · Sep 1, 2020
Continuation In Part 16887807 · May 29, 2020
Continuation In Part 16860769 · Apr 28, 2020
Continuation In Part 16853203 · Apr 20, 2020
Continuation In Part 16831157 · Mar 26, 2020
Continuation 16659307 · Oct 21, 2019
Provisional Application 62876878 · Jul 22, 2019
Provisional Application 62847630 · May 14, 2019
Provisional Application 62805705 · Feb 14, 2019
Provisional Application 62750673 · Oct 25, 2018
Related Publication 20250174167A1 · May 29, 2025
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