IP Library Granted Patent US 8,265,388
Granted Patent B2
US 8,265,388 · App. 13/244,658 · Granted Sep 11, 2012

Analyzing partial face regions for red-eye detection in acquired digital images

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Quick Facts
Patent No.
US 8,265,388
App. No.
13/244,658
Granted
Sep 11, 2012
Kind
B2
Abstract

A method for red-eye detection in an acquired digital image includes acquiring a first image, and analyzing one or more partial face regions within the first image. One or more characteristics of the first image are determined. One or more corrective processes are identified including red eye correction that can be beneficially applied to the first image according to the one or more characteristics. The one or more corrective processes are applied to the first image.

Claims (69)

1. A method for red-eye detection in an acquired digital image comprising:

acquiring a first image with a portable processor-based device having a processor and an image acquisition component including a lens and an image sensor;

using the processor;

analyzing one or more partial face regions within the first image, including segmenting two or more regions of at least one eye and determining one or more characteristics of the first image;

identifying one or more corrective processes including red eye defect correction and iris color correction that can be beneficially applied to said first image according to said one or more characteristics; and

applying said one or more corrective processes to said first image to generate a corrected image, including said red eye defect correction and said iris color correction; and

electronically storing, transmitting, further processing or editing, or displaying the corrected image, or combinations thereof.

2. The method of claim 1 , further comprising detecting and correcting a non-red flash-induced eye defect in the eye region.

3. The method of claim 1 , wherein said applying comprises applying a chain of two or more filters to said first image including an iris color correction filter and a red eye defect filter.

4. The method of claim 1 , wherein said analyzing is performed in part on a full resolution partial face region and in part on a subsample resolution of at least one different partial face region.

5. The method of claim 1 , wherein said first image comprises a sub-sampled copy of an acquired image.

6. The method of claim 1 , wherein the analyzing comprises recognizing one or more faces or types of faces, or both, within the first image.

7. The method of claim 1 , wherein the applying comprises applying an iris color correction filter, including:

applying a pixel locator and segmentor;

applying a shape analyzer;

applying a falsing analyzer; or

applying a pixel modifier, or combinations thereof.

8. The method of claim 1 , wherein the one or more corrective processes comprises a color space transformation.

9. One or more non-transitory computer-readable media having digital code embedded therein for programming a processor to perform a method for iris color correction in an acquired digital image, comprising:

a first code subset that is configured to program the processor to analyze one or more partial face regions within the first image, including a second code subset configured to segment two or more regions of at least one eye and determining one or more characteristics of the first image;

a third code subset that is configured to identify one or more corrective processes including red eye defect correction and iris color correction that can be beneficially applied to said first image according to said one or more characteristics; and

a fourth code subset that is configured to apply said one or more corrective processes to said first image to generate a corrected image, including said red eye defect correction and said iris color correction.

10. A portable processor-based device, comprising:

an image acquisition component configured to capture digital images, including

a lens,

an image sensor, and

a processor programmed by digital code embedded in one or more processor-readable media to perform iris-color correction in an acquired digital image,

wherein the device is configured to acquire a first image using the image acquisition component including the lens and the image sensor; and

wherein the processor is programmed to analyze one or more partial face regions within the first image, and to segment two or more regions of at least one eye and determining one or more characteristics of the first image; and

wherein the processor is further programmed to identify one or more corrective processes including red eye defect correction and iris color correction that can be beneficially applied to said first image according to said one or more characteristics; and

wherein the processor is further programmed to apply said one or more corrective processes to said first image to generate a corrected image, including said red eye defect correction and said iris color correction.

11. A method for red-eye detection in an acquired digital image comprising:

acquiring a first image with a portable processor-based device having a processor and an image acquisition component including a lens and an image sensor;

using the processor;

analyzing one or more full face regions within the first image, including segmenting two or more regions of at least one eye and determining one or more characteristics of the first image;

identifying one or more corrective processes including red eye defect correction and iris color correction that can be beneficially applied to said first image according to said one or more characteristics; and

applying said one or more corrective processes to said first image to generate a corrected image, including said red eye defect correction and said iris color correction; and

electronically storing, transmitting, further processing or editing, or displaying the corrected image, or combinations thereof.

12. A method for red-eye detection in an acquired digital image comprising:

acquiring a first image with a portable processor-based device having a processor and an image acquisition component including a lens and an image sensor;

using the processor;

analyzing one or more full face regions and one or more partial face regions within the first image, including segmenting two or more regions of at least one eye and determining one or more characteristics of the first image;

identifying one or more corrective processes including red eye defect correction and iris color correction that can be beneficially applied to said first image according to said one or more characteristics; and

applying said one or more corrective processes to said first image to generate a corrected image, including said red eye defect correction and said iris color correction; and

electronically storing, transmitting, further processing or editing, or displaying the corrected image, or combinations thereof.

13. One or more non-transitory computer-readable media having digital code embedded therein for programming a processor to perform a method for iris color correction in an acquired digital image, wherein the method comprises any of the methods recited at claims 1 - 8 comprising:

a first code subset that is configured to program the processor to analyze one or more full face regions within the first image, including a second code subset configured to segment two or more regions of at least one eye and determining one or more characteristics of the first image;

a third code subset that is configured to identify one or more corrective processes including red eye defect correction and iris color correction that can be beneficially applied to said first image according to said one or more characteristics; and

a fourth code subset that is configured to apply said one or more corrective processes to said first image to generate a corrected image, including said red eye defect correction and said iris color correction.

14. One or more non-transitory computer-readable media having digital code embedded therein for programming a processor to perform a method for iris color correction in an acquired digital image, wherein the method comprises any of the methods recited at claims 1 - 8 comprising:

a first code subset that is configured to program the processor to analyze one or more full face regions and one or more partial face regions within the first image, including a second code subset configured to segment two or more regions of at least one eye and determining one or more characteristics of the first image;

a third code subset that is configured to identify one or more corrective processes including red eye defect correction and iris color correction that can be beneficially applied to said first image according to said one or more characteristics; and

a fourth code subset that is configured to apply said one or more corrective processes to said first image to generate a corrected image, including said red eye defect correction and said iris color correction.

15. A portable processor-based device, comprising:

a lens, and

an image sensor for capturing digital images, and

a processor programmed to perform iris-color correction in an acquired digital image,

wherein the device is configured to acquire a first image using the image acquisition component including the lens and the image sensor; and

wherein the processor is programmed to analyze one or more full face regions within the first image, and to segment two or more regions of at least one eye and determining one or more characteristics of the first image; and

wherein the processor is further programmed to identify one or more corrective processes including red eye defect correction and iris color correction that can be beneficially applied to said first image according to said one or more characteristics; and

wherein the processor is further programmed to apply said one or more corrective processes to said first image to generate a corrected image, including said red eye defect correction and said iris color correction.

16. A portable processor-based device, comprising:

a lens, and

an image sensor for capturing digital images, and

a processor programmed to perform iris-color correction in an acquired digital image,

wherein the device is configured to acquire a first image using the image acquisition component including the lens and the image sensor; and

wherein the processor is programmed to analyze one or more full face regions and one or more partial face regions within the first image, and to segment two or more regions of at least one eye and determining one or more characteristics of the first image; and

wherein the processor is further programmed to identify one or more corrective processes including red eye defect correction and iris color correction that can be beneficially applied to said first image according to said one or more characteristics; and

wherein the processor is further programmed to apply said one or more corrective processes to said first image to generate a corrected image, including said red eye defect correction and said iris color correction.

Assignments (5)
SECURITY INTEREST Recorded May 3, 2023
From: ADEIA GUIDES INC.; ADEIA IMAGING LLC; ADEIA MEDIA HOLDINGS LLC; ADEIA MEDIA SOLUTIONS INC.; ADEIA SEMICONDUCTOR ADVANCED TECHNOLOGIES INC.; ADEIA SEMICONDUCTOR BONDING TECHNOLOGIES INC.; ADEIA SEMICONDUCTOR INC.; ADEIA SEMICONDUCTOR SOLUTIONS LLC; ADEIA SEMICONDUCTOR TECHNOLOGIES LLC; ADEIA SOLUTIONS LLC
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 063529/0272 →
CHANGE OF NAME Recorded Dec 3, 2014
From: DIGITALOPTICS CORPORATION EUROPE LIMITED
To: FOTONATION LIMITED
Reel/Frame 034524/0330 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2012
From: NANU, FLORIN; STEINBERG, ERAN; CORCORAN, PETER; POSOSIN, ALEXEI; BIGIOI, PETRONEL; DRIMBAREAN, ALEXANDRU; PETRESCU, STEFAN; GANGEA, MIHNEA; CAPATA, ADRIAN; CIUC, MIHAI; ZAMFIR, ADRIAN
To: FOTONATION IRELAND LIMITED
Reel/Frame 028297/0036 →
CHANGE OF NAME Recorded May 31, 2012
From: FOTONATION IRELAND LIMITED
To: TESSERA TECHNOLOGIES IRELAND LIMITED
Reel/Frame 028297/0286 →
CHANGE OF NAME Recorded May 31, 2012
From: TESSERA TECHNOLOGIES IRELAND LIMITED
To: DIGITALOPTICS CORPORATION EUROPE LIMITED
Reel/Frame 028297/0367 →