IP Library Granted Patent US 10,729,310
Granted Patent B2
US 10,729,310 · App. 16/418,249 · Granted Aug 4, 2020

Endoscope image processing devices

Inventor: Hiromi Takahashi (Tokyo, JP)
Assignee: OLYMPUS CORPORATION
A61B1/00009A61B1/04A61B1/0676G06T7/0012G16H30/40G02B23/24
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Quick Facts
Patent No.
US 10,729,310
App. No.
16/418,249
Granted
Aug 4, 2020
Kind
B2
Abstract

An endoscope image processing device includes a processor including hardware programmed to: enlarge or reduce multiple color component images constituting a normal light image, and a narrow-band light image; generate a blended image by synthesizing one of the enlarged or reduced color component images and the enlarged or reduced narrow-band light image; and generate a color superimposed image by synthesizing the blended image and the other enlarged or reduced color component images. The processor is programmed to replace some of pixels of the one color component image with corresponding pixels of the narrow-band light image such that distribution of pixels of the one color component image and pixels of the narrow-band light image is substantially uniform over the blended image.

Claims (33)

1. An endoscope image processing device processing a color normal light image of a subject illuminated with wide-band visible light and a narrow-band light image of the subject illuminated with a narrow-band light, the image processing device comprising:

a processor comprising hardware programmed to:

enlarge or reduce multiple color component images constituting the normal light image, and the narrow-band light image;

generate a blended image by synthesizing one of the enlarged or reduced color component images and the enlarged or reduced narrow-band light image; and

generate a color superimposed image by synthesizing the blended image and the other enlarged or reduced color component images, wherein

the processor is programmed to generate the blended image by selecting some of pixels of the one enlarged or reduced color component image, and replacing the selected pixels with corresponding pixels of the enlarged or reduced narrow-band light image, and replace some of pixels of the one enlarged or reduced color component image with pixels of the enlarged or reduced narrow-band light image such that distribution of pixels of the one enlarged or reduced color component image and pixels of the enlarged or reduced narrow-band light image is substantially uniform over the blended image.

2. The endoscope image processing device according to claim 1 , wherein

the processor is programmed to acquire a display size of the superimposed image from a display displaying the superimposed image, and enlarge or reduce the normal light image and the narrow-band light image at a magnification corresponding to the acquired display size.

3. The endoscope image processing device according to claim 1 , wherein

the processor is programmed to enlarge or reduce the normal light image and the narrow-band light image at a magnification corresponding to a display magnification inputted by a user.

4. The endoscope image processing device according to claim 2 , wherein

the processor is programmed to enlarge or reduce the normal light image and the narrow-band light image at a magnification corresponding to a display magnification inputted by a user.

5. The endoscope image processing device according to claim 3 , wherein the processor is programmed to determine whether or not to generate the blended image based on the display magnification.

6. The endoscope image processing device according to claim 4 , wherein the processor is programmed to determine whether or not to generate the blended image based on the display magnification.

7. The endoscope image processing device according to claim 2 , wherein the processor is programmed to:

determine a blending pattern according to the magnification such that when the magnification is higher, the ratio of the number of pixels of the enlarged or reduced narrow-band light image is lower, the blending pattern specifying arrangement of pixels of the one enlarged or reduced color component image and pixels of the enlarged or reduced narrow-band light image in the blended image; and

generate the blended image in accordance with the determined blending pattern.

8. The endoscope image processing device according to claim 3 , wherein the processor is programmed to:

determine a blending pattern according to the magnification such that when the magnification is higher, the ratio of the number of pixels of the enlarged or reduced narrow-band light image is lower, the blending pattern specifying arrangement of pixels of the one enlarged or reduced color component image and pixels of the enlarged or reduced narrow-band light image in the blended image; and

generate the blended image in accordance with the determined blending pattern.

9. The endoscope image processing device according to claim 4 , wherein the processor is programmed to:

determine a blending pattern according to the magnification such that when the magnification is higher, the ratio of the number of pixels of the enlarged or reduced narrow-band light image is lower, the blending pattern specifying arrangement of pixels of the one enlarged or reduced color component image and pixels of the enlarged or reduced narrow-band light image in the blended image; and

generate the blended image in accordance with the determined blending pattern.

10. The endoscope image processing device according to claim 5 , wherein the processor is programmed to:

determine a blending pattern according to the magnification such that when the magnification is higher, the ratio of the number of pixels of the enlarged or reduced narrow-band light image is lower, the blending pattern specifying arrangement of pixels of the one enlarged or reduced color component image and pixels of the enlarged or reduced narrow-band light image in the blended image; and

generate the blended image in accordance with the determined blending pattern.

11. The endoscope image processing device according to claim 6 , wherein the processor is programmed to:

determine a blending pattern according to the magnification such that when the magnification is higher, the ratio of the number of pixels of the enlarged or reduced narrow-band light image is lower, the blending pattern specifying arrangement of pixels of the one enlarged or reduced color component image and pixels of the enlarged or reduced narrow-band light image in the blended image; and

generate the blended image in accordance with the determined blending pattern.

12. The endoscope image processing device according to claim 2 , wherein the processor is programmed to:

enlarge the normal light image and the narrow-band light image by adding pixels to the normal light image and the narrow-band light image so as to increase the number of pixels therein, and interpolating gradation values of at least some of the added pixels; and

determine a pixel a gradation value of which is to be interpolated according to the magnification, such that at least pixel values of pixels to constitute the blended image are interpolated.

13. The endoscope image processing device according to claim 12 , wherein the processor is programmed to determine only the pixels to constitute the blended image to be pixels gradation values of which are to be interpolated.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2019
From: TAKAHASHI, HIROMI
To: OLYMPUS CORPORATION
Reel/Frame 049242/0597 →
Continuity (2)
Continuation PCTJP2016085898 · Dec 2, 2016
Related Publication 20190269299A1 · Sep 5, 2019
Cited By (3)
US 12,347,123 US 12,482,116 US 12,646,216