IP Library › Granted Patent US 11,723,513
Granted Patent B2
US 11,723,513 · App. 17/009,055 · Granted Aug 15, 2023

Endoscope system and image processing method

Inventors: Kei Kubo (Hino, JP); Makoto Igarashi (Hachioji, JP)
Assignee: OLYMPUS CORPORATION
A61B1/000094A61B1/00045A61B1/044A61B1/046A61B1/0638
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Quick Facts
Patent No.
US 11,723,513
App. No.
17/009,055
Granted
Aug 15, 2023
Kind
B2
Abstract

An endoscope system includes a light source apparatus to generate an illumination light including a first light in a red to near infrared region, a second light in a green region, and a third light in a blue region, an image pickup device to pick up an image of an object and output an image pickup signal, and a processor to generate a first to third color components corresponding to the first to third lights based on an image generated according to the image pickup signal. The processor generates two of three color components that are blue, green, and red included in an observation image by using a second color component, and generates one remaining color component by using a first color component, and generates respective color components of red, green, and blue included in a white light observation image by using the first to third color components.

Claims (72)

1. An endoscope system, comprising:

a light source apparatus configured to generate an illumination light including:

a first light having a center wavelength within a wavelength range from a red region to a near infrared region;

a second light having a center wavelength in a green region; and

a third light having a center wavelength in a blue region;

an image pickup device configured to pick up an image of an object irradiated with the illumination light and output an image pickup signal; and

a processor configured to:

generate:

a first spectral image data corresponding to the first light;

a second spectral image data corresponding to the second light; and

a third spectral image data corresponding to the third light,

based on an image generated according to the image pickup signal; and

based on the illumination light and the first spectral image data and the second spectral image data corresponding to the illumination light, selectively generate two color components of three color components that are a blue component, a green component, and a red component included in a special light observation image that is displayed on a display apparatus at a time of observation of the object by using the second spectral image data, and one remaining color component of the three color components included in the observation image by using the first spectral image data; and

based on the same illumination light and the first to third spectral image data corresponding to the same illumination light, selectively generate a red component included in a white light observation image that is displayed on the display apparatus by using the first spectral image data, generates a green component included in the white light observation image by using the second spectral image data, and generate a blue component included in the white light observation image by using the third spectral image data.

2. The endoscope system according to claim 1 ,

wherein the processor is configured to cause the display apparatus to display the white light observation image in combination with the special light observation image, at the time of observation of the object.

3. The endoscope system according to claim 1 ,

wherein the light source apparatus is configured to generate the illumination light including:

the first light with the center wavelength set to a vicinity of 630 nm;

the second light with the center wavelength set to a vicinity of 540 nm; and

the third light with the center wavelength set to a vicinity of 460 nm.

4. The endoscope system according to claim 1 ,

wherein the processor is configured to, based on the illumination light and the first spectral image data and the second spectral image data corresponding to the illumination light, selectively generate the blue component and the green component of the three color components included in the special light observation image by using the second spectral image data, and the red component of the three color components included in the special light observation image by using the first spectral image data.

5. The endoscope system according to claim 4 ,

wherein the processor is configured to apply structure enhancement processing to the red component generated by using the first spectral image data.

6. An image processing method comprising:

causing a light source apparatus to generate an illumination light including:

a first light having a center wavelength within a wavelength range from a red region to a near infrared region;

a second light having a center wavelength in a green region; and

a third light having a center wavelength in a blue region, as an illumination light;

picking up an image of an object irradiated with the illumination light and outputting an image pickup signal;

generating:

a first spectral image data corresponding to the first light;

a second spectral image data corresponding to the second light;

a third spectral image data corresponding to the third light,

based on an image generated according to the image pickup signal that is outputted;

based on the illumination light and the first spectral image data and the second spectral image data corresponding to the illumination light, selectively generating two color components of three color components that are a blue component, a green component, and a red component included in a special light observation image that is displayed on a display apparatus at a time of observation of the object by using the second spectral image data, and one remaining color component of the three color components included in the special light observation image by using the first spectral image data; and

based on the same illumination light and the first to third spectral image data corresponding to the same illumination light, selectively generating a red component included in a white light observation image that is displayed on the display apparatus by using the first spectral image data, generating a green component included in the white light observation image by using the second spectral image data, and generating a blue component included in the white light observation image by using the third spectral image data.

7. The image processing method according to claim 6 ,

wherein the display apparatus is caused to display the white light observation image in combination with the special light observation image, at the time of observation of the object.

8. The image processing method according to claim 6 ,

wherein the light source apparatus is caused to generate the illumination light including:

the first light with the center wavelength set to a vicinity of 630 nm;

the second light with the center wavelength set to a vicinity of 540 nm; and

the third light with the center wavelength set to a vicinity of 460 nm.

9. The image processing method according to claim 6 ,

wherein the blue component and the green component of the three color components included in the special light observation image are generated by using the second spectral image data, and the red component of the three color components included in the special light observation image is generated by using the first spectral image data.

10. The image processing method according to claim 9 , further comprising:

applying structure enhancement processing to the red component generated by using the first spectral image data.

11. A non-transitory computer-readable storage medium storing instructions that cause a computer to at least perform:

causing a light source apparatus to generate an illumination light including:

a first light having a center wavelength within a wavelength range from a red region to a near infrared region;

a second light having a center wavelength in a green region;

a third light having a center wavelength in a blue region, as an illumination light;

picking up an image of an object irradiated with the illumination light and outputting an image pickup signal;

generating:

a first spectral image data corresponding to the first light;

a second spectral image data corresponding to the second light; and

a third spectral image data corresponding to the third light, based on an image generated according to the image pickup signal that is outputted;

based on the illumination light and the first spectral image data and the second spectral image data corresponding to the illumination light, selectively generating two color components of three color components that are a blue component, a green component, and a red component included in a special light observation image that is displayed on a display apparatus at a time of observation of the object by using the second spectral image data, and one remaining color component of the three color components included in the special light observation image by using the first spectral image data; and

based on the same illumination light and the first to third spectral image data corresponding to the same illumination light, selectively generating a red component included in a white light observation image that is displayed on the display apparatus by using the first spectral image data, generating a green component included in the white light observation image by using the second spectral image data, and generating a blue component included in the white light observation image by using the third spectral image data.

12. The non-transitory computer-readable storage medium according to claim 11 , wherein the display apparatus is caused to display the white light observation image in combination with the special light observation image, at the time of observation of the object.

13. The non-transitory computer-readable storage medium according to claim 11 ,

wherein the light source apparatus is caused to generate the illumination light including:

the first light with the center wavelength set to a vicinity of 630 nm;

the second light with the center wavelength set to a vicinity of 540 nm; and

the third light with the center wavelength set to a vicinity of 460 nm.

14. The non-transitory computer-readable storage medium according to claim 11 ,

wherein the blue component and the green component of the three color components included in the special light observation image are generated by using the second spectral image data, and the red component of the three color components included in the special light observation image is generated by using the first spectral image data.

15. The non-transitory computer-readable storage medium according to claim 14 ,

wherein the instructions further cause the computer to perform:

applying structure enhancement processing to the red component generated by using the first spectral image data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2020
From: KUBO, KEI; IGARASHI, MAKOTO
To: OLYMPUS CORPORATION
Reel/Frame 054373/0364 →
Priority Claims (1)
JP JP2018-038794 · Mar 5, 2018 · national
Continuity (2)
Continuation PCTJP2018046340 · Dec 17, 2018
Related Publication 20210052150A1 · Feb 25, 2021
Cited By (1)
US 12,295,544