IP Library › Granted Patent US 9,517,004
Granted Patent B2
US 9,517,004 · App. 14/279,685 · Granted Dec 13, 2016

Information processing apparatus, information processing method and computer readable storage medium

Inventor: Hiroshi Imamura (Kyoto, JP)
Assignee: CANON KABUSHIKI KAISHA
A61B3/0016A61B3/0033A61B3/0058A61B3/102A61B3/1025A61B3/14
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,517,004
App. No.
14/279,685
Granted
Dec 13, 2016
Kind
B2
Abstract

An information processing apparatus for controls, in one image capture region, image capture of a plurality of high-magnification images having a viewing angle smaller than the viewing angle of the image capture region. A presentation unit presents for selection a plurality of basic patterns each representing a distribution of positions at which to respectively capture high-magnification images. An adjustment unit adjusts, in accordance with an instruction of the operator, an image capture condition of the plurality of high-magnification images associated with the basic pattern selected from the plurality of basic patterns. A control unit causes an image capture apparatus to capture the plurality of high-magnification images in the image capture region in accordance with the adjusted image capture condition. An obtaining unit analyzes an image representing the entire image capture region of a magnification lower than that of the high-magnification images and obtains information representing a feature of the image.

Claims (46)

1. An information processing apparatus for controlling, in one image capture region, image capture of a plurality of high-magnification images having a viewing angle smaller than the viewing angle of the image capture region, the apparatus comprising:

a presenter configured to present to an operator for selection a plurality of basic patterns each representing a distribution of positions at which to respectively capture high-magnification images;

an adjuster configured to adjust, in accordance with an instruction of the operator, an image capture condition of the plurality of high-magnification images associated with the basic pattern selected from the plurality of basic patterns;

a controller configured to cause an image capture apparatus to capture the plurality of high-magnification images in the image capture region in accordance with the adjusted image capture condition; and

an obtainer configured to analyze an image representing the entire image capture region of a magnification lower than that of the high-magnification images and to obtain information representing a feature of the image,

wherein said adjuster further adjusts the image capture condition based on the information.

2. The apparatus according to claim 1 , wherein said adjuster adjusts the image capture condition based on at least one of a position of a point representing the selected basic pattern in the image capture region, a constraint condition designated by the operator and defining a range that the image capture condition can take, and a change amount of the image capture condition designated by the operator.

3. The apparatus according to claim 1 , wherein said obtainer obtains the feature of a region included in one of a closed region and an annular region in the image representing the entire image capture region.

4. The apparatus according to claim 1 , further comprising a display controller configured to superimpose the plurality of captured high-magnification images on the image representing the entire image capture region and to cause a display to display the images.

5. The apparatus according to claim 4 , wherein said display controller causes said display to display at least one blood vessel image out of the captured high-magnification images based on the feature of the image associated with one of a blood vessel and a region where a blood cell moves obtained by said obtainer.

6. The apparatus according to claim 4 , wherein said display controller causes said display to display the plurality of captured high-magnification images in synchronism with a periodical timing represented by a biomedical signal measured from a subject.

7. The apparatus according to claim 1 , wherein the image capture condition includes at least one of a position to capture the high-magnification image in the image capture region, an order of image capture, the number of images to be captured at the same position, the viewing angle of the high-magnification image, a pixel size of the high-magnification image, the number of frames of image capture, a frame rate, and an in-focus position.

8. The apparatus according to claim 1 , further comprising a judger configured to judge a frame in which at least one of a degree of luminance abnormality, a magnitude of distortion, a level of noise with respect to a signal, and a displacement amount with respect to a reference frame exhibits a value not less than a predetermined value as an exceptional frame from frames of the high-magnification image, and a necessity of re-obtaining of the plurality of high-magnification images is determined based on the judgment result.

9. The apparatus according to claim 1 , wherein said controller causes the image capture apparatus to capture a tomogram in the image capture region as the high-magnification image.

10. An information processing apparatus for controlling, in one image capture region, image capture of a plurality of high-magnification images having a viewing angle smaller than the viewing angle of the image capture region, the apparatus comprising:

an obtainer configured to analyze an image representing the entire image capture region of a magnification lower than that of the high-magnification images and to obtain information representing a feature of the image;

a determining device configured to determine an image capture condition of the plurality of high-magnification images based on the information;

a controller configured to cause an image capture apparatus to capture the plurality of high-magnification images in the image capture region in accordance with the determined image capture condition; and

a display controller configured to superimpose the plurality of captured high-magnification images on the image representing the entire image capture region and to cause a display to display the superimposed images in synchronism with a periodical timing represented by a biomedical signal measured from a subject.

11. The apparatus according to claim 10 , wherein said obtainer obtains the feature of a region included in one of a closed region and an annular region in the image representing the entire image capture region.

12. The apparatus according to claim 10 , wherein said display controller causes said display to display at least one blood vessel image out of the captured high-magnification images based on the feature of the image associated with one of a blood vessel and a region where a blood cell moves obtained by said obtainer.

13. The apparatus according to claim 10 , wherein the image capture condition includes at least one of a position to capture the high-magnification image in the image capture region, an order of image capture, the number of images to be captured at the same position, the viewing angle of the high-magnification image, a pixel size of the high-magnification image, the number of frames of image capture, a frame rate, and an in-focus position.

14. The apparatus according to claim 10 , further comprising a judger configured to judge a frame in which at least one of a degree of luminance abnormality, a magnitude of distortion, a level of noise with respect to a signal, and a displacement amount with respect to a reference frame exhibits a value not less than a predetermined value as an exceptional frame from frames of the high-magnification image, and a necessity of re-obtaining of the plurality of high-magnification images is determined based on the judgment result.

15. The apparatus according to claim 10 , wherein said controller causes the image capture apparatus to capture a tomogram in the image capture region as the high-magnification image.

16. An information processing method executed by an information processing apparatus for controlling, in a given image capture region, image capture of a plurality of high-magnification images having a viewing angle smaller than the viewing angle of the image capture region, the method comprising:

presenting to an operator for selection a plurality of basic patterns each representing a distribution of positions at which to respectively capture high-magnification images;

adjusting, in accordance with an instruction of the operator, an image capture condition of the plurality of high-magnification images associated with the basic pattern selected from the plurality of basic patterns;

causing an image capture apparatus to capture the plurality of high-magnification images in the image capture region in accordance with the adjusted image capture condition; and

analyzing an image representing the entire image capture region of a magnification lower than that of the high-magnification images to obtain information representing a feature of the image,

wherein the image capture condition is adjusted based on the information.

17. An information processing method executed by an information processing apparatus for controlling, in a given image capture region, image capture of a plurality of high-magnification images having a viewing angle smaller than the viewing angle of the image capture region, the method comprising:

analyzing an image representing the entire image capture region of a magnification lower than that of the high-magnification images and obtain information representing a feature of the image;

determining an image capture condition of the plurality of high-magnification images based on the information;

causing an image capture apparatus to capture the plurality of high-magnification images in the image capture region in accordance with the determined image capture condition; and

superimposing the plurality of captured high-magnification images on the image representing the entire image capture region and causing a display unit to display the superimposed images in synchronism with a periodical timing represented by a biomedical signal measured from a subject.

18. A non-transitory computer readable storage medium storing a computer program for causing a computer to control an information processing apparatus for controlling, in one image capture region, image capture of a plurality of high-magnification images having a viewing angle smaller than the viewing angle of the image capture region, the computer program causing the computer to function as units comprising:

a presenter configured to present to an operator for selection a plurality of basic patterns each representing a distribution of positions at which to respectively capture high-magnification images;

an adjuster configured to adjust, in accordance with an instruction of the operator, an image capture condition of the plurality of high-magnification images associated with the basic pattern selected from the plurality of basic patterns;

a controller configured to cause an image capture apparatus to capture the plurality of high-magnification images in the image capture region in accordance with the adjusted image capture condition; and

an obtainer configured to analyze an image representing the entire image capture region of a magnification lower than that of the high-magnification images and to obtain information representing a feature of the image,

wherein said adjuster further adjusts the image capture condition based on the information.

19. A non-transitory computer readable storage medium storing a computer program for causing a computer to control an information processing apparatus for controlling, in one image capture region, image capture of a plurality of high-magnification images having a viewing angle smaller than the viewing angle of the image capture region, the computer program causing the computer to function as units comprising:

an obtainer configured to analyze an image representing the entire image capture region of a magnification lower than that of the high-magnification images and to obtain information representing a feature of the image;

a determining device configured to determine an image capture condition of the plurality of high-magnification images based on the information;

a controller configured to cause an image capture apparatus to capture the plurality of high-magnification images in the image capture region in accordance with the determined image capture condition; and

a display controller configured to superimpose the plurality of captured high-magnification images on the image representing the entire image capture region and to cause a display unit to display the superimposed images in synchronism with a periodical timing represented by a biomedical signal measured from a subject.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2014
From: IMAMURA, HIROSHI
To: CANON KABUSHIKI KAISHA
Reel/Frame 033587/0344 →
Priority Claims (1)
JP 2013-111332 · May 27, 2013 · national
Continuity (1)
Related Publication 20140347627A1 · Nov 27, 2014