IP Library › Granted Patent US 8,675,046
Granted Patent B2
US 8,675,046 · App. 12/633,559 · Granted Mar 18, 2014

Endoscope apparatus and control method thereof

Inventors: Masahiro Kubo (Tokyo, JP); Makoto Kagaya (Tokyo, JP); Masayuki Takahira (Tokyo, JP); Masayuki Kuramoto (Tokyo, JP); Shuichi Ishii (Tokyo, JP); Ryo Takahashi (Tokyo, JP)
Assignee: Fujifilm Corporation
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Quick Facts
Patent No.
US 8,675,046
App. No.
12/633,559
Granted
Mar 18, 2014
Kind
B2
Abstract

A narrow-band observation image and a spectral estimation image are automatically switched based on the type of a subject. In an endoscopic image obtained by a scope, judgment is made as to whether the endoscopic image was obtained by close-up imaging or by distant-view imaging. When it is judged that the endoscopic image was obtained by distant-view imaging, white light is output from a light source unit and a spectral estimation image is output. When it is judged that the endoscopic image was obtained by close-up imaging, narrow-band light is output from the light source unit and a narrow-band observation image that has been obtained when the narrow-band light was output is output.

Claims (22)

1. An endoscope apparatus, comprising:

a light source unit that outputs white light and narrow-band light of a predetermined wavelength band to a subject;

a scope that obtains an endoscopic image by imaging the subject to which the white light or the narrow-band light has been output from the light source unit;

spectral image generation means that generates a spectral estimation image by performing a matrix operation on the endoscopic image obtained by the scope when the white light was output to the subject;

imaging state judgment means that judges whether the endoscopic image obtained by the scope has been obtained by a close-up imaging or by a distant-view imaging; and

imaging control means that controls imaging in such a manner that when the imaging state judgment means has judged that the endoscopic image was obtained by the distant-view imaging, the white light is output from the light source unit and the spectral estimation image generated by the spectral image generation means is output, and when the imaging state judgment means has judged that the endoscopic image was obtained by the close-up imaging, the narrow-band light is output from the light source unit and a narrow-band observation image that has been obtained when the narrow-band light was output is output,

wherein the light source unit includes a diaphragm for adjusting an amount of light illuminating the subject,

wherein the imaging control means comprises a function of automatically adjusting the diaphragm, without a user interaction, so that a brightness of the endoscopic image becomes a predetermined value, and

wherein the imaging state judgment means judges, based on the aperture of the diaphragm, whether the endoscopic image was obtained by the close-up imaging or by the distant-view imaging.

2. An endoscope apparatus, as defined in claim 1 , wherein the close-up imaging is distinguished from the distant-view imaging based on a distance between the subject and a leading end of the scope.

3. An endoscope apparatus, as defined in claim 1 , wherein the distant-view imaging is applied when a leading end of the scope is placed farther than a predetermined distance from the subject, and the close-up imaging is applied when the leading end of the scope is placed closer than the predetermined distance from the subject.

4. An endoscope apparatus, as defined in claim 1 , wherein an imaging format is determined after an amount of an opening of the diaphragm and the brightness of endoscopic image are determined.

5. An endoscope apparatus, as defined in claim 1 , wherein the spectral image generation means comprises a function of generating a spectral estimation image.

6. A method for controlling an endoscope apparatus that includes a light source unit that outputs white light and narrow-band light of a predetermined wavelength band to a subject, a scope that obtains an endoscopic image by imaging the subject to which the white light or the narrow-band light has been output from the light source unit, and spectral image generation means that generates a spectral estimation image by performing a matrix operation on the endoscopic image obtained by the scope when the white light was output to the subject, the method comprising:

judging whether the endoscopic image obtained by the scope has been obtained by a close-up imaging or by a distant-view imaging; and

when it is judged that the endoscopic image was obtained by the distant-view imaging, outputting the white light from the light source unit and outputting the spectral estimation image generated by the spectral image generation means, and when it is judged that the endoscopic image was obtained by the close-up imaging, outputting the narrow-band light from the light source unit and outputting a narrow-band observation image obtained when the narrow-band light was output,

wherein the light source unit includes a diaphragm for adjusting an amount of light illuminating the subject,

wherein the judging that the endoscopic image was obtained by the distant-view imaging includes a function of automatically adjusting the diaphragm, without a user interaction, so that a brightness of the endoscopic image becomes a predetermined value, and

wherein, based on the aperture of the diaphragm, it is judged whether the endoscopic image was obtained by the close-up imaging or by the distant-view imaging.

7. The method of claim 6 , wherein the close-up imaging is distinguished from the distant-view imaging based on a distance between the subject and a leading end of the scope.

8. The method of claim 6 , wherein the distant-view imaging is applied when a leading end of the scope is placed farther than a predetermined distance from the subject, and the close-up imaging is applied when the leading end of the scope is placed closer than the predetermined distance from the subject.

9. The method of claim 6 , wherein the spectral image generation means comprises a function of generating a spectral estimation image.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2010
From: KUBO, MASAHIRO; KAGAYA, MAKOTO; TAKAHIRA, MASAYUKI; KURAMOTO, MASAYUKI; ISHII, SHUICHI; TAKAHASHI, RYO
To: FUJIFILM CORPORATION
Reel/Frame 023770/0126 →
Priority Claims (1)
JP 2008-313038 · Dec 9, 2008 · national
Continuity (1)
Related Publication 20100141747A1 · Jun 10, 2010