IP Library Granted Patent US 12684218
Granted Patent B2
US 12684218 · App. 18/959,628 · Granted Jul 14, 2026

Endoscope system and method of operating the same

Inventors: Masato Yoshioka (Kanagawa, JP); Satoshi Ozawa (Kanagawa, JP); Makoto Sugizaki (Kanagawa, JP)
Assignee: FUJIFILM Corporation
H04N23/555H04N23/56H04N25/705
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Quick Facts
Patent No.
US 12684218
App. No.
18/959,628
Granted
Jul 14, 2026
Kind
B2
Abstract

An endoscope system according to an exemplary embodiment of the invention includes: an endoscope; an air supply device; and a processor, in which the processor controls emission of illumination light with which a subject is illuminated and measurement light for measuring a distance between a plurality of points on the subject and the endoscope. At a first air supply volume, the subject is imaged by emitting the measurement light and by emitting the illumination light with a light intensity suppressed relative to the measurement light or turning off the illumination light, and a region of the subject is calculated from obtained first distance information. At a second air supply volume, the subject is imaged by emitting the measurement light and by emitting the illumination light with a light intensity suppressed relative to the measurement light or turning off the illumination light, and a region of the subject is calculated from obtained second distance information.

Claims (59)

1 . An endoscope system comprising:

an endoscope that images a subject;

an air supply device that is connected to the endoscope and performs air supply at multiple stages of air volume through a distal end part of the endoscope; and

a processor,

wherein the processor is configured to

control emission of illumination light for illuminating the subject and measurement light for measuring distances between a plurality of points on the subject and the endoscope,

in a state in which the air supply volume is a first air supply volume, acquire a first imaging signal from the endoscope that images the subject by emitting the measurement light and by emitting the illumination light at a light intensity suppressed relative to the measurement light or turning off the illumination light,

in a state in which the air supply volume is a second air supply volume at a stage different from the first air supply volume, acquire a second imaging signal from the endoscope that images the subject by emitting the measurement light and by emitting the illumination light at a light intensity suppressed relative to the measurement light or turning off the illumination light, wherein the first imaging signal and the second imaging signal are acquired at uniform time intervals to measure a speed of distension of the subject,

calculate a region of the subject from first distance information obtained by measuring the distances between the plurality of points on the subject and the endoscope based on the first imaging signal, and

calculate a region of the subject from second distance information obtained by measuring the distances between the plurality of points on the subject and the endoscope based on the second imaging signal.

2 . The endoscope system according to claim 1 ,

wherein the endoscope images the subject by dividing the subject into specific angles according to a field of view, and

the processor is configured to

measure the first distance information based on a plurality of first division imaging signals obtained by imaging the subject for each specific angle, and

measure the second distance information based on a plurality of second division imaging signals obtained by imaging the subject for each specific angle.

3 . The endoscope system according to claim 1 ,

wherein the processor is configured to

discriminate a specific part in the subject,

calculate a region of the specific part from the first distance information, and

calculate a region of the specific part from the second distance information.

4 . The endoscope system according to claim 1 ,

wherein the measurement light is pattern light in which spot light beams are arranged in a lattice form.

5 . The endoscope system according to claim 1 ,

wherein the region is at least one of a length, which is a one-dimensional region, a surface area, which is a two-dimensional region, or a volume, which is a three-dimensional region.

6 . The endoscope system according to claim 1 ,

wherein the endoscope

applies a light intensity threshold value that is a preset threshold value of a light intensity in the emission of the measurement light and the illumination light, and

in a case in which the measurement light is emitted and the illumination light is emitted at a light intensity suppressed relative to the measurement light, performs measurement irradiation by emitting the measurement light at a light intensity equal to or greater than the light intensity threshold value and the illumination light at a light intensity less than the light intensity threshold value.

7 . The endoscope system according to claim 6 ,

wherein the endoscope continuously images the subject by switching between the measurement irradiation and observation irradiation, in which the illumination light is emitted at a light intensity equal to or greater than the light intensity threshold value, and

the processor is configured to display, on a screen, an observation endoscope image generated by imaging the subject with the observation irradiation.

8 . The endoscope system according to claim 6 ,

wherein the endoscope continuously images the subject by switching between the measurement irradiation and measurement point confirmation irradiation, in which the illumination light and the measurement light are emitted at a light intensity equal to or greater than the light intensity threshold value, and

the processor is configured to display, on a screen, a dual-light endoscope image generated by imaging the subject with the measurement point confirmation irradiation.

9 . The endoscope system according to claim 7 ,

wherein the processor is configured to display, on a screen, a measurement light image generated by imaging the subject with the measurement irradiation.

10 . The endoscope system according to claim 9 ,

wherein the processor is configured to perform different screen displays for each type of generated image.

11 . The endoscope system according to claim 6 ,

wherein the endoscope continuously images the subject by switching between the measurement irradiation, observation irradiation, in which the illumination light is emitted at a light intensity equal to or greater than the light intensity threshold value, and measurement point confirmation irradiation, in which the illumination light and the measurement light are emitted at a light intensity equal to or greater than the light intensity threshold value, and

the processor is configured to display, on different screens, an observation endoscope image generated by imaging the subject with the observation irradiation and a dual-light endoscope image generated by imaging the subject with the measurement point confirmation irradiation.

12 . An endoscope system comprising:

an endoscope that images a subject;

an air supply device that is connected to the endoscope and performs air supply at multiple stages of air volume from a distal end part of the endoscope; and

a processor,

wherein the processor is configured to

control emission of illumination light for illuminating the subject and measurement light for measuring distances between the subject and the endoscope,

in a state in which the air supply device supplies air at a first air supply volume, acquire a first imaging signal from the endoscope that images the subject by emitting the measurement light and by emitting the illumination light at a light intensity suppressed relative to the measurement light or turning off the illumination light,

in a state in which the air supply device supplies air at a second air supply volume at a stage different from the first air supply volume, acquire a second imaging signal from the endoscope that images the subject by emitting the measurement light and by emitting the illumination light at a light intensity suppressed relative to the measurement light or turning off the illumination light, wherein the first imaging signal and the second imaging signal are acquired at uniform time intervals to measure a speed of distension of the subject, and

calculate and output an index value representing an extension amount of the subject by using a difference between first distance information obtained by measuring the distances between a plurality of points on the subject and the endoscope based on the first imaging signal and second distance information obtained by measuring the distances between the plurality of points on the subject and the endoscope based on the second imaging signal.

13 . The endoscope system according to claim 12 ,

wherein the processor is configured to calculate a volume of the subject based on the index value.

14 . A method of operating an endoscope system, comprising:

via an air supply device, supplying air at multiple stages of air volume through a distal end part of an endoscope that images a subject;

controlling emission of illumination light for illuminating the subject and measurement light for measuring distances between a plurality of points on the subject and the endoscope;

acquiring a first imaging signal from the endoscope that images the subject by emitting the measurement light and by emitting the illumination light at a light intensity suppressed relative to the measurement light or turning off the illumination light, in a state in which the air supply volume is a first air supply volume;

acquiring a second imaging signal from the endoscope that images the subject by emitting the measurement light and by emitting the illumination light at a light intensity suppressed relative to the measurement light or turning off the illumination light, in a state in which the air supply volume is a second air supply volume at a stage different from the first air supply volume, wherein the first imaging signal and the second imaging signal are acquired at uniform time intervals to measure a speed of distension of the subject;

calculating a region of the subject from first distance information obtained by measuring the distances between the plurality of points on the subject and the endoscope based on the first imaging signal; and

calculating a region of the subject from second distance information obtained by measuring the distances between the plurality of points on the subject and the endoscope based on the second imaging signal.