ENDOSCOPE APPARATUS, METHOD OF OPERATING ENDOSCOPE APPARATUS, AND RECORDING MEDIUM
First Claim
1. An endoscope apparatus, comprising:
- an imaging element configured to generate imaging signals by imaging a subject and include a plurality of pixels disposed in a matrix pattern, an imaging area in which the plurality of pixels are disposed including a scanning area, the imaging signals being read from at least a part of the pixels of each row in the scanning area;
a video signal generating circuit configured to generate video signals from the imaging signals;
an illuminator including a light source configured to generate illumination light emitted to the subject; and
one or more controllers configured tocontrol the imaging element and the illuminator in accordance with a set operation mode among a plurality of operation modes, the plurality of operation modes including a first operation mode and a second operation mode,control the illuminator such that the light source is continuously controlled to be turned on in exposure periods of all of the pixels disposed in the scanning area, in a case in which the first operation mode is set,control the imaging element such that at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other, in a case in which the second operation mode is set, andcontrol the illuminator such that the light source is turned on in a period in which at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other, in a case in which the second operation mode is set.
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Accused Products
Abstract
An endoscope apparatus includes an imaging element, a video signal generating circuit, an illuminator, and one or more controllers. An imaging area in which a plurality of pixels are disposed includes a scanning area. In a case in which a first operation mode is set, the one or more controllers control the imaging element such that at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other. In a case in which a second operation mode is set, the one or more controllers control the illuminator such that the light source is turned on in a period in which at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other.
14 Citations
22 Claims
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1. An endoscope apparatus, comprising:
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an imaging element configured to generate imaging signals by imaging a subject and include a plurality of pixels disposed in a matrix pattern, an imaging area in which the plurality of pixels are disposed including a scanning area, the imaging signals being read from at least a part of the pixels of each row in the scanning area; a video signal generating circuit configured to generate video signals from the imaging signals; an illuminator including a light source configured to generate illumination light emitted to the subject; and one or more controllers configured to control the imaging element and the illuminator in accordance with a set operation mode among a plurality of operation modes, the plurality of operation modes including a first operation mode and a second operation mode, control the illuminator such that the light source is continuously controlled to be turned on in exposure periods of all of the pixels disposed in the scanning area, in a case in which the first operation mode is set, control the imaging element such that at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other, in a case in which the second operation mode is set, and control the illuminator such that the light source is turned on in a period in which at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other, in a case in which the second operation mode is set. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20)
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21. A method of operating an endoscope apparatus, comprising:
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a first step; a second step; and a third step, wherein the endoscope apparatus includes; an imaging element configured to generate imaging signals by imaging a subject and include a plurality of pixels disposed in a matrix pattern, an imaging area in which the plurality of pixels are disposed including a scanning area, the imaging signals being read from at least a part of the pixels of each row in the scanning area; a video signal generating circuit configured to generate video signals from the imaging signals; an illuminator including a light source configured to generate illumination light emitted to the subject; and one or more controllers configured to control the imaging element and the illuminator in accordance with a set operation mode among a plurality of operation modes, the plurality of operation modes including a first operation mode and a second operation mode, control the illuminator such that the light source is continuously controlled to be turned on in exposure periods of all of the pixels disposed in the scanning area in the first step, in a case in which the first operation mode is set, control the imaging element such that at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other in the second step, in a case in which the second operation mode is set, and control the illuminator such that the light source is turned on in a period in which at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other in the third step, in a case in which the second operation mode is set.
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22. A non-transitory computer-readable recording medium having a program for causing one or more controllers of an endoscope apparatus to execute a first step, a second step, and a third step recorded thereon,
the endoscope apparatus including: -
an imaging element configured to generate imaging signals by imaging a subject and include a plurality of pixels disposed in a matrix pattern, an imaging area in which the plurality of pixels are disposed including a scanning area, the imaging signals being read from at least a part of the pixels of each row in the scanning area; a video signal generating circuit configured to generate video signals from the imaging signals; an illuminator including a light source configured to generate illumination light emitted to the subject; and the one or more controllers configured to control the imaging element and the illuminator in accordance with a set operation mode among a plurality of operation modes, the plurality of operation modes including a first operation mode and a second operation mode, control the illuminator such that the light source is continuously controlled to be turned on in exposure periods of all of the pixels disposed in the scanning area in the first step, in a case in which the first operation mode is set, control the imaging element such that at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other in the second step, in a case in which the second operation mode is set, and control the illuminator such that the light source is turned on in a period in which at least parts of the exposure periods of the pixels disposed in at least a part of the scanning area overlap each other in the third step, in a case in which the second operation mode is set.
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Specification