发明名称 Endoscope device
摘要 The endoscope device includes a light source control section that controls emission of a narrow band light from a first light source section and a wide band light from a second light source section and light emission amounts of the narrow and wide band light, an imaging section that captures an image of a subject using returned light from the subject, a light amount calculating section that calculates a capturing light amount, a light amount ratio calculating section that calculates a ratio between light emission amounts of the narrow and wide band light, and an image processing section that performs a predetermined image processing. The light source control section controls the light emission amounts in accordance with the capturing light amount and the image processing section changes an image processing condition for adjusting a color tint in accordance with the ratio.
申请公布号 US9179074(B2) 申请公布日期 2015.11.03
申请号 US201113239562 申请日期 2011.09.22
申请人 FUJIFILM Corporation 发明人 Yasuda Hiroaki
分类号 H04N5/235;A61B1/00;A61B1/04;A61B1/045;A61B1/06;H04N5/225 主分类号 H04N5/235
代理机构 Birch, Stewart, Kolasch & Birch, LLP 代理人 Birch, Stewart, Kolasch & Birch, LLP
主权项 1. An endoscope device comprising: a first light source section that emits narrow band light having a predetermined wavelength bandwidth narrowed in accordance with spectral spectrum characteristics of a structure and a component of a living body as a subject; a second light source section that emits wide band light having a wide wavelength bandwidth including a visible region, the first and second light source sections being used for a special light observation of the subject using the narrow band light and the wide band light; a light source control section that controls light emission amounts of said narrow band light from said first light source section and said wide band light from said second light source section and light emission amounts of said narrow band light and said wide band light; an imaging section that captures an image of said subject for the special light observation of the subject using returned light of illumination light in which at least one of the illumination light comprising said narrow band light and said wide band light emitted to said subject is reflected and returned from said subject and outputs captured image information for the special light observation of the subject; a light amount calculating section that calculates a light amount of said returned light as a capturing light amount of the captured image from said captured image information captured by said imaging section; a light amount ratio calculating section that calculates a ratio between a light emission amount of said narrow band light emitted from said first light source section and a light emission amount of said wide band light emitted from said second light source section controlled by said light source control section, the light emission amount of said wide band light being added to the illumination light in order to compensate an insufficient light emission amount of said narrow band light; and an image processing section that performs a predetermined image processing on said captured image information, wherein said light source control section controls the light emission amount of said narrow band light emitted from said first light source unit and the light emission amount of said wide band light emitted from said second light source section in accordance with said capturing light amount of said returned light calculated by said light amount calculating section so that said light amount of said returned light calculated by said light amount calculating section becomes a predetermined value or more necessary for capturing said subject for the special light observation of the subject, and wherein said imaging section outputs said captured image information a gain of which is adjusted so that a white balance of said captured image does not change in accordance with the light emission amount of said narrow band light, the light emission amount of said wide band light and the ratio between the light emission amount of said narrow band light and the light emission amount of said wide band light, and outputs an R-image signal, a G-image signal and a B-image signal as said captured image information when a red color, a green color and a blue color are represented by R, G, B respectively, and wherein said image processing section generates R-image data of a quasi-color image from the G-image signal outputted by said imaging section, and generates G-image data and B-image data of the quasi-color image from the B-image signal outputted by said imaging section, and performs tone correction on the generated R-image data, the generated G-image data and the generated B-image data of said quasi-color image in accordance with said ratio between the light emission amount of said narrow band light and the light emission amount of said wide band light calculated by said light amount ratio calculating section to change an image processing condition for adjusting a color tint of the quasi-color image for the special light observation of the subject.
地址 Tokyo JP