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    • 6. 发明授权
    • Optical image measurement device
    • 光学图像测量装置
    • US07643154B2
    • 2010-01-05
    • US11961195
    • 2007-12-20
    • Tsutomu KikawaHiroaki OkadaTakefumi HayashiHisashi TsukadaYasufumi Fukuma
    • Tsutomu KikawaHiroaki OkadaTakefumi HayashiHisashi TsukadaYasufumi Fukuma
    • G01B11/02
    • G01B9/02068A61B3/10A61B3/102A61B3/12G01B9/0203G01B9/02044G01B9/02064G01B9/02089G01B9/02091G01B2290/65
    • An optical image measurement device comprises: a light source configured to emit a low-coherence light; an interference-light generator configured to generate an interference light, by splitting the low-coherence light into a signal light and a reference light, and superimposing the signal light passed through a measurement object and the reference light passed through a reference object; a changer configured to change a difference in optical path length; a detector configured to detect the interference light; an image forming part configured to form an image of the measurement object within a predetermined frame based on the result of the detection; an analyzer configured to analyze the image, and specify a position of the image within the frame; and a controller configured to control the changer based on the specified position to change the difference so that an image newly formed is placed in a predetermined position within the frame.
    • 光学图像测量装置包括:被配置为发射低相干光的光源; 干涉光发生器,被配置为通过将低相干光分解为信号光和参考光来产生干涉光,并且叠加通过测量对象的信号光和通过参考对象的参考光; 更换器,被配置为改变光路长度的差异; 检测器,被配置为检测干涉光; 图像形成部,被配置为基于检测结果在预定帧内形成测量对象的图像; 分析器,其被配置为分析所述图像,并且指定所述图像在所述帧内的位置; 以及控制器,其被配置为基于所述指定位置来控制所述更换器以改变所述差异,使得新形成的图像被放置在所述帧内的预定位置。
    • 7. 发明申请
    • Fundus Observation Device
    • 眼底观察装置
    • US20070188704A1
    • 2007-08-16
    • US11675657
    • 2007-02-16
    • Yasufumi FukumaHisashi TsukadaTsutomu Kikawa
    • Yasufumi FukumaHisashi TsukadaTsutomu Kikawa
    • A61B3/10
    • A61B3/102
    • Technology is provided, capable of easily acquiring high precision tomographic images of the desired observation site of the fundus oculi. A fundus observation device 1 is provided, comprising: an interferometer that generates interference light LC from a reference light LR via a reference mirror 174 and a signal light LS that reaches the fundus oculi Ef after low-coherence light L0 is split into that signal light LS and reference light LR; a CCD 184 that detects interference light LC; an image forming part 220 that forms image data G of a tomographic image based on detection results of the CCD 184; a display part 240A; an operation part 240B for specifying an observation mode (observation site); and a reference mirror drive mechanism 243. The image data G of a tomographic image includes image data of a normal image G (Re) and an inverse image G (Im). A controlling part 210 that displays the selected normal image G (Re) or inverse image G (Im) on the display part 240A along with moving the reference mirror 174 by controlling the reference mirror drive mechanism 243 based on the selected observation mode.
    • 提供技术,能够容易地获取眼底的所需观察部位的高精度断层图像。 提供了一种眼底观察装置1,其包括:干涉仪,其经由参考镜174产生来自参考光LR的干涉光LC和在低相干光L 0被分割成该信号之后到达眼底Ef的信号光LS 光LS和参考光LR; 检测干涉光LC的CCD184; 基于CCD 184的检测结果形成断层图像的图像数据G的图像形成部220; 显示部分240A; 用于指定观察模式(观察部位)的操作部240B; 和参考镜驱动机构243。 断层图像的图像数据G包括正常图像G(Re)和逆图像G(Im)的图像数据。 控制部210,通过基于所选择的观察模式控制参考镜驱动机构243,在显示部240A上显示所选择的正常图像G(Re)或反转图像G(Im)。