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    • 4. 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。
    • 5. 发明授权
    • Optical image measurement device and optical image measurement method
    • 光学图像测量装置和光学图像测量方法
    • US07604351B2
    • 2009-10-20
    • US12055954
    • 2008-03-26
    • Yasufumi FukumaHisashi TsukadaTsutomu KikawaKazuhiko Yumikake
    • Yasufumi FukumaHisashi TsukadaTsutomu KikawaKazuhiko Yumikake
    • A61B3/14
    • G01B9/0203A61B3/102G01B9/02044G01B9/02067G01B9/02091G01B2290/65G01N21/4795
    • An optical image measurement device comprises: an interference-light generator configured to generate an interference light by splitting a low-coherence light into a signal light and a reference light and superimposing the signal light having passed through an eye and the reference light having passed through a reference object; a detector configured to detect the generated interference light; a calculator configured to obtain intensity distribution of the interference light in the eye, based on a result of the detection by the detector; a determining part configured to determine a projection position of the signal light to the eye, based on the obtained intensity distribution; and an image forming part configured to form an image of the eye, based on a result of detection of a new interference light based on a new signal light projected toward the determined projection position and a new reference light having passed through the reference object.
    • 光学图像测量装置包括:干涉光发生器,被配置为通过将低相干光分解成信号光和参考光来产生干涉光,并叠加已经通过眼睛的信号光和已经穿过的参考光 参考对象; 检测器,被配置为检测所产生的干涉光; 配置为基于检测器的检测结果获得眼睛中的干涉光的强度分布的计算器; 确定部件,被配置为基于获得的强度分布来确定信号光对眼睛的投影位置; 以及基于对所确定的投影位置投射的新的信号光的新的干涉光的检测结果和通过所述参照对象的新的基准光,构成为形成所述眼睛的图像的图像形成部。
    • 6. 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)。
    • 10. 发明申请
    • Fundus Observation Device
    • 眼底观察装置
    • US20070222946A1
    • 2007-09-27
    • US11689090
    • 2007-03-21
    • Yasufumi FukumaHiroyuki AokiHisashi TsukadaTsutomu Kikawa
    • Yasufumi FukumaHiroyuki AokiHisashi TsukadaTsutomu Kikawa
    • A61B3/14
    • A61B3/102
    • Image forming part 220 forms a 2-dimensional image of the surface of the fundus oculi Ef (fundus oculi image) and a tomographic image of the fundus oculi Ef. The fundus oculi image 212a and the tomographic image Ga captured at the first examination time and the fundus oculi image 212b and the tomographic image Gb captured at the second examination time are stored in an image storage part 212. Position information generating part 214 generates the position information 213a indicating the position of the tomographic image Ga in the fundus oculi image 212a and the position information 213b indicating the position of the tomographic image Gb in the fundus oculi image 212b. The generated position information 213a and 213b are stored in information storage part 213. Image processing part 230 adjusts the position between the tomographic images Ga and Gb based on such position information 213a and 213b.
    • 图像形成部220形成眼底Ef(眼底图像)的表面的二维图像和眼底Ef的断层图像。 在第一检查时间拍摄的眼底图像212a和眼底图像212b和在第二检查时间捕获的断层图像Gb被存储在图像存储部分212中。 位置信息生成部214生成表示眼底图像212a中的断层图像Ga的位置的位置信息213a和表示眼底图像212b中的断层图像Gb的位置的位置信息213b。 所生成的位置信息213a和213b被存储在信息存储部分213中。图像处理部分230基于这样的位置信息213a和213b来调整断层图像Ga和Gb之间的位置。