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    • 41. 发明申请
    • OPTICAL IMAGING APPARATUS AND METHOD FOR IMAGING AN OPTICAL IMAGE
    • 光学成像装置和成像光学图像的方法
    • US20120044455A1
    • 2012-02-23
    • US13264227
    • 2010-04-20
    • Futoshi Hirose
    • Futoshi Hirose
    • A61B3/14G01B9/02G02B27/64
    • G01B9/02063A61B3/14G01B9/0203G01B9/02044G01B9/02058G01B9/02068G01B9/02083G01B9/02091G01B11/2441
    • To provide an optical imaging apparatus capable of providing a high lateral resolution in a wide region and easily adjusting prior to imaging for imaging an optical image of an eye to be inspected which is an object, and a method for imaging an optical image. The optical imaging apparatus in which a beam from a light source is used as a measuring beam, and an image of an object is imaged based on intensity of a return beam formed of the measuring beam irradiated to the object has the following: first, an optical device for focusing the measuring beam on the object; next, a aberration detecting device for measuring a aberration of the return beam; and a focus adjusting device for adjusting the optical device based on the aberration detected by the aberration detecting device.
    • 提供一种能够在广泛区域提供高横向分辨率并且在成像之前容易调整的光学成像装置,用于对作为对象的被检查眼睛的光学图像进行成像,以及用于对光学图像进行成像的方法。 使用来自光源的光束作为测量光束的光学成像装置,并且基于由照射到对象物的测量光束形成的返回光束的强度对物体的图像成像如下:首先, 用于将测量光束聚焦在物体上的光学装置; 接下来,用于测量返回光束的像差的像差检测装置; 以及焦点调节装置,用于基于由像差检测装置检测到的像差来调节光学装置。
    • 43. 发明申请
    • OPTICAL TOMOGRAPHIC IMAGING METHOD AND APPARATUS
    • 光学成像方法和装置
    • US20100165289A1
    • 2010-07-01
    • US12636607
    • 2009-12-11
    • Koji NozatoMitsuro SugitaFutoshi HiroseAkihiro Katayama
    • Koji NozatoMitsuro SugitaFutoshi HiroseAkihiro Katayama
    • A61B3/10G01B9/02
    • G01B9/02063A61B3/102G01B9/02002G01B9/02085G01B9/02091
    • An optical tomographic imaging method is provided in which light from a light source is split into a measuring beam and a reference beam, the measuring beam being moved by a scanning optical system and guided to an object to be examined, the reference beam being guided to a reference mirror, and in which a tomogram of the object is generated from a return beam of the measuring beam reflected or scattered by the object and the reference beam reflected by the reference mirror. The method includes acquiring longitudinal sectional information on the object, calculating depth-position information on the object from the longitudinal sectional information, and acquiring a three-dimensional surface image of the object by controlling a reference-path length defined by the reference mirror and a scanning operation of the scanning optical system in accordance with the depth-position information on the object.
    • 提供了一种光学断层摄影方法,其中来自光源的光被分成测量光束和参考光束,测量光束被扫描光学系统移动并被引导到被检查物体,参考光束被引导到 参考镜,其中由物体反射或散射的测量光束的返回光束和由参考反射镜反射的参考光束产生物体的断层图像。 该方法包括获取关于物体的纵截面信息,从纵向剖面信息计算物体上的深度位置信息,以及通过控制由参考镜定义的参考路径长度和获取对象的三维表面图像,以及 根据关于物体的深度位置信息扫描光学系统的扫描操作。
    • 46. 发明申请
    • OPTICAL COHERENCE TOMOGRAPHIC IMAGING APPARATUS AND OPTICAL COHERENCE TOMOGRAPHIC IMAGING METHOD
    • 光学相干图像成像装置和光学相干成像方法
    • US20100002241A1
    • 2010-01-07
    • US12493593
    • 2009-06-29
    • Futoshi Hirose
    • Futoshi Hirose
    • G01B11/02
    • G01B9/02012A61B3/102G01B9/02003G01B9/02034G01B9/02087G01B9/02091G01N21/4795
    • An optical coherence tomographic imaging apparatus which has a light intensity varying portion provided on a first optical path for guiding a measuring beam to an object for varying an intensity of the measuring beam; an illumination condition varying portion for varying an illumination condition of the measuring beam that has passed through the light intensity varying portion for the object between a first illumination condition in which a center part of the measuring beam is not blocked and a second illumination condition in which the center part of the measuring beam is blocked; and an image forming portion for weighting a first tomographic image acquired in the first illumination condition and a second tomographic image acquired in the second illumination condition and composing the weighted first second tomographic images to form a third tomographic image.
    • 一种光学相干断层成像装置,其具有设置在第一光路上的光强度变化部分,用于将测量光束引导到物体以改变测量光束的强度; 照明条件变化部分,用于改变已经通过物体的光强度变化部分的测量光束的照射状态,其中第一照明条件是测量光束的中心部分未被阻挡的第一照明条件和第二照明条件之间,其中, 测量梁的中心部分被阻挡; 以及图像形成部,用于加权在第一照明条件下获取的第一断层图像和在第二照明条件下获取的第二断层图像,并且构成加权的第一第二断层图像以形成第三断层图像。
    • 47. 发明申请
    • OPTICAL COHERENCE TOMOGRAPHIC IMAGING DEVICE AND IMAGING METHOD OF OPTICAL COHERENCE TOMOGRAPHIC IMAGE
    • 光学相干图像成像装置和光学相干图像成像方法
    • US20090285354A1
    • 2009-11-19
    • US12464422
    • 2009-05-12
    • Futoshi HiroseKazuhide MiyataKazuro Yamada
    • Futoshi HiroseKazuhide MiyataKazuro Yamada
    • H05G1/60
    • A61B3/102
    • An optical tomographic imaging device and the like which suppress influence in the case of a measuring beam being truncated by an iris, and can ensure reliability of a tomographic image which is acquired, when imaging the tomographic image of a retina in an eyeground of an examined eye. An optical tomographic imaging device is configured to have an observation unit observing a state of irradiating an examined object with the measuring beam, and imaging a state of the measuring beam being incident on the examined object as an observation image, a recording unit recording the observation image by linking the observation image with a tomographic image by the optical tomographic imaging device, and an evaluating unit evaluating reliability of the tomographic image which is linked with the observation image based on the observation image imaged in the observation unit.
    • 光学层析成像装置等,其在测量光束被虹膜截断的情况下抑制影响,并且可以确保在被检查的眼睛中的视网膜的视网膜的断层图像成像时获得的断层图像的可靠性 眼。 光学层析成像装置被配置为使观察单元观察用测量光束照射被检查物体的状态,并且将入射到被检查物体上的测量光束的状态成像为观察图像;记录单元,记录观察 通过光学层析成像装置将观察图像与断层图像连接起来的图像,以及评价单元,其基于观察单元成像的观察图像评价与观察图像相关联的断层图像的可靠性。
    • 48. 发明申请
    • OPTICAL COHERENCE TOMOGRAPHIC APPARATUS
    • 光学相干计算机
    • US20090091766A1
    • 2009-04-09
    • US12241810
    • 2008-09-30
    • Futoshi Hirose
    • Futoshi Hirose
    • G01B9/02A61B5/05
    • G01B9/02091A61B3/102G01B9/02003G01B9/02028G01B9/02077G01B9/02083
    • An optical coherence tomographic apparatus wherein a reference light path includes at least a first reference light path and a second reference light path having an optical path length shorter than that of the first reference light path, wherein first tomographic information of the object at a first inspection position based on the optical interference using the first reference light path and second tomographic information of the object at a second inspection position based on the optical interference using the second reference light path, are acquired, the second inspection position being shallower than the first inspection position with respect to a depth direction of the object, and wherein a positional deviation a tomographic image at the first inspection position obtained based on the first tomographic information is corrected using the second tomographic information.
    • 一种光学相干断层摄影装置,其中参考光路包括至少第一参考光路和具有比第一参考光路的光路长度短的光程长度的第二参考光路,其中在第一次检查时物体的第一层析信息 基于使用第二参考光路的光学干涉,基于使用第一参考光路的光学干涉的位置和在第二检查位置处的物体的第二断层信息被获取,第二检查位置比第一检查位置浅 相对于物体的深度方向,并且其中使用所述第二层析信息来校正基于所述第一层析信息获得的在所述第一检查位置处的断层图像的位置偏差。