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    • 1. 发明授权
    • Optical equipment with a semitransparent mirror
    • 具有半透明镜的光学设备
    • US5039213A
    • 1991-08-13
    • US416608
    • 1989-10-03
    • Kenji YamadaYoichi Iki
    • Kenji YamadaYoichi Iki
    • G02B5/08G02B27/10
    • G02B27/144
    • In an optical system a semitransparent mirror which is disposed at a predetermined angle with respect to an optical axis and which has a semitransparent surface (for instance, a front surface) and a transparent surface (for instance, a rear surface) is so designed as to split a diverging or converging light incident thereon into a first optical path of light flux reflected from the semitransparent surface and a second light path of light flux transmitted through both the semitransparent and transparent surfaces. Furthermore, in order that the position of an image focused by the light flux reflected from the transparent surface coincides with the position of an image focused by the light flux reflected from the semitransparent surface, the transparent surface is made non-parallel with the semitransparent surface of the semitransparent mirror. The thickness of the mirror decreases or increases toward image planes depending upon whether converging light flux or diverging light flux is incident on the mirror.
    • 在光学系统中,相对于光轴以预定角度设置并且具有半透明表面(例如,前表面)和透明表面(例如,后表面)的半透明镜被设计为 将入射到其上的发散光或会聚光分成由半透明表面反射的光束的第一光路和透过透明半透明表面的光束的第二光路。 此外,为了使由透明面反射的光束聚焦的图像的位置与由半透明面反射的光束聚焦的图像的位置一致,透明面与半透明面不平行 的半透明镜。 根据会聚光束或发散光束是否入射到反射镜上,反射镜的厚度朝着图像平面减小或增加。
    • 5. 发明授权
    • Microscope system and image processing method used for observation of a specimen
    • 用于观察样本的显微镜系统和图像处理方法
    • US08094914B2
    • 2012-01-10
    • US11661235
    • 2005-09-15
    • Yoichi IkiYutaka SasakiMikes JosefSvoboda MiroslavSedlak Roman
    • Yoichi IkiYutaka SasakiMikes JosefSvoboda MiroslavSedlak Roman
    • G06K9/00G06K9/32
    • G02B21/367
    • An object of the present invention is to provide a microscope system and an image processing method which are practical and capable of imaging a specimen efficiently in a short period of time and also ensuring reduction of the data amount of a generated image. Accordingly, the microscope system includes a storage section 24, 27 which stores identification information of a specimen 10A, a macro image and a micro image in a correlated manner, a stage member 11 on which the specimen as an observation target is mounted, an acquiring section 39B, 40 which acquires identification information of the specimen, a first display section 16, 22, 40, 47, 24 which displays a macro image of the specimen by reading a macro image correlated with the identification information from the storage section (or by imaging the specimen), a second display section 12 to 22, 47, 40, 24 which displays a micro image of the specimen by imaging the specimen, and an additional storing section 40 which additionally stores in the storage section in accordance with instruction from outside a micro image displayed on the second display section in a correlated manner with the macro image displayed on the first display section and the identification information acquired by the acquiring section.
    • 本发明的目的是提供一种实用且能够在短时间内有效地对样本进行成像并且还确保减少生成的图像的数据量的显微镜系统和图像处理方法。 因此,显微镜系统具有以相关方式存储检体10A,宏观图像和微图像的识别信息的存储部24,27,安装作为观察对象的检体的台部件11, 通过从存储部读取与识别信息相关的宏图像,或者从存储部分读取与标识信息相关的宏图像,或者从存储部分读取与该识别信息相关的宏图像的第一显示部分16,22,40,47,24,显示样本的宏观图像的部分39B,40, 成像试样),第二显示部分12至22,47,40,24,其通过使样本成像来显示样本的微观图像;以及附加存储部分40,其根据来自外部的指令另外存储在存储部分中 以与第一显示部显示的宏观图像相关联的方式显示在第二显示部上的微图像和由ac获取的识别信息 令人兴奋的部分。
    • 7. 发明申请
    • Microscope System And Image Processing Method
    • 显微镜系统和图像处理方法
    • US20080095424A1
    • 2008-04-24
    • US11661235
    • 2005-09-15
    • Yoichi IkiYutaka SasakiMikes JosefSvoboda MiroslavSedlak Roman
    • Yoichi IkiYutaka SasakiMikes JosefSvoboda MiroslavSedlak Roman
    • G06K9/00
    • G02B21/367
    • An object of the present invention is to provide a microscope system and an image processing method which are practical and capable of imaging a specimen efficiently in a short period of time and also ensuring reduction of the data amount of a generated image. Accordingly, the microscope system includes a storage section 24, 27 which stores identification information of a specimen 10A, a macro image and a micro image in a correlated manner, a stage member 11 on which the specimen as an observation target is mounted, an acquiring section 39B, 40 which acquires identification information of the specimen, a first display section 16, 22, 40, 47, 24 which displays a macro image of the specimen by reading a macro image correlated with the identification information from the storage section (or by imaging the specimen), a second display section 12 to 22, 47, 40, 24 which displays a micro image of the specimen by imaging the specimen, and an additional storing section 40 which additionally stores in the storage section in accordance with instruction from outside a micro image displayed on the second display section in a correlated manner with the macro image displayed on the first display section and the identification information acquired by the acquiring section.
    • 本发明的目的是提供一种实用且能够在短时间内有效地对样本进行成像并且还确保减少生成的图像的数据量的显微镜系统和图像处理方法。 因此,显微镜系统具备存储部件24,27,该存储部件24,27以相关的方式存储试样10A的识别信息,宏观图像和微观图像,安装作为观察对象的试样的载物台11, 获取部件39B,40,其获取样本的识别信息;第一显示部分16,22,40,47,24,其通过从存储部分读取与识别信息相关的宏图像来显示样本的宏观图像 或通过对样本进行成像),通过使样本成像来显示样本的微观图像的第二显示部分12至22,47,40,24以及根据指令另外存储在存储部分中的附加存储部分40 从显示在第二显示部分上的微图像与第一显示部分上显示的宏图像相关联的微图像和由第一显示部分获取的识别信息 获取部分。
    • 8. 发明授权
    • Ophthalmologic device having means for classifying the picture data in
the frame memory into the bright point regions and the mask regions
    • 具有用于将帧存储器中的图像数据分类为亮点区域和掩模区域的装置的眼科装置
    • US5815240A
    • 1998-09-29
    • US838778
    • 1997-04-10
    • Yoichi Iki
    • Yoichi Iki
    • A61B3/10A61B3/103A61B3/107
    • A61B3/107A61B3/103
    • An ophthalmologic device measures corneal curvature and ocular refractive power of the eye by imaging the positions of a plurality of bright points which result from plural light rays and by imaging a predetermined pattern of the eye. The ophthalmologic device includes a frame memory to store picture data of the eye which has been imaged by a video camera. The picture data in memory is classified into bright spot regions in which bright spots are present one at a time, a corneal reflected image region in which a reflected image from the cornea of a predetermined pattern is projected into the fundus of the eye, and mask regions in which the bright points and the corneal reflected image are not present. The picture data having a luminosity greater than a predetermined threshold value is stored for later calculation of a centroid of the bright points to measure the corneal curvature of the eye.
    • 眼科装置通过对由多个光线产生的多个亮点的位置进行成像并通过对眼睛的预定图案进行成像来测量眼睛的角膜曲率和眼屈光力。 眼科装置包括用于存储由摄像机成像的眼睛的图像数据的帧存储器。 存储器中的图像数据被分类为其中一次一个地存在亮点的亮点区域,其中来自预定图案的角膜的反射图像投射到眼睛的眼底中的角膜反射图像区域,以及掩模 亮点和角膜反射图像不存在的区域。 存储具有大于预定阈值的亮度的图像数据以用于稍后计算亮点的质心以测量眼睛的角膜曲率。