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    • 1. 发明申请
    • Complex type microscopic device
    • 复杂型微型器件
    • US20100091362A1
    • 2010-04-15
    • US12588387
    • 2009-10-14
    • Hisashi IsozakiFumio OhtomoKazuo Nunokawa
    • Hisashi IsozakiFumio OhtomoKazuo Nunokawa
    • G02B21/36G21K7/00
    • G02B21/367H01J37/226H01J37/228H01J37/28
    • A complex type microscopic device includes a slider unit moving a stage, an optical microscope, a scanning electron microscope with an electron axis intersecting with an optical axis of the optical microscope, an optical measurement/observation unit having a magnification between those of the scanning electron microscope and the optical microscope and co-using an objective lens with the optical microscope, and a control unit controlling the entire device, and a display unit having a display screen. During display of a low-magnification optical microscopic image, the control unit controls the display unit to display, on the image, a representation to designate an area to be observed at a magnification of the optical measurement/observation unit, and to display, on the image, another representation to designate an area to be observed at a magnification of the scanning electron microscope during display of a high-magnification optical microscopic image.
    • 复合型显微镜装置包括:移动台的滑块单元,光学显微镜,具有与光学显微镜的光轴相交的电子轴的扫描电子显微镜;具有扫描电子的放大率的光学测量/观察单元 显微镜和光学显微镜,并与光学显微镜共同使用物镜,以及控制整个装置的控制单元和具有显示屏的显示单元。 在显示低倍率光学显微镜图像期间,控制单元控制显示单元在图像上显示表示以在光学测量/观察单元的放大倍率下观察的区域,并且在 该图像是在显示高倍率光学显微镜图像期间指定在扫描电子显微镜的放大倍率下观察的区域的另一表示。
    • 3. 发明授权
    • Ophthalmoscopic instrument having working position detecting means
    • 具有工作位置检测装置的眼科仪器
    • US4712894A
    • 1987-12-15
    • US473454
    • 1983-03-10
    • Kazuo Nunokawa
    • Kazuo Nunokawa
    • A61B3/113A61B3/15A61B3/14
    • A61B3/15A61B3/113
    • Ophthalmoscopic instrument having working position detector. An object lens has an optical axis and is adapted to be positioned to confront a patient's eye at a working distance. The patient's cornea has a center of curvature. An observing optical system focuses a light beam reflected from the eye and passing through an objective lens on an image plane. A detecting system detects that the eye is properly positioned with respect to the objective lens. The detecting system includes at least two apertures allowing light beams from a single target mark to pass therethrough. A target mark projection system projects the beams passed through the respective apertures in directions crossing each other on the optical axis of the objective lens so that a target mark image is formed at the center of curvature of the cornea when the eye is properly positioned with respect to the objective lens. A target mark image plane forms a target mark image by mirror reflection from the cornea of the light beams projected through the target mark projection system when the patient's eye is properly positioned, and a target mark image observation system provides observation of the target mark image on the target mark image plane in superposition with a reference mark.
    • 眼科仪器具有工作位置检测器。 物镜具有光轴并适于被定位成在工作距离处与患者的眼睛相对。 患者的角膜具有曲率中心。 观察光学系统将从眼睛反射的光束聚焦在图像平面上的物镜上。 检测系统检测到眼睛相对于物镜正确定位。 检测系统包括允许来自单个目标标记的光束通过的至少两个孔。 目标标记投影系统将通过相应孔的光束投射在物镜的光轴上彼此交叉的方向上,使得当眼睛适当地定位时,在角膜的曲率中心处形成目标标记图像 到物镜。 目标标记图像平面通过在患者眼睛适当定位时通过目标标记投影系统投射的光束的角膜通过镜像反射而形成目标标记图像,并且目标标记图像观察系统提供对目标标记图像的观察 目标标记图像平面与参考标记重叠。
    • 6. 发明授权
    • Working distance detecting device for ophthalmic apparatus
    • 眼科装置工作距离检测装置
    • US4435051A
    • 1984-03-06
    • US269670
    • 1981-06-03
    • Kazuo Nunokawa
    • Kazuo Nunokawa
    • A61B3/10A61B3/14G01B11/00G03B29/00
    • A61B3/145
    • An eye fundus camera is disclosed having a working distance detecting device. The eye fundus camera includes an illuminating system having a ring-shaped aperture through which the illuminating light beam is projected to the eye to be examined through an objective lens. The working distance detecting device includes an opaque portion formed in said ring-shaped aperture and having a width in circumferential direction. A light receiving portion is provided around the objective lens at a position corresponding to the opaque portion in the image of the ring-shaped aperture formed by beams of the illuminating light reflected from the cornea of the eye so that the working distance can be detected based on the width of the opaque portion of the image of the ring-shaped aperture.
    • 公开了一种具有工作距离检测装置的眼底照相机。 眼底照相机包括具有环形孔的照明系统,照明光束通过该环形孔投射到眼睛以通过物镜进行检查。 工作距离检测装置包括形成在所述环形孔中并具有圆周方向宽度的不透明部分。 在与由眼睛的角膜反射的照明光的光束形成的环状孔的图像中的不透明部分对应的位置处,在物镜周围设置受光部,使得可以基于眼睛的角膜检测工作距离 在环形孔的图像的不透明部分的宽度上。