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    • 3. 发明授权
    • Microscope
    • 显微镜
    • US5777783A
    • 1998-07-07
    • US799865
    • 1997-02-14
    • Itaru EndouYasushi KanekoYoshihiro KawanoKazuo Kajitani
    • Itaru EndouYasushi KanekoYoshihiro KawanoKazuo Kajitani
    • G02B21/18G02B21/36G02B21/06G02B21/00
    • G02B21/36
    • A microscope has an optical system in which the number of photographing optical paths can be increased. The optical system includes a light source, an illuminating optical system for radiating the illuminating light to a sample, an objective lens which is opposed to the sample, an imaging lens, which is arranged in an optical path of light passed through the objective lens, a first beam splitting block, arranged in an optical path between the objective lens and the primary image, for splitting the light passed through the imaging lens into at least three different directions, a second beam splitting block for splitting one of the light split by the first beam splitting block into a plurality of directions, an observation optical path which receives the light split by the second beam splitting block, and a plurality of photographing optical paths provided for the split light, wherein images of the same magnification are formed.
    • 显微镜具有可以增加拍摄光路数量的光学系统。 光学系统包括光源,用于将照明光照射到样本的照明光学系统,与样本相对的物镜,配置在通过物镜的光的光路中的成像透镜, 第一分束块,布置在物镜和主图像之间的光路中,用于将通过成像透镜的光分成至少三个不同的方向;第二光束分割块,用于将光分离的光 第一分束块分成多个方向,接收由第二分束块分割的光的观察光路,以及为分裂光设置的多个摄影光路,其中形成相同倍率的图像。
    • 4. 发明授权
    • Microscope optical system
    • 显微镜光学系统
    • US08964285B2
    • 2015-02-24
    • US13425607
    • 2012-03-21
    • Kazuo KajitaniTatsuji Higuchi
    • Kazuo KajitaniTatsuji Higuchi
    • G02B21/02G02B25/00G02B21/20
    • G02B21/02G02B21/20G02B25/001
    • Observation over a superwide field of view is possible with a short, lightweight, and inexpensive eyepiece optical system and a binocular barrel. A microscope optical system includes an objective optical system configured to collect light from a specimen; an imaging optical system configured to image the light coming from the specimen and collected by the objective optical system; and an eyepiece optical system configured to magnify the image of the specimen formed by the imaging optical system and form a virtual image in an eye of an observer, wherein the following conditional expressions are satisfied, M=Fntl/Fob×250/Fne  (1) Fntl=Ftl×Kt  (2) Fne=Fe×Kt  (3) 0.4
    • 通过短,轻,便宜的目镜光学系统和双目镜筒,可以观察超宽视场。 显微镜光学系统包括物镜光学系统,被配置为收集来自样本的光; 成像光学系统,被配置为对来自所述样本的光进行成像并由所述物镜光学系统收集; 以及目镜光学系统,被配置为放大由所述成像光学系统形成的样本的图像,并在观察者的眼睛中形成虚拟图像,其中满足以下条件表达式:M = Fnt1 / Fob×250 / Fne )Fntl = Ft1×Kt(2)Fne = Fe×Kt(3)0.4
    • 5. 发明授权
    • Reflected fluorescence microscope
    • 反射荧光显微镜
    • US5371624A
    • 1994-12-06
    • US982468
    • 1992-11-27
    • Takashi NaganoKeiji ShimizuKazuo KajitaniMasaaki Iwase
    • Takashi NaganoKeiji ShimizuKazuo KajitaniMasaaki Iwase
    • G02B21/08G02B21/16G02B21/06
    • G02B21/16G02B21/082
    • A reflected fluorescence microscope is used to observe a fluorescent image of a stained specimen by reflected illumination, and includes a light source, an excitation filter for converting light from the light source into a plurality of narrow-band excitation lights, a dichroic mirror for reflecting the narrow-band excitation lights emerging from the excitation filter toward the specimen and transmitting therethrough the light emerging from the specimen, an absorption filter for absorbing an extra wavelength component from light emerging from the dichroic mirror and transmitting therethrough a wavelength component of the fluorescent image, an optical system for forming the fluorescent image of the specimen from the wavelength component transmitted through the absorption filter, and a transmission wavelength shifting filter for adjusting the ratio of the quantities of light in units of fluorochromes.
    • 反射荧光显微镜用于通过反射照明观察染色样品的荧光图像,并且包括光源,用于将来自光源的光转换成多个窄带激发光的激发滤光器,用于反射的二向色镜 从激发滤光器朝向试样出射的窄带激发光,透射从样品出射的光;吸收滤光片,用于从分色镜出射的光吸收额外的波长分量,并透过荧光图像的波长成分 用于通过吸收滤光器透射的波长成分形成样本的荧光图像的光学系统和用于调节以荧光色素为单位的光量比的透射波长变换滤波器。
    • 6. 发明申请
    • MICROSCOPE OPTICAL SYSTEM
    • 微光学系统
    • US20120243078A1
    • 2012-09-27
    • US13425607
    • 2012-03-21
    • Kazuo KajitaniTatsuji Higuchi
    • Kazuo KajitaniTatsuji Higuchi
    • G02B21/02
    • G02B21/02G02B21/20G02B25/001
    • Observation over a superwide field of view is possible with a short, lightweight, and inexpensive eyepiece optical system and a binocular barrel.A microscope optical system includes an objective optical system configured to collect light from a specimen; an imaging optical system configured to image the light coming from the specimen and collected by the objective optical system; and an eyepiece optical system configured to magnify the image of the specimen formed by the imaging optical system and form a virtual image in an eye of an observer, wherein the following conditional expressions are satisfied, M=Fntl/Fob×250/Fne  (1) Fntl=Ftl×Kt  (2) Fne=Fe×Kt  (3) 0.4
    • 通过短,轻,便宜的目镜光学系统和双目镜筒,可以观察超宽视场。 显微镜光学系统包括物镜光学系统,被配置为收集来自样本的光; 成像光学系统,被配置为对来自所述样本的光进行成像并由所述物镜光学系统收集; 以及目镜光学系统,被配置为放大由所述成像光学系统形成的样本的图像,并在观察者的眼睛中形成虚拟图像,其中满足以下条件表达式:M = Fnt1 / Fob×250 / Fne )Fntl = Ft1×Kt(2)Fne = Fe×Kt(3)0.4