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    • 2. 发明专利
    • Microscope apparatus
    • MICROSCOPE设备
    • JP2011186182A
    • 2011-09-22
    • JP2010051282
    • 2010-03-09
    • 21 Aomori Sangyo Sogo Shien CenterClaro IncHirosaki Univ国立大学法人弘前大学株式会社クラーロ財団法人21あおもり産業総合支援センター
    • TAKAMATSU TERUMASASATO TATSUSHIMIURA TOMITOMONOSAKA HIROYOSHIZHONGXI ZHENGWAKAO KAZUHIROKISHIMOTO TADASHINAKANO SHIGERU
    • G02B21/00G01N21/64G02F1/13
    • PROBLEM TO BE SOLVED: To provide a microscope apparatus configured to photograph fluorescence generated by a sample of a pathology tissue or the like with exciting light. SOLUTION: The microscope apparatus includes: a fluorescent photographing light source 2 that generates the exciting light of fluorescent pigments; a liquid crystal wavelength variable filter unit 6 that can selectively transmit/shield light of various wavelengths; a dichroic mirror 8 that reflects the exciting light, and also, transmits the fluorescence having longer wavelength; an objective lens 9; a liquid crystal wavelength variable filter unit 12 disposed between an object to be photographed and a fluorescent photographic photographing unit 13 so as to selectively transmit/shield the light of various wavelengths; the fluorescent photographic photographing unit 13; and a personal computer 18 as a controller for applying a desired voltage to the liquid crystal variable filter units. Simultaneous fluorescent photographing using the plurality of fluorescent pigments can be automatically and highly accurately performed at a high speed. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用激发光拍摄病理组织等样品产生的荧光的显微镜装置。 解决方案:显微镜装置包括:荧光摄影光源2,其产生荧光颜料的激发光; 可以选择性地透射/屏蔽各种波长的光的液晶波长可变滤波器单元6; 反射激发光的分色镜8,并且透射具有较长波长的荧光; 物镜9; 设置在待拍摄物体和荧光摄影摄影单元13之间的液晶波长可变滤波器单元12,以选择性地透射/屏蔽各种波长的光; 荧光摄影摄影单元13; 以及个人计算机18作为用于向液晶可变滤波器单元施加期望电压的控制器。 可以高速自动且高精度地进行使用多种荧光颜料的同时荧光照相。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • Evaluation device for optical element
    • 光学元件评估装置
    • JP2006284621A
    • 2006-10-19
    • JP2005100433
    • 2005-03-31
    • 21 Aomori Sangyo Sogo Shien CenterVictor Co Of Japan Ltd日本ビクター株式会社財団法人21あおもり産業総合支援センター
    • WAKAO KAZUHIRONAKANO SHIGERUEGUCHI TOSHIYASU
    • G02F1/13G01M11/00G02B27/28
    • PROBLEM TO BE SOLVED: To provide an evaluation device for an optical element, of which the contrast in itself is high, and with which the contrast of the optical element can be evaluated accurately.
      SOLUTION: An object to be evaluated is placed in an optical path between a mirror and a polarization beam splitter which are in an optical system in which: light 20 from a light source 1 is sequentially passed through a polarizer 5 and a quarter wave plate 7; the outgoing light 21 is separated into a transmitted portion and a reflected portion by the polarization beam splitter 2; the reflected portion is further reflected by the mirror 3 and subsequently again separated into a transmitted portion and a reflected portion by the polarization beam splitter 2; the corresponding transmitted portion is sequentially passed by a quarter wave plate 25 and an analyzer 6; and the outgoing light is observed with a photodetector 4.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种光学元件的评估装置,其中对比度本身是高的,并且可以准确地评估光学元件的对比度。 解决方案:要评估的对象被放置在光学系统中的反射镜和偏振分束器之间的光路中,其中来自光源1的光20依次通过偏振器5和四分之一 波片7; 出射光21被偏振分束器2分离成透射部分和反射部分; 反射部分进一步被反射镜3反射,然后由偏振分束器2再次分离成透射部分和反射部分; 对应的发送部分依次通过四分之一波片25和分析器6; 并且用光电检测器4观察出射光。版权所有(C)2007,JPO&INPIT
    • 7. 发明专利
    • Optical device
    • 光学装置
    • JP2012181958A
    • 2012-09-20
    • JP2011042731
    • 2011-02-28
    • 21 Aomori Sangyo Sogo Shien Center財団法人21あおもり産業総合支援センター
    • SEKIYA KAZUOSUZUKI TAKESHIKAGA KUNIOMIFUJIWARA MINORUKISHIMOTO TADASHINAKANO SHIGERUMURAI HIROSHIHAMAKUBO YURIKOWAKAO KAZUHIRO
    • F21S2/00F21Y101/02F21Y103/00
    • PROBLEM TO BE SOLVED: To provide an optical device capable of improving utilization efficiency of light incident on a display part from a light guide part.SOLUTION: The device includes: a reflecting polarization plate 12 transmitting P polarized light contained in light source light 21, and at the same time, reflecting S polarized light contained in the light source light 21; a conversion part 60 converting the S polarized light reflected at the reflecting polarization plate 12 into the P polarized light to be incident on the reflecting polarization plate 12; and a prism sheet 11 with a plurality of prisms 11c fitted on a face at a reflecting polarization plate 12 side. Each prism 11c comprises: a prism tip part 11d convex in a direction headed from the prism sheet 11 toward the reflecting polarization plate 12; prism slant faces 11a formed at either side of the tip part for taking in P polarized light emitted from the reflecting polarization plate 12; and a prism bottom face 11b for emitting the P polarized light taken from the slant faces into the prism 11c, in a direction vertical to an extension direction of the prism sheet 11.
    • 解决的问题:提供能够提高从导光部入射到显示部上的光的利用效率的光学装置。 解决方案:该装置包括:透射包含在光源光21中的P偏振光的反射偏振板12,同时反射包含在光源光21中的S偏振光; 转换部分60将在反射偏振板12处反射的S偏振光转换为入射到反射偏振板12上的P偏振光; 以及棱镜片11,其具有安装在反射偏振板12侧的面上的多个棱镜11c。 每个棱镜11c包括:在从棱镜片11朝向反射偏振板12的方向上凸出的棱镜尖端部分11d; 形成在前端部的任一侧的棱镜倾斜面11a,用于吸收从反射偏振板12发射的P偏振光; 以及棱镜底面11b,用于沿与棱镜片11的延伸方向垂直的方向将从斜面取出的P偏振光发射到棱镜11c中。(C)2012,JPO&INPIT