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    • 81. 发明专利
    • Medical microscope device and medical care device using the same
    • 医疗显微镜装置及使用其的医疗器械
    • JP2013097031A
    • 2013-05-20
    • JP2011237020
    • 2011-10-28
    • Morita Mfg Co Ltd株式会社モリタ製作所
    • HIROTA MASAYUKIOTSUKI TAKUYA
    • G02B21/24A61B19/00
    • PROBLEM TO BE SOLVED: To provide a medical microscope device having a vibration-proof function that can be achieved easily at a low cost, and a medical care device having the same.SOLUTION: A medical microscope device 3 arranged near a medical care table 2 comprises: a connection member 11 concentrically fitted and connected to a vertical cylindrical fixed support shaft 10; a hanger arm 30 supported by the connection member so as to be horizontally pivotal; and a microscope body 31 attached to the leading end of the hanger arm 30. A rolling bearing 12 is interposed in a portion where the fixed support shaft 10 and the connection member 11 are fitted. In addition, the connection member 11 is configured such that the rotation of the axis relative to the fixed support shaft is prevented by a rotation stop member. A medical care device 1 is configured such that the medical microscope device 3 is arranged near the medical care table 2.
    • 要解决的问题:提供具有可以以低成本容易地实现的防振功能的医疗显微镜装置,以及具有该医用显微镜装置的医疗保健装置。 解决方案:设置在医疗台2附近的医疗显微镜装置3包括:同心配合并连接到垂直圆柱形固定支撑轴10的连接构件11; 由连接构件支撑以便水平地枢转的衣架臂30; 以及安装在衣架臂30的前端的显微镜主体31.在固定支承轴10和连接部件11嵌合的部分设有滚动轴承12。 此外,连接构件11被构造成使得通过旋转停止构件防止轴线相对于固定支撑轴的旋转。 医疗保健装置1被配置为使得医疗显微镜装置3布置在医疗护理台2附近。版权所有(C)2013,JPO&INPIT
    • 82. 发明专利
    • Flexible nonlinear laser scan type microscope for non-invasive three-dimensional detection
    • 灵活的非线性激光扫描型微型显微镜,用于非侵入式三维检测
    • JP2013083980A
    • 2013-05-09
    • JP2012222971
    • 2012-10-05
    • Jenlab Gmbhイェンラープ ゲーエムベーハー
    • KOENIG KARSTENMARTIN VAINIGEL
    • G02B21/00G01N21/64G02B21/24
    • G02B21/0032A61B5/0068A61B5/6835A61B2560/0437G02B21/0028G02B21/0076
    • PROBLEM TO BE SOLVED: To provide a flexible nonlinear laser scan type microscope which is adapted for non-invasive three-dimensional detection on a person, an animal tissue, and a non-living body, is multifunctional, has high resolution and reproduciblity, and is capable of irradiating the measuring object.SOLUTION: The flexible nonlinear laser scan type microscope includes a measurement head 4 coupled to be freely positioned in a space by at least one radiation light source 1 and a transmission optical component 3, at least one inclined mirror 2 which positions an excitation beam 11 through the transmission optical component 3 coaxially with an aperture limiting optical element 44 of the measurement head 4, a test beam 43 which is separated from the excitation beam 11, and for monitoring its center position, arranged at a spatial resolution optical detector 5 so as to determine a beam position conjugate to a target position 41 of the excitation beam 11, and a control unit 6 for the inclined mirror 2 based upon determined deviation.
    • 要解决的问题:提供适用于人,动物组织和非活体的非侵入性三维检测的柔性非线性激光扫描型显微镜,是多功能的,具有高分辨率和 可重复性,并且能够照射测量对象。 柔性非线性激光扫描型显微镜包括测量头4,该测量头4通过至少一个辐射光源1和透射光学部件3自由定位在空间中,至少一个倾斜镜2,其定位激发 光束11通过透射光学部件3与测量头4的孔径限制光学元件44同轴,与激发光束11分离并用于监测其中心位置的测试光束43,其布置在空间分辨率光学检测器5 以便确定与激励光束11的目标位置41共轭的光束位置和基于确定的偏差的倾斜镜2的控制单元6。 版权所有(C)2013,JPO&INPIT
    • 85. 发明专利
    • Photometric device
    • 光学设备
    • JP2012198118A
    • 2012-10-18
    • JP2011062739
    • 2011-03-22
    • Olympus Corpオリンパス株式会社
    • MARUYAMA MASAKI
    • G01J3/36G01J3/18G02B21/24
    • PROBLEM TO BE SOLVED: To enable a measurement device to speedily and highly accurately carry out other photometry including at least transmission measurement in addition to photometry by reflection measurement.SOLUTION: A spectrometer 1 having a spectroscope 15 for photometry of a luminous flux entering from a pin hole 15b along a reference optical axis Oand used for photometry by condensation of a luminous flux from a measured sample W comprises: a holding stand part 6a; a tilt stage 6A and shift stage 6B; a condensing optical system 13; light source units 11 and 3 for generation of a measurement luminous flux, which is a parallel luminous flux; an objective optical system 17; a deflection part 5 for transmission measurement; and an observation part 16 for observing the displacement of the optical axis of the luminous flux traveling toward the pin hole 15b after having transmitted through the condensing optical system 13, with respect to the reference optical axis O. According to the measured luminous flux, the optical axis is adjusted by the tilt stage 6A and shift stage 6B or the tilt stage and shift stage of the deflection part 5 for transmission measurement.
    • 要解决的问题:为了使得测量装置除了通过反射测量的测光之外,还能够快速高精度地进行至少包括透射测量的其他测光。 解决方案:具有分光计15的光谱仪1,用于测量沿着参考光轴O 0 从针孔15b进入的光束的光度,并用于通过冷凝进行测光 来自测量样品W的光通量包括:保持架部分6a; 倾斜台6A和换档台6B; 聚光光学系统13; 用于产生作为平行光通量的测量光通量的光源单元11和3; 物镜光学系统17; 用于传输测量的偏转部分5; 以及观察部分16,用于观察相对于参考光轴O 0透射通过聚光光学系统13之后朝向销孔15b行进的光束的光轴的位移 。 根据所测量的光通量,通过倾斜台6A和偏移台6B或用于透射测量的偏转部分5的倾斜台和偏移台来调节光轴。 版权所有(C)2013,JPO&INPIT
    • 89. 发明专利
    • Automatic focus mechanism and microscope device
    • 自动聚焦机构和显微镜装置
    • JP2012141452A
    • 2012-07-26
    • JP2010294260
    • 2010-12-28
    • Olympus Corpオリンパス株式会社
    • SUZUKI YOSHIMASA
    • G02B21/24G02B7/28G02B21/06G02B21/26G02B21/36
    • PROBLEM TO BE SOLVED: To focus on a specimen with accuracy.SOLUTION: An automatic focus mechanism 10 includes: an illumination optical system 11 for collecting illumination light projected onto a specimen A with a cover glass 5 in a line shape; an objective lens 13 for projecting the illumination light collected in a line shape onto the specimen A and collecting reflection light from the cover glass 5; a detection unit 15 having an imaging surface 36 disposed obliquely with respect to an optical axis of the reflection light collected by the objective lens 13 and for photographing the reflection light and detecting image information; and a focus adjustment unit 17 for relatively moving the objective lens 13 and the specimen A with the cover glass 5 in the optical axis direction so that the highest position of light intensity in the image information detected by the detection unit 15 is positioned on the optical axis of the reflection light.
    • 要解决的问题:准确地关注样品。 自动聚焦机构10包括:照明光学系统11,用于收集投射到样品A上的照明光,其中玻璃5呈线状; 用于将以线状收集的照明光投射到样本A上并收集来自盖玻璃5的反射光的物镜13; 检测单元15,其具有相对于由物镜13收集的反射光的光轴倾斜设置并用于拍摄反射光并检测图像信息的成像表面36; 以及焦点调节单元17,用于使光学轴线方向上的物镜13和样本A相对移动,使得由检测单元15检测到的图像信息中的光强度的最高位置位于光学 轴的反射光。 版权所有(C)2012,JPO&INPIT
    • 90. 发明专利
    • Microscope stage having objective lens holder that can pivot
    • 具有CAN PIVOT的目标镜头支架的微观阶段
    • JP2012128419A
    • 2012-07-05
    • JP2011268864
    • 2011-12-08
    • Leica Microsystems Cms Gmbhライカ マイクロシステムス ツェーエムエス ゲーエムベーハー
    • SEIFERT ROLAND
    • G02B21/24
    • G02B21/26G02B21/16G02B21/241G02B21/367G02B27/58
    • PROBLEM TO BE SOLVED: To provide a microscope stage having an objective lens holder that can pivot.SOLUTION: A microscope stage has a platform 16 and a holder for a microscope objective lens. The holder is attached to the platform 16 so that it can pivot on the central axis 46 of a shaft bearing and move along the central axis 46 of the shaft bearing. The microscope stage comprises: the objective lens; an operation element 50 that is connected to the holder and is used to make the holder pivot on the central axis 46 of the shaft bearing and move along the central axis 46 of the shaft bearing for the purpose of positioning the holder in an operation position; and a locking mechanism 60 that can be operated by the operation element 50 and is used to fix the holder that is positioned in the operation position to the platform 16.
    • 要解决的问题:提供具有可枢转的物镜保持器的显微镜台。 解决方案:显微镜平台具有平台16和用于显微镜物镜的保持器。 保持器附接到平台16,使得其可以在轴承的中心轴线46上枢转并且沿着轴承的中心轴线46移动。 显微镜平台包括:物镜; 操作元件50,其连接到保持器并且用于使保持器在轴承的中心轴线46上枢转并且沿轴承的中心轴线46移动,以将保持器定位在操作位置中; 以及可由操作元件50操作并用于将位于操作位置的保持器固定到平台16的锁定机构60.版权所有(C)2012,JPO&INPIT