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    • 76. 发明申请
    • SCANNING LASER OPHTHALMOSCOPE
    • 扫描激光眼镜
    • US20130242261A1
    • 2013-09-19
    • US13989860
    • 2011-09-14
    • Masahiro OhishiHitoshi Shimizu
    • Masahiro OhishiHitoshi Shimizu
    • A61B3/12
    • A61B3/1233A61B3/0025A61B3/10A61B3/1025A61B3/1225
    • Provided is a scanning laser ophthalmoscope capable of accurately superposing multiple photographed images. The scanning laser ophthalmoscope comprises an image generating unit that generates first images based on the light reflected from first laser light and second images based on the light reflected from second laser light. An associating unit associates the first images and the second images based on the first laser light and the second laser light parallelly scanned by the scanning unit. A displacement calculating unit calculates displacements between images regarding multiple first images. The position matching unit matches the positions of multiple second images based on the processing results from the associating unit and the displacements. The superposing unit superposes the multiple second images that have undergone the position matching. The display unit displays an image obtained by superposing the multiple second images.
    • 提供了能够精确地叠加多张拍摄图像的扫描激光检眼镜。 扫描激光检眼镜包括图像生成单元,其基于从第一激光反射的光和基于从第二激光反射的光产生第二图像来生成第一图像。 关联单元基于由扫描单元平行扫描的第一激光和第二激光将第一图像和第二图像相关联。 位移计算单元计算关于多个第一图像的图像之间的位移。 位置匹配单元基于来自关联单元的处理结果和位移来匹配多个第二图像的位置。 叠加单元迭代了经过位置匹配的多个第二图像。 显示单元显示通过叠加多个第二图像而获得的图像。
    • 78. 发明申请
    • TWO-DIMENSIONAL SURFACE-EMITTING LASER ARRAY ELEMENT, SURFACE-EMITTING LASER DEVICE AND LIGHT SOURCE
    • 二维表面发射激光阵列元件,表面发射激光器件和光源
    • US20110274131A1
    • 2011-11-10
    • US13142996
    • 2010-01-20
    • Keishi TakakiHirotatsu IshiiHitoshi ShimizuNorihiro Iwai
    • Keishi TakakiHirotatsu IshiiHitoshi ShimizuNorihiro Iwai
    • H01S5/42
    • H01S5/423H01S5/02284H01S5/0422H01S5/18308H01S5/18311H01S5/18341H01S5/18358H01S5/18369H01S5/2214H01S5/4018
    • Included are a plurality of surface-emitting laser elements each of which includes a substrate; a lower multilayer reflective mirror and an upper multilayer reflective mirror that are formed on the substrate and are formed from a periodic structure of a high-refractive index layer and a low-refractive index layer; an active layer provided between the lower multilayer reflective mirror and the upper multilayer reflective mirror; a lower contact layer positioned between the active layer and the lower multilayer reflective mirror, and is extended to an outer peripheral side of the upper multilayer reflective mirror; a lower electrode formed on a surface of a portion where the lower contact layer is extended; and an upper electrode for injecting a current to the active layer, wherein the surface-emitting laser elements are electrically connected in series to each other to form a series-connected element array. This allows provision of a two-dimensional surface-emitting laser array element capable of achieving high energy conversion efficiency with a simple structure and capable of high integration, and a surface-emitting laser device and a light source using the same.
    • 包括多个表面发射激光器元件,每个表面发射激光器元件包括衬底; 形成在基板上并由高折射率层和低折射率层的周期性结构形成的下多层反射镜和上多层反射镜; 设置在所述下多层反射镜和所述上多层反射镜之间的有源层; 位于有源层和下多层反射镜之间的下接触层,并延伸到上多层反射镜的外周侧; 形成在下接触层延伸的部分的表面上的下电极; 以及用于向有源层注入电流的上电极,其中所述表面发射激光元件彼此串联电连接以形成串联连接的元件阵列。 这允许提供能够以简单结构实现高能量转换效率且能够高集成度的二维表面发射激光器阵列元件,以及使用该二维表面发射激光器阵列元件的光源。
    • 79. 发明申请
    • OPTICAL MEASURING DEVICE AND CALIBRATION DEVICE
    • 光学测量装置和校准装置
    • US20110211192A1
    • 2011-09-01
    • US12979138
    • 2010-12-27
    • Takeshi KIMURAHitoshi Shimizu
    • Takeshi KIMURAHitoshi Shimizu
    • G01J1/10
    • G01J1/02A61B5/0066A61B2503/40A61B2560/0233G01J1/0242G01N21/274G01N21/278G01N21/6456G01N2201/103
    • There is provided an optical measuring device including: plural light-receiving units; a frame to which the respective light-receiving units are mounted on a same circumference whose axial center is a predetermined position, with optical axes of the light-receiving units being directed toward the axial center, an object of measurement being disposed at an axially central portion of the circumference; a measuring section that outputs measured values corresponding to received light amounts; a reference sample disposed, instead of the object of measurement, at the axially central portion of the circumference such that a longitudinal direction of the reference sample runs along an axis of the circumference; a reference light source that illuminates light of the predetermined wavelength toward the reference sample; and a calibrating section that calibrates the sensitivities of the plural light-receiving units at a time of measuring the object of measurement.
    • 提供了一种光学测量装置,包括:多个光接收单元; 将各光接收单元安装在轴心为规定位置的同一圆周上的框架,其中光接收单元的光轴朝向轴向中心,测量对象设置在轴向中心 圆周的一部分; 输出与接收到的光量对应的测量值的测量部; 参考样本,而不是测量对象,在圆周的轴向中心部分处,使得参考样本的纵向方向沿着圆周的轴线延伸; 将预定波长的光照射到参考样品的参考光源; 以及校准部,其在测量所述测量对象时校准所述多个光接收单元的灵敏度。
    • 80. 发明授权
    • Lens block, lens, holder for holding the lens block, and projector using the lens holder
    • 透镜块,透镜,用于固定镜头块的支架,以及使用镜头座的投影机
    • US07929223B2
    • 2011-04-19
    • US11528471
    • 2006-09-28
    • Hitoshi ShimizuNobuko Arima
    • Hitoshi ShimizuNobuko Arima
    • G02B7/02
    • G02B7/021G02B7/026
    • A plurality of lens elements and spacer rings 30-38 for constituting a part of an optical system are inserted into a lens-barrel-like jig 40 in predetermined order. A reception portion 43 for receiving the lens element 38 which will be first inserted is formed in the jig 40. When inserted into the jig 40, the lens elements 30-38 are brought into abutment against one another in one way of the optical axis so that spaces among the lens elements 30, 32-34, 36 and 38 are positioned. After that, adhesive is applied to at least three circumferential places of the outer circumference of each abutment portion where the lens elements and spacer rings 30-38 abut against each other, through opening portions 41 provided in the outer circumference of the jig 40. Thus, the plurality of lens elements and spacer rings 30-38 are formed into an integrated structure.
    • 用于构成光学系统的一部分的多个透镜元件和间隔环30-38以预定顺序插入透镜镜筒状夹具40中。 在夹具40中形成有用于接收将首先插入的透镜元件38的接收部分43.当插入到夹具40中时,透镜元件30-38以光轴的方式彼此抵接,因此 透镜元件30,32-34,36和38之间的空间被定位。 之后,通过设置在夹具40的外周的开口部41将粘合剂施加到透镜元件和间隔环30-38彼此抵靠的每个邻接部分的外周的至少三个周向位置。因此 ,多个透镜元件和间隔环30-38形成为一体的结构。