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    • 1. 发明授权
    • Three-dimensional multiplex hologram
    • 三维多重全息图
    • US5216528A
    • 1993-06-01
    • US712312
    • 1991-06-07
    • Toshio HondaKei ShimuraMasahiro YamaguchiNagaaki OhyamaTakayuki Saito
    • Toshio HondaKei ShimuraMasahiro YamaguchiNagaaki OhyamaTakayuki Saito
    • G03H1/26
    • G03H1/268
    • The present invention provides a method and apparatus for producing a hologram from a series of two-dimensional images horizontally different in line of sight from each other. The holographic apparatus employs original images produced by photographing an object from different directions, an object optical system which makes a light be incident upon original image to project an object beam onto photo-sensitive material, and a reference optical system which projects a reference beam of a same wavelength as the object beam toward the photo-sensitive material. The horizontal component of the object beam can be converged at a rear point i.e., a point of view at image reproduction, relatively distant from the photo-sensitive material on which a hologram is produced. When the hologram is reconstructed, a beam having the same wavelength as when recorded is converged at the rear point of view, so that the reconstructed image can be viewed in a same color free from any color shading.
    • 本发明提供一种用于从一系列彼此不同视线水平不同的二维图像制作全息图的方法和装置。 全息装置采用通过从不同方向拍摄物体而产生的原始图像,使光入射到原始图像上以将物体光束投影到感光材料上的物体光学系统,以及投影基准光束的参考光学系统 与对象光束相对于光敏材料的波长相同。 物体光束的水平分量可以在后点,即图像再现的视点会聚,相对于其上产生全息图的感光材料相对较远。 当重建全息图时,具有与记录时相同的波长的光束会聚在后视点,使得可以以与任何颜色阴影相同的颜色来观看重建图像。
    • 3. 发明授权
    • Information retrieval system
    • 信息检索系统
    • US5504884A
    • 1996-04-02
    • US14253
    • 1993-02-05
    • Kazuo KyumaShuichi TaiMasaya OitaNagaaki OhyamaMasahiro Yamaguchi
    • Kazuo KyumaShuichi TaiMasaya OitaNagaaki OhyamaMasahiro Yamaguchi
    • G06F15/18G06F17/30G06N99/00G06F15/17
    • G06F17/30997Y10S707/99935
    • An information retrieval system allowing the user to build a database or to retrieve data therefrom based on vague retrieval-designating data without becoming aware of the database structure. The system comprises a neural network, a memory, an interface part and a CRT. The neural network stores data designating electronic still pictures contained in the memory. When data for designating retrieval are input, the interface part groups the data into such categories as the place where the desired picture was taken and the date on which it was taken, and supplies the neural network with the categorized input data. In turn, the neural network outputs by association the data corresponding to the input data. Given the data from the network, the memory outputs the relevant electronic still picture to the CRT for display.
    • 一种信息检索系统,其允许用户构建数据库或者基于模糊的检索指定数据来检索数据,而不会意识到数据库结构。 该系统包括神经网络,存储器,接口部分和CRT。 神经网络存储指定存储器中包含的电子静态图片的数据。 当输入用于指定检索的数据时,接口部分将数据分组成所需图像的位置和拍摄日期的类别,并将神经网络提供分类的输入数据。 反过来,神经网络通过关联与输入数据相对应的数据来输出。 给定来自网络的数据,存储器将相关的电子静态图像输出到CRT以进行显示。
    • 7. 发明授权
    • Color image recording and reproducing system
    • 彩色图像记录和再现系统
    • US5864364A
    • 1999-01-26
    • US763230
    • 1996-12-10
    • Nagaaki OhyamaToshiaki WadaMasahiro YamaguchiTakashi Obi
    • Nagaaki OhyamaToshiaki WadaMasahiro YamaguchiTakashi Obi
    • H04N9/79G06T1/00G06T5/00H04N1/46H04N1/60H04N7/10H04N9/64H04N9/73H04N11/00H04N11/24H04N5/232
    • H04N1/6086H04N1/6088
    • A spectral image photographing section photographs the image of an object to be photographed as spectrum information in units of pixels so as to mutually record and reproduce a faithful image between two points. A photographing light spectrum detecting section detects the spectrum distribution of illumination light at a photographing point. A reproduction environment light spectrum detecting section detects the spectrum distribution of illumination light at a reproduction point. A spectral reflectance distribution calculating section eliminates the influence of the spectrum distribution of illumination light from the spectrum information photographed by the spectral image photographing section, and calculates the spectral reflectance distribution of the object. A spectrum converting section calculates, on the basis of the reproduction environment light spectrum detected by the reproduction environment light spectrum detecting section and the spectral reflection distribution calculated by the spectral reflectance distribution calculating section, a spectrum distribution obtained when the image of the object is photographed under illumination light substantially identical to that at the reproduction point. A vector imaging section converts the spectrum distribution of each pixel converted by the spectrum converting section into three-dimensional color.
    • 光谱图像拍摄部以像素为单位拍摄要拍摄的对象的图像作为频谱信息,以便在两点之间相互记录和再现忠实的图像。 拍摄光谱检测部检测拍摄点的照明光的光谱分布。 再生环境光谱检测部检测再现点的照明光的光谱分布。 光谱反射率分布计算部消除由光谱图像拍摄部拍摄的光谱信息的照明光的光谱分布的影响,并计算对象的光谱反射率分布。 光谱转换部根据由再现环境光谱检测部检测出的再现环境光谱和由光谱反射率分布计算部算出的光谱反射分布,计算拍摄对象的图像时得到的光谱分布 在照明光下基本上与再生点相同。 矢量成像部将由频谱转换部转换的各像素的频谱分布变换为三维色。
    • 9. 发明授权
    • Method and apparatus for detecting corresponding regions between picture
images
    • 用于检测图像图像之间相应区域的方法和装置
    • US4962540A
    • 1990-10-09
    • US453382
    • 1989-11-27
    • Junpei TsujiuchiShigeto IkedaToshio HondaNagaaki OhyamaEric BadiqueSusumu Kikuchi
    • Junpei TsujiuchiShigeto IkedaToshio HondaNagaaki OhyamaEric BadiqueSusumu Kikuchi
    • G06T7/00G06T5/50
    • G06T5/50
    • The method of detecting corresponding regions between primary color picture images comprises respective steps of converting three primary color signals of color picture images to at least two signals based on these three primary color signals, calculating the variance of the mutual concentration distribution in the operation object regions of the three primary color picture images from these converted signals and detecting the set of regions in which the calculated variance value is minimum. The apparatus for realizing the above mentioned method comprises a converting device for converting three primary color picture signals of color picture images to at least two signals based on these three primary color signals, a variance calculating device for calculating the variance of the mutual concentration distribution in the operation object regions of the three primary color picture images from the signals converted by this converting device and a corresponding region detecting device for detecting the set of regions in which the variance value calculated by this variance calculating device is minimum.
    • 检测原色图像之间的对应区域的方法包括以下步骤:基于这三个原色信号将彩色图像的三原色信号转换为至少两个信号,计算操作对象区域中的相互浓度分布的方差 的三原色图像,并且检测其中所计算的方差值最小的区域集合。 用于实现上述方法的装置包括:转换装置,用于将彩色图像的三原色图像信号转换为基于这三个原色信号的至少两个信号;方差计算装置,用于计算相互浓度分布的方差 由该转换装置转换的信号的三原色图像的操作对象区域和用于检测由该方差计算装置计算出的方差值最小的区域集合的对应区域检测装置。