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    • 2. 发明授权
    • Image processing device
    • 图像处理装置
    • US08311367B2
    • 2012-11-13
    • US12403027
    • 2009-03-12
    • Kimitaka MurashitaMasayoshi ShimizuKaoru ChujoTakashi Wakamatsu
    • Kimitaka MurashitaMasayoshi ShimizuKaoru ChujoTakashi Wakamatsu
    • G06K9/32
    • G06T5/50G06T7/20H04N5/23232H04N5/23238H04N5/23267
    • Adaptive image processing device performs image processing with a simple configuration on a composite image including areas having different characteristics by changing a process depending on the number of combined images in each area of the composite image configured by combining a plurality of images. The image processing device acquires a plurality of images and generates a composite image. When the composite image is generated, the image processing device realizes a process of determining the number of combined images for detecting the number of images to be combined for each area of the composite image and holding the number as information about the number of combined images, and an image processing parameter switching process for switching a parameter of image processing to be performed on each area of the composite image according to the information about the number of combined images.
    • 自适应图像处理装置通过根据通过组合多个图像配置的合成图像的每个区域中的组合图像的数量来改变处理而在包括具有不同特征的区域的合成图像上执行图像处理。 图像处理装置获取多个图像并生成合成图像。 当生成合成图像时,图像处理装置实现确定用于检测合成图像的每个区域的要合成的图像数量的组合图像的数量并将该数量保持为关于组合图像的数量的信息的处理, 以及图像处理参数切换处理,用于根据关于组合图像的数量的信息切换要对合成图像的每个区域执行的图像处理的参数。
    • 4. 发明授权
    • Device for crystallizing biopolymer, cell of solution for crystallizing biopolymer, method for controlling alignment of biopolymer, method for crystallizing biopolymer and biopolymer crystal
    • 用于结晶生物聚合物的装置,用于结晶生物聚合物的溶液的细胞,用于控制生物聚合物取向的方法,用于结晶生物聚合物和生物聚合物晶体的方法
    • US08945303B2
    • 2015-02-03
    • US13254726
    • 2010-02-18
    • Takashi WakamatsuYuki Ohnishi
    • Takashi WakamatsuYuki Ohnishi
    • C30B7/08C30B29/58C30B7/00C30B30/02
    • C30B29/58C30B7/00C30B30/02
    • The subject is providing a crystallizing device of a biopolymer, which made to form biopolymer crystal efficiently in crystallization solution of a small amount of biopolymers by applying a low voltage and not to make an electrode disturb but observable a state of crystal formation. As an electrode for applying an electric field to a biopolymer solution, a transparent conductor, which does not disturb crystal formation, is used. Between the transparent conductor electrodes 2s, the electric insulating member 4 is placed and the crystallization solution 1 for a small amount of biopolymers is maintained inter-electrode. A biopolymer is efficiently crystallized by applying a low voltage supplied from the voltage generator 5 to the transparent conductor electrode 2. A crystal formation state of a biopolymer is optically observable from the electrode side of a transparent conductor. Orientation control of the biopolymer can be performed by an electric field formed by the above-mentioned voltage application.
    • 本发明提供一种生物聚合物的结晶装置,其通过施加低电压而使少量生物聚合物的结晶溶液中有效形成生物聚合物晶体,并且不使电极干扰但可观察到晶体形成状态。 作为向生物聚合物溶液施加电场的电极,使用不妨碍晶体形成的透明导体。 在透明导体电极2s之间,放置电绝缘构件4,并且保持少量生物聚合物的结晶溶液1的电极间。 通过从电压发生器5提供的低电压施加到透明导体电极2,生物聚合物被有效地结晶。从透明导体的电极侧可以观察到生物聚合物的晶体形成状态。 生物聚合物的取向控制可以通过上述电压施加形成的电场进行。
    • 5. 发明申请
    • DEVICE FOR CRYSTALLIZING BIOPOLYMER, CELL OF SOLUTION FOR CRYSTALLIZING BIOPOLYMER, METHOD FOR CONTROLLING ALIGNMENT OF BIOPOLYMER, METHOD FOR CRYSTALLIZING BIOPOLYMER AND BIOPOLYMER CRYSTAL
    • 用于结晶生物聚合物的装置,用于晶体结晶生物聚合物的溶液的细胞,用于控制生物聚合物的对准的方法,用于晶体生物聚合物和生物聚合物晶体的方法
    • US20110308948A1
    • 2011-12-22
    • US13254726
    • 2010-02-18
    • Takashi WakamatsuYuki Ohnishi
    • Takashi WakamatsuYuki Ohnishi
    • C30B7/12
    • C30B29/58C30B7/00C30B30/02
    • The subject is providing a crystallizing device of a biopolymer, which made to form biopolymer crystal efficiently in crystallization solution of a small amount of biopolymers by applying a low voltage and not to make an electrode disturb but observable a state of crystal formation. As an electrode for applying an electric field to a biopolymer solution, a transparent conductor, which does not disturb crystal formation, is used. Between the transparent conductor electrodes 2s, the electric insulating member 4 is placed and the crystallization solution 1 for a small amount of biopolymers is maintained inter-electrode. A biopolymer is efficiently crystallized by applying a low voltage supplied from the voltage generator 5 to the transparent conductor electrode 2. A crystal formation state of a biopolymer is optically observable from the electrode side of a transparent conductor. Orientation control of the biopolymer can be performed by an electric field formed by the above-mentioned voltage application.
    • 本发明提供一种生物聚合物的结晶装置,其通过施加低电压而使少量生物聚合物的结晶溶液中有效形成生物聚合物晶体,并且不使电极干扰但可观察到晶体形成状态。 作为向生物聚合物溶液施加电场的电极,使用不妨碍晶体形成的透明导体。 在透明导体电极2s之间,放置电绝缘构件4,并且保持少量生物聚合物的结晶溶液1的电极间。 通过从电压发生器5提供的低电压施加到透明导体电极2,生物聚合物被有效地结晶。从透明导体的电极侧可以观察到生物聚合物的晶体形成状态。 生物聚合物的取向控制可以通过上述电压施加形成的电场进行。
    • 7. 发明授权
    • Microscope system and observation control method
    • 显微镜系统和观察控制方法
    • US08873139B2
    • 2014-10-28
    • US13076875
    • 2011-03-31
    • Takashi WakamatsuAkitoshi Suzuki
    • Takashi WakamatsuAkitoshi Suzuki
    • G02B21/00G02B21/02G02B15/00
    • G02B21/025G02B15/00G02B21/00
    • A microscope system and observation control method. An electric zoom consecutively changes a magnification for a sample. A revolver includes a plurality of objective lenses of different magnifications and switches the objective lens placed in an observation optical path to intermittently change the magnification for the sample. A control section calculates a total magnification at which the sample is observed based on a magnification provided by the electric zoom and the magnification of the objective lens currently placed in the observation optical path. The control section operates when the revolver switches the objective lens placed in the observation optical path, to determine a target magnification that is the magnification of the electric zoom required to keep the total magnification obtained after the switching of the objective lens equal to the total magnification obtained before the switching of the objective lens.
    • 显微镜系统和观察控制方法。 电动变焦连续地改变样品的放大倍数。 左轮手枪包括多个不同放大倍率的物镜,并且将放置在观察光路中的物镜切换以间歇地改变样品的放大倍率。 控制部基于由电动焦点提供的倍率和当前放置在观察光路中的物镜的倍率来计算观察样本的总倍率。 控制部分在左轮手枪切换放置在观察光路中的物镜时操作,以确定作为将物镜切换之后获得的总放大倍率等于总放大率所需的电动放大倍率所需的电动放大倍率的目标倍率 在物镜切换之前获得。