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    • 3. 发明申请
    • IMAGE PICKING-UP DEVICE
    • 图像拾取器件
    • US20110115966A1
    • 2011-05-19
    • US12674959
    • 2008-08-07
    • Hiroshi UedaKouji ShibunoMichihiko Ootsuka
    • Hiroshi UedaKouji ShibunoMichihiko Ootsuka
    • H04N5/232
    • G03B13/36G02B7/08G02B7/285G02B7/36H04N5/232H04N5/23212
    • In an image pickup device of the present invention, in the case where a mode switch 116 selects a finder mode, a focusing lens is driven at a first speed when a focusing operation is performed in a focus control unit 203. In the case where the mode switch 116 selects a live view mode, the driving speed of the focusing lens is switched in a range lower than the first speed in accordance with brightness of an object detected by a photometric unit 114 when the focusing operation is performed in the focus control unit 203. With such a configuration, a lens driving control method is changed by AF control of a phase difference detection system and AF control of a hill climbing system, and a driving system suitable for each AF system is performed, whereby the focusing operation can be performed normally at a high speed.
    • 在本发明的图像拾取装置中,在模式开关116选择取景器模式的情况下,当在聚焦控制单元203中进行聚焦操作时,以第一速度驱动聚焦透镜。在 模式开关116选择实时取景模式,当在聚焦控制单元中执行聚焦操作时,根据由测光单元114检测到的物体的亮度,聚焦透镜的驱动速度被切换到低于第一速度的范围内 通过这样的结构,通过相位差检测系统的AF控制和爬坡系统的AF控制来改变透镜驱动控制方法,并且执行适合于每个AF系统的驱动系统,由此聚焦操作可以 以高速正常进行。
    • 4. 发明授权
    • Image picking-up device with a moving focusing lens
    • 具有移动聚焦镜头的摄像装置
    • US08436935B2
    • 2013-05-07
    • US12674959
    • 2008-08-07
    • Hiroshi UedaKouji ShibunoMichihiko Ootsuka
    • Hiroshi UedaKouji ShibunoMichihiko Ootsuka
    • H04N5/232G03B13/36
    • G03B13/36G02B7/08G02B7/285G02B7/36H04N5/232H04N5/23212
    • In an image pickup device of the present invention, in the case where a mode switch 116 selects a finder mode, a focusing lens is driven at a first speed when a focusing operation is performed in a focus control unit 203. In the case where the mode switch 116 selects a live view mode, the driving speed of the focusing lens is switched in a range lower than the first speed in accordance with brightness of an object detected by a photometric unit 114 when the focusing operation is performed in the focus control unit 203. With such a configuration, a lens driving control method is changed by AF control of a phase difference detection system and AF control of a hill climbing system, and a driving system suitable for each AF system is performed, whereby the focusing operation can be performed normally at a high speed.
    • 在本发明的图像拾取装置中,在模式开关116选择取景器模式的情况下,当在聚焦控制单元203中进行聚焦操作时,以第一速度驱动聚焦透镜。在 模式开关116选择实时取景模式,当在聚焦控制单元中执行聚焦操作时,根据由测光单元114检测到的物体的亮度,聚焦透镜的驱动速度被切换到低于第一速度的范围内 通过这样的结构,通过相位差检测系统的AF控制和爬坡系统的AF控制来改变透镜驱动控制方法,并且执行适合于每个AF系统的驱动系统,由此聚焦操作可以 以高速正常进行。
    • 8. 发明申请
    • FLUOROIMMUNOASSAY METHOD
    • 荧光分光法
    • US20120270338A1
    • 2012-10-25
    • US13510105
    • 2010-11-19
    • Hiroshi UedaRyoji AbeMasaki IharaHiroaki Takagi
    • Hiroshi UedaRyoji AbeMasaki IharaHiroaki Takagi
    • G01N21/76C07K17/02
    • G01N33/582A61K49/0058C07K16/18C07K16/44C07K2317/56C07K2317/622C07K2317/92G01N21/6428G01N33/6857G01N2021/6439
    • An object is to provide an immunoassay method requiring neither a solid-phase immobilization step nor a washing step, enabling quick and simple quantitative measurement of a target substance in a liquid phase and capable of visualizing an antigen. Such an object is attained by measuring the concentration of a target antigen present in a test substance by sequentially performing a step (a) of bringing an antibody light-chain variable region polypeptide and an antibody heavy-chain variable region polypeptide labeled with a fluorescent dye into contact with an antigen in a test substance in a liquid phase; or bringing an antibody heavy-chain variable region polypeptide and an antibody light-chain variable region polypeptide labeled with a fluorescent dye into contact with an antigen in a test substance in a liquid phase; a step (b) of measuring the fluorescence intensity of the fluorescent dye; and a step (c) of computationally obtaining the level of the antigen contained in the test substance with reference to a positive correlation between the concentration of the antigen in a liquid phase and the fluorescence intensity of the fluorescent dye.
    • 本发明的目的是提供一种不需要固相固定步骤和洗涤步骤的免疫测定方法,能够快速和简单地定量测定液相中的目标物质并能够使抗原呈现。 通过依次进行使荧光染料标记的抗体轻链可变区多肽和抗体重链可变区多肽的步骤(a),测定待测物质中存在的靶抗原的浓度, 与液相中测试物质中的抗原接触; 或使用荧光染料标记的抗体重链可变区多肽和抗体轻链可变区多肽与液相中的测试物质中的抗原接触; 测量荧光染料的荧光强度的步骤(b); 和(c)参考在液相中的抗原浓度与荧光染料的荧光强度之间的正相关性来计算获得测试物质中含有的抗原水平的步骤(c)。