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    • 3. 发明授权
    • Image reading apparatus
    • 图像读取装置
    • US07715060B2
    • 2010-05-11
    • US10674498
    • 2003-10-01
    • Takayuki SugaTakeshi AoyamaHyoe IwataYukihiro MiuraTakehiro Kishi
    • Takayuki SugaTakeshi AoyamaHyoe IwataYukihiro MiuraTakehiro Kishi
    • H04N1/46H04N1/00H04N1/04H04N1/36
    • H04N1/04H04N1/00681
    • An image reading apparatus accurately determines the positions of image forming mirrors formed with an off-axis reflecting surface, while enabling any thermal expansion caused by a rise in temperature due to a rise in the surrounding temperature to be absorbed. Each image forming mirror formed with an off-axis reflecting surface comprises respective and independent units for determining the positions in the longitudinal direction, in the lateral position, and in the direction orthogonal to the reflecting surface. Holes with which the longitudinal position determining units and the lateral position determining units engage have gaps in the directions orthogonal to the position determining directions to absorb the thermal expansion caused by a rise in the temperature of the image forming mirror when the position determining units engage with the holes. Determination of the position of the reflecting surfaces of the image forming mirrors is carried out by urging faces provided on the reflecting surface side against the housing.
    • 图像读取装置精确地确定由离轴反射表面形成的图像形成镜的位置,同时能够由于周围温度的上升而被温度升高引起的任何热膨胀被吸收。 形成有离轴反射面的每个成象镜包括用于确定纵向方向,横向位置以及与反射表面正交的方向上的位置的各自独立的单元。 纵向位置确定单元和横向位置确定单元所接合的孔在垂直于位置确定方向的方向上具有间隙,以便当位置确定单元与位置确定单元接合时吸收由图像形成镜的温度升高引起的热膨胀 孔。 图像形成镜的反射面的位置的确定通过将设置在反射面侧的面抵靠住壳体来进行。
    • 5. 发明授权
    • Image reading apparatus
    • 图像读取装置
    • US07420716B2
    • 2008-09-02
    • US10404056
    • 2003-04-02
    • Takeshi AoyamaHiroaki TakagishiTakayuki Suga
    • Takeshi AoyamaHiroaki TakagishiTakayuki Suga
    • H04N1/04
    • H04N1/00549H04N1/00519H04N1/00559H04N1/00981H04N1/1013H04N1/193
    • An object of this invention is to provide an image reading apparatus capable of reading an original image at high speed. And other object is to provide an image reading apparatus in which even when heat is generated at an inverter, reading operation is not influenced. In order to achieve these object, the image reading apparatus is comprised with a scanning means including, a light source for illuminating an original, an image pickup element for receiving reflected light from the original, a cabinet and an inverter provided at a vicinity of a side face of the cabinet in parallel with a direction of moving the light source for driving the light source, a communicating means provided at a vicinity of a side face of the cabinet opposed to the side face at the vicinity of the inverter and a cooling fan for cooling an interval between the inverter and the communicating means.
    • 本发明的目的是提供一种能够高速读取原始图像的图像读取装置。 其他目的是提供一种图像读取装置,其中即使在逆变器处产生热量,读取操作也不受影响。 为了实现这些目的,图像读取装置包括扫描装置,该扫描装置包括用于照射原件的光源,用于接收来自原稿的反射光的摄像元件,设置在 与移动用于驱动光源的光源的方向平行的机柜的侧面,设置在与逆变器附近的侧面相对的柜体的侧面附近的连通装置和冷却风扇 用于冷却逆变器和通信装置之间的间隔。
    • 10. 发明授权
    • Optical inspection method
    • 光学检测方法
    • US5648221A
    • 1997-07-15
    • US259770
    • 1994-06-14
    • Takayuki Suga
    • Takayuki Suga
    • G01N33/533G01N33/58G01N33/53G01N33/569
    • G01N33/582G01N33/533Y10S435/808Y10S435/968Y10S436/80Y10S436/805Y10S436/813
    • Various methods for precisely inspecting presence or absence of an antigen-antibody reaction or a type of the antigen-antibody reaction are provided. A method comprises a first step of mixing an object to be inspected with a photosensitive material, a second step of mixing a mixture obtained in the first step with an antibody, and a third step of detecting a photon echo from a specimen obtained in the second step to examine presence or absence, or a type of an antigen-antibody reaction. A further method comprises a first step of mixing an object to be inspected with an antibody, a second step of mixing a secondary antibody for the antibody with a photosensitive material, a third step of mixing a mixture obtained in the first step with a mixture obtained in the second step, and a fourth step of detecting a photon echo from a specimen obtained in the third step to examine presence or absence, or a type of an antigen-antibody reaction. A further method comprises a first step of mixing an antibody with a photosensitive materials a second step of mixing an object to be inspected with a mixture obtained in the first step, and a third step of detecting a photon echo from a specimen obtained in the second step to examine presence or absence, or a type of an antigen-antibody reaction. A still further method comprises a first step of mixing an object to be inspected with an antibody, a second step of mixing a mixture obtained in the first step with a photosensitive material, and a third step of detecting a photon echo from a specimen obtained after completion of the second step to examine presence or absence, or a type of an antigen-antibody reaction.
    • 提供了用于精确检查抗原 - 抗体反应的存在或不存在的各种方法或抗原 - 抗体反应的类型。 一种方法包括将待检查对象与感光材料混合的第一步骤,将第一步骤中获得的混合物与抗体混合的第二步骤和从第二步骤获得的样品中检测光子回波的第三步骤 检查存在或不存在的步骤,或一种抗原 - 抗体反应。 另一种方法包括将待检测对象与抗体混合的第一步骤,将抗体的二次抗体与感光材料混合的第二步骤,将第一步骤中获得的混合物与获得的混合物混合的第三步骤 以及第四步骤,从第三步骤中获得的样本中检测光子回波,以检查是否存在或抗原 - 抗体反应的类型。 另一种方法包括将抗体与感光材料混合的第一步骤,第二步是将待检测对象与第一步骤中获得的混合物混合,以及第三步骤,从第二步中获得的样本检测光子回波 检查存在或不存在的步骤,或一种抗原 - 抗体反应。 另一种方法包括将待检查对象与抗体混合的第一步骤,将第一步骤中获得的混合物与感光材料混合的第二步骤,以及第三步骤,其从以下获得的样品中检测光子回波 完成检查存在或不存在的第二步骤,或一种抗原 - 抗体反应。