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    • 72. 发明授权
    • Radiation detector module
    • 辐射检测器模块
    • US08497482B2
    • 2013-07-30
    • US12842456
    • 2010-07-23
    • Juhyun YuYoshinori SunagaNaoyuki YamadaShinichi InoueIsao Takahashi
    • Juhyun YuYoshinori SunagaNaoyuki YamadaShinichi InoueIsao Takahashi
    • G01T1/24
    • G01T7/00G01T1/242G01T1/243
    • A radiation detector module includes a radiation detecting substrate including a plurality of semiconductor devices mounted thereon for detecting radiation, a fixing member for holding the radiation detecting substrate, and a circuit substrate connected to the radiation detecting substrate. The radiation detecting substrate further includes a mounting board including an edge portion connected to the circuit substrate at one end thereof, and a flexible substrate including a wiring pattern connected to the plurality of semiconductor devices. The fixing member includes a bottom, a first side wall extending in a normal direction to the bottom from one end of the bottom, a second side wall extending in the normal direction to the bottom from the other end of the bottom, and substrate supporting portions on the first side wall and the second side wall.
    • 辐射检测器模块包括:辐射检测基板,包括安装在其上的用于检测辐射的多个半导体器件,用于保持放射线检测基板的固定部件和连接到放射线检测基板的电路基板。 放射线检测基板还包括安装基板,其包括在其一端连接到电路基板的边缘部分,以及包括连接到多个半导体器件的布线图案的柔性基板。 固定构件包括底部,从底部的一端沿垂直方向延伸到底部的第一侧壁,从底部的另一端沿垂直方向延伸到底部的第二侧壁和基底支撑部分 在第一侧壁和第二侧壁上。
    • 74. 发明申请
    • PRESSURE-SENSITIVE ADHESIVE COMPOSITION FOR OPTICAL FILMS, PRESSURE-SENSITIVE ADHESIVE OPTICAL FILM AND IMAGE DISPLAY
    • 用于光学薄膜的压敏粘合剂组合物,压敏粘合剂光学薄膜和图像显示
    • US20110070435A1
    • 2011-03-24
    • US12954102
    • 2010-11-24
    • Yuusuke ToyamaShinichi InoueMizue NagataToshitsugu Hosokawa
    • Yuusuke ToyamaShinichi InoueMizue NagataToshitsugu Hosokawa
    • B32B27/30C09J7/02G02B1/10C09J133/10
    • C09J133/14C08L2312/08C09J7/385G02F2202/28Y10T428/2848Y10T428/2891
    • There is provided a pressure-sensitive adhesive composition for optical films. The composition can form a pressure-sensitive adhesive layer that can prevent light leakage caused by stress associated with dimensional change of a component such as an optical film, that has reworkability such that it can be easily peeled from a component, and that has satisfactory processability such that it can be processed without pressure-sensitive adhesive stain or dropout, after it is formed on an optical film. A pressure-sensitive adhesive optical film produced using the composition is also provided. The pressure-sensitive adhesive composition is prepared to include a (meth)acrylic polymer including (a) 34 to 94% by weight of an alkyl (meth)acrylate monomer unit, (b) 5 to 50% by weight of an aromatic ring-containing (meth)acrylate monomer unit, and (c) 0.01 to 0.5% by weight of an amino group-containing (meth)acrylate monomer unit; 0.01 to 2 parts by weight of a peroxide as a crosslinking agent; and 0.01 to 2 parts by weight of a silane coupling agent based on 100 parts by weight of the (meth)acrylic polymer.
    • 提供了一种用于光学膜的压敏粘合剂组合物。 组合物可形成压敏粘合剂层,其可以防止由与诸如光学膜的组分的尺寸变化相关的应力引起的光泄漏,其具有可以容易地从组分剥离的再加工性,并且具有令人满意的加工性 使其在光学膜上形成之后能够被加工而没有压敏粘合剂污渍或脱落。 还提供了使用该组合物制备的压敏粘合剂光学薄膜。 制备压敏粘合剂组合物包括(甲基)丙烯酸类聚合物,其包含(a)34-94重量%的(甲基)丙烯酸烷基酯单体单元,(b)5-50重量%的芳香环 - (甲基)丙烯酸酯单体单元,(c)0.01〜0.5重量%的含氨基的(甲基)丙烯酸酯单体单元; 0.01〜2重量份作为交联剂的过氧化物; 和基于100重量份的(甲基)丙烯酸类聚合物的硅烷偶联剂为0.01〜2重量份。
    • 79. 发明申请
    • METHOD FOR CALIBRATING NUCLEAR MEDICINE DIAGNOSIS APPARATUS
    • 用于校准核医学诊断装置的方法
    • US20090084947A1
    • 2009-04-02
    • US12039413
    • 2008-02-28
    • Norihito YANAGITAShinichi InoueKatsutoshi Tsuchiya
    • Norihito YANAGITAShinichi InoueKatsutoshi Tsuchiya
    • G12B13/00
    • G01T1/1648
    • A nuclear medicine diagnosis apparatus, which rotates a rod-shaped radiation source or a point radiation source while changing the radius thereof and carries out a calibration work, is provided to resolve the following problems. If detector calibration is carried out using a cylindrical phantom whose interior is filled with a 18F solution, for example, there is a risk that a γ-ray is scattered by the aqueous solution itself inside the cylindrical phantom. Although there is a method for correcting the scattered radiation, the method has a disadvantage that the correction results in poor calibration. Moreover, if a rod-shaped radiation source is rotated inside a tunnel, there is an extremely low risk of causing the above-described scattering because it is rod-shaped. However, this rod-shaped radiation source only rotates on an orbit of a certain radius, resulting in a ring-shaped radiation source having a hollow portion thereinside.
    • 提供了一种在改变其半径并执行校准工作的同时旋转棒状辐射源或点辐射源的核医学诊断装置,以解决以下问题。 如果使用其内部填充有18F溶液的圆柱形幻影进行检测器校准,例如,存在伽马射线在水平溶液本身在圆柱体模体内散射的风险。 虽然存在用于校正散射辐射的方法,但是该方法具有校正导致校准差的缺点。 此外,如果杆状辐射源在隧道内旋转,则由于它是棒状,所以导致上述散射的风险极低。 然而,该棒状辐射源仅在某个半径的轨道上旋转,导致环形辐射源在其内部具有中空部分。