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    • 41. 发明授权
    • Diagnostic device system
    • 诊断设备系统
    • US08787528B2
    • 2014-07-22
    • US13067362
    • 2011-05-26
    • Takeshi KamiyaYusuke KitagawaYasunori OhtaHaruyasu Nakatsugawa
    • Takeshi KamiyaYusuke KitagawaYasunori OhtaHaruyasu Nakatsugawa
    • H05G1/06H05G1/10H05G1/64H01L27/146
    • A61B6/56A61B6/44
    • A diagnostic device system has a weight-reduced rechargeable battery. When a portable radiographic apparatus and a portable X-ray source are carried to and used for imaging at a private home or a care home, the portable radiographic apparatus and the portable X-ray source are loaded on an automobile. When the charge amount of rechargeable batteries for operation housed in the portable radiographic apparatus or the portable X-ray source loaded on the automobile is low, or when there are plural destinations and the charge amount of the rechargeable batteries becomes low, a rechargeable battery for charging mounted on the automobile is used to charge the rechargeable batteries for operation while traveling. Because the rechargeable batteries for operation are charged while traveling, a large number of rechargeable batteries for operation does not need to be charged in advance, whereby the weight of the rechargeable batteries for operation can be reduced.
    • 诊断装置系统具有减重充电电池。 当便携式放射线照相设备和便携式X射线源被携带到私人住宅或照料室进行成像并且用于便携式X射线照相设备和便携式X射线源时,将便携式放射照相设备和便携式X射线源装载在汽车上。 当容纳在便携式放射线照相设备中的操作的可充电电池的充电量或装载在汽车上的便携式X射线源的电量低时,或者当存在多个目的地并且充电电池的充电量变低时,可充电电池 汽车上的充电用于对可充电电池进行充电以在行驶时进行操作。 由于用于操作的可再充电电池在行驶时被充电,所以大量用于操作的可再充电电池不需要事先充电,从而可以减少用于操作的可再充电电池的重量。
    • 42. 发明授权
    • Radiological image detection apparatus and method of manufacturing the same
    • 放射线图像检测装置及其制造方法
    • US08642967B2
    • 2014-02-04
    • US13402803
    • 2012-02-22
    • Naoto IwakiriHaruyasu Nakatsugawa
    • Naoto IwakiriHaruyasu Nakatsugawa
    • G01T1/20
    • G01T1/202H01L27/14663
    • A method of manufacturing a radiological image detection apparatus having: a scintillator that emits fluorescence upon exposure to radiation; and a photodetecting unit disposed on a radiation entrance side of the scintillator, the method includes: a photodetecting unit production process for layering on a substrate a protective member that exhibits low radiation absorbency than that exhibited by the substrate and forming a thin film portion that detects the fluorescence as an electric signal on the protective member, thereby producing the photodetecting unit; a substrate peel-removal process for peeling and eliminating the substrate from the protective member; and an integration process for integrating the previously-produced scintillator and the photodetecting unit before or after the substrate peel-removal process.
    • 一种制造放射线图像检测装置的方法,具有:闪光体,其在暴露于放射线时发射荧光; 以及设置在所述闪烁体的辐射入射侧的光电检测单元,所述方法包括:光电检测单元的制造方法,其在基板上层叠具有比所述基板所显示的低的辐射吸收性的保护构件,形成检测 作为保护构件上的电信号的荧光,从而产生光检测单元; 用于从保护构件剥离和去除衬底的衬底剥离去除工艺; 以及用于在基板剥离处理之前或之后对先前制造的闪烁体和光电检测单元进行集成的集成处理。
    • 44. 发明授权
    • Radiological image detection apparatus
    • 放射图像检测装置
    • US09255997B2
    • 2016-02-09
    • US13563308
    • 2012-07-31
    • Haruyasu Nakatsugawa
    • Haruyasu Nakatsugawa
    • G01T1/20H01L27/146
    • G01T1/2018H01L27/14618H01L27/14663H01L2924/0002Y10T156/10H01L2924/00
    • A radiological image detection apparatus includes a radiological image conversion panel and a sensor panel. A sealant that is disposed between a substrate of the radiological image conversion panel and a substrate of the sensor panel and surrounds a scintillator in the radiological image conversion panel and a pixel array in the sensor panel to form an isolated space on the inside of the sealant. The scintillator includes a columnar portion including a group of columnar crystals formed by growing crystals of the phosphor in columnar shapes and a surface configured by a set of tips of the columnar crystals is disposed in close contact with the pixel array without being bonded to the pixel array. Both of the substrate of the radiological image conversion panel and the substrate of the sensor panel are flexible, and the isolated space is depressurized.
    • 放射线图像检测装置包括放射性图像转换面板和传感器面板。 一种密封剂,其设置在放射线图像转换面板的基板和传感器面板的基板之间,并且包围放射线图像转换面板中的闪烁体和传感器面板中的像素阵列,以在密封剂的内侧形成隔离空间 。 闪烁体包括柱状部分,其包括通过以柱状形式生长荧光体的晶体而形成的一组柱状晶体,并且由一组柱状晶体构成的表面设置成与像素阵列紧密接触而不与像素结合 数组。 放射性图像转换面板的基板和传感器面板的基板都是柔性的,隔离空间被减压。
    • 45. 发明授权
    • Radiation detection device
    • 辐射检测装置
    • US08884232B2
    • 2014-11-11
    • US13477721
    • 2012-05-22
    • Yasuhisa KanekoHaruyasu Nakatsugawa
    • Yasuhisa KanekoHaruyasu Nakatsugawa
    • G01T1/202
    • G01T1/202
    • A scintillator receives radiation and produces light. The scintillator is composed of columnar crystals arranged upright. Conical end portions of the columnar crystals are embedded in a resin layer formed on a light detection section. The resin layer, made from a thermosetting resin material, is heated and cured with the end portions embedded therein. Because a refractive index of the resin layer is lower than that of the columnar crystals, average refractive indices of respective layers between the columnar crystals and the light detection section change continuously. The resin layer prevents the end portions from damage and improves efficiency of incidence on the light detection section.
    • 闪烁体接收辐射并产生光。 闪烁体由直立排列的柱状晶体组成。 柱状晶体的锥形端部嵌入形成在光检测部上的树脂层中。 由热固性树脂材料制成的树脂层被嵌入其中的端部加热固化。 由于树脂层的折射率低于柱状晶体的折射率,柱状晶体和光检测部之间的各层的平均折射率连续变化。 树脂层防止端部损坏,并提高光检测部的入射效率。
    • 47. 发明授权
    • Radiological image conversion panel, manufacturing method thereof and radiological image detection apparatus
    • 放射图像转换面板及其制造方法以及放射图像检测装置
    • US08558183B2
    • 2013-10-15
    • US13478942
    • 2012-05-23
    • Haruyasu Nakatsugawa
    • Haruyasu Nakatsugawa
    • G01T1/20
    • G01T1/2018
    • A radiological image conversion panel includes: a scintillator made of a phosphor which emits fluorescence when exposed to radiation, in which a fluorescence emitting surface of the scintillator is bonded to a sensor panel having a pixel array detecting the fluorescence generated at the scintillator, through an adhesive layer, the scintillator includes a group of columnar crystals which are obtained by growing crystal of the phosphor into columnar shape, the fluorescence emitting surface is configured by a set of tip parts of the columnar crystals, at least edge portions of the fluorescence emitting surface are flattened by filling between the group of columnar crystals with filler, and the filling depth of the filler at a center portion of the fluorescence emitting surface is smaller than that at the edge portions of the fluorescence emitting surface.
    • 一种放射图像转换面板包括:由暴露于辐射时发射荧光的荧光体构成的闪烁体,其中闪烁体的荧光发射表面与具有检测在闪烁体产生的荧光的像素阵列的传感器面接合,通过 闪烁体包括通过将荧光体的晶体生长成柱状而获得的一组柱状晶体,荧光发射表面由柱状晶体的一组尖端部分构成,荧光发射表面的至少边缘部分 通过填充一组柱状晶体与填料之间的平坦化,并且在荧光发射表面的中心部分处的填料的填充深度小于荧光发射表面的边缘部分处的填充深度。
    • 49. 发明授权
    • Radiographic imaging device
    • 射线成像装置
    • US08939640B2
    • 2015-01-27
    • US13636698
    • 2011-03-24
    • Naoyuki NishinouHaruyasu Nakatsugawa
    • Naoyuki NishinouHaruyasu Nakatsugawa
    • H01J31/49A61B6/00
    • A61B6/4283A61B6/4233A61B6/4452A61B6/547A61B6/548
    • An electronic cassette that is equipped with a drive mechanism capable of accommodating a radiation detection section respectively in two casings and that is capable of changing the surface area of the radiation detection section to be externally exposed and the exposure position on the radiation detection section. Deterioration of the radiation detection section from radiation can be distributed due to control such that the same exposure position is not repeatedly employed. An electronic cassette is accordingly provided that does not suffer from uneven effects of deterioration from radiation within a single sheet radiation detection section even with repeated use.
    • 一种电子盒,其具有驱动机构,该驱动机构能够分别容纳两个壳体中的放射线检测部,并且能够将放射线检测部的表面积改变为外部曝光,并且能够将辐射检测部的曝光位置设置在放射线检测部上。 放射线检测部从放射线的劣化可以由于控制而分布,使得不重复使用相同的曝光位置。 因此,提供了即使重复使用也不会受到单片放射线检测部内的辐射的劣化的不均衡影响的电子盒。
    • 50. 发明授权
    • Radiological image detection apparatus and radiographic imaging cassette
    • 放射图像检测装置和放射成像盒
    • US08861680B2
    • 2014-10-14
    • US13361743
    • 2012-01-30
    • Naoto IwakiriHaruyasu Nakatsugawa
    • Naoto IwakiriHaruyasu Nakatsugawa
    • H05G1/64G03B42/04A61B6/00
    • G03B42/04A61B6/4233A61B6/4283
    • A radiological image detection apparatus includes: a radiological image detection apparatus main body including a scintillator that converts into fluorescence radiation emitted by way of a subject and a photodetecting unit provided on a radiation entrance side of the scintillator; and a support disposed on a radiation entrance side of the radiological image detection apparatus main body to support the subject, in which the photodetecting unit includes a thin film portion that detects the fluorescence as an electric signal and a reinforcing member that is provided on another side of the thin film portion with respect to its side facing the scintillator; and the reinforcing member and the support are bonded together and remain in close contact with each other along a joint plane therebetween.
    • 放射线图像检测装置包括:放射线图像检测装置主体,其包括:闪烁体,其转换为通过被检体发射的荧光辐射;以及光检测单元,设置在所述闪烁体的辐射入射侧; 以及设置在放射线图像检测装置主体的放射线入射侧的支撑被检体的支撑体,其中,所述受光单元包括检测作为电信号的荧光的薄膜部分和设置在另一侧的加强部件 的薄膜部分相对于面向闪烁体的一侧; 并且加强构件和支撑体接合在一起并沿其间的接合面保持彼此紧密接触。