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    • 1. 发明专利
    • Radiation image detection device
    • 辐射图像检测装置
    • JP2013117547A
    • 2013-06-13
    • JP2013056460
    • 2013-03-19
    • Konica Minolta Medical & Graphic Incコニカミノルタエムジー株式会社
    • SHOJI TAKEHIKOYANAGIDA TAKAFUMI
    • G01T1/20G21K4/00
    • G01T1/202
    • PROBLEM TO BE SOLVED: To provide a radiation image detection device capable of improving an image quality of graininess or the like of a radiation image.SOLUTION: In the radiation image detection device including a scintillator panel having a phosphor layer containing phosphor columnar crystal on a base plate and having a plurality of concaves formed by denting a plurality of protrusions growing abnormally on the surface of the phosphor layer of the scintillator panel, in which the diameter of the concave is 30 μm or more and is 1/2 or less of the layer thickness of the phosphor layer, a phosphor layer side 2 of the scintillator panel and photodetectors (hereafter, called as "planar photodetector") with a plurality of light-receiving pixels arranged two-dimensionally are brought into close contact with each other by pressure, and a surface side with the plurality of concaves of the phosphor layer formed thereon is arranged so as to come into contact with the photodetector.
    • 解决的问题:提供能够提高放射线图像的粒状等的图像质量的放射线图像检测装置。 解决方案:在包括在基板上具有含有荧光体柱状晶体的荧光体层的闪烁体面板的放射线图像检测装置中,具有通过凹陷在荧光体层的表面上异常生长的多个突起而形成的多个凹部 其中凹部的直径为30μm以上且为荧光体层的层厚度的1/2以下的闪烁体面板,闪烁体面板的荧光体层侧面2和光电检测器(以下称为“平面” 光电检测器“)与二维布置的多个光接收像素通过压力彼此紧密接触,并且其上形成有多个荧光体层的凹部的表面侧被布置成与 光电检测器。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Flat panel detector
    • 平板检测器
    • JP2012154940A
    • 2012-08-16
    • JP2012087290
    • 2012-04-06
    • Konica Minolta Medical & Graphic Incコニカミノルタエムジー株式会社
    • SHOJI TAKEHIKOSAKAI MIKA
    • G01T1/20
    • H01L27/14663G01T1/2002G01T1/29H01L27/14618H01L27/14632H01L2924/0002H01L2924/00
    • PROBLEM TO BE SOLVED: To provide a flat panel detector which prevents time degradation of a phosphor layer, protects the phosphor layer from a chemical degradation or a physical impact, and keeps a stable contact state between a scintillator panel and a planar light receiving element.SOLUTION: A flat panel detector 1 is composed by arranging a scintillator panel 12 in which a phosphor layer 122 is formed on a substrate 123 and a first protective film 121 covers the surface of the phosphor layer of the scintillator panel 12 on the surface of a planar light receiving element 13 having a plurality of pixels which are two-dimensionally arranged, where a removable adhesive layer 125 is provided on the surface of the first protective film, the first protective film is either a resin film or a polyparaxylene film, and the scintillator panel is in pressure contact with the light receiving element by a pressure.
    • 要解决的问题:为了提供防止荧光体层的时间劣化的平板检测器,保护荧光体层免受化学劣化或物理冲击,并且在闪烁体面板和平面光之间保持稳定的接触状态 接收元件。 解决方案:平板检测器1通过布置在基板123上形成荧光体层122的闪烁体面板12,并且第一保护膜121覆盖闪烁体面板12的荧光体层的表面 具有二维排列的多个像素的平面光接收元件13的表面,其中在第一保护膜的表面上设置可移除的粘合剂层125,第一保护膜是树脂膜或聚对二甲苯膜 ,并且闪烁体面板通过压力与光接收元件压力接触。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Flat panel detector
    • 平板检测器
    • JP2012008141A
    • 2012-01-12
    • JP2011186902
    • 2011-08-30
    • Konica Minolta Medical & Graphic Incコニカミノルタエムジー株式会社
    • SHOJI TAKEHIKOSAKAI MIKA
    • G01T1/20
    • H01L27/14663G01T1/2002G01T1/29H01L27/14618H01L27/14632H01L2924/0002H01L2924/00
    • PROBLEM TO BE SOLVED: To provide a flat panel detector which prevents time degradation of a phosphor layer, protects the phosphor layer from chemical deterioration or a physical impact, and in which a contact state between a scintillator panel and a flat light receiving element is stable.SOLUTION: In a flat panel detector 1 constituted by arranging a scintillator panel 12 which is constituted by providing a phosphor layer 122 on a substrate 123, and the scintillator panel 12 constituted of a first protective film 121 which covers the phosphor surface of the scintillator 12 on the surface of the flat light receiving element 13 having a plurality of two-dimensionally arranged pixels, a re-detachment adhesive layer 125 is provided on the surface of the first protective film, the first protective film is a resin film or a poly-para-xylylene film, and the scintillator panel 12 is further protected from an external impact by a cushion layer 15.
    • 要解决的问题:为了提供防止荧光体层的时间劣化的平板检测器,保护荧光体层免受化学劣化或物理冲击,并且其中闪烁体面板和平面光接收之间的接触状态 元素稳定。 解决方案:在平板检测器1中,将通过在基板123上设置荧光体层122而构成的闪烁体面板12和由覆盖荧光体表面的第一保护膜121构成的闪烁体面板12构成 在具有多个二维排列像素的平坦光接收元件13的表面上的闪烁器12,在第一保护膜的表面上设置有再剥离粘合剂层125,第一保护膜是树脂膜或 聚对二甲苯膜,并且闪烁体面板12进一步受到缓冲层15的外部冲击的保护。版权所有(C)2012,JPO和INPIT
    • 4. 发明专利
    • Radiation image detector and method of manufacturing the same
    • 辐射图像检测器及其制造方法
    • JP2011033563A
    • 2011-02-17
    • JP2009182225
    • 2009-08-05
    • Konica Minolta Medical & Graphic Incコニカミノルタエムジー株式会社
    • GOTO SHIGETOSHOJI TAKEHIKO
    • G01T1/20A61B6/00H01L27/14
    • PROBLEM TO BE SOLVED: To provide a radiation image detector, which is small, excellent in productivity, and also excellent in moisture resistance while preventing generation of image defects.
      SOLUTION: The radiation image detector has: a scintillator panel where at least a first substrate, a first adhesive layer, a second substrate, and a scintillator layer are laminated in order; and an output substrate having a photoelectric conversion element, and the scintillator panel and the output substrate are stuck firmly or bonded. In the surface-direction areas to dispose the layers of the scintillator panel, the area to dispose the first substrate encompasses the area to dispose the layer of the photoelectric conversion element, and the first substrate, the first adhesive layer, the second substrate, and the scintillator layer are covered with a moisture-resistant protective layer. In the manufacturing method, the moisture-resistant protective layer is provided after forming the scintillator panel.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种体积小,生产率优异,防潮性优异的放射线图像检测器,同时防止图像缺陷的产生。 解决方案:放射线图像检测器具有:闪烁体面板,其中依次层叠至少第一基板,第一粘合层,第二基板和闪烁体层; 以及具有光电转换元件的输出基板,并且使闪烁体面板和输出基板牢固地卡合或粘合。 在设置闪烁体面板的表面方向区域中,配置第一基板的区域包围设置光电转换元件层的区域,第一基板,第一粘接层,第二基板和 闪烁体层被防潮保护层覆盖。 在制造方法中,在形成闪烁体面板之后设置防潮保护层。 版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Radiographic image detector
    • 放射影像检测器
    • JP2008216041A
    • 2008-09-18
    • JP2007053919
    • 2007-03-05
    • Konica Minolta Medical & Graphic Incコニカミノルタエムジー株式会社
    • SHOJI TAKEHIKONAKANO YASUSHI
    • G01T1/20A61B6/00G21K4/00H04N5/32
    • G01T1/2018
    • PROBLEM TO BE SOLVED: To provide a radiographic image detector that is easily assembled and has high graininess or contrast.
      SOLUTION: This radiographic image detector comprises a radiation transmissive substrate and a scintillator panel having a phosphor layer formed in the column shape by a gas phase method, a protective cover that is arranged on the opposite side to the phosphor layer via the radiation transmissive substrate and on the incidence side of the radiation of the scintillator panel, a plane light emitting element that is disposed on the opposite side to the protective cover via the scintillator panel and has a plurality of light emitting pixels for photoelectrically converting the light from the scintillator panel arranged in a two-dimensional shape. The area S (cm
      2 ) of the radiation transmissive substrate and the mass W (g) of the scintillator panel establish the relation of expression (1): W(g) 2 ) × S (cm
      2 ).
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供容易组装并具有高粒度或对比度的射线照相图像检测器。 解决方案:该放射线照相图像检测器包括透射性基板和闪烁体面板,其具有通过气相法形成为柱状的荧光体层,保护盖经由辐射设置在与荧光体层相反的一侧 透射基板和闪烁体面板的辐射入射侧,经由闪烁体面板设置在与保护盖相反的一侧上的平面发光元件,并具有多个发光像素,用于光电转换来自 闪烁面板以二维形状排列。 辐射透射基板的面积S(cm 2 )和闪烁体面板的质量W(g)建立了表达式(1)的关系:W(g)<0.31(g / cm 2) SP> 2 )×S(cm 2 )。 版权所有(C)2008,JPO&INPIT
    • 10. 发明专利
    • Radiological image conversion panel
    • 放射图像变换面板
    • JP2005127851A
    • 2005-05-19
    • JP2003363447
    • 2003-10-23
    • Konica Minolta Medical & Graphic Incコニカミノルタエムジー株式会社
    • MORIKAWA OSAMUSHOJI TAKEHIKOHONDA SATORU
    • G21K4/00C09K11/00C09K11/61C09K11/85G01T1/00G03B42/02
    • PROBLEM TO BE SOLVED: To improve the contrast or sharpness of a radiological image conversion panel by preventing back scattering of an X-ray which is harmful to imaging.
      SOLUTION: This radiological image conversion panel is formed by sealing a stimulable phosphor layer 12 provided on a substrate 11 by a sealing material 20, and is used for irradiating the stimulable phosphor layer 12 with the X-ray from the substrate 11 side. A rare gas is sealed on the stimulable phosphor layer 12 side of the substrate 11. Since feeble light having the similar wavelength to excitation light of the stimulable phosphor is emitted by being excited by the X-ray irradiated from the substrate 11 side and transmitted through the stimulable phosphor layer 12 or by a weak X-ray transmitted through the radiological image conversion panel, scattered by a backward object, and again entering the radiological image conversion panel, a noise near the surface of the stimulable phosphor layer can be erased, to thereby improve contrast or sharpness of a reproduced image.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:通过防止对成像有害的X射线的背散射来提高放射性图像转换面板的对比度或清晰度。 解决方案:该放射性图像转换面板通过用密封材料20密封设置在基板11上的可刺激荧光体层12而形成,并且用于从基板11侧向X射线照射可刺激荧光体层12 。 稀有气体被密封在基板11的可激发荧光体层12侧上。由于通过从基板11侧照射的X射线激发具有与可激发荧光体的激发光相似的波长的微弱光,并且透过 刺激性荧光体层12或通过放射线图像转换面板透射的弱X射线被后向物体散射,再次进入放射线图像转换面板,可以擦除可刺激荧光体层的表面附近的噪声,到 从而提高再现图像的对比度或清晰度。 版权所有(C)2005,JPO&NCIPI