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    • 1. 发明专利
    • X-ray imaging system
    • X射线成像系统
    • JPH11271457A
    • 1999-10-08
    • JP1155599
    • 1999-01-20
    • Edge Medical Devices Ltdエッジ・メディカル・ディバイセス・リミテッド
    • ZUR ALBERT
    • G01T1/20G01T1/24H01L31/09
    • G01T1/2018G01T1/246G01T1/2964
    • PROBLEM TO BE SOLVED: To obtain an X-ray imaging system by which an improved ionizing radiation image is detected digitally, by a method wherein a radiation detecting module is constituted of a dielectric layer, of a conductive layer which is interfaced with one face and the other face of the dielectric layer, of a photoelectric conversion layer and of the like. SOLUTION: An X-ray image detecting module 26 which is built in an X-ray imaging system comprises, e.g. a detecting assembly 50 and a slender light source 52 so as to be sealed with a housing 56. In the detecting assembly 50, a conductive electrode array 62 which is composed of a conductive film such as an indium oxide tin film or the like formed on a support substrate 60 such as a glass substrate or the like is provided, a dielectric layer 64 such as an SiO2 layer or the like is provided, and an X-ray sensing layer 66 as a photoelectric conversion layer such as an Se layer or the like is provided. Then, when X-rays are incident on the X-ray sensing layer 66 which is placed in an electric field, an electric charge image is formed on the face of the dielectric layer 64. When the assembly 50 is irradiated with, e.g. blue light from the light source 52, an electric discharge is generated, a current is detected, and an image is read out. The electric charge image is erased by a process in which the irradiation of, e.g. red light is included.
    • 要解决的问题:为了获得数字检测改进的电离辐射图像的X射线成像系统,通过一种方法,其中辐射检测模块由电介质层构成,导电层与一个面接合, 电介质层的另一面,光电转换层等。 解决方案:内置在X射线成像系统中的X射线图像检测模块26包括: 检测组件50和细长的光源52,以便与壳体56密封。在检测组件50中,导电电极阵列62由导电膜例如氧化铟锡膜等形成, 提供诸如玻璃基板等的支撑基板60,设置诸如SiO 2层等的介电层64,并且设置作为诸如Se层的光电转换层的X射线感测层66或 喜欢被提供。 然后,当X射线入射到放置在电场中的X射线感测层66上时,在电介质层64的表面上形成电荷图像。 来自光源52的蓝光,产生放电,检测电流,读出图像。 电荷图像被其中照射的过程擦除。 包括红灯。
    • 8. 发明专利
    • X-ray imaging system
    • IL123006A
    • 2005-12-18
    • IL12300698
    • 1998-01-20
    • EDGE MEDICAL DEVICES LTD
    • G01T1/20G01T1/24H01L31/09G01N23/04
    • The present disclosure presents an apparatus for radiation detection comprising a generally uniform dielectric layer, a conductive layer interfacing a first surface of the generally uniform dielectric layer; an ionizing radiation detection multi-layer structure including a photoelectric conversion layer interfacing a second surface of the generally uniform dielectric layer; said ionizing radiation detection multi-layer structure, said generally uniform dielectric layer, and said conductive layer being configured with respect to each other and being operative such that an imagewise ionizing radiation pattern impinging on said ionizing radiation detection multi-layer substrate causes a corresponding charge pattern representing said imagewise ionizing radiation to be generated at the interface between the generally uniform dielectric layer and the photoelectric conversion layer and causes a readable imagewise replica of said charge pattern to be formed in said conductive layer.
    • 9. 发明专利
    • DIGITAL DETECTOR FOR X-RAY IMAGING
    • CA2345303A1
    • 2001-02-01
    • CA2345303
    • 1999-07-26
    • EDGE MEDICAL DEVICES LTD
    • ZUR ALBERT
    • G01T1/24G01T1/20G01T1/29H01L27/146
    • The present invention discloses an X-ray imaging module having a multilayer ionizing radiation sensitive element (60) operative to convert spatially modulated impinging X-ray radiation to a spatially modulated charge distribution. The multilayer ionizing radiation sensitive element has a substrate (100), a conductive layer (102) overlying the substrate, an ionizi ng radiation sensitive layer (104) overlying the conductive layer which convert s ionizing radiation impinging thereon to charge carriers, and a blocking laye r (106) exposed to ionizing radiation and optical radiation, overlying the ionizing radiation sensitive layer. The blocking layer limits the passage of charges, of at least one polarity, and blocks optical radiation, of at least one spectral band, from penetrating therethrough, while permitting passage therethrough of ionizing radiation. The X-ray imaging module also contains a charge injection assembly (68) operative to inject charge into the multilaye r ionizing radiation sensitive element and readout circuitry coupled to the multilayer ionizing radiation sensitive element.