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    • 21. 发明授权
    • Radiographic intensifying screen and process for the preparation of the
same
    • 射线照相增强屏及其制备方法
    • US4952813A
    • 1990-08-28
    • US233608
    • 1988-06-13
    • Junji MiyaharaAkira Kitada
    • Junji MiyaharaAkira Kitada
    • C09K11/77G21K4/00
    • G21K4/00C09K11/02C09K11/7771
    • A radiographic intensifying screen comprising a support and a phosphor-containing resin layer provided thereon, in which the void ratio of said phosphor-containing resin layer is reduced in comparison with an ordinarily prepared phosphor-containing resin layer having the same binder-phosphor ratio and formed by a coating procedure conducted under an atmospheric pressure.The void ratio is not more than 85% of the void ratio of the ordinarily prepared phosphor-containing resin layer for a phosphor-containing resin layer which contains a resinous binder and a phosphor in a weight ratio of 1:1 to 1:25, the ratio of 1:25 being exclusive, and the void ratio is not more than 90% for a phosphor-containing resin layer which contains a resinuous binder and a phosphor in a weight ratio of 1:25 to 1:100.
    • 一种射线照相增强屏幕,包括支撑体和设置在其上的含磷光体树脂层,其中所述含荧光体树脂层的空隙率与通常制备的具有相同粘合剂 - 荧光体比率的含磷树脂层相比减小, 通过在大气压下进行的涂布程序形成。 空隙率不超过包含树脂粘合剂和重量比为1:1至1:25的荧光体的含荧光体树脂层的通常制备的含磷光体树脂层的空隙率的85% 对于含有树脂结合剂的含荧光体的树脂层和1:25〜1:100的重量比的荧光体,1:25的比例是排他性,空隙率不大于90%。
    • 22. 发明授权
    • Radiation image storage panel
    • 辐射图像存储面板
    • US4910407A
    • 1990-03-20
    • US226549
    • 1988-07-29
    • Satoshi ArakawaJunji Miyahara
    • Satoshi ArakawaJunji Miyahara
    • G03C5/16G21K4/00
    • G21K4/00G03C5/16Y10S428/913Y10S428/914
    • A radiation image storage panel comprising a support and a stimulable phosphor-containing resin layer provided thereon, in which the void ratio of said stimulable phosphor-containing resin layer is reduced in comparison with an ordinarily prepared stimulable phosphor-containing resin layer having the same binder-phosphor ratio and formed by a coating procedure conducted under an atmospheric pressure.The void ratio is not more than 85% of the void ratio of the ordinarily prepared stimulable phosphor-containing resin layer in which a resinous binder and a stimulable phosphor are contained in a weight ratio of 1:1 to 1:25, the ratio of 1:25 being exclusive, and the void ratio is not more than 90% for a stimulable phosphor-containing resin layer in which a resinous binder and a stimulable phosphor are contained in a weight ratio of 1:25 to 1:100.
    • 一种辐射图像存储面板,其特征在于,包括支撑体和设置在其上的含有可刺激的含磷光体的树脂层,其中所述可刺激的含荧光体的树脂层的空隙率与通常制备的具有相同粘合剂的可刺激的含磷光体的树脂层相比, - 通过在大气压下进行的涂布程序形成。 空隙率不超过包含树脂粘合剂和可刺激荧光体的通常制备的可刺激含磷光体树脂层的空隙率的85%,其重量比为1:1至1:25,其比例 1:25为1:25〜1:100的重量比,含有树脂粘合剂和可刺激性荧光体的可刺激含荧光体树脂层的空隙率不超过90%。
    • 25. 发明授权
    • Electron microscope image output method and apparatus
    • 电子显微镜图像输出方法和装置
    • US4873440A
    • 1989-10-10
    • US137691
    • 1987-12-24
    • Nobufumi MoriTakayuki KatohTetsuo OikawaYoshiyasu HaradaJunji Miyahara
    • Nobufumi MoriTakayuki KatohTetsuo OikawaYoshiyasu HaradaJunji Miyahara
    • H01J37/22H01J37/26
    • H01J37/224
    • In a system for outputting an electron microscope image, a two-dimensional sensor for storing electron beam energy thereon is exposed to an electron beam passing through a specimen in a vacuum to have the electron beam energy stored on the two-dimensional sensor, and is then exposed to light or heat to release the stored energy as light emission. The emitted light is photoelectrically detected to obtain image signals, and an electron beam image of the specimen is output on the basis of the image signals. The specimen is divided into a plurality of divisions, and the storage of the electron beam energy is carried out for each of the divisions. The image signals obtained at the divisions are combined to form composite image signals that represent an overall specimen image formed by a group of the divisions, and the image signals at the divisions are corrected so that signal values of the boundary areas of adjacent divisions become approximately equal to each other.
    • 在用于输出电子显微镜图像的系统中,用于在其上存储电子束能的二维传感器暴露于在真空中通过样本的电子束,以将电子束能量存储在二维传感器上,并且是 然后暴露于光或热以释放储存的能量作为发光。 发射的光被光电检测以获得图像信号,并且基于图像信号输出样本的电子束图像。 样本被分成多个部分,并且对于每个部分执行电子束能量的存储。 在分割处获得的图像信号被组合以形成表示由一组分割形成的总体样本图像的合成图像信号,并且校正分割处的图像信号,使得相邻分区的边界区域的信号值变为约 相等。
    • 29. 发明授权
    • Phosphor
    • US5023014A
    • 1991-06-11
    • US403072
    • 1989-09-05
    • Hiroyuki TodaJunji MiyaharaKenji Takahashi
    • Hiroyuki TodaJunji MiyaharaKenji Takahashi
    • C09K11/62C09K11/08C09K11/64C09K11/77G03C5/16G21K4/00H01J29/38
    • C09K11/7705G03C5/16G21K4/00
    • A rare earth element activated complex halide phosphor and a radiation image storage panel having a fluorescent layer comprising the phosphor, which phosphor is represented by the formula:BaFX.multidot.aLiX'.multidot.bBeX.sub.2 ".multidot.cM.sup.III X.sub.3 '":dAwherein M.sup.III is at least one trivalent metal selected from the group consisting of Al and Ga, each of X, X', X" and X'" is at least one halogen selected from the group consisting of Cl, Br and I, A is at least one rare earth element selected from the group consisting of Eu, Tb, Ce, Tm, Dy, Pr, Ho, Nd, Yb, Er, Gd, Lu, Sm and Y, a, b and c are numbers satisfying the conditions of 0.ltoreq.a.ltoreq.0.ltoreq.b.ltoreq.0.1, 0.ltoreq.c.ltoreq.0.1 and 10.sup.-4 .ltoreq.a+b+c.ltoreq.0.1, and d is a number satisfying the condition of 10.sup.-6 .ltoreq.d.ltoreq.0.2. The phosphor emits light of high luminance when stimulated by light having a wavelength within the range of 500 to 1100 nm after exposure to a radiation such X-rays, ultraviolet rays, cathode rays, or the like. Further, the phosphor exhibits little fading. Accordingly, the radiation image storage panel has high sensitivity and exhibits improved fading property.
    • 一种稀土元素活化的复合卤化物荧光体和具有荧光层的荧光层的放射线图像存储面板,该荧光体由下式表示:BaFXxaLiX'xbBeX2''xcMIIIX3“':dA,其中MIII为至少一种选择的三价金属 从由Al和Ga组成的组中,X,X',X“和X”'中的每一个是选自Cl,Br和I中的至少一种卤素,A是选自至少一种稀土元素 从Eu,Tb,Ce,Tm,Dy,Pr,Ho,Nd,Yb,Er,Gd,Lu,Sm和Y组成的组中,a,b和c是满足条件0 < /=0