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Design and manufacturing approach to the implementation of a microlens-array based scintillation conversion screen

机译:基于微透镜阵列的闪烁转换屏幕的设计和制造方法

摘要

A portable, self-contained, electronic radioscopic imaging system uses a pulsed X-ray source, a remote X-ray sensor, and a self-contained, display and controller unit to produce, store, and/or display digital radioscopic images of an object under investigation in low voltage imaging environments such as medical applications including mammography and tissue imaging, and industrial radiography of low-density structures, or the like. The radiographic system uses an X-ray converter screen for converting impinging X-ray radiation to visible light, and thus each point impinged on the screen by X-ray radiation scintillates visible light emissions diverging from the screen. An image sensor, i.e., a CCD camera, is configured to sense the visible light from the screen. An aspheric objective lens operable with the CCD camera spatially senses visible light within a collection cone directed outwardly from the image sensor. An emission modification lens layer, e.g., a prismatic brightness enhancement film or a sprayed on transmissive layer, through which the visible light emitted from the screen is transmitted is superposed with the screen and positioned in an optical path between the aspheric lens and the screen for generally focusing the diverging visible light as a restricted cone of illumination propagating outwardly from each point impinged on the screen to increase the fraction of light directed into the collection cone of the first lens and reducing the amount of scattered visible light from the screen.
机译:便携式,独立的电子放射线成像系统使用脉冲X射线源,远程X射线传感器以及独立的显示和控制器单元来产生,存储和/或显示放射线成像的数字放射线图像。在低电压成像环境(例如包括乳房X线照片和组织成像的医学应用以及低密度结构的工业X射线照相)中正在研究的对象。放射线照相系统使用X射线转换器屏幕将入射的X射线辐射转换为可见光,因此X射线辐射撞击在屏幕上的每个点都会使从屏幕发散的可见光闪烁。图像传感器,即CCD相机,被配置为感测来自屏幕的可见光。可与CCD相机配合使用的非球面物镜在空间上感测从图像传感器向外指向的收集锥内的可见光。用于透射从屏幕发射的可见光的发射改性透镜层,例如棱镜增亮膜或喷涂在透射层上,使从屏幕发射的可见光与该屏幕重叠,并位于非球面透镜和用于该屏幕的屏幕之间的光路中。通常,将发散的可见光聚焦为从照射在屏幕上的每个点向外传播的受限照明锥,以增加进入第一透镜的收集锥的光的比例,并减少从屏幕散射的可见光的量。

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