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Distortion Orientation and Translation Corrections of Tiled EMCCD Detectors for the New Solid State X-ray Image Intensifier (SSXII)

机译:新型固态X射线图像增强器(SSXII)的平铺EMCCD检测器的失真方向和平移校正

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摘要

We report on the technology of imaging corrections for a new solid state x-ray image intensifier (SSXII) with enhanced resolution and fluoroscopic imaging capabilities, made of a mosaic of modules (tiled-array) each consisting of CsI(Tl) phosphor coupled using a fiber-optic taper or minifier to an electron multiplier charge coupled device (EMCCD). Generating high quality images using this EMCCD tiled-array system requires the determination and correction of the individual EMCCD sub-images with respect to relative rotations and translations as well as optical distortions due to the fiber optic tapers. The image corrections procedure is based on comparison of resulting (distorted) images with the known square pattern of a wire mesh phantom. The mesh crossing point positions in each sub-image are automatically identified. With the crossing points identified, the mapping between distorted and an undistorted array is determined. For each pixel in a distorted sub-image, the corresponding location in the corrected sub-image is calculated using bilinear interpolation. For the rotation corrections between sub-images, the orientation of the vectors between respective mesh crossing points in the various sub-images are determined and each sub-image is appropriately rotated with the pixel values again determined using bilinear interpolation. Image translation corrections are performed using reference structures at known locations. According to our estimations, the distortion corrections are accurate to within 1%; the rotations are determined to within 0.1 degree, and translation corrections are accurate to well within 1 pixel. This technology will provide the basis for generating single composite images from tiled-image configurations of the SSXII regardless of how many modules are used to form the images.
机译:我们报告了一种新的固态X射线图像增强器(SSXII)的成像校正技术,该技术具有增强的分辨率和荧光成像功能,由模块(平铺阵列)的马赛克组成,每个模块由CsI(Tl)磷光体组成,使用电子倍增器电荷耦合器件(EMCCD)的光纤锥度或缩小器。使用这种EMCCD平铺阵列系统生成高质量图像需要相对于相对旋转和平移以及由于光纤锥度引起的光学畸变确定和校正单个EMCCD子图像。图像校正过程基于将生成的(失真的)图像与金属丝网体模的已知正方形图案进行比较。自动识别每个子图像中的网格交叉点位置。在识别出交叉点的情况下,确定失真阵列和未失真阵列之间的映射。对于失真的子图像中的每个像素,使用双线性插值计算校正后的子图像中的相应位置。对于子图像之间的旋转校正,确定各个子图像中各个网格交叉点之间的矢量的方向,并且利用再次使用双线性插值确定的像素值来适当地旋转每个子图像。使用已知位置的参考结构执行图像平移校正。根据我们的估计,失真校正的精确度在1%以内。旋转被确定在0.1度以内,平移校正精确到1个像素以内。这项技术将为从SSXII的平铺图像配置生成单个合成图像提供基础,无论使用多少个模块来形成图像。

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