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Correcting spatial distortion and non-uniformity in planar images from #x03B3;-Camera systems

机译:从γ相机系统校正平面图像中的空间失真和非均匀性

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In this work a correction method for the spatial distortion and non-uniformity of planar images is presented. It is based on an event-by-event correction algorithm suitable for images obtained from small Field of View (FOV) γ-Camera systems which are equipped with a Position Sensitive PhotoMultiplier Tube (PSPMT). In our study, the γ-Camera system consists of a 3 inch PSPMT with a 16X+16Y crossed wire anode (Model R2486, HAMAMATSU), a 4mm pixelated CsI(Tl) crystal (pixel-width 1mm) and a parallel (hexagonal) hole collimator. The correction of the spatial distortion is based on lookup tables with the coordinates of well defined reference points which are selected during the calibration phase of the system. The reference points are the centres of predefined pixels, well distinguishable at the planar image using a small laboratory 60Co source without collimation. The applied algorithm incorporates 2D-interpolation techniques and has been developed on a full automated graphics environment making use of the HIGZ (High Level Interface to Graphics and Zebra) program libraries from CERN. Both correction methods for the spatial distortion and non-uniformity have been applied to planar images obtained from small capillary phantoms filled with water solution of 99mTc. The method is also extended to tomographic images and the observed SPECT improvement in resolution is discussed.
机译:在这项工作中,呈现了用于平面图像的空间失真和不均匀性的校正方法。它基于适用于从配备有位置敏感光电倍增管(PSPMT)的小视野(FOV)γ相机系统获得的图像的逐个事件校正算法。在我们的研究中,γ相机系统由3英寸PSPMT组成,带16x + 16Y交叉线阳极(型号R2486,Hamamatsu),4毫米像素化CSI(TL)晶体(像素宽1mm)和并联(六边形)孔准直器。空间失真的校正基于具有在系统的校准阶段期间选​​择的良好定义的参考点的坐标的查找表。参考点是预定义像素的中心,使用小实验室 60 co源在平面图像上可区分,没有准直。应用算法包含2D插值技术,并已在完整的自动图形环境中开发,利用来自CERN的HIGZ(高级接口到图形和ZEBRA)程序库。两种用于空间变形和非均匀性的校正方法已经应用于从填充有 99m / sup> tc的水溶液的小毛细管体模具获得的平面图像。该方法还扩展到断层图像,并讨论了分辨率的观察到的SPECT改进。

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