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Micro-CT images reconstruction and 3-D visualization for small-animal studying

机译:用于小动物研究的Micro-CT图像重建和3-D可视化

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摘要

A small-animal x-ray micro computed tomography (micro-CT) system has been constructed to screen laboratory small animals and organs. The micro-CT system consists of dual fiber-optic taper-coupled CCD detectors with a field-of-view of 25X50 mm~2, a microfocus x-ray source, a rotational subject holder. For accurate localization of rotation center, coincidence between the axis of rotation and centre of image was studied by calibration with a polymethylmethacrylate cylinder. Feldkamp's filtered back-projection cone-beam algorithm is adopted for three-dimensional reconstruction on account of the effective corn-beam angle is 5.67° of the micro-CT system. 200x1024x1024 matrix data of micro-CT is obtained with the magnification of 1.77 and pixel size of 31x31μm~2. In our reconstruction software, output image size of micro-CT slices data, magnification factor and rotation sample degree can be modified in the condition of different computational efficiency and reconstruction region. The reconstructed image matrix data is processed and visualization by Visualization Toolkit (VTK). Data parallelism of VTK is performed in surface rendering of reconstructed data in order to improve computing speed. Computing time of processing a 512x512x512matrix datasets is about 1/20 compared with serial program when 30 CPU is used. The voxel size is 54x54x108 μm~3 . The reconstruction and 3-D visualization images of laboratory rat ear are presented.
机译:已经建立了一个小动物X射线计算机断层扫描(micro-CT)系统来筛选实验室的小动物和器官。 micro-CT系统由视野范围为25X50 mm〜2的双光纤锥形耦合CCD检测器,微焦点x射线源,可旋转对象支架组成。为了精确定位旋转中心,通过使用聚甲基丙烯酸甲酯圆柱体进行校准研究了旋转轴和图像中心之间的重合。由于微型CT系统的有效玉米束角为5.67°,因此采用Feldkamp的滤波反投影锥束算法进行三维重建。以1.77的放大倍率和31x31μm〜2的像素大小获得了200x1024x1024的微型CT矩阵数据。在我们的重建软件中,可以在不同计算效率和重建区域的情况下修改微CT切片数据的输出图像大小,放大倍数和旋转采样度。重建的图像矩阵数据通过可视化工具包(VTK)进行处理和可视化。 VTK的数据并行性是在重建数据的表面渲染中执行的,以提高计算速度。与使用30个CPU的串行程序相比,处理512x512x512矩阵数据集的计算时间约为1/20。体素尺寸为54x54x108μm〜3。呈现了实验室老鼠耳朵的重建图像和3D可视化图像。

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