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VOIR: a volumetric image reconstruction algorithm based on Fourier techniques for inversion of the 3-D Radon transform

机译:VOIR:基于傅立叶技术的三维图像重建算法,用于3-D Radon变换的反演

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摘要

A novel volumetric image reconstruction algorithm known as VOIR is presented for inversion of the 3-D Radon transform or its radial derivative. The algorithm is a direct implementation of the projection slice theorem for plane integrals. It generalizes one of the most successful methods in 2-D Fourier image reconstruction involving concentric-square rasters to 3-D; in VOIR, the spectral data, which is calculated by fast Fourier techniques, lie on concentric cubes and are interpolated by a bilinear method on the sides of these concentric cubes. The algorithm has great computational advantages over filtered-backprojection algorithms; for images of side dimension N, the numerical complexity of VOIR is O(N/sup 3/ log N) instead of O(N/sup 4/) for backprojection techniques. An evaluation of the image processing performance is reported by comparison of reconstructed images from simulated cone-beam scans of a contrast and resolution test object. The image processing performance is also characterized by an analysis of the edge response from the reconstructed images.
机译:提出了一种新颖的体积图像重建算法,称为VOIR,用于3D Radon变换或其径向导数的求逆。该算法是平面积分投影切片定理的直接实现。它概括了将同心正方形栅格转换为3-D的2-D Fourier图像重建中最成功的方法之一;在VOIR中,通过快速傅立叶技术计算的光谱数据位于同心立方体上,并通过双线性方法在这些同心立方体的侧面进行插值。与滤波反投影算法相比,该算法具有很大的计算优势。对于侧面尺寸为N的图像,VOIR的数值复杂度为O(N / sup 3 / log N),而不是反投影技术的O(N / sup 4 /)。通过比较对比度和分辨率测试对象的模拟锥形束扫描得到的重建图像,可以报告对图像处理性能的评估。图像处理性能的特征还在于对来自重建图像的边缘响应的分析。

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