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首页> 外文期刊>Computer Graphics Forum: Journal of the European Association for Computer Graphics >High-Quality Volumetric Reconstruction on Optimal Lattices for Computed Tomography
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High-Quality Volumetric Reconstruction on Optimal Lattices for Computed Tomography

机译:用于计算机断层扫描的最佳晶格的高质量体积重建

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摘要

Within the context of emission tomography, we study volumetric reconstruction methods based on the Expectation Maximization (EM) algorithm. We show, for the first time, the equivalence of the standard implementation of the EM-based reconstruction with an implementation based on hardware-accelerated volume rendering for nearest-neighbor (NN) interpolation. This equivalence suggests that higher-order kernels should be used with caution and do not necessarily lead to better performance. We also show that the EM algorithm can easily be adapted for different lattices, the body-centered cubic (BCC) one in particular For validation purposes, we use the 3D version of the Shepp-Logan synthetic phantom, for which we derive closed-form analytical expressions of the projection data. The experimental results show the theoretically-predicted optimality of NN interpolation in combination with the EM algorithm, for both the noiseless and the noisy case. Moreover, reconstruction on the BCC lattice leads to superior accuracy, more compact data representation, and better noise reduction compared to the Cartesian one. Finally, we show the usefulness of the proposed method for optical projection tomography of a mouse embryo.
机译:在发射体层摄影术的背景下,我们研究了基于期望最大化(EM)算法的体积重建方法。我们首次展示了基于EM的重构的标准实现与基于硬件加速的最近邻(NN)插值渲染的实现的等效性。这种等效性表明,应谨慎使用高阶内核,并不一定会带来更好的性能。我们还展示了EM算法可以轻松地适用于不同的晶格,特别是体心立方(BCC)。出于验证的目的,我们使用Shepp-Logan合成体模的3D版本,为此我们得出了封闭形式投影数据的解析表达式。实验结果表明,在无噪声和有噪声的情况下,结合EM算法,理论上都可以预测NN插值的最优性。此外,与笛卡尔坐标系相比,在BCC晶格上进行重构可导致更高的精度,更紧凑的数据表示以及更好的降噪效果。最后,我们展示了所提出的方法对小鼠胚胎的光学投影层析成像的有效性。

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