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Revisit of combined parallel-beam/cone-beam or fan-beam/cone-beam imaging

机译:重访组合的平行光束/圆锥光束或扇形光束/圆锥光束成像

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Purpose: This aim of this paper is to revisit the parallel-beam/cone-beam or fan-beam/cone-beam imaging configuration, and to investigate whether this configuration has any advantages. Methods: Twenty years ago, it was suggested to simultaneously use a parallel-beam (or a fan-beam) collimator and a cone-beam collimator to acquire single photon emission computed tomography data. The motivation was that the parallel-beam (or the fan-beam) collimator can provide sufficient sampling, while the cone-beam collimator is able to provide higher photon counts. Even with higher total counts, this hybrid system does not give significant improvement (if any) in terms of image noise and artifacts reduction. If a conventional iterative maximum-likelihood expectation-maximization algorithm is used to reconstruct the image, the resultant reconstruction may be worse than the parallel-beam-only (or fan-beam-only) system. This paper uses the singular value decomposition (SVD) analysis to explain this phenomenon. Results: The SVD results indicate that the parallel-beam-only and the fan-beam-only system outperform the combined systems. Conclusions: The optimal imaging system does not necessary to be the one that generates the projections with highest signal-to-noise ratio and best resolution.
机译:目的:本文的目的是重新审视平行光束/圆锥光束或扇形光束/圆锥光束成像配置,并研究这种配置是否具有任何优势。方法:二十年前,建议同时使用平行光束(或扇形光束)准直仪和锥形光束准直仪来获取单光子发射计算机断层扫描数据。其动机是平行光束(或扇形光束)准直器可以提供足够的采样,而锥形光束准直器则可以提供更高的光子计数。即使具有更高的总计数,该混合系统在图像噪声和伪影减少方面也没有显着改善(如果有)。如果使用常规的迭代最大似然期望最大化算法来重建图像,则所得的重建可能比仅并行束(或仅扇形束)系统差。本文使用奇异值分解(SVD)分析来解释此现象。结果:SVD结果表明仅并行光束和仅扇形光束的系统优于组合系统。结论:最佳成像系统不必是生成具有最高信噪比和最佳分辨率的投影的系统。

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