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An investigation on analytical methods for correction of distance-dependent resolution variation in 3D SPECT imaging

机译:3D SPECT成像遥控分辨率变化校正分析方法的研究

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Spatial resolution variation as a function of distance from collimator surface in single photon emission computed tomography (SPECT) is a major obstacle for quantitative imaging. This work investigated two analytical inversion methods for correcting the distance-dependent resolution variation. The first one derives accurately an inversion formula, but approximates the resolution variation kernel. The second one considers accurately the resolution variation kernel, but approximates the inversion formula. Reconstructed images using the first method showed a better resolution recovery at the central area of field-of-view (FOV), consistent with the approach that the resolution kernel is approximated for near-field regions. The second method restored resolution better at the FOV periphery, consistent with the theory that the formula is approximated for far-field regions. The first method is very sensitive to the approximation. The second one is robust and, therefore, is a better choice for quantitative SPECT imaging.
机译:空间分辨率变化作为单光子发射电压扫描(SPECT)中的准直器表面的距离的函数是用于定量成像的主要障碍。这项工作研究了校正距离依赖性分辨率变化的两种分析反演方法。第一个是准确地源的反演公式,但是近似分辨率变化核。第二个将准确考虑分辨率变化内核,但近似于反转公式。使用第一方法的重建图像在视野(FOV)的中心区域中,与近场区域近似的方法一致地在视野视野(FOV)的中心区域中的更好的分辨率恢复。第二种方法在FOV外围更好地恢复分辨率,与该理论一致,即该公式对于远场区域的近似。第一种方法对近似非常敏感。第二个是稳健的,因此,定量SPECT成像是更好的选择。

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