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首页> 外文期刊>Computerized Medical Imaging and Graphics: The Official Jounal of the Computerized Medical Imaging Society >Evaluation of a new gridding method for fully 3D direct Fourier PET reconstruction based on a two-plane geometry.
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Evaluation of a new gridding method for fully 3D direct Fourier PET reconstruction based on a two-plane geometry.

机译:基于两平面几何的完全3D直接傅里叶PET重建新网格方法的评估。

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This study investigated how the choice of fixed planes for the representation of the projection data of a cylindrical positron emission tomography (PET) scanner simplifies the frequency interpolation required by the 3D Fourier slice theorem (3D-FST). A new gridding algorithm based on a two-plane geometry and requiring only 1D interpolations in the Fourier domain was compared with the direct implementation of the 3D-FST. We show that the use of two orthogonal planes leads to signal to noise ratios similar to those achieved with the 3D-FST algorithm from projection data acquired with up to two times more count rates, while the resolution remains similar.
机译:这项研究调查了如何选择固定平面来表示圆柱正电子发射断层扫描(PET)扫描仪的投影数据,从而简化了3D傅里叶切片定理(3D-FST)所需的频率插值。将基于两平面几何并且仅在傅立叶域中仅需要1D插值的新网格算法与3D-FST的直接实现进行了比较。我们表明,使用两个正交平面会导致信噪比类似于使用3D-FST算法从以高达两倍的计数率采集的投影数据中获得的信噪比,而分辨率保持相似。

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