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Three-dimensional iterative reconstruction algorithms with attenuation and geometric point response correction

机译:具有衰减和几何点响应校正的三维迭代重建算法

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摘要

A three-dimensional iterative reconstruction algorithm which incorporates models of the geometric point response in the projector-backprojector is presented for parallel, fan, and cone beam geometries. The algorithms have been tested on an IBM 3090-600S supercomputer. The iterative EM reconstruction algorithm is 50 times longer with geometric response and photon attenuation models than without modeling these physical effects. An improvement in image quality in the reconstruction of projection data collected from a single-photon-emission computed tomography (SPECT) imaging system has been observed. Significant improvements in image quality are obtained when the geometric point response and attenuation are appropriately compensated. It is observed that resolution is significantly improved with attenuation correction alone. Using phantom experiments, it is observed that the modeling of the spatial system response imposes a smoothing without loss of resolution.
机译:针对平行,扇形和圆锥形光束的几何形状,提出了一种三维迭代重建算法,该算法在投影机-背投投影机中合并了几何点响应模型。该算法已在IBM 3090-600S超级计算机上进行了测试。使用几何响应和光子衰减模型,迭代EM重建算法的时间比不对这些物理效应进行建模的时间长50倍。已经观察到重建从单光子发射计算机断层摄影(SPECT)成像系统收集的投影数据时图像质量的改善。当几何点响应和衰减得到适当补偿时,可以显着改善图像质量。可以看出,仅通过衰减校正就可以显着提高分辨率。通过使用幻像实验,可以观察到空间系统响应的建模可实现平滑而不会降低分辨率。

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