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A projector/backprojector with slice-to-slice blurring for efficient three-dimensional scatter modeling

机译:具有切片到切片模糊的投影仪/背投仪,用于高效的三维散射建模

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摘要

Scatter correction is an important factor in single photon emission computed tomography (SPECT). Many scatter correction techniques, such as multiple-window subtraction and intrinsic modeling with iterative algorithms, have been under study for many years. Previously, the authors developed an efficient slice-to-slice blurring technique to model attenuation and system geometric response in a projector/backprojector pair, which was used in an ML-EM algorithm to reconstruct SPECT data. This paper proposes a projector/backprojector that models the three-dimensional (3-D) first-order scatter in SPECT, also using an efficient slice-to-slice blurring technique. The scatter response is estimated from a known nonuniform attenuation distribution map. It is assumed that the probability of detection of a first-order scattered photon from a photon that is emitted in a given source voxel and scattered in a given scatter voxel is proportional to the attenuation coefficient value at that voxel. Monte Carlo simulations of point sources and an MCAT torso phantom were used to verify the accuracy of the proposed projector/backprojector model. An experimental Jaszczak torso/cardiac phantom SPECT study was also performed. For a 64/spl times/64/spl times/64 image volume, it took 8.7 s to perform each iteration per slice on a Sun ULTRA Enterprise 3000 (167 MHz, 1 Gbyte RAM) computer, when modeling 3-D scatter, attenuation, and system geometric response functions. The main advantage of the proposed method is its easy implementation and the possibility of performing reconstruction in clinically acceptable time.
机译:散射校正是单光子发射计算机断层扫描(SPECT)的重要因素。许多散射校正技术,例如多窗口减法和具有迭代算法的固有建模,已经研究了很多年。以前,作者开发了一种有效的切片到切片模糊技术,以对投影仪/背投仪对中的衰减和系统几何响应进行建模,该方法在ML-EM算法中用于重建SPECT数据。本文提出了一种投影仪/背投影仪,该投影仪/投影仪还使用有效的切片间模糊技术对SPECT中的三维(3-D)一阶散射进行建模。从已知的非均匀衰减分布图估计散射响应。假定从在给定源体素中发射并在给定散射体素中散射的光子检测到一阶散射光子的概率与该体素上的衰减系数值成正比。使用点源和MCAT躯干体模的蒙特卡洛模拟来验证所提出的投影仪/背投影仪模型的准确性。还进行了实验性Jaszczak躯干/心脏幻像SPECT研究。对于64 / spl次/ 64 / spl次/ 64图像体积,在对3-D散射,衰减建模时,在Sun ULTRA Enterprise 3000(167 MHz,1 GB RAM)计算机上,每个切片执行每次迭代需要8.7 s。 ,以及系统几何响应函数。所提出的方法的主要优点是易于实施,并且有可能在临床上可接受的时间内进行重建。

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