Marinkovic Predrag, Ilic Radovan, Spaic Rajko
Faculty of Electrical Engineering, Bulevar kralja Aleksandra 73, PO Box 35-54, University of Belgrade, 11120 Belgrade, Republic of Serbia.
Phys Med Biol. 2007 Oct 7;52(19):5785-802. doi: 10.1088/0031-9155/52/19/004. Epub 2007 Sep 10.
A three-dimensional (3D) point-kernel multiple scatter model for point spread function (PSF) determination in parallel-beam single-photon emission computed tomography (SPECT), based on a dose gamma-ray buildup factor, is proposed. This model embraces nonuniform attenuation in a voxelized object of imaging (patient body) and multiple scattering that is treated as in the point-kernel integration gamma-ray shielding problems. First-order Compton scattering is done by means of the Klein-Nishina formula, but the multiple scattering is accounted for by making use of a dose buildup factor. An asset of the present model is the possibility of generating a complete two-dimensional (2D) PSF that can be used for 3D SPECT reconstruction by means of iterative algorithms. The proposed model is convenient in those situations where more exact techniques are not economical. For the proposed model's testing purpose calculations (for the point source in a nonuniform scattering object for parallel beam collimator geometry), the multiple-order scatter PSF generated by means of the proposed model matched well with those using Monte Carlo (MC) simulations. Discrepancies are observed only at the exponential tails mostly due to the high statistic uncertainty of MC simulations in this area, but not because of the inappropriateness of the model.
提出了一种基于剂量伽马射线积累因子的三维(3D)点核多重散射模型,用于平行束单光子发射计算机断层扫描(SPECT)中的点扩散函数(PSF)确定。该模型考虑了成像体素化对象(患者身体)中的非均匀衰减以及多重散射,这与点核积分伽马射线屏蔽问题中的处理方式相同。一阶康普顿散射通过克莱因-仁科公式进行,但多重散射通过使用剂量积累因子来考虑。本模型的一个优点是能够生成完整的二维(2D)PSF,可通过迭代算法用于3D SPECT重建。在那些更精确的技术不经济的情况下,所提出的模型很方便。为了对所提出模型进行测试目的的计算(针对平行束准直器几何形状的非均匀散射对象中的点源),通过所提出模型生成的多阶散射PSF与使用蒙特卡罗(MC)模拟生成的PSF匹配良好。仅在指数尾部观察到差异,这主要是由于该区域MC模拟的高统计不确定性,而不是因为模型不合适。