Dept. of Radiol. & Nucl. Med., Utrecht Univ. Hospital.
IEEE Trans Med Imaging. 1995;14(2):271-82. doi: 10.1109/42.387709.
A fast simulator of SPECT projection data taking into account attenuation, distance dependent detector response, and scatter has been developed, based on an analytical point spread function model. The parameters of the scatter response are obtained from a single line source measurement with a triangular phantom. The simulator is able to include effects of object curvature on the scatter response to a high accuracy. The simulator has been evaluated for homogeneous media by measurements of (99m)Tc point sources placed at different locations in a water-filled cylinder at energy windows of 15% and 20%. The asymmetrical shapes of measured projections of point sources are In excellent agreement with simulations for both energy windows. Scatter-to-primary ratio (SPR) calculations of point sources at different positions in a cylindrical phantom differ not more than a few percent from measurements. The simulator uses just a few megabytes of memory for storing the tables representing the forward model; furthermore, simulation of 60 SPECT projections from a three-dimensional digital brain phantom with 6-mm cubic voxels takes only ten minutes on a standard workstation. Therefore, the simulator could serve as a projector in iterative true 3-D SPECT reconstruction.
已开发出一种快速模拟单光子发射型计算机断层(SPECT)投影数据的方法,该方法考虑了衰减、距离相关探测器响应和散射,其基础是一个解析点扩散函数模型。散射响应的参数是通过使用三角体模体对单个线源进行测量获得的。该模拟器能够高精度地包括物体曲率对散射响应的影响。通过在充满水的圆柱体内的不同位置处测量(99m)Tc 点源,在能量窗为 15%和 20%的情况下,对均质介质进行了模拟器评估。对于这两个能量窗,测量的点源投影的非对称形状与模拟结果非常吻合。在圆柱形模体中的不同位置的点源的散射与原始射线比(SPR)计算值与测量值的差异不超过几个百分点。该模拟器仅使用几兆字节的内存来存储表示正向模型的表格;此外,在标准工作站上,仅需十分钟即可模拟来自具有 6mm 立方体素的三维数字脑体模的 60 个 SPECT 投影。因此,该模拟器可以作为迭代真实 3D SPECT 重建的投影器。