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Solid geometry based modelling of non-uniform attenuation and Compton scattering in objects for SPECT imaging systems

机译:基于实体几何的SPECT成像系统中物体非均匀衰减和康普顿散射的建模

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A solid-geometry-based approach is used to model nonuniform attenuation and Compton scattering in irregularly shaped objects for Monte Carlo simulated single photon emission computed tomography (SPECT) imaging systems. The shape of an object is described by a combination of object primitives: ellipsoids, elliptical cylinders, tapered elliptical cylinders, rectangular solids, and their halves, quarters, and eighths, based on set union, intersection, and difference. The primitives are assigned density and energy-dependent photoelectric and Compton cross sections. This approach is validated in two steps. First, only nonuniform attenuation is included. The transaxial images of a simulated thorax phantom are reconstructed using a modification of Chang's technique for nonuniform attenuation. Second, detected Compton scattering is added to the model. Scatter fraction of a point source in a water cylinder is used to validate the scatter model for uniform scattering media. The difference between simulated and experimental results is on the order of 7%. For the model of nonuniform attenuation and detected Compton scattering, a thorax phantom is used for validation. Normalized profiles across the center of the sphere projections for simulation and experiment are observed to have insignificant difference.
机译:基于固体几何的方法用于为蒙特卡洛模拟单光子发射计算机断层扫描(SPECT)成像系统建模不规则形状物体中的非均匀衰减和康普顿散射。对象的形状由对象基元的组合描述:椭圆,椭圆圆柱,锥形椭圆圆柱,矩形实体,以及它们的一半,四分之一和八分之一,基于集合的并集,交集和差。为图元分配了密度和与能量有关的光电横截面和康普顿横截面。分两步验证了此方法。首先,仅包括非均匀衰减。使用对不均匀衰减的Chang技术的修改,可以重建模拟胸部体模的跨轴图像。其次,将检测到的康普顿散射添加到模型中。水筒中点源的散射分数用于验证均匀散射介质的散射模型。模拟结果和实验结果之间的差异约为7%。对于非均匀衰减和检测到的康普顿散射的模型,可使用胸部模型进行验证。观察到横跨球体投影中心进行标准化的轮廓,以进行模拟和实验,差异不明显。

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