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首页> 外文期刊>IEEE Transactions on Medical Imaging >Solid geometry-based object model for Monte Carlo simulated emission and transmission tomographic imaging systems
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Solid geometry-based object model for Monte Carlo simulated emission and transmission tomographic imaging systems

机译:蒙特卡洛模拟发射和透射层析成像系统的基于实体几何的对象模型

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摘要

An object model based on combinations of object primitives is proposed for Monte Carlo simulated emission and transmission tomographic imaging systems. The primitives include ellipsoids, elliptic cylinders, tapered elliptic cylinders, rectangular solids, and their subsets: half, quarter, and eighth. The probability of a photon surviving interactions with the phantom medium is used as a weight for variance reduction. Calculation of the probability can be computationally intensive without properly organizing the inclusion of subregions within larger regions. A tree data structure is introduced to organize this inclusion relationship and used as the basis for two computationally efficient schemes for determining the intersection locations of a photon path with primitives and for identifying the attenuation coefficients for adjacent intersections for the survival probability computation. The approach has been validated by emission as well as transmission simulations. A thorax phantom containing overlapped ellipsoids and a heart composed of twelve overlapped quarter ellipsoids are employed to demonstrate the capability of the model.
机译:针对蒙特卡罗模拟发射和透射层析成像系统,提出了一种基于对象基元组合的对象模型。图元包括椭圆体,椭圆圆柱,锥形椭圆圆柱,矩形实体及其子集:一半,四分之一和八分之一。光子与幻影介质交互作用幸存的概率用作减少方差的权重。在没有适当组织较大区域内的子区域的情况下,概率的计算可能需要大量计算。引入树形数据结构来组织此包含关系,并用作两个计算有效方案的基础,该方案用于确定光子路径与图元的相交位置,并标识相邻相交的衰减系数以进行生存概率计算。该方法已通过排放和传输仿真验证。包含重叠椭圆体的胸部模型和由十二个重叠四分之一椭圆体组成的心脏被用来证明模型的功能。

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