4D PET image reconstruction from list mode data

E. Asma, Thomas E. Nichols, J. Qi, R. Leahy
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引用次数: 19

Abstract

We describe a method for computing a continuous time estimate of tracer density using list mode PET data. The rate function in each voxel is modeled as an inhomogeneous Poisson process whose rate function can be represented using a cubic B-spline basis. The rate functions are estimated by maximizing the likelihood of the arrival times of detected photon pairs over the control vertices of the spline, modified by quadratic spatial and temporal smoothness penalties and a penalty term to enforce non-negativity. Random rate functions are estimated by assuming independence between the spatial and temporal randoms distributions. Similarly, scatter rate functions are estimated by assuming spatiotemporal independence and that the temporal distribution of the scatter is proportional to the temporal distribution of the trues. A quantitative evaluation was performed using simulated data and the method was also demonstrated in human studies using O-15 water and C-11 raclopride.
从列表模式数据重建4D PET图像
我们描述了一种使用列表模式PET数据计算示踪剂密度连续时间估计的方法。每个体素中的速率函数被建模为非齐次泊松过程,其速率函数可以用三次b样条基表示。速率函数是通过最大化在样条控制顶点上检测到的光子对到达时间的可能性来估计的,通过二次空间和时间平滑惩罚和一个强制非负性的惩罚项来修改。随机率函数是通过假设时空随机分布之间的独立性来估计的。类似地,散射率函数的估计是通过假设时空无关性和散射的时间分布与真值的时间分布成正比来实现的。使用模拟数据进行了定量评估,并在使用O-15水和C-11 raclopride的人体研究中验证了该方法。
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