论文标题

使用飞行时间发射断层扫描的统计重建算法用于正电子寿命成像

A statistical reconstruction algorithm for positronium lifetime imaging using time-of-flight positron emission tomography

论文作者

Huang, Hsin-Hsiung, Zhu, Zheyuan, Booppasiri, Slun, Chen, Zhuo, Pang, Shuo, Kao, Chien-Min

论文摘要

正电子发射断层扫描(PET)是诊断癌症和阿尔茨海默氏病等疾病的重要方法,能够揭示靶向靶向疾病特定病理标志物的放射性标记分子的摄取。最近,通过飞行时间(TOF)PET和使用非纯正的potron emitters,已经证明了为传统宠物增添了探索组织微环境的特性的能力。但是,通过具有有限TOF分辨率的系统获取的数据获得的终生图像的准确重建仍然带来挑战。本文重点介绍了二维PLI,引入了最大似然估计(MLE)方法,该方法采用了指数修改的高斯(EMG)概率分布,描述了TOF PET产生的阳性寿命数据。我们使用指数的可能性功能和惩罚替代方法评估了基于EMG的MLE方法的性能,以\ st {传统}方法进行评估。来自计算机模拟的数据的结果表明,所提出的EMG-MLE方法可以产生定量准确的寿命图像。我们还证明,可以扩展提出的MLE公式以处理包含多个正电子种群的PLI数据。

Positron emission tomography (PET) is an important modality for diagnosing diseases such as cancer and Alzheimer's disease, capable of revealing the uptake of radiolabeled molecules that target specific pathological markers of the diseases. Recently, positronium lifetime imaging (PLI) that adds to traditional PET the ability to explore properties of the tissue microenvironment beyond tracer uptake has been demonstrated with time-of-flight (TOF) PET and the use of non-pure positron emitters. However, achieving accurate reconstruction of lifetime images from data acquired by systems having a finite TOF resolution still presents a challenge. This paper focuses on the two-dimensional PLI, introducing a maximum likelihood estimation (MLE) method that employs an exponentially modified Gaussian (EMG) probability distribution that describes the positronium lifetime data produced by TOF PET. We evaluate the performance of our EMG-based MLE method against \st{traditional} approaches using exponential likelihood functions and penalized surrogate methods. Results from computer-simulated data reveal that the proposed EMG-MLE method can yield quantitatively accurate lifetime images. We also demonstrate that the proposed MLE formulation can be extended to handle PLI data containing multiple positron populations.

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