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使用2米长的探索者扫描仪进行全身PET成像的定量图像重建。

Quantitative image reconstruction for total-body PET imaging using the 2-meter long EXPLORER scanner.

作者信息

Zhang Xuezhu, Zhou Jian, Cherry Simon R, Badawi Ramsey D, Qi Jinyi

机构信息

Department of Biomedical Engineering, University of California, Davis, CA, United States of America.

出版信息

Phys Med Biol. 2017 Mar 21;62(6):2465-2485. doi: 10.1088/1361-6560/aa5e46. Epub 2017 Feb 27.

Abstract

The EXPLORER project aims to build a 2 meter long total-body PET scanner, which will provide extremely high sensitivity for imaging the entire human body. It will possess a range of capabilities currently unavailable to state-of-the-art clinical PET scanners with a limited axial field-of-view. The huge number of lines-of-response (LORs) of the EXPLORER poses a challenge to the data handling and image reconstruction. The objective of this study is to develop a quantitative image reconstruction method for the EXPLORER and compare its performance with current whole-body scanners. Fully 3D image reconstruction was performed using time-of-flight list-mode data with parallel computation. To recover the resolution loss caused by the parallax error between crystal pairs at a large axial ring difference or transaxial radial offset, we applied an image domain resolution model estimated from point source data. To evaluate the image quality, we conducted computer simulations using the SimSET Monte-Carlo toolkit and XCAT 2.0 anthropomorphic phantom to mimic a 20 min whole-body PET scan with an injection of 25 MBq F-FDG. We compare the performance of the EXPLORER with a current clinical scanner that has an axial FOV of 22 cm. The comparison results demonstrated superior image quality from the EXPLORER with a 6.9-fold reduction in noise standard deviation comparing with multi-bed imaging using the clinical scanner.

摘要

探索者项目旨在打造一台2米长的全身正电子发射断层扫描仪(PET),该扫描仪对全身成像具有极高的灵敏度。它将具备一系列目前轴向视野有限的先进临床PET扫描仪所不具备的功能。探索者扫描仪大量的响应线(LOR)给数据处理和图像重建带来了挑战。本研究的目的是为探索者扫描仪开发一种定量图像重建方法,并将其性能与当前的全身扫描仪进行比较。使用飞行时间列表模式数据和并行计算进行全三维图像重建。为了弥补在轴向环差较大或横向径向偏移时晶体对之间的视差误差所导致的分辨率损失,我们应用了从点源数据估计的图像域分辨率模型。为了评估图像质量,我们使用SimSET蒙特卡罗工具包和XCAT 2.0人体模型进行计算机模拟,以模拟注射25 MBq氟代脱氧葡萄糖(F-FDG)后的20分钟全身PET扫描。我们将探索者扫描仪的性能与当前轴向视野为22厘米的临床扫描仪进行比较。比较结果表明,探索者扫描仪的图像质量更优,与使用临床扫描仪进行的多床位成像相比,噪声标准差降低了6.9倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec2f/5524562/d3518dcc5316/nihms857818f1.jpg

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