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针孔单光子发射断层扫描(SPET)的加速中值根先验重建

Accelerated median root prior reconstruction for pinhole single-photon emission tomography (SPET).

作者信息

Sohlberg Antti, Ruotsalainen Ulla, Watabe Hiroshi, Iida Hidehiro, Kuikka Jyrki T

机构信息

Department of Clinical Physiology & Nuclear Medicine, Kuopio University Hospital, PO Box 1777 FIN-70211, Kuopio, Finland.

出版信息

Phys Med Biol. 2003 Jul 7;48(13):1957-69. doi: 10.1088/0031-9155/48/13/308.

Abstract

Pinhole collimation can be used to improve spatial resolution in SPET. However, the resolution improvement is achieved at the cost of reduced sensitivity, which leads to projection images with poor statistics. Images reconstructed from these projections using the maximum likelihood expectation maximization (ML-EM) algorithms, which have been used to reduce the artefacts generated by the filtered backprojection (FBP) based reconstruction, suffer from noise/bias trade-off: noise contaminates the images at high iteration numbers, whereas early abortion of the algorithm produces images that are excessively smooth and biased towards the initial estimate of the algorithm. To limit the noise accumulation we propose the use of the pinhole median root prior (PH-MRP) reconstruction algorithm. MRP is a Bayesian reconstruction method that has already been used in PET imaging and shown to possess good noise reduction and edge preservation properties. In this study the PH-MRP algorithm was accelerated with the ordered subsets (OS) procedure and compared to the FBP, OS-EM and conventional Bayesian reconstruction methods in terms of noise reduction, quantitative accuracy, edge preservation and visual quality. The results showed that the accelerated PH-MRP algorithm was very robust. It provided visually pleasing images with lower noise level than the FBP or OS-EM and with smaller bias and sharper edges than the conventional Bayesian methods.

摘要

针孔准直可用于提高单光子发射断层显像(SPET)的空间分辨率。然而,分辨率的提高是以降低灵敏度为代价的,这会导致投影图像的统计量较差。使用最大似然期望最大化(ML-EM)算法从这些投影重建的图像,该算法已被用于减少基于滤波反投影(FBP)重建产生的伪影,但存在噪声/偏差权衡问题:在高迭代次数时噪声会污染图像,而算法过早终止会产生过度平滑且偏向算法初始估计的图像。为了限制噪声积累,我们提出使用针孔中值根先验(PH-MRP)重建算法。MRP是一种贝叶斯重建方法,已用于正电子发射断层显像(PET)成像,并显示出具有良好的降噪和边缘保留特性。在本研究中,PH-MRP算法采用有序子集(OS)程序进行加速,并在降噪、定量准确性、边缘保留和视觉质量方面与FBP、OS-EM和传统贝叶斯重建方法进行比较。结果表明,加速后的PH-MRP算法非常稳健。它提供的图像视觉效果良好,噪声水平低于FBP或OS-EM,偏差小于传统贝叶斯方法,边缘更清晰。

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