SSRB、MSRB和FORE方法与3DRP算法的比较,使用高分辨率PET扫描仪的数据

H. Baghaei, J. Uribe, Hongdi Li, Yu Wang, W. Wong
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引用次数: 3

摘要

作者使用MD安德森癌症中心(MDAPET)开发的高分辨率原型PET相机扫描了一个圆柱形均匀幻像,一个在温暖背景下有四个热小病灶的圆柱形幻像,以及霍夫曼脑幻像。MDAPET相机是一种多环扫描仪,没有隔层,可以进行三维(3D)数据采集。所获得的数据用于测试几种将3d投影数据重新划分为二维(2D)图的方法。本研究首先利用三维重投影(3D -reprojection, 3DRP)算法对三维数据进行重构;然后以图像为参考,对重建方法进行测试。作者试验的方法有单层重建(SSRB)、多层重建(MSRB)和傅立叶重建(FORE)。对数据进行重组后,采用二维滤波-反向投影(2DFB)或二维有序子集期望最大化(OSEM)算法进行图像重建。与3DRP相比,重建3D数据并使用2D重建技术可以降低噪声;然而,它降低了对比度恢复,也表现出一定的空间分辨率下降。结果还表明,对于作者的原型相机,SSRB后2DFB的重建时间大大减少,是一个合理的替代3DRP。
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Comparison of the SSRB, MSRB, and FORE methods with the 3DRP algorithm using data from a high resolution PET scanner
The authors used the high-resolution prototype PET camera developed at MD Anderson Cancer Center (MDAPET) to scan a cylindrical uniform phantom, a cylindrical phantom with four hot small lesions in a warm background, and the Hoffman brain phantom. The MDAPET camera is a multiring scanner having no septa that allows for three-dimensional (3D) data acquisition. The acquired data were used to test several methods of rebinning 3D-projection data into two-dimensional (2D) sinograms. For this study, first, the 3D data were reconstructed using the 3D-reprojection (3DRP) algorithm; then images were used as a reference for testing the rebinning methods. The methods the authors tested were single-slice rebinning (SSRB), multi-slice rebinning (MSRB), and Fourier rebinning (FORE). After the data were rebinned, the 2D filtered-backprojection (2DFB) or 2D ordered-subsets expectation-maximization (OSEM) algorithm was used for image reconstruction. Rebinning the 3D data and using a 2D reconstruction technique resulted in noise reduction when compared with 3DRP; however, it reduced the contrast recovery and also showed some degradation in spatial resolution. The results also indicated that for the authors' prototype camera, the SSRB followed by 2DFB, which significantly reduces reconstruction time, provides a reasonable alternative to 3DRP.
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