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用于比较容积成像正电子发射断层扫描仪重建算法的品质因数。

Figures of merit for comparing reconstruction algorithms with a volume-imaging PET scanner.

作者信息

Kinahan P E, Karp J S

机构信息

Department of Radiology, University of Pennsylvania, 110 Donner Building, 3400 Spruce Street, Philadelphia, PA 19104, USA.

出版信息

Phys Med Biol. 1994 Mar;39(3):631-42. doi: 10.1088/0031-9155/39/3/024.

Abstract

For volume-imaging PET scanners, no septa are used to maximize the sensitivity by collecting events oblique to the scanner axis. We answer two questions: (i) how does the performance of an image reconstruction algorithm for a volume-imaging PET scanner depend on its general dimensions? and (ii) at what point is a three-dimensional (3D) reconstruction algorithm needed for a volume-imaging scanner, as the axial extent is increased? A 3D reconstruction algorithm will accurately incorporate the oblique events in a reconstruction of the original source distribution. From simulations of an existing volume PET scanner with a maximum axial acceptance angle (+/-alpha) of alpha = 9 degrees, however, we show that the single-slice rebinning algorithm is a good compromise between sensitivity, speed, and accuracy when compared to standard two-dimensional reconstruction (alpha = 1 degrees), and a 3D reconstruction with alpha = 9 degrees. We also show with simulations that a new scanner with alpha = 27 degrees requires 3D reconstruction in order to achieve maximum sensitivity without unacceptable losses in accuracy. Measurements of scanner performance are based on a series of figures of merit that characterize image quality and quantitative accuracy measured from a set of simulated test phantoms.

摘要

对于容积成像PET扫描仪,不使用隔板,而是通过收集与扫描仪轴倾斜的事件来最大化灵敏度。我们回答两个问题:(i)容积成像PET扫描仪的图像重建算法性能如何取决于其总体尺寸?(ii)随着轴向范围增加,容积成像扫描仪在什么情况下需要三维(3D)重建算法?3D重建算法将在原始源分布的重建中准确纳入倾斜事件。然而,通过对现有最大轴向接受角(±α)为α = 9度的容积PET扫描仪进行模拟,我们表明,与标准二维重建(α = 1度)和α = 9度的3D重建相比,单切片重排算法在灵敏度、速度和准确性之间是一个很好的折衷方案。我们还通过模拟表明,α = 27度的新型扫描仪需要3D重建才能在不损失不可接受的准确性的情况下实现最大灵敏度。扫描仪性能的测量基于一系列品质因数,这些品质因数表征从一组模拟测试体模测量得到的图像质量和定量准确性。

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