Increasing the axial extent in volume imaging PET scanners: Is there a limit? a Monte Carlo study

R. Freifelder, J. Karp
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引用次数: 6

Abstract

A Monte Carlo simulation program for the PENN-PET (University of Pennsylvania positron emission tomography) scanner design is presented. The program is flexible enough to allow one to vary the geometry and study the effects of increasing the axial extent of the scanner. The authors present a series of Monte Carlo studies comparing two volume imaging scanners currently being used which differ only in their axial extent (9.0 cm and 13.5 cm). They also present predictions of the performance of a similar body scanner with a 25.6 cm axial extent and a head-only scanner, also having a 25.6 cm axial extent but with a reduced radius which greatly increases the solid angle of the detectors. The studies show the effects of increasing the axial extent on the trues, scatters, randoms, and overall system sensitivity. It is shown that the scatter fraction does not change significantly as the axial extent of the scanner is increased, especially when an appropriate definition for scatter is taken into account. The ratio of randoms/trues decreases with increasing axial extent as a function of the activity.<>
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增加PET容积成像扫描仪的轴向范围:有限制吗?蒙特卡洛研究
介绍了宾夕法尼亚大学正电子发射层析成像(PENN-PET)扫描仪设计的蒙特卡罗模拟程序。该程序是灵活的,足以允许一个改变几何形状,并研究增加扫描仪的轴向范围的影响。作者介绍了一系列蒙特卡罗研究,比较了目前使用的两种体积成像扫描仪,它们仅在轴向范围(9.0厘米和13.5厘米)上有所不同。他们还预测了一种轴向25.6厘米的类似人体扫描仪和一种仅用于头部的扫描仪的性能,也具有25.6厘米的轴向范围,但半径减小,大大增加了探测器的立体角。研究表明增加轴向范围对真值、散点、随机值和系统整体灵敏度的影响。结果表明,散射分数随着扫描仪轴向范围的增加而变化不大,特别是当考虑到散射的适当定义时。随轴向范围的增加,随机/真比值随活度的增加而减小
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