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HEAD PENN-PET扫描仪的三维成像特征。

Three-dimensional imaging characteristics of the HEAD PENN-PET scanner.

作者信息

Karp J S, Freifelder R, Geagan M J, Muehllehner G, Kinahan P E, Lewitt R M, Shao L

机构信息

Department of Radiology, University of Pennsylvania, Philadelphia 19104, USA.

出版信息

J Nucl Med. 1997 Apr;38(4):636-43.

PMID:9098216
Abstract

UNLABELLED

A volume-imaging PET scanner, without interplane septa, for brain imaging has been designed and built to achieve high performance, specifically in spatial resolution and sensitivity. The scanner is unique in its use of a single annular crystal of Nal(Tl), which allows a field of view (FOV) of 25.6 cm in both the transverse and axial directions. Data are reconstructed into an image matrix of 128(3) with (2 mm)3 voxels, using three-dimensional image reconstruction algorithms.

METHODS

Point-source measurements are performed to determine spatial resolution over the scanner FOV, and cylindrical phantom distributions are used to determine the sensitivity, scatter fraction and counting rate performance of the system. A three-dimensional brain phantom and 18F-FDG patient studies are used to evaluate image quality with three-dimensional reconstruction algorithms.

RESULTS

The system spatial resolution is measured to be 3.5 mm in both the transverse and axial directions, in the center of the FOV. The true sensitivity, using the standard NEMA phantom (6 liter), is 660 kcps/microCi/ml, after subtracting a scatter fraction of 34%. Due to deadtime effects, we measure a peak true counting rate, after scatter and randoms subtraction, of 100 kcps at 0.7 mCi for a smaller brain-sized (1.1 liter) phantom, and 70 kcps for a head-sized (2.5 liter) phantom at the same activity. A typical 18F-FDG clinical brain study requires only 2 mCi to achieve high statistics (100 million true events) with a scan time of 30 min.

CONCLUSION

The HEAD PENN-PET scanner is based on a cost-effective design using Nal(Tl) and has been shown to achieve high performance for brain studies and pediatric whole-body studies. As a full-time three-dimensional imaging scanner with a very large axial acceptance angle, high sensitivity is achieved. The system becomes counting-rate limited as the activity is increased, but we achieve high image quality with a small injected dose. This is a significant advantage for clinical imaging, particularly for pediatric patients.

摘要

未标注

已设计并制造了一种用于脑成像的无层间隔板的容积成像正电子发射断层扫描仪,以实现高性能,特别是在空间分辨率和灵敏度方面。该扫描仪独特之处在于使用了单个碘化钠(铊)环形晶体,这使得在横向和轴向上的视野(FOV)均为25.6厘米。使用三维图像重建算法将数据重建为体素大小为(2毫米)³的128(3)图像矩阵。

方法

进行点源测量以确定扫描仪视野内的空间分辨率,并使用圆柱形体模分布来确定系统的灵敏度、散射分数和计数率性能。使用三维脑体模和18F-FDG患者研究来评估三维重建算法的图像质量。

结果

在视野中心,系统在横向和轴向上的空间分辨率均测得为3.5毫米。使用标准NEMA体模(6升),扣除34%的散射分数后,真实灵敏度为660 kcps/微居里/毫升。由于死时间效应,对于较小的脑尺寸(1.1升)体模,在0.7毫居里时,扣除散射和随机事件后,我们测得的峰值真实计数率为100 kcps;对于相同活度的头部尺寸(2.5升)体模,计数率为70 kcps。典型的18F-FDG临床脑研究仅需2毫居里即可在30分钟的扫描时间内获得高统计量(1亿个真实事件)。

结论

HEAD PENN-PET扫描仪基于使用碘化钠(铊)的经济高效设计,已证明在脑研究和儿科全身研究中具有高性能。作为具有非常大轴向接受角的全时三维成像扫描仪,实现了高灵敏度。随着活度增加系统受计数率限制,但我们通过小注射剂量实现了高图像质量。这对于临床成像,特别是儿科患者而言是一个显著优势。

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