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动物正电子发射断层扫描仪的设计:实现最佳空间分辨率或高灵敏度的灵活几何结构。

The design of an animal PET: flexible geometry for achieving optimal spatial resolution or high sensitivity.

作者信息

Weber S, Terstegge A, Herzog H, Reinartz R, Reinhart P, Rongen F, Müller-Gärtner H W, Halling H

出版信息

IEEE Trans Med Imaging. 1997 Oct;16(5):684-9. doi: 10.1109/42.640759.

Abstract

We present the design of a positron emission tomograph (PET) with flexible geometry dedicated to in vivo studies of small animals (TierPET). The scanner uses two pairs of detectors. Each detector consists of 400 small individual yttrium aluminum perovskite (YAP) scintillator crystals of dimensions 2 x 2 x 15 mm3, optically isolated and glued together, which are coupled to position-sensitive photomultiplier tubes (PSPMT's). The detector modules can be moved in a radial direction so that the detector-to-detector spacing can be varied. Special hardware has been built for coincidence detection, position detection, and real-time data acquisition, which is performed by a PC. The single-event data are transferred to workstations where the radioactivity distribution is reconstructed. The dimensions of the crystals and the detector layout are the result of extensive simulations which are described in this report, taking into account sensitivity, spatial resolution and additional parameters like parallax error or scatter effects. For the three-dimensional (3-D) reconstruction a genuine 3-D expectation-maximization (EM)-algorithm which can include the characteristics of the detector system has been implemented. The reconstruction software is flexible and matches the different detector configurations. The main advantage of the proposed animal PET scanner is its high flexibility, allowing the realization of various detector-system configurations. By changing the detector-to-detector spacing, the system is capable of either providing good spatial resolution or high sensitivity for dynamic studies of pharmacokinetics.

摘要

我们介绍了一种用于小动物活体研究的具有灵活几何结构的正电子发射断层扫描仪(TierPET)的设计。该扫描仪使用两对探测器。每个探测器由400个尺寸为2×2×15立方毫米的小型独立钇铝钙钛矿(YAP)闪烁晶体组成,这些晶体光学隔离并胶合在一起,与位置灵敏光电倍增管(PSPMT)耦合。探测器模块可以在径向方向上移动,从而可以改变探测器之间的间距。已经构建了专门的硬件用于符合探测、位置探测和实时数据采集,这些工作由一台个人计算机执行。单事件数据被传输到工作站,在那里重建放射性分布。晶体的尺寸和探测器布局是广泛模拟的结果,本报告中对此进行了描述,其中考虑了灵敏度、空间分辨率以及诸如视差误差或散射效应等其他参数。对于三维(3-D)重建,已经实现了一种能够包含探测器系统特性的真正的三维期望最大化(EM)算法。重建软件具有灵活性,能够匹配不同的探测器配置。所提出的动物PET扫描仪的主要优点是其高度的灵活性,允许实现各种探测器系统配置。通过改变探测器之间的间距,该系统能够为药代动力学的动态研究提供良好的空间分辨率或高灵敏度。

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