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专用 PET 系统的半球探测器配置的初步原型设计。

First prototyping of a dedicated PET system with the hemisphere detector arrangement.

机构信息

National Institute of Radiological Sciences, National Institutes for Quantum and Radiological Science and Technology, 4-9-1 Anagawa, Inage-ku, Chiba, 263-8555, Japan.

出版信息

Phys Med Biol. 2019 Mar 8;64(6):065004. doi: 10.1088/1361-6560/ab012c.

Abstract

A strong demand is expected for high-sensitivity, high-resolution and low-cost brain positron emission tomography (PET) imaging for early diagnosis of dementia, as well as for general neuroscience studies. Therefore, we have proposed novel geometries of a hemisphere detector arrangement for high-sensitivity brain imaging, in which an add-on detector at the chin position or neck position helps in sensitivity uniformity improvement. In this study, we developed the first prototype system for proof-of-concept using four-layer depth-of-interaction detectors, each of which consisted of 16  ×  16  ×  4 Zr-doped GSO crystals with dimensions of 2.8  ×  2.8  ×  7.5 mm and a high-sensitivity 64-channel flat-panel photomultiplier tube. We used 47 detectors to form a hemisphere detector with a hemisphere shape of 25 cm inner diameter and 50 cm outer diameter, and we used seven detectors for each of the add-on detectors. The total detector number of 54 was about one-fourth that of a typical whole-body PET scanner. The hemisphere detector for the prototype system was realized by multiple rings having different numbers of detectors and a cross-shaped top detector unit covering the top. Performance evaluation showed uniform spatial resolutions of 3-4 mm by the filtered back-projection method. Imaging tests of a hot-rod phantom done with an iterative method were able to resolve 2.2 mm rods. Peak sensitivity was measured as more than 10% at a region near the top of the head, which was achieved with the help of the top detector unit. In addition, using the prototype system, we performed the first FDG clinical test with a healthy volunteer. The results showed that the proposed geometries had high potential for realizing high-sensitivity, high-resolution, and low-cost brain PET imaging. As for the add-on detector position, it was shown that the neck position resulted in higher sensitivity and wider field of view (FOV) than the chin position because the add-on detector at the neck position can be placed continuously to the hemisphere detector and close to the FOV.

摘要

对于早期诊断痴呆症以及一般神经科学研究,人们对高灵敏度、高分辨率和低成本的脑部正电子发射断层扫描(PET)成像有强烈的需求。因此,我们提出了一种新的半球形探测器排列的几何形状,用于高灵敏度的脑部成像,其中在下巴位置或颈部位置添加一个附加探测器有助于提高灵敏度均匀性。在这项研究中,我们使用四层深度交互探测器开发了第一个用于概念验证的原型系统,每个探测器由 16 × 16 × 4 掺锆 GSO 晶体组成,尺寸为 2.8 × 2.8 × 7.5 毫米,以及一个高灵敏度的 64 通道平板光电倍增管。我们使用 47 个探测器形成一个半球形探测器,其内径为 25 厘米,外径为 50 厘米,每个附加探测器使用 7 个探测器。总探测器数量约为典型全身 PET 扫描仪的四分之一。原型系统的半球形探测器由具有不同探测器数量的多个环和一个覆盖顶部的十字形顶部探测器单元实现。使用滤波反投影法进行性能评估显示出 3-4 毫米的均匀空间分辨率。使用迭代方法对热棒幻影进行的成像测试能够分辨出 2.2 毫米的棒。在头部上方附近的区域,通过顶部探测器单元的帮助,测量到超过 10%的峰值灵敏度。此外,我们使用原型系统对一名健康志愿者进行了首次 FDG 临床测试。结果表明,所提出的几何形状具有实现高灵敏度、高分辨率和低成本脑部 PET 成像的巨大潜力。对于附加探测器的位置,结果表明颈部位置比下巴位置具有更高的灵敏度和更宽的视野(FOV),因为颈部位置的附加探测器可以连续放置到半球形探测器并靠近 FOV。

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