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在 7 特斯拉下用于高分辨率小动物 PET/MRI 的 PET 插入式探头的性能。

Performance of a PET Insert for High-Resolution Small-Animal PET/MRI at 7 Tesla.

机构信息

Department of Physics and Astronomy at the University of British Columbia, Vancouver, British Columbia, Canada

Department of Medical Biophysics, Western University, London, Ontario, Canada.

出版信息

J Nucl Med. 2018 Mar;59(3):536-542. doi: 10.2967/jnumed.116.187666. Epub 2017 Sep 14.

Abstract

We characterize a compact MR-compatible PET insert for simultaneous preclinical PET/MRI. Although specifically designed with the strict size constraint to fit inside the 114-mm inner diameter of the BGA-12S gradient coil used in the BioSpec 70/20 and 94/20 series of small-animal MRI systems, the insert can easily be installed in any appropriate MRI scanner or used as a stand-alone PET system. The insert consists of a ring of 16 detector-blocks each made from depth-of-interaction-capable dual-layer-offset arrays of cerium-doped lutetium-yttrium oxyorthosilicate crystals read out by silicon photomultiplier arrays. Scintillator crystal arrays are made from 22 × 10 and 21 × 9 crystals in the bottom and top layers, respectively, with respective layer thicknesses of 6 and 4 mm, arranged with a 1.27-mm pitch, resulting in a useable field of view 28 mm long and about 55 mm wide. Spatial resolution ranged from 1.17 to 1.86 mm full width at half maximum in the radial direction from a radial offset of 0-15 mm. With a 300- to 800-keV energy window, peak sensitivity was 2.2% and noise-equivalent count rate from a mouse-sized phantom at 3.7 MBq was 11.1 kcps and peaked at 20.8 kcps at 14.5 MBq. Phantom imaging showed that features as small as 0.7 mm could be resolved. F-FDG PET/MR images of mouse and rat brains showed no signs of intermodality interference and could excellently resolve substructures within the brain. Because of excellent spatial resolvability and lack of intermodality interference, this PET insert will serve as a useful tool for preclinical PET/MR.

摘要

我们对一款用于临床前 PET/MRI 的紧凑型、兼容磁共振的 PET 探头进行了研究。该探头专为满足严格的尺寸要求而设计,可装入 BioSpec 70/20 和 94/20 系列小动物 MRI 系统中 BGA-12S 梯度线圈的 114mm 内径中,也可轻松安装在任何合适的 MRI 扫描仪中,或作为独立的 PET 系统使用。该探头由一个由 16 个探测器模块组成的圆环构成,每个模块均由掺铈硅酸镥闪烁晶体的双层交错式深能级分辨型探测器阵列组成,由硅光电倍增管阵列进行读取。闪烁晶体阵列由底部和顶部的 22×10 个和 21×9 个晶体组成,相应的层厚分别为 6mm 和 4mm,采用 1.27mm 的节距排列,形成一个长约 28mm、宽约 55mm 的有效视野。从径向偏移 0-15mm 的径向方向上,空间分辨率在 1.17-1.86mm 全宽半高之间。在 300-800keV 的能量窗下,对于一个老鼠大小的 phantom,其峰值灵敏度为 2.2%,在 3.7MBq 时的噪声等效计数率为 11.1k cps,在 14.5MBq 时达到 20.8k cps。体模成像表明,其可分辨小至 0.7mm 的特征。小鼠和大鼠脑的 F-FDG PET/MR 图像未显示出任何模态干扰的迹象,能够很好地分辨脑内的亚结构。由于具有出色的空间分辨率和无模态干扰的特点,该 PET 探头将成为临床前 PET/MR 的有用工具。

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