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用于啮齿动物成像的共面多模态扫描仪的设计与性能评估

Design and performance evaluation of a coplanar multimodality scanner for rodent imaging.

作者信息

Lage E, Vaquero J J, Sisniega A, España S, Tapias G, Abella M, Rodríguez-Ruano A, Ortuño J E, Udías A, Desco M

机构信息

Unidad de Medicina y Cirugía Experimental, Hospital General Universitario Gregorio Marañón, Madrid, Spain.

出版信息

Phys Med Biol. 2009 Sep 21;54(18):5427-41. doi: 10.1088/0031-9155/54/18/005. Epub 2009 Aug 21.

Abstract

This work reports on the development and performance evaluation of the VrPET/CT, a new multimodality scanner with coplanar geometry for in vivo rodent imaging. The scanner design is based on a partial-ring PET system and a small-animal CT assembled on a rotatory gantry without axial displacement between the geometric centers of both fields of view (FOV). We report on the PET system performance based on the NEMA NU-4 protocol; the performance characteristics of the CT component are not included herein. The accuracy of inter-modality alignment and the imaging capability of the whole system are also evaluated on phantom and animal studies. Tangential spatial resolution of PET images ranged between 1.56 mm at the center of the FOV and 2.46 at a radial offset of 3.5 cm. The radial resolution varies from 1.48 mm to 1.88 mm, and the axial resolution from 2.34 mm to 3.38 mm for the same positions. The energy resolution was 16.5% on average for the entire system. The absolute coincidence sensitivity is 2.2% for a 100-700 keV energy window with a 3.8 ns coincident window. The scatter fraction values for the same settings were 11.45% for a mouse-sized phantom and 23.26% for a rat-sized phantom. The peak noise equivalent count rates were also evaluated for those phantoms obtaining 70.8 kcps at 0.66 MBq/cc and 31.5 kcps at 0.11 MBq/cc, respectively. The accuracy of inter-modality alignment is below half the PET resolution, and the image quality of biological specimens agrees with measured performance parameters. The assessment presented in this study shows that the VrPET/CT system is a good performance small-animal imager, while the cost derived from a partial ring detection system is substantially reduced as compared with a full-ring PET tomograph.

摘要

本研究报告了VrPET/CT的开发及性能评估,这是一种用于活体啮齿动物成像的新型共面几何多模态扫描仪。该扫描仪设计基于部分环形PET系统和组装在旋转机架上的小动物CT,两个视野(FOV)的几何中心之间无轴向位移。我们根据NEMA NU-4协议报告PET系统性能;本文不包括CT组件的性能特征。还通过体模和动物研究评估了模态间对准的准确性和整个系统的成像能力。PET图像的切线空间分辨率在FOV中心处为1.56毫米,在径向偏移3.5厘米处为2.46毫米。相同位置的径向分辨率从1.48毫米变化到1.88毫米,轴向分辨率从2.34毫米变化到3.38毫米。整个系统的能量分辨率平均为16.5%。对于100 - 700 keV能量窗口和3.8 ns符合窗口,绝对符合灵敏度为2.2%。相同设置下,小鼠尺寸体模的散射分数值为11.45%,大鼠尺寸体模的散射分数值为23.26%。还评估了这些体模的峰值噪声等效计数率,分别在0.66 MBq/cc时为70.8 kcps,在0.11 MBq/cc时为31.5 kcps。模态间对准的准确性低于PET分辨率的一半,生物标本的图像质量与测量的性能参数一致。本研究中的评估表明,VrPET/CT系统是一种性能良好的小动物成像仪,与全环PET断层扫描仪相比,部分环形检测系统的成本大幅降低。

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