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专用头部单光子发射计算机断层扫描(SPECT)设备的美国放射学会(ACR)检测

ACR testing of a dedicated head SPECT unit.

作者信息

Sensakovic William F, Hough Matthew C, Kimbley Elizabeth A

机构信息

Florida Hospital University of Central Florida Florida State University.

出版信息

J Appl Clin Med Phys. 2014 Jul 8;15(4):4632. doi: 10.1120/jacmp.v15i4.4632.

Abstract

Physics testing necessary for program accreditation is rigorously defined by the ACR. This testing is easily applied to most conventional SPECT systems based on gamma camera technology. The inSPira HD is a dedicated head SPECT system based on a rotating dual clamshell design that acquires data in a dual-spiral geometry. The unique geometry and configuration force alterations of the standard ACR physics testing protocol. Various tests, such as intrinsic planar uniformity and/or resolution, do not apply. The Data Spectrum Deluxe Phantom used for conventional SPECT testing cannot fit in the inSPira HD scanner bore, making (currently) unapproved use of the Small Deluxe SPECT Phantom necessary. Matrix size, collimator type, scanning time, reconstruction method, and attenuation correction were all varied from the typically prescribed ACR instructions. Visible spheres, sphere contrast, visible rod groups, uniformity, and root mean square (RMS) noise were measured. The acquired SPECT images surpassed the minimum ACR requirements for both spatial resolution (9.5 mm spheres resolved) and contrast (6.4 mm rod groups resolved). Sphere contrast was generally high. Integral uniformity was 4% and RMS noise was 1.7%. Noise appeared more correlated than in images from a conventional SPECT scanner. Attenuation-corrected images produced from direct CT scanning of the phantom and a manufacturer supplied model of the phantom demonstrated negligible differences.

摘要

美国放射学会(ACR)对程序认证所需的物理测试进行了严格定义。这种测试很容易应用于大多数基于伽马相机技术的传统单光子发射计算机断层扫描(SPECT)系统。inSPira HD是一款基于旋转双蚌壳设计的专用头部SPECT系统,采用双螺旋几何结构采集数据。独特的几何结构和配置迫使标准的ACR物理测试协议发生改变。各种测试,如固有平面均匀性和/或分辨率测试,并不适用。用于传统SPECT测试的Data Spectrum Deluxe体模无法放入inSPira HD扫描仪的孔中,因此(目前)必须使用未经批准的小型Deluxe SPECT体模。矩阵大小、准直器类型、扫描时间、重建方法和衰减校正均与ACR通常规定的说明不同。测量了可见球体、球体对比度、可见棒组、均匀性和均方根(RMS)噪声。采集的SPECT图像在空间分辨率(分辨出9.5毫米球体)和对比度(分辨出6.4毫米棒组)方面均超过了ACR的最低要求。球体对比度一般较高。积分均匀性为4%,RMS噪声为1.7%。与传统SPECT扫描仪的图像相比,噪声之间的相关性似乎更高。对体模进行直接CT扫描以及使用制造商提供的体模模型生成的衰减校正图像显示出的差异可忽略不计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2f/5875529/9c2df46a6bbb/ACM2-15-372-g001.jpg

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