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一台先进的神经单光子发射计算机断层扫描(SPET)扫描仪与一台专用神经正电子发射断层扫描(PET)扫描仪的性能比较。

Performance comparison of a state-of-the-art neuro-SPET scanner and a dedicated neuro-PET scanner.

作者信息

Bailey D L, Zito F, Gilardi M C, Savi A R, Fazio F, Jones T

机构信息

MRC Cyclotron Unit, Hammersmith Hospital, London, UK.

出版信息

Eur J Nucl Med. 1994 May;21(5):381-7. doi: 10.1007/BF00171411.

Abstract

The physical performances of two current state-of-the-art scanners dedicated to functional imaging of the brain, one a single-photon emission tomography (SPET) scanner and the other a positron emission tomography (PET) scanner, have been compared under identical conditions. The aim of the study was to compare the capabilities of the devices under conditions resembling the routine clinical environment, as well as to consider other issues such as radiation burden for some common investigations. Both systems have slightly less than 11-cm axial fields of view. The PET system can be operated in a septa-less (3D) mode as well as conventionally with septa (2D). The spatial resolution of both devices was less than 8 mm in all dimensions in scattering media. On average, the PET scanner's resolution was approximately 10%-15% better than the SPET system. Energy resolution on the SPET system was superior due the scintillator used [NaI(Tl)]. Sensitivity in air with a line source on the PET system was found to be approximately 150 times greater in 3D and approximately 25 times greater in 2D than with the SPET system. A normal subject was studied on each system in an attempt to obtain the highest quality data possible for a subjective comparison. It is clear that, while PET retains the advantages of more desirable radiopharmaceuticals and higher sensitivity, the quality obtainable from SPET devices has improved markedly. SPET may prove as useful for many clinical investigations.

摘要

在相同条件下,对两款当前最先进的用于脑功能成像的扫描仪进行了物理性能比较,其中一款是单光子发射断层扫描(SPET)扫描仪,另一款是正电子发射断层扫描(PET)扫描仪。本研究的目的是在类似于常规临床环境的条件下比较这两种设备的性能,同时考虑一些常见检查的辐射负担等其他问题。两款系统的轴向视野均略小于11厘米。PET系统既可以在无隔板(3D)模式下运行,也可以传统地使用隔板(2D)运行。在散射介质中,两款设备在所有维度上的空间分辨率均小于8毫米。平均而言,PET扫描仪的分辨率比SPET系统高出约10%-15%。由于使用了闪烁体[碘化钠(铊)],SPET系统的能量分辨率更优。在PET系统中,线源在空气中的灵敏度在3D模式下约为SPET系统的150倍,在2D模式下约为SPET系统的25倍。在每个系统上对一名正常受试者进行了研究,以尽可能获得高质量的数据进行主观比较。显然,虽然PET保留了更理想的放射性药物和更高灵敏度的优势,但SPET设备所能获得的图像质量也有了显著提高。SPET可能对许多临床研究同样有用。

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