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高分辨率单光子发射计算机断层扫描中的散射、空间分辨率和定量恢复

Scatter, spatial resolution, and quantitative recovery in high resolution SPECT.

作者信息

Szabo Z, Links J M, Seki C, Rhine J, Wagner H N

机构信息

Division of Nuclear Medicine, Johns Hopkins Medical Institutions, Baltimore, MD 21205.

出版信息

J Comput Assist Tomogr. 1992 May-Jun;16(3):461-7. doi: 10.1097/00004728-199205000-00022.

Abstract

The potential use of single photon emission CT (SPECT) for quantification depends on its physical performance characteristics. We investigated the performance of a high resolution four-head brain SPECT scanner (Neuro-Spect; Summit/Hitachi). With an attenuation coefficient of 0.11 cm-1 and the Chang correction method, the calibration factor of the scanner was 515 (cpm/ml)/(microCi/ml) and showed only a minimal but systematic dependence on object size. Without scatter, the resolution was 4.7 mm (full width at half-maximum); in a scatter medium, the resolution was 5.3-10.0 mm with high resolution collimation and 7.7-18.8 mm with general purpose collimation, depending on filtering. A recovery coefficient of close to 100% was measured in the center of spheres with a size of at least 20 mm placed in a cylindrical water-filled phantom. In lesions of this size, scatter was 20%. We conclude from our measurements that the investigated high resolution SPECT offers significant improvements in resolution, scatter, and recovery, which will improve both the quality of brain studies and the measurement of quantitative parameters such as the cortex/white matter ratio.

摘要

单光子发射计算机断层扫描(SPECT)用于定量分析的潜力取决于其物理性能特征。我们研究了一台高分辨率四探头脑SPECT扫描仪(Neuro-Spect;Summit/Hitachi)的性能。在衰减系数为0.11 cm⁻¹并采用Chang校正方法的情况下,该扫描仪的校准因子为515(计数率/毫升)/(微居里/毫升),并且仅对物体大小表现出极小但有系统性的依赖性。在无散射的情况下,分辨率为4.7毫米(半高宽);在散射介质中,根据滤波情况,高分辨率准直时分辨率为5.3 - 10.0毫米,通用准直时分辨率为7.7 - 18.8毫米。在放置于圆柱形充水模体中的至少20毫米大小球体的中心测量到恢复系数接近100%。在这种大小的病变中,散射率为20%。我们从测量结果得出结论,所研究的高分辨率SPECT在分辨率、散射和恢复方面有显著改善,这将提高脑研究的质量以及诸如皮质/白质比等定量参数的测量。

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