VanDeventer G, Thomson J, Graham L S, Thomasson D, Meyer J H
J Nucl Med. 1983 Mar;24(3):187-96.
The study was undertaken to validate phantom-derived corrections for errors in collimation due to septal penetration or scatter, which vary with the size of the gastric region of interest (ROI). Six volunteers received 495 ml of 20% glucose labeled with both In-113m DTPA and Tc-99m DTPA. Gastric emptying of each nuclide was monitored by gamma camera as well as by periodic removal and reinstillation of the meal through a gastric tube. Serial aspirates from the gastric tube confirmed parallel emptying of In-113m and Tc-99m, but analyses of gamma-camera data yielded parallel emptying only when adequate corrections were made for errors in collimation. Analyses of ratios of gastric counts from anterior to posterior, as well as analyses of peak-to-scatter ratios, revealed only small, insignificant anteroposterior movement of the tracers within the stomach during emptying. Accordingly, there was no significant improvement in the camera data when corrections were made for attenuation with intragastric depth.
本研究旨在验证因隔板穿透或散射导致的准直误差的体模衍生校正,这些误差会随胃感兴趣区(ROI)的大小而变化。六名志愿者接受了495毫升标记有铟-113m二乙三胺五乙酸(In-113m DTPA)和锝-99m二乙三胺五乙酸(Tc-99m DTPA)的20%葡萄糖。通过γ相机以及通过胃管定期取出和重新注入餐食来监测每种核素的胃排空情况。从胃管中连续吸出的液体证实铟-113m和锝-99m平行排空,但仅在对准直误差进行适当校正后,对γ相机数据的分析才得出平行排空的结果。对胃前后计数比值的分析以及峰散射比值的分析显示,排空过程中示踪剂在胃内仅发生了微小的、不显著的前后移动。因此,在对胃内深度的衰减进行校正后,相机数据并无显著改善。