architecture

麻醉对大鼠脑部 ¹⁸F-FDG 摄取的影响:一项采用运动校正的完全清醒动态研究


在临床前正电子发射断层扫描(PET)研究中,常使用麻醉手段以确保动物在扫描过程中保持静止。然而,在脑成像过程中,麻醉对所研究的示踪剂或药物产生何种影响往往尚不明确;这种影响可能会混淆研究结果,并给其向临床应用的转化带来干扰。基于我们开发的运动校正技术,本文展示了一项关于异氟烷对大鼠脑部FDG摄取影响的研究结果;该研究采用的是完全清醒、置于管内但未受束缚的大鼠模型。该研究包含了对清醒大鼠和麻醉大鼠进行的动态扫描。在此,我们报告了两项相关的大鼠研究结果。与麻醉状态下的扫描结果相比,我们在清醒大鼠的脑部观察到了FDG摄取量在稳态水平上持续增加的现象。


The effect of anaesthesia on 18F-FDG uptake in the rat brain: A fully conscious dynamic study using motion correction


Abstract:

Anaesthesia is used in preclinical positron emission tomography (PET) studies to ensure that no motion of the animal occurs during the scan. The effect of the anaesthesia in brain imaging on the tracer or drug under study is not always known, and this may confound the results of the study and how they are translated to the clinic. Using developed motion correction techniques, we present results from a study of the effect of isoflurane on FDG uptake in the rat brain using fully awake tube-bound, but unrestrained, rats. The study involved dynamic scans of both awake and asleep rats. We report here on 2 rat studies. A consistent increased uptake at steady-state of FDG in the awake rat brains was observed, when compared to the asleep scans.