首页> 外文期刊>The Journal of Nuclear Medicine >Awake Nonhuman Primate Brain PET Imaging with Minimal Head Restraint: Evaluation of GABAA-Benzodiazepine Binding with 11C-Flumazenil in Awake and Anesthetized Animals.
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Awake Nonhuman Primate Brain PET Imaging with Minimal Head Restraint: Evaluation of GABAA-Benzodiazepine Binding with 11C-Flumazenil in Awake and Anesthetized Animals.

机译:清醒的非人类灵长类灵长类动物脑部PET成像,头部约束最小:清醒和麻醉动物中GABAA-苯二氮卓与11C-氟马西尼结合的评估。

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摘要

Neuroreceptor imaging in the nonhuman primate (NHP) is valuable for translational research approaches in humans. However, most NHP studies are conducted under anesthesia, which affects the interpretability of receptor binding measures. The aims of this study were to develop awake NHP imaging with minimal head restraint and to compare in vivo binding of the γ-aminobutyric acid type A (GABAA)-benzodiazepine radiotracer (11)C-flumazenil under anesthetized and awake conditions. We hypothesized that (11)C-flumazenil binding potential (BPND) would be higher in isoflurane-anesthetized monkeys.The small animal PET scanner was fitted to a mechanical device that raised and tilted the scanner 45° while the awake NHP was tilted back 35° in a custom chair for optimal brain positioning, which required acclimation of the animals to the chair, touch-screen tasks, intravenous catheter insertion, and tilting. For PET studies, the bolus-plus-constant infusion method was used for (11)C-flumazenil administration. Two rhesus monkeys were scanned under the awake (n = 6 scans) and isoflurane-anesthetized (n = 4 scans) conditions. An infrared camera was used to track head motion during PET scans. Under the awake condition, emission and head motion-tracking data were acquired for 40-75 min after injection. Anesthetized monkeys were scanned for 90 min. Cortisol measurements were acquired during awake and anesthetized scans. Equilibrium analysis was used for both the anesthetized (n = 4) and the awake (n = 5) datasets to compute mean BPND images in NHP template space, using the pons as a reference region. The percentage change per minute in radioactivity concentration was calculated in high- and low-binding regions to assess the quality of equilibrium.The monkeys acclimated to procedures in the NHP chair necessary to perform awake PET imaging. Image quality was comparable between awake and anesthetized conditions. The relationship between awake and anesthetized values was BPND (awake) = 0.94 BPND (anesthetized) + 0.36 (r(2) = 0.95). Cortisol levels were significantly higher under the awake condition (P < 0.05).We successfully performed awake NHP imaging with minimal head restraint. There was close agreement in (11)C-flumazenil BPND values between awake and anesthetized conditions.
机译:非人类灵长类动物(NHP)中的神经受体成像对于人类的转化研究方法很有价值。但是,大多数NHP研究是在麻醉下进行的,这会影响受体结合措施的可解释性。这项研究的目的是开发具有最小头枕的清醒NHP成像,并比较在麻醉和清醒条件下γ-氨基丁酸A型(GABAA)-苯二氮卓放射性示踪剂(11)C-氟马西尼的体内结合。我们假设在异氟烷麻醉的猴子中,(11)C-氟马西尼的结合电位(BPND)会更高。小型动物PET扫描仪安装在机械设备上,该设备将扫描仪抬高和倾斜45°,而清醒的NHP向后倾斜35 °在定制椅子上以达到最佳的大脑定位,这需要使动物适应椅子,触摸屏任务,静脉内插入导管和倾斜。对于PET研究,将推注加恒定输注方法用于(11)C-氟马西尼的给药。在清醒(n = 6次扫描)和异氟烷麻醉(n = 4次扫描)条件下扫描了两只恒河猴。在PET扫描过程中,使用了红外热像仪来跟踪头部运动。在清醒条件下,在注射后40-75分钟内获取发射和头部运动跟踪数据。将麻醉的猴子扫描90分钟。在清醒和麻醉扫描期间获取皮质醇测量值。平衡分析用于麻醉(n = 4)和清醒(n = 5)数据集,以pons为参考区域来计算NHP模板空间中的平均BPND图像。计算高结合区和低结合区每分钟放射性浓度的百分比变化以评估平衡的质量。猴子适应了醒着PET成像所必需的NHP座椅程序。在清醒和麻醉条件下,图像质量相当。清醒和麻醉值之间的关系是BPND(清醒)= 0.94 BPND(麻醉)+ 0.36(r(2)= 0.95)。在清醒状态下,皮质醇水平显着升高(P <0.05)。我们成功进行了清醒的NHP显像,且头部约束最小。在清醒状态和麻醉状态之间,(11)C-氟马西尼BPND值存在密切的一致性。

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