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Translational neuroimaging in drug addiction and obesity. [Review]

机译:转化神经影像学在药物成瘾和肥胖中的作用。 [评论]

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The use of translational noninvasive neuroimaging has revealed that drug addiction and obesity share striking similarities in functional impairment in discrete brain regions and neurotransmitter circuits. Imaging experiments in both humans and rodents (using complementary experimental designs) show similar abnormalities in brain glucose metabolism in the prefrontal cortex (involved in inhibitory control) and hippocampus (memory) as well as impairments in dopamine signaling in the striatum (involved in food and drug reward, goal orientation, motivation, and habit formation). In both species, many of these observations have been obtained through concurrent and parallel monitoring of both brain activity and behavioral manifestations during drug administration, food sensory (visual, olfactory) stimulation, and craving. This review aims to show that noninvasive brain imaging strategies such as small animal positron emission tomography offer significant potential and promise for modeling motivational disorders such as drug addiction and obesity in humans. Rodent addiction models will prove valuable for understanding brain responses to drug cues and will help guide treatment, especially in relapse situations triggered by exposure to conditioned drug cues.Registry Number/Name of Substance 0 (Leptin).
机译:翻译非侵入性神经影像学的使用表明,药物成瘾和肥胖症在离散的大脑区域和神经递质回路中的功能受损方面具有惊人的相似性。在人类和啮齿动物中的成像实验(使用补充实验设计)显示前额叶皮层(涉及抑制性控制)和海马(记忆)的脑葡萄糖代谢相似的异常,以及纹状体中的多巴胺信号传导受损(涉及食物和食物)药物奖励,目标取向,动机和习惯养成)。在这两个物种中,许多观察都是通过并发和并行监测药物给药,食物感官(视觉,嗅觉)刺激和渴望期间大脑活动和行为表现而获得的。这篇综述旨在表明无创性大脑成像策略(例如小动物正电子发射断层扫描)为模拟动机性疾病(例如人类的药物成瘾和肥胖)提供了巨大的潜力和希望。啮齿类动物成瘾模型对于理解大脑对药物提示的反应将具有重要价值,并将有助于指导治疗,尤其是在因接触条件药物提示而引起的复发情况下。登记号/物质0(瘦素)的名称。

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