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Modafinil Shifts Human Locus Coeruleus To Low-tonic, High-phasic Activity During Functional Mri

机译:Modafinil在功能性Mri期间将人源性蓝斑转变为低张力,高相活性

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Models of cognitive control posit a key modulatory role for the pontine locus coeruleus-norepinephrine (LC-NE) system. In nonhuman primates, phasic LC-NE activity confers adaptive adjustments in cortical gain in task-relevant brain networks, and in performance, on a trial-by-trial basis. This model has remained untested in humans. We used the pharmacological agent modafinil to promote low-tonic/high-phasic LC-NE activity in healthy humans performing a cognitive control task during event-related functional magnetic resonance imaging (fMRI). Modafanil administration was associated with decreased task-independent, tonic LC activity, increased task-related LC and prefrontal cortex (PFC) activity, and enhanced LC-PFC functional connectivity. These results confirm in humans the role of the LC-NE system in PFC function and cognitive control and suggest a mechanism for therapeutic action of procognitive noradrenergic agents.
机译:认知控制模型对桥脑蓝斑去甲肾上腺素(LC-NE)系统具有关键的调节作用。在非人类的灵长类动物中,分阶段的LC-NE活动会在与任务相关的大脑网络中以及在逐项试验的基础上对皮质增益和性能进行适应性调整。该模型尚未在人类中进行过测试。我们使用药理的莫达非尼在与事件相关的功能磁共振成像(fMRI)期间执行认知控制任务的健康人中促进低调/高相LC-NE活性。莫达芬尼给药与任务独立性,强直性LC活动减少,任务相关性LC和前额叶皮层(PFC)活动增加以及LC-PFC功能连接性增强相关。这些结果在人类中证实了LC-NE系统在PFC功能和认知控制中的作用,并提出了认知性去甲肾上腺素能药物治疗作用的机制。

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