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首页> 外文期刊>Metabolic brain disease >Synergistic tonic and phasic activity of the locus coeruleus norepinephrine (LC-NE) arousal system is required for optimal attentional performance
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Synergistic tonic and phasic activity of the locus coeruleus norepinephrine (LC-NE) arousal system is required for optimal attentional performance

机译:蓝斑去甲肾上腺素(LC-NE)觉醒系统的协同进补和相位活动是获得最佳注意力表现所必需的

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摘要

A certain level of arousal is required for an individual to perform optimally, and the locus coeruleus norepinephrine (LC-NE) system plays a central role in optimizing arousal. Tonic firing of LC-NE neurons needs to be held within a narrow range of 1-3 Hz to facilitate phasic firing of the LC-NE neurons; these two modes of activity act synergistically, to allow the individual to perform attentional tasks optimally. How this information can be applied to further our understanding of psychiatric disorders has not been fully elucidated. Here we propose two models of altered LC-NE activity that result in attentional deficits characteristic of psychiatric disorders: 1) 'hypoaroused' individuals with e.g. attention-deficit/hyperactivity disorder (ADHD) have decreased tonic firing of the LC-NE system, resulting in decreased cortical arousal and poor attentional performance and 2) 'hyperaroused' individuals with e.g. anxiety disorders have increased tonic firing of the LC-NE system, resulting in increased cortical arousal and impaired attentional performance. We argue that hypoarousal (decreased tonic firing of LC-NE neurons) and hyperarousal (increased tonic firing of LC-NE neurons) are suboptimal states in which phasic activity of LC-NE neurons is impeded. To further understand the neurobiology of attentional dysfunction in psychiatric disorders a translational approach that integrates findings on the LC-NE arousal system from animal models and human imaging studies may be useful.
机译:个人需要一定水平的刺激才能达到最佳效果,而蓝斑去甲肾上腺素(LC-NE)系统在优化刺激中起着核心作用。需要将LC-NE神经元的强音激发保持在1-3 Hz的窄范围内,以促进LC-NE神经元的相位激发。这两种活动方式协同作用,使个人能够最佳地执行注意力任务。尚未完全阐明如何将这些信息用于进一步了解我们对精神疾病的理解。在这里我们提出了两种改变LC-NE活性的模型,这些模型导致了精神疾病的注意力缺陷:1)``虚弱的''个体,例如注意缺陷/多动障碍(ADHD)降低了LC-NE系统的强直性发声,导致皮质觉醒减少和注意力不佳,以及2)患有``过度活跃''的人,例如焦虑症增加了LC-NE系统的强直性放电,导致皮层唤醒增加,注意力表现受损。我们认为,hypoarousal(LC-NE神经元的强直性放电减少)和hyperaralal(LC-NE神经元的强直性放电增加)是阻碍LC-NE神经元相位活动的次佳状态。为了进一步了解精神疾病中注意功能障碍的神经生物学,将动物模型和人体成像研究中LC-NE唤醒系统的发现整合在一起的转化方法可能会有用。

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