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Activating an anterior nucleus gigantocellularis subpopulation triggers emergence from pharmacologically-induced coma in rodents

机译:激活前核巨核细胞群亚population触发从啮齿动物中药理学诱导的昏迷的出现

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Multiple areas within the reticular activating system (RAS) can hasten awakening from sleep or light planes of anesthesia. However, stimulation in individual sites has shown limited recovery from deep global suppression of brain activity, such as coma. Here we identify a subset of RAS neurons within the anterior portion of nucleus gigantocellularis (aNGC) capable of producing a high degree of awakening represented by a broad high frequency cortical reactivation associated with organized movements and behavioral reactivity to the environment from two different models of deep pharmacologically-induced coma (PIC): isoflurane (1.25%-1.5%) and induced hypoglycemic coma. Activating aNGC neurons triggered awakening by recruiting cholinergic, noradrenergic, and glutamatergic arousal pathways. In summary, we identify an evolutionarily conserved population of RAS neurons, which broadly restore cerebral cortical activation and motor behavior in rodents through the coordinated activation of multiple arousal-promoting circuits.
机译:网状激活系统(RAS)内的多个区域可以从麻醉的睡眠或灯平面中加速唤醒。然而,各个部位的刺激表明,从脑活动的深度全球抑制等脑活动中的恢复有限,例如昏迷。在这里,我们鉴定了能够产生高度高频皮质再激活的核缩窄细胞(Angc)内部的RAS神经元的子集,该Zigantocellularis(Angc)能够产生具有与来自两个不同模型的环境的组织运动和行为反应性相关的广泛的高频皮质再激活。药理学诱导的彗星(PIC):异氟醚(1.25%-1.5%)和诱导的低血糖昏迷。激活angc神经元通过募集胆碱能,诺肾上腺素能和谷氨酸胶瘤途径触发觉醒。总之,我们鉴定了一种进化的RAS神经元群,通过多个唤起电路的协调激活,在啮齿动物中广泛地恢复脑皮质活化和电机行为。

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