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Pedunculopontine Nucleus Gamma Band Activity-Preconscious Awareness Waking and REM Sleep

机译:Pedunculopontine核γ带活动前意识醒来和REM睡眠。

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摘要

The pedunculopontine nucleus (PPN) is a major component of the reticular activating system (RAS) that regulates waking and REM sleep, states of high-frequency EEG activity. Recently, we described the presence of high threshold, voltage-dependent N- and P/Q-type calcium channels in RAS nuclei that subserve gamma band oscillations in the mesopontine PPN, intralaminar parafascicular nucleus (Pf), and pontine subcoeruleus nucleus dorsalis (SubCD). Cortical gamma band activity participates in sensory perception, problem solving, and memory. Rather than participating in the temporal binding of sensory events as in the cortex, gamma band activity in the RAS may participate in the processes of preconscious awareness, and provide the essential stream of information for the formulation of many of our actions. That is, the RAS may play an early permissive role in volition. Our latest results suggest that (1) the manifestation of gamma band activity during waking may employ a separate intracellular pathway compared to that during REM sleep, (2) neuronal calcium sensor (NCS-1) protein, which is over expressed in schizophrenia and bipolar disorder, modulates gamma band oscillations in the PPN in a concentration-dependent manner, (3) leptin, which undergoes resistance in obesity resulting in sleep dysregulation, decreases sodium currents in PPN neurons, accounting for its normal attenuation of waking, and (4) following our discovery of electrical coupling in the RAS, we hypothesize that there are cell clusters within the PPN that may act in concert. These results provide novel information on the mechanisms controlling high-frequency activity related to waking and REM sleep by elements of the RAS.
机译:足桥骨核(PPN)是网状激活系统(RAS)的主要组成部分,可调节醒来和REM睡眠(高频EEG活动状态)。最近,我们描述了RAS核中存在高阈值,电压依赖性N和P / Q型钙通道,这些通道可在中桥脑PPN,层内束旁核(Pf)和桥脑背巩膜下背核(SubCD)中产生伽马带振荡)。皮质伽马带活动参与感觉知觉,问题解决和记忆。 RAS中的伽玛谱带活动可能不参与皮质中的感觉事件的时间绑定,而可能参与前知觉的过程,并为我们许多行动的制定提供必要的信息流。也就是说,RAS可能在自愿中起早期的宽松作用。我们的最新研究结果表明:(1)与快速眼动睡眠期间相比,清醒过程中γ带活动的表现可能采用单独的细胞内途径;(2)神经元钙传感器(NCS-1)蛋白在精神分裂症和双相性精神病患者中过度表达失调,以浓度依赖的方式调节PPN中的伽马能带振荡,(3)瘦素,在肥胖症中产生抵抗力,导致睡眠失调,降低PPN神经元中的钠电流,这是其正常唤醒的原因,以及(4)在我们发现RAS中的电耦合之后,我们假设PPN中存在可能协同作用的细胞簇。这些结果提供了有关通过RAS元素控制与苏醒和REM睡眠有关的高频活动的机制的新颖信息。

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