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Unified principles of thalamo-cortical processing: the neural switch

机译:统一的Thalamo-皮质处理原理:神经开关

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It has been reported that cross-frequency interactions may play an important role in local processing within thalamus and neocortex, as well as information transfer between subcortical and cortico-cortical brain regions. Strong commonalities in rhythmic network properties have been observed across recording techniques and task demands, but strong neuroscientific theories to situate such observations within a unified framework with direct relevance to explain neuropathologies remain scarce. Based on a comprehensive review of animal and human literature, we probe and introduce a neurophysiological framework to explain how coordinated cross-frequency and interregional oscillatory cortical dynamics underlie typical and atypical brain activation, and the formation of distributed functional ensembles supporting cortical networks underpinning perception and cognition. We propose that local regional activation by an external stimulus via a sensory pathway entails (1) attenuated alpha (8–14 Hz) and increased theta (4–8 Hz) and gamma (30–50 Hz) oscillatory activity, and (2) increased interactions among theta and gamma rhythms. These local dynamics also mediate the integration of activated neural populations into largescale functional assemblies through neuronal synchronization. This comprehensive perspective into the animal and human literature indicates a further thinking beyond synchrony and connectivity and the readiness for more hypothesis-driven research and modeling toward unified principles of thalamo-cortical processing. We further introduced such a possible framework: ‘‘The ATG switch’’. We also discussed evidence that alpha–theta–gamma dynamics emerging from thalamocortical interactions may be implicated and disrupted in numerous neurological and neuropsychiatric conditions.
机译:据报道,横频相互作用可能在丘脑和新科的局部处理中发挥重要作用,以及皮质波动和皮质皮质脑区域之间的信息传递。在录音技术和任务要求中观察到有节奏网络性质的强常见,但是强烈的神经科学理论,以便在统一框架内与解释神经病理学的直接相关的统一框架中仍然稀缺。基于对动物和人类文学的全面审查,我们探讨并引入了一种神经生理框架,解释了如何协调横跨和区域间振荡皮质动态的基础典型和非典型脑激活,以及支持皮质网络的分布式功能合奏的形成支持认识。我们提出通过感官途径的外部刺激的局部区域激活需要(1)减毒α(8-14Hz),增加θ(4-8 Hz)和γ(30-50 Hz)振荡活动,以及(2)增加θ和γ节奏之间的相互作用。这些局部动态还通过神经元同步将激活的神经群体的集成介绍到大型功能组件中。这种综合性观点进入了动物和人类文学,表明了超越同步和连通性的进一步思考以及更多假设驱动的研究和对统一的噻吩语气加工原则的算法。我们进一步介绍了这种可能的框架:''ATG Switch''。我们还讨论了从肌阳性相互作用中出现的α-θ-gamma动态的证据可以涉及和中断许多神经学和神经精神病症。

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