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Theta-Modulated Gamma-Band Synchronization Among Activated Regions During a Verb Generation Task

机译:动词生成任务过程中,激活区域之间的Theta调制伽马波段同步

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Expressive language is complex and involves processing within a distributed network of cortical regions. Functional MRI and magnetoencephalography (MEG) have identified brain areas critical for expressive language, but how these regions communicate across the network remains poorly understood. It is thought that synchronization of oscillations between neural populations, particularly at a gamma rate (>30 Hz), underlies functional integration within cortical networks. Modulation of gamma rhythms by theta-band oscillations (4–8 Hz) has been proposed as a mechanism for the integration of local cell coalitions into large-scale networks underlying cognition and perception. The present study tested the hypothesis that these oscillatory mechanisms of functional integration were present within the expressive language network. We recorded MEG while subjects performed a covert verb generation task. We localized activated cortical regions using beamformer analysis, calculated inter-regional phase locking between activated areas, and measured modulation of inter-regional gamma synchronization by theta phase. The results show task-dependent gamma-band synchronization among regions activated during the performance of the verb generation task, and we provide evidence that these transient and periodic instances of high-frequency connectivity were modulated by the phase of cortical theta oscillations. These findings suggest that oscillatory synchronization and cross-frequency interactions are mechanisms for functional integration among distributed brain areas supporting expressive language processing.
机译:表达语言很复杂,涉及在皮质区域的分布式网络中进行处理。功能性MRI和脑磁图(MEG)已经确定了对表达语言至关重要的大脑区域,但是这些区域如何通过网络进行交流仍然知之甚少。人们认为,神经种群之间的振荡同步,特别是在伽马速率(> 30 Hz)下,是皮质网络内功能整合的基础。已经提出了通过θ带振荡(4–8 Hz)调制伽玛节律的一种机制,该机制可将局部细胞联盟整合到基于认知和感知的大规模网络中。本研究检验了以下假设:在表达语言网络中存在这些功能整合的振荡机制。我们在受试者执行秘密动词生成任务时记录了MEG。我们使用波束形成器分析定位了激活的皮质区域,计算了激活区域之间的区域间相位锁定,并测量了θ相位对区域间伽马同步的调制。结果表明,在执行动词生成任务期间激活的区域之间存在与任务相关的伽马带同步,并且我们提供的证据表明,高频连接的这些瞬态和周期性实例受到皮质theta振荡相位的调制。这些发现表明,振荡同步和交叉频率交互作用是支持表达语言处理的分布式大脑区域之间功能整合的机制。

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