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Oscillatory dynamics coordinating human frontal networks in support of goal maintenance

机译:协调人类额叶网络以支持目标维持的振荡动力学

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Humans have a capacity for hierarchical cognitive control-the ability to simultaneously control immediate actions while holding more abstract goals in mind. Neuropsychological and neuroimaging evidence suggests that hierarchical cognitive control emerges from a frontal architecture whereby prefrontal cortex coordinates neural activity in the motor cortices when abstract rules are needed to govern motor outcomes. We utilized the improved temporal resolution of human intracranial electrocorticography to investigate the mechanisms by which frontal cortical oscillatory networks communicate in support of hierarchical cognitive control. Responding according to progressively more abstract rules resulted in greater frontal network theta phase encoding (4-8 Hz) and increased prefrontal local neuronal population activity (high gamma amplitude, 80-150 Hz), which predicts trial-by-trial response times. Theta phase encoding coupled with high gamma amplitude during inter-regional information encoding, suggesting that inter-regional phase encoding is a mechanism for the dynamic instantiation of complex cognitive functions by frontal cortical subnetworks.
机译:人类具有分级认知控制的能力,即在牢记更多抽象目标的同时控制即时行动的能力。神经心理学和神经影像学证据表明,分层认知控制来自额叶结构,当需要抽象规则来控制运动结果时,前额叶皮层协调运动皮层中的神经活动。我们利用人类颅内电皮层照相术的改进的时间分辨率来研究额叶皮质振荡网络通信以支持分级认知控制的机制。根据逐渐更抽象的规则做出响应,会导致额叶网络theta相位编码更大(4-8 Hz),并增加额叶前额叶局部神经元种群活动(高伽马幅度,80-150 Hz),从而预测了逐次试验的响应时间。 Theta相位编码与区域间信息编码期间的高伽马幅度耦合,表明区域间相位编码是通过额叶皮质子网动态实例化复杂认知功能的机制。

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