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Cross-frequency coupling during auditory perception in human cortex

机译:人体皮层听觉感知过程中的跨频耦合

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Cross-frequency coupling plays an important role in coordinating neuronal computations underlying human perception, learning and memory. Here we compared four methods for measuring phase/amplitude coupling (PAC) of theta (4-7 Hz) and high-gamma (70-150 Hz) in intracranial electrocorticographic (ECoG) recordings. Time-frequency spectral and time-domain evoked responses were derived for comparison. All four methods showed significant increases in theta/high-gamma PAC in auditory cortex at sites where significant event-related increases in high-gamma power were also observed. Similarly, all PAC methods revealed stimulus effects (type, probability). However, the patterns of PAC increases differed across methods. Results suggest that PAC measures may be differentially sensitive to the underlying neural activity, including high-gamma amplitude, phase locking, and response timing.
机译:跨频耦合在协调人类感知,学习和记忆的神经元计算中起着重要作用。在这里,我们比较了测量颅内电皮层(ECoG)记录中theta(4-7 Hz)和高伽马(70-150 Hz)的相位/幅度耦合(PAC)的四种方法。导出了时频频谱和时域诱发的响应进行比较。所有四种方法均显示出听觉皮层中theta /高伽玛PAC的显着增加,在这些地点还观察到​​了与事件相关的高伽玛强度的显着增加。同样,所有PAC方法都显示出刺激作用(类型,概率)。但是,PAC的增加模式在不同方法中有所不同。结果表明,PAC测量可能对潜在的神经活动(包括高伽马幅度,锁相和响应时间)具有不同的敏感性。

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