首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Oscillatory sensory selection mechanisms during intersensory attention to rhythmic auditory and visual inputs: a human electrocorticographic investigation.
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Oscillatory sensory selection mechanisms during intersensory attention to rhythmic auditory and visual inputs: a human electrocorticographic investigation.

机译:在对节奏性听觉和视觉输入的感官注意期间的震荡感官选择机制:人类皮层电图研究。

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摘要

Oscillatory entrainment mechanisms are invoked during attentional processing of rhythmically occurring stimuli, whereby their phase alignment regulates the excitability state of neurons coding for anticipated inputs. These mechanisms have been examined in the delta band (1-3 Hz), where entrainment frequency matches the stimulation rate. Here, we investigated entrainment for subdelta rhythmic stimulation, recording from intracranial electrodes over human auditory cortex during an intersensory audiovisual task. Audiovisual stimuli were presented at 0.67 Hz while participants detected targets within one sensory stream and ignored the other. It was found that entrainment operated at twice the stimulation rate (1.33 Hz), and this was reflected by higher amplitude values in the FFT spectrum, cyclic modulation of alpha-amplitude, and phase-amplitude coupling between delta phase and alpha power. In addition, we found that alpha-amplitude was relatively increased in auditory cortex coincident with to-be-ignored auditory stimuli during attention to vision. Thus, the data suggest that entrainment mechanisms operate within a delimited passband such that for subdelta task rhythms, oscillatory harmonics are invoked. The phase of these delta-entrained oscillations modulates alpha-band power. This may in turn increase or decrease responsiveness to relevant and irrelevant stimuli, respectively.
机译:在对有节奏的刺激进行注意力处理期间调用了振荡夹带机制,由此它们的相位对准调节了编码预期输入的神经元的兴奋性状态。这些机制已在三角带(1-3 Hz)中进行了检查,其中夹带频率与刺激速率匹配。在这里,我们研究了在感觉性视听任务期间从人类听觉皮层上的颅内电极记录的三角洲节律性刺激的夹带。视听刺激的频率为0.67 Hz,而参与者在一个感觉流中检测到目标而忽略了另一个。发现夹带以两倍的刺激速率(1.33 Hz)工作,这反映在FFT频谱中较高的振幅值,α振幅的循环调制以及增量相位和α功率之间的相位振幅耦合。此外,我们发现在注意视力的过程中,听觉皮层的α振幅相对增加,与被忽视的听觉刺激相吻合。因此,数据表明夹带机制在限定的通带内操作,使得对于亚任务任务节奏,调用振荡谐波。这些Δ夹带振荡的相位调制α波段功率。这依次可以分别增加或减少对相关和不相关刺激的响应性。

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