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首页> 外文期刊>The European Journal of Neuroscience >Reduced low‐frequency power and phase locking reflect restoration in the auditory continuity illusion
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Reduced low‐frequency power and phase locking reflect restoration in the auditory continuity illusion

机译:降低低频功率和相位锁定反映在听觉连续性幻觉中的恢复

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Abstract Interruptions in auditory input can be perceptually restored if they coincide with a masking sound, resulting in a continuity illusion. Previous studies have shown that this continuity illusion is associated with reduced low‐frequency neural oscillations in the auditory cortex. However, the precise contribution of oscillatory amplitude changes and phase alignment to auditory restoration remains unclear. Using electroencephalography, we investigated induced power changes and phase locking in response to 3?Hz amplitude‐modulated tones during the interval of an interrupting noise. We experimentally manipulated both the physical continuity of the tone (continuous vs. interrupted) and the masking potential of the noise (notched vs. full). We observed an attenuation of 3?Hz power during continuity illusions in comparison with both continuous tones and veridically perceived interrupted tones. This illusion‐related suppression of low‐frequency oscillations likely reflects a blurring of auditory object boundaries that supports continuity perception. We further observed increased 3?Hz phase locking during fully masked continuous tones compared with the other conditions. This low‐frequency phase alignment may reflect the neural registration of the interrupting noise as a newly appearing object, whereas during continuity illusions, a spectral portion of this noise is delegated to filling the interruption. Taken together, our findings suggest that the suppression of slow cortical oscillations in both the power and phase domains supports perceptual restoration of interruptions in auditory input.
机译:如果与遮蔽声音一致,则可以感知听觉输入中的中断可以恢复,导致连续性幻觉。以前的研究表明,这种连续性幻觉与听觉皮质中的低频神经振荡减少相关。然而,振荡幅度变化和相对对听觉恢复的精确贡献仍不清楚。使用脑电图,我们在中断噪声的间隔期间调查了响应于3·Hz幅度调制色调的感应功率变化和相位锁定。我们通过实验操纵基调的物理连续性(连续与中断)和噪声的掩蔽电位(缺口与满)。我们观察到连续性幻想期间的3次Hz功率的衰减,与两种连续音调和虚假地感知的色调相比。这种幻觉相关的低频振荡抑制可能反映了支持连续性感知的听觉对象边界的模糊。与其他条件相比,我们进一步观察到在完全掩蔽的连续音调期间增加了3?Hz相位锁定。该低频相位对准可以将中断噪声的神经登记作为新出现的对象反映,而在连续性幻觉期间,将该噪声的频谱部分委派以填充中断。我们的研究结果表明,在电力和相位域中的慢速皮质振荡的抑制支持听觉输入中断的感知恢复。

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