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The phase of cortical oscillations determines the perceptual fate of visual cues in naturalistic audiovisual speech

机译:皮质振荡的阶段决定了自然化视听语言中视觉线索的感知命运

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When we see our interlocutor, our brain seamlessly extracts visual cues from their face and processes them along with the sound of their voice, making speech an intrinsically multimodal signal. Visual cues are especially important in noisy environments, when the auditory signal is less reliable. Neuronal oscillations might be involved in the cortical processing of audiovisual speech by selecting which sensory channel contributes more to perception. To test this, we designed computer-generated naturalistic audiovisual speech stimuli where one mismatched phoneme-viseme pair in a key word of sentences created bistable perception. Neurophysiological recordings (high-density scalp and intracranial electroencephalography) revealed that the precise phase angle of theta-band oscillations in posterior temporal and occipital cortex of the right hemisphere was crucial to select whether the auditory or the visual speech cue drove perception. We demonstrate that the phase of cortical oscillations acts as an instrument for sensory selection in audiovisual speech processing.
机译:当我们看到我们的对话者时,我们的大脑无缝地从他们的脸部中提取视觉线索,并处理它们的声音,使语音是内在的多峰信号。当听觉信号不太可靠时,视觉暗示在嘈杂的环境中尤为重要。通过选择哪个感官通道有助于感知,神经元振荡可能涉及视听语音的皮质处理。为了测试这一点,我们设计了计算机生成的自然主义视听语音刺激,其中一个错配的音素斗牛在句子的关键词中创造了双稳态感知。神经生理记录(高密度头皮和颅内脑电图)揭示了右半球后颞和枕骨皮层中θ带振荡的精确相位角对于选择听觉或视觉语音是否驱动感知至关重要。我们证明皮质振荡的阶段充当视听语音处理中的感官选择仪器。

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