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The cortical representation of the speech envelope is earlier for audiovisual speech than audio speech

机译:语音信封的皮质代表性比音频语音更早用于视听演讲

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摘要

Visual speech can greatly enhance a listener's comprehension of auditory speech when they are presented simultaneously. Efforts to determine the neural underpinnings of this phenomenon have been hampered by the limited temporal resolution of hemodynamic imaging and the fact that EEG and magnetoencepha-lographic data are usually analyzed in response to simple, discrete stimuli. Recent research has shown that neuronal activity in human auditory cortex tracks the envelope of natural speech. Here, we exploit this finding by estimating a linear forward-mapping between the speech envelope and EEG data and show that the latency at which the envelope of natural speech is represented in cortex is shortened by >10 ms when continuous audiovisual speech is presented compared with audio-only speech. In addition, we use a reverse-mapping approach to reconstruct an estimate of the speech stimulus from the EEG data and, by comparing the bimodal estimate with the sum of the unimodal estimates, find no evidence of any nonlinear additive effects in the audiovisual speech condition. These findings point to an underlying mechanism that could account for enhanced comprehension during audiovisual speech. Specifically, we hypothesize that low-level acoustic features that are temporally coherent with the preceding visual stream may be synthesized into a speech object at an earlier latency, which may provide an extended period of low-level processing before extraction of semantic information.
机译:当同时呈现时,视觉演讲可以大大提高听众对听觉语音的理解。确定这种现象的神经内衬的努力受到血流动力学成像的有限时间分辨率的阻碍,并且通常以响应简单,离散的刺激来分析脑电图和磁性纸巾数据的事实。最近的研究表明,人类听觉皮层中的神经元活动跟踪了自然演讲的信封。在这里,我们通过估计语音包络和脑电图数据之间的线性前向映射来利用此发现,并显示在将连续的视听语音中缩短> 10ms时,在皮质中缩短了自然语音包络的等待时间。只有语音。此外,我们使用反向映射方法来重建来自EEG数据的语音刺激的估计,并且通过将双峰估计与单峰估计的总和进行比较,没有发现在视听语音条件下任何非线性添加剂效应的证据。这些发现指出了一个可以考虑在视听言论期间提高理解的潜在机制。具体地,我们假设与前面的视觉流逐时相干的低级声学特征可以在较早等待时间的较早等待时间的语音对象中被合成到语音对象中,这可以在提取语义信息之前提供延长的低电平处理时段。

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