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Contributions of local speech encoding and functional connectivity to audio-visual speech perception

机译:本地语音编码和功能连接对视听语音感知的贡献

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摘要

Seeing a speaker’s face enhances speech intelligibility in adverse environments. We investigated the underlying network mechanisms by quantifying local speech representations and directed connectivity in MEG data obtained while human participants listened to speech of varying acoustic SNR and visual context. During high acoustic SNR speech encoding by temporally entrained brain activity was strong in temporal and inferior frontal cortex, while during low SNR strong entrainment emerged in premotor and superior frontal cortex. These changes in local encoding were accompanied by changes in directed connectivity along the ventral stream and the auditory-premotor axis. Importantly, the behavioral benefit arising from seeing the speaker’s face was not predicted by changes in local encoding but rather by enhanced functional connectivity between temporal and inferior frontal cortex. Our results demonstrate a role of auditory-frontal interactions in visual speech representations and suggest that functional connectivity along the ventral pathway facilitates speech comprehension in multisensory environments.
机译:在不利的环境下,看到说话者的脸可以增强语音清晰度。我们通过量化本地语音表示和MEG数据中的定向连通性来研究了潜在的网络机制,而人类参与者在听取不同的SNR和视觉环境的语音时获得了该数据。在高声学SNR时,颞叶和下额叶皮层的时间活动性脑活动的语音编码很强,而在低SNR时,前运动皮层和上额叶皮层中的强力音频性出现。这些局部编码的变化伴随着沿着腹侧流和听觉前运动轴的定向连通性的变化。重要的是,看到说话者的面部所产生的行为收益并不是通过本地编码的变化来预测的,而是通过颞叶和下额叶皮质之间增强的功能连接来预测的。我们的研究结果表明听觉-额叶相互作用在视觉语音表示中的作用,并表明沿腹侧通路的功能连接有助于在多感官环境中进行语音理解。

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