Spatiotemporal mapping of auditory onsets during speech production

演讲制作 语音识别 生产(经济) 计算机科学 听力学 医学 宏观经济学 经济
作者
Garret Kurteff,Alyssa M Field,S.S. Asghar,Elizabeth C. Tyler‐Kabara,Dave Clarke,Howard L. Weiner,Anne E. Anderson,Andrew J. Watrous,Robert J. Buchanan,Pradeep N. Modur,Liberty S. Hamilton
出处
期刊:The Journal of Neuroscience [Society for Neuroscience]
卷期号:: e1109242024-e1109242024
标识
DOI:10.1523/jneurosci.1109-24.2024
摘要

The human auditory cortex is organized according to the timing and spectral characteristics of speech sounds during speech perception. During listening, the posterior superior temporal gyrus is organized according to onset responses, which segment acoustic boundaries in speech, and sustained responses, which further process phonological content. When we speak, the auditory system is actively processing the sound of our own voice to detect and correct speech errors in real time. This manifests in neural recordings as suppression of auditory responses during speech production compared to perception, but whether this differentially affects onset and sustained temporal profiles is not known. Here we investigated this question using intracranial EEG recorded from seventeen pediatric, adolescent, and adult patients with medication-resistant epilepsy while they performed a reading/listening task. We identified onset and sustained responses to speech in bilateral auditory cortex and observed a selective suppression of onset responses during speech production. We conclude that onset responses provide a temporal landmark during speech perception that is redundant with forward prediction during speech production and are therefore suppressed. Phonological feature tuning in these "onset suppression" electrodes remained stable between perception and production. Notably, auditory onset responses and phonological feature tuning were present in the posterior insula during both speech perception and production, suggesting an anatomically and functionally separate auditory processing zone that we believe to be involved in multisensory integration during speech perception and feedback control.

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