Brain and Language· 2026Q1
Neural processing of speech envelopes from different languages and post-stimulation functional connectivity in newborns: an fNIRS study
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- 2026year
Short summary
Newborns' brains show strengthened frontotemporal functional connectivity after brief exposure to speech envelopes, regardless of language, suggesting the brain retains heard speech and primes language networks.
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Key points
- Newborn brains respond to speech envelopes from Mandarin, French, and English.
- Frontotemporal regions are involved in processing these speech envelopes.
- Brief exposure to native language speech envelopes strengthened frontotemporal functional connectivity.
- This connectivity enhancement occurred without changes in local spontaneous brain activity.
AI-generated from the title and abstract; the full text is not read.
Abstract
Speech envelopes convey low-frequency temporal structure, including speech rhythm and prosody, and provide important cues for early speech processing in newborns. However, how the newborn brain processes speech envelopes and how brief exposure to them affects post-stimulation neural activity remain unclear. Using a mixed design with language condition as a between-subjects factor and resting-state time as a within-subjects factor, we assigned 73 newborns from Mandarin-speaking environments to a Mandarin group ( n = 25), a French group ( n = 23), or an English group ( n = 25). Functional near-infrared spectroscopy (fNIRS) was used to record hemodynamic signals during stimulation with the corresponding speech envelopes and during resting-state periods before and after stimulation, allowing us to examine task-related activation patterns and changes in resting-state neural activity. All three speech envelopes elicited neural responses in frontotemporal regions, indicating that the newborn frontotemporal system can process both native-language envelopes and rhythmically distinct nonnative envelopes. Comparisons of the pre- and post-stimulation resting states further revealed a significantly strengthened frontotemporal functional connectivity network in the Mandarin group, without corresponding changes in the amplitude of local spontaneous activity. These findings suggest that the neural effects of brief exposure to speech envelopes may persist into the post-stimulation resting period and are primarily expressed as enhanced functional coordination across brain regions. Such post-stimulation network changes may reflect the newborn brain's brief retention of heard speech and, with continued language exposure, facilitate the gradual stabilization and maturation of early language networks, supporting subsequent speech processing and language learning.
The authors' abstract, as published at the source. Brain and Language, 2026 · DOI ↗
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Field: Developmental and Educational Psychology
Developmental and Educational PsychologyPsychology