Temporal structure of the language hierarchy within small cortical patches

Fuente: arXiv
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Autori principali: Gadonneix, Julien, Zhang, Mingfang, Rapin, Jérémy, Evanson, Linnea, Bourdillon, Pierre, King, Jean-Rémi
Natura: Preprint
Pubblicazione: 2026
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author Gadonneix, Julien
Zhang, Mingfang
Rapin, Jérémy
Evanson, Linnea
Bourdillon, Pierre
King, Jean-Rémi
author_facet Gadonneix, Julien
Zhang, Mingfang
Rapin, Jérémy
Evanson, Linnea
Bourdillon, Pierre
King, Jean-Rémi
contents Speech production requires the rapid coordination of a complex hierarchy of linguistic units, transforming a semantic representation into a precise sequence of articulatory movements. To unravel the neural mechanisms underlying this feat, we leverage recordings from eight 3.2 x 3.2 mm 64-microelectrode arrays implanted in the motor cortex and inferior frontal gyrus of two patients tasked to produce twenty thousand sentences. We show that a hierarchy of linguistic features are robustly encoded in most of these small cortical patches. Contrary to our expectations, instead of a clear macroscopic organization between patches, we observe a multiplexing of phonetic, syllabic and lexical representations within each cortical patch. Critically, this coding scheme dynamically changes over time to allow successive phonemes, syllables and words to be simultaneously represented without interference. Overall, these results, reminiscent of position encoding in transformers, show how small cortical patches organize the unfolding of the speech hierarchy during language production.
format Preprint
id arxiv_https___arxiv_org_abs_2604_03021
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Temporal structure of the language hierarchy within small cortical patches
Gadonneix, Julien
Zhang, Mingfang
Rapin, Jérémy
Evanson, Linnea
Bourdillon, Pierre
King, Jean-Rémi
Neurons and Cognition
Speech production requires the rapid coordination of a complex hierarchy of linguistic units, transforming a semantic representation into a precise sequence of articulatory movements. To unravel the neural mechanisms underlying this feat, we leverage recordings from eight 3.2 x 3.2 mm 64-microelectrode arrays implanted in the motor cortex and inferior frontal gyrus of two patients tasked to produce twenty thousand sentences. We show that a hierarchy of linguistic features are robustly encoded in most of these small cortical patches. Contrary to our expectations, instead of a clear macroscopic organization between patches, we observe a multiplexing of phonetic, syllabic and lexical representations within each cortical patch. Critically, this coding scheme dynamically changes over time to allow successive phonemes, syllables and words to be simultaneously represented without interference. Overall, these results, reminiscent of position encoding in transformers, show how small cortical patches organize the unfolding of the speech hierarchy during language production.
title Temporal structure of the language hierarchy within small cortical patches
topic Neurons and Cognition
url https://arxiv.org/abs/2604.03021