Skip to content

Multiple motor systems spontaneously track speech structures at distinct levels with individual variability.

Jul 2026 · Cognition · Vol 276, pp. 106666 · 0 citations · 90 references
Medicine

Abstract

Tracking the hierarchical structure of connected speech is a central component of speech perception, yet the timescales at which motor systems contribute to this process remain poorly understood, especially given strong individual differences in auditory-motor coupling strength. Using a modified speech-to-speech synchronization (SSS) paradigm with hierarchically structured speech, we recorded participants' articulatory vocalization, eye movements, and cardiac activity while they synchronized their speech to the syllable rhythm and then continued the rhythm after stimulus offset. Syllable-rate synchronization performance exhibited the characteristic bimodal distribution that separated high and low synchronizers, allowing us to examine how individual differences in auditory-motor coupling shape the contributions of multiple motor systems to speech tracking. We found that vocalization showed spontaneous word-level tracking and timing shifts consistent with temporal prediction based on high-level structures, and these signatures were markedly stronger in high synchronizers. Meanwhile, covert oculomotor activity exhibited spontaneous syllable-rate tracking, occurring in high synchronizers only, with temporal dynamics that diverged from overt production. Finally, high synchronizers showed subtle structure-dependent modulation of autonomic cardiac activity. Together, these findings demonstrate that articulatory and oculomotor activity provide complementary contributions to speech tracking, and that the presence and organization of these contributions vary systematically across individuals. This multisystem approach offers behavioral and physiological markers for the embodied mechanisms of hierarchical speech processing.

View source

Similar papers

Sep 2026

Phrase-level speech timing preferences predict synchronization in joint reading.

For rhythmic motor activities, such as tapping, walking, and playing music, individuals often show preferred timescales, and differences between individuals' timing preferences impact how well they can synchronize. Speech is only quasi-periodic, but previous studies have suggested that it also exhibits preferred timesc...

M. Wolpert, Y. Chen, N. Ding · 0 citations
Open access Sep 2026

The cortex encodes speech timing as departure from expectation across multiple timescales

Every syllable and every phoneme in natural speech has a different duration. This variability is conventionally treated as jitter, noise the brain must overcome to recover an underlying regularity. Here we show that the cortex encodes it as information. We recorded magnetoencephalography from 25 native listeners of Spa...

N. Molinaro, Jose Pérez-Navarro · 0 citations
Open access Aug 2026

Cortical encoding of probabilistic temporal predictions during speech perception

The temporal structure of speech has traditionally been characterized by the rhythmicity of its canonical linguistic units (phonemes, syllables, words), each summarized by a mean occurrence rate. While valid, this view overlooks whether speech carries a finer, context-dependent and probabilistic temporal structure that...

Laure Deyna, Philippe Albouy, Agnès Trébuchon et al. · 1 citation
Open access Aug 2026

The role of high-amplitude bursts of high-gamma activity in naturalistic speech and music listening

Temporal response function analyses reveal that avalanche activity reliably encodes both speech and music stimuli, even under extreme data sparsification, and demonstrate that neuronal avalanches provide a computationally efficient framework for studying cognition in naturalistic settings.

Matteo Neri, C. Runfola, P. Guilleminot et al. · 0 citations
Open access Aug 2026

Short-timescale heart-rate fluctuation and acoustic stability show structured coupling at register transitions during singing

Heart rate (HR) is widely used to index physiological activation during singing and music performance, yet condition-level mean HR provides limited insight into how physiological regulation unfolds during vocal task execution. This exploratory study examined whether short-timescale changes in HR and acoustic stability...

You-He Li · 0 citations
#large language models Open access Sep 2026

The effects of delayed auditory feedback depend on both the rhythm and content of the feedback signal

Purpose Delayed auditory feedback (DAF) has long been known to disrupt fluent speech, yet the underlying mechanisms remain a matter of debate. Some have hypothesized that interference occurs because of asynchronous sensory and motor rhythms, independent of the specific content of auditory inputs. The goal of this study...

J. Bohland, Alexander Ocampo, Caitlin A. Lassige et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.