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◇ bioRxiv (Cold Spring Harbor Laboratory)2026-07-31· Neuroscience

Dissociable thalamic oscillatory mechanisms support motor sequence learning

Angela Voegtle, Lars Buentjen, Stefan Repplinger, Slawomir J. Nasuto, Adriano de Oliveira Andrade, Matthias Deliano, Robert T. Knight, Richard B. Ivry, Catherine M. Sweeney‐Reed

原始摘要(英文原文)· Original abstract
Abstract The ventrointermediate nucleus of the thalamus (VIM) is implicated in motor sequence learning, yet the underlying neural mechanisms remain unclear. We recorded intracranial activity from the human VIM during a serial reaction time task to determine how neural dynamics support learning. Participants responded faster during repeating than randomized sequences. Beta-to-low-gamma activity was greater during repeating sequences and elevated relative to the prestimulus baseline, consistent with emergence and stabilization of learned motor representations. In contrast, beta-phase modulation of high-frequency activity decreased progressively from rest to random to repeated sequence execution. Stronger phase–amplitude coupling was associated with faster responses, reaching significance in the random condition. These findings reveal a dissociation between power and cross-frequency coupling. Together they suggest that thalamic dynamics contribute to motor learning through multiple mechanisms: beta-band power reflects the emergence of learned motor representations, whereas beta–high-frequency coupling is enhanced when the context is less predictable.
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Dissociable thalamic oscillatory mechanisms support motor sequence learning — 科研速览 Science Skim