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Updated: Jan 7, 2026

Interaction between Phonological and Semantic Processes in Visual Word Recognition using Electrophysiology
Published on: June 29, 2021
Separating feedforward and feedback dynamics using time-frequency resolved connectivity: A hybrid model of left
Jiaxin You1,2, Olaf Hauk3, Riitta Salmelin1,2
1Department of Neuroscience and Biomedical Engineering, Aalto University, Aalto, Finland.
None:
Left ventral occipitotemporal cortex (vOT) is crucial in reading. Its functional role is viewed either as a prelexical feedforward hub or as a bidirectional interface between sensory and higher-order linguistic systems. To consolidate the two views and comprehensively explain the functional complexity of left vOT, we investigated the temporal and spectral dynamics of information flows involving left vOT during visual word and pseudoword reading using magnetoencephalography (MEG) and two directed connectivity metrics, that is, phase slope index (PSI) and Granger causality (GC). Specifically, feedforward connectivity from low-level visual areas to vOT was observed for all conditions, with the strength of orthographic information flow to left superior temporal cortex (ST) modulated by stimulus word-likeness. Conversely, feedback flow from left ST to vOT appeared for pseudowords that allow top-down linguistic constraints to facilitate reading, and occurred later for word-like than complete pseudowords. Our findings suggest that left vOT during word reading functions in a hybrid manner: operating in efficient feedforward mode for familiar word recognition while flexibly recruiting bidirectional processing for unfamiliar pseudowords. By disentangling feedforward and feedback dynamics with high temporal and spectral resolution, we empirically reconcile different theories of vOT function.
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