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The dynamics of language-related high-gamma activity assessed on a spatially-normalized brain
Authors:Naoto Kunii  Kyousuke Kamada  Takahiro Ota  Richard E. Greenblatt  Kensuke Kawai  Nobuhito Saito
Affiliation:1. Department of Neurosurgery, The University of Tokyo, Tokyo, Japan;2. Department of Neurosurgery, Asahikawa Medical University, Asahikawa, Japan;3. Source Signal Imaging Inc., San Diego, CA, USA
Abstract:ObjectiveWe developed a novel technique of spatial normalization of subdural electrode positions across subjects and assessed the spatial–temporal dynamics of high-gamma activity (HGA) in the dominant hemisphere elicited by three distinct language tasks.MethodsThe normalization process was applied to 1512 subdural electrodes implanted in 21 patients with intractable epilepsy. We projected each task-related HGA profile onto a normalized brain.ResultsThe word interpretation task initially elicited HGA augmentation in the bilateral fusiform gyri at 100 ms after stimulus onsets, subsequently in the left posterior middle temporal gyrus, in the left ventral premotor cortex at 200 ms and in the left middle and left inferior frontal gyri at 300 ms and after. The picture naming task elicited HGA augmentation in few sites in the left frontal lobe. The verb generation task elicited HGA in the left superior temporal gyrus at 100–600 ms. Common HGA augmentation elicited by all three tasks was noted in the left posterior-middle temporal and left ventral premotor cortices.ConclusionsThe spatial–temporal dynamics of language-related HGA were demonstrated on a spatially-normalized brain template.SignificanceThis study externally validated the spatial and temporal dynamics of language processing suggested by previous neuroimaging and electrophysiological studies.
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