The Precentral Gyrus Contributions to the Early Time-Course of Grapheme-to-Phoneme Conversion

Author:

Kaestner Erik1ORCID,Wu Xiaojing2,Friedman Daniel2,Dugan Patricia2,Devinsky Orrin2ORCID,Carlson Chad3ORCID,Doyle Werner24,Thesen Thomas2,Halgren Eric56ORCID

Affiliation:

1. Center for Multimodal Imaging and Genetics, University of California, San Diego, USA

2. Department of Neurology, NYU Langone School of Medicine, New York, USA

3. Department of Neurology, Medical College of Wisconsin, Milwaukee, USA

4. Department of Neurosurgery, NYU Langone School of Medicine, New York, USA

5. Department of Neurosciences, University of California at San Diego, La Jolla, USA

6. Department of Radiology, University of California at San Diego, La Jolla, USA

Abstract

Abstract As part of silent reading models, visual orthographic information is transduced into an auditory phonological code in a process of grapheme-to-phoneme conversion (GPC). This process is often identified with lateral temporal-parietal regions associated with auditory phoneme encoding. However, the role of articulatory phonemic representations and the precentral gyrus in GPC is ambiguous. Though the precentral gyrus is implicated in many functional MRI studies of reading, it is not clear if the time course of activity in this region is consistent with the precentral gyrus being involved in GPC. We recorded cortical electrophysiology during a bimodal match/mismatch task from eight patients with perisylvian subdural electrodes to examine the time course of neural activity during a task that necessitated GPC. Patients made a match/mismatch decision between a 3-letter string and the following auditory bi-phoneme. We characterized the distribution and timing of evoked broadband high gamma (70–170 Hz) as well as phase-locking between electrodes. The precentral gyrus emerged with a high concentration of broadband high gamma responses to visual and auditory language as well as mismatch effects. The pars opercularis, supramarginal gyrus, and superior temporal gyrus were also involved. The precentral gyrus showed strong phase-locking with the caudal fusiform gyrus during letter-string presentation and with surrounding perisylvian cortex during the bimodal visual-auditory comparison period. These findings hint at a role for precentral cortex in transducing visual into auditory codes during silent reading.

Funder

National Institute of Neurological Disorders and Stroke

Publisher

MIT Press - Journals

Subject

General Medicine

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