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Divergent roles of early visual cortex and inferior frontal junction in visual working memory.

Authors :
Zhao, Yi-Jie
Zhang, Xinying
Ku, Yixuan
Source :
Brain Stimulation; May2024, Vol. 17 Issue 3, p713-720, 8p
Publication Year :
2024

Abstract

Recent studies indicate that both prefrontal and visual regions play critical roles in visual working memory (VWM), with prefrontal regions mainly associated with executive functions, and visual cortices linked to representations of memory contents. VWM involves the selective filtering of irrelevant information, yet the specific contributions of the prefrontal regions and visual cortex in this process remain unclear. To understand the dynamic causal roles of prefrontal and visual regions in VWM. The differentiation of VWM components was achieved using a computational model that incorporated a swap rate for non-target stimuli. Single-pulse magnetic transcranial stimulation (spTMS) was delivered to the early visual cortex (EVC) and the inferior frontal junction (IFJ) across different phases of an orientation recall task that with or without distractors. Our results indicate that spTMS over the EVC and IFJ influences VWM particularly when distractors are present. VWM precision can be impacted by spTMS applied to either region during the early retention, while spTMS effect is especially prominent when EVC is stimulated during the late retention phase and when directed at the ipsilateral EVC. Conversely, the probability of accurately recalling the target exhibited comparable patterns when spTMS was administered to either the EVC or IFJ. We highlight the "sensory recruitment" of VWM characterized by critical involvement of EVC particularly in the information-filtering process within VWM. The maintenance of memory content representations necessitates ongoing communication between the EVC and IFJ throughout the entirety of the VWM process in a dynamic pattern. • This study explores EVC and IFJ's roles in Visual Working Memory, revealing their impacts on memory precision and quantity. • Using spTMS, resaerch pinpoints brain regions' causal influence on VWM, especially with endogenous distractors. • Findings highlight critical timing of the influences during various phases of VWM, offering new temporal modulation insights. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1935861X
Volume :
17
Issue :
3
Database :
Supplemental Index
Journal :
Brain Stimulation
Publication Type :
Academic Journal
Accession number :
177966456
Full Text :
https://doi.org/10.1016/j.brs.2024.06.001