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Changing Sensory Eye Dominance With Theta Burst Stimulation Over Visual Cortex

2026/04/01 by Junyu Wang, Allen M. Y. Cheong, Dorita H.F. Chang · 1 voice
Neuroscience · #Neural and Behavioral Psychology Studies #Visual perception and processing mechanisms #Face Recognition and Perception

paper · pdf · doi:10.1016/j.neurom.2026.04.010

openalex publication_date 2026/04/01 · openalex created_date 2026/05/05 · openalex updated_date 2026/07/23

Abstract

OBJECTIVES: Sensory eye dominance (SED) reflects interocular imbalance and is present in both normal and binocularly abnormal visual systems. SED seems to implicate primary visual cortex (V1). Here, we investigated the effects of theta burst stimulation (TBS) over V1 on SED and stereopsis. MATERIALS AND METHODS: We tested 120 healthy adults with normal vision. In experiment 1 (n = 80; 19-34 years), participants received either excitatory (intermittent TBS [iTBS]) or inhibitory (continuous TBS [cTBS]) TBS over V1 or vertex (Cz). SED and stereoacuity were assessed before and after stimulation. In experiment 2 (n = 40; 20-35 years), we tracked the temporal characteristics of SED changes after iTBS over V1. SED was repeatedly indexed at 0, 15, 30, 45, 60, 75, and 90 minutes post stimulation. RESULTS: We found that iTBS (but not cTBS) significantly reduced SED when delivered over V1 (but not Cz). Stimulation of all areas had no effect on stereoacuity. SED reduction peaked at 15 minutes and returned to baseline by 45 minutes. CONCLUSIONS: These findings highlight the crucial role of V1 in regulating binocular balance. We conjecture that the iTBS-induced effects on cortical excitability act to transiently rebalance interocular competitive interactions.

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