Skip to content

Enhanced Awareness Followed Reversible Inhibition of Human Visual Cortex: A Combined TMS, MRS and MEG Study

Christopher Allen, Benjamin T. Dunkley, Suresh Muthukumaraswamy, Richard A.E. Edden, John Evans, Petroc Sumner, Krish D. Singh, Chris Chambers

PLoS ONE June 23, 2014 DOI: 10.1371/journal.pone.0100350 via OpenAlex

Summary

AI-generated from the abstract

Continuous theta burst stimulation (cTBS) over the occipital cortex, expected to impair conscious vision, instead enhanced it relative to a sham control. The stimulation decreased cortical excitability and increased regional GABA concentration, suggesting that suppression of neural noise can improve the signal-to-noise ratio for conscious vision. No significant effects on magnetoencephalography measures were observed, though weak evidence for potentiation of beta-band event-related desynchronisation appeared. The authors propose that gating-by-inhibition in the visual cortex may be a foundation of consciousness.

Study at a glance

Characteristics Series of experiments Peer reviewed
Population Humans
Intervention continuous theta burst stimulation (cTBS)
Duration 45-60 minutes aftereffect
Keywords Ctbs Transcranial magnetic stimulation Neuroscience Visual cortex Inhibitory postsynaptic potential
Citations 45
Key finding Occipital cTBS enhanced conscious vision, decreased cortical excitability, and increased regional GABA concentration, contrary to the expected impairment.

Abstract

This series of experiments investigated the neural basis of conscious vision in humans using a form of transcranial magnetic stimulation (TMS) known as continuous theta burst stimulation (cTBS). Previous studies have shown that occipital TMS, when time-locked to the onset of visual stimuli, can induce a phenomenon analogous to blindsight in which conscious detection is impaired while the ability to discriminate 'unseen' stimuli is preserved above chance. Here we sought to reproduce this phenomenon using offline occipital cTBS, which has been shown to induce an inhibitory cortical aftereffect lasting 45-60 minutes. Contrary to expectations, our first experiment revealed the opposite effect: cTBS enhanced conscious vision relative to a sham control. We then sought to replicate this cTBS-induced potentiation of consciousness in conjunction with magnetoencephalography (MEG) and undertook additional experiments to assess its relationship to visual cortical excitability and levels of the inhibitory neurotransmitter γ-aminobutyric acid (GABA; via magnetic resonance spectroscopy, MRS). Occipital cTBS decreased cortical excitability and increased regional GABA concentration. No significant effects of cTBS on MEG measures were observed, although the results provided weak evidence for potentiation of event related desynchronisation in the β band. Collectively these experiments suggest that, through the suppression of noise, cTBS can increase the signal-to-noise ratio of neural activity underlying conscious vision. We speculate that gating-by-inhibition in the visual cortex may provide a key foundation of consciousness.

Comments

No comments yet.

Log in to comment