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Excitability Changes Induced in the Human Primary Visual Cortex by Transcranial Direct Current Stimulation: Direct Electrophysiological Evidence

Investigative Ophthalmology & Visual Science · 2004 · Vol. 45(2) · pp. 702–702

Abstract

tDCS appears to be a suitable method of inducing reversible excitability changes in a polarity-specific way, not only in the motor but also in the primary visual cortex. The duration of the induced aftereffects depends not only on stimulation duration but also on stimulation polarity. Cathodal stimulation seems to be more effective, in line with previous reports on the motor cortex.

Transcranial Magnetic Stimulation StudiesVestibular and auditory disordersVisual perception and processing mechanismsStimulationPhospheneTranscranial direct-current stimulationVisual cortexNeuroscienceTranscranial magnetic stimulationElectrophysiologyMotor cortexTranscranial alternating current stimulationBrain stimulation

MeSH terms

AdultElectric StimulationEvoked Potentials, VisualFemaleHumansMaleOccipital LobeSensory ThresholdsTime FactorsVisual CortexVisual Pathways
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