Scinovex
article

Polarization of the human motor cortex through the scalp

Neuroreport · 1998 · Vol. 9(10) · pp. 2257–2260
Alberto PrioriAlfredo BerardelliSabine RonaN. AccorneroM. Manfredi

Abstract

Direct currents (DC) applied directly to central nervous system structures produce substantial and long-lasting effects in animal experiments. We tested the functional effects of very weak scalp DC (< 0.5 mA, 7 s) on the human motor cortex by assessing the changes in motor potentials evoked by transcranial magnetic brain stimulation. We performed four different experiments in 15 healthy volunteers. Our findings led to the conclusion that such weak (< 0.5 mA) anodal scalp DC, alternated with a cathodal DC, significantly depresses the excitability of the human motor cortex, providing evidence that a small electric field crosses the skull and influences the brain. A possible mechanism of action of scalp DC is the hyperpolarization of the superficial excitatory interneurones in the human motor cortex.

Neuroscience and Neuropharmacology ResearchNeural dynamics and brain functionFunctional Brain Connectivity StudiesNeuroscienceMotor cortexScalpExcitatory postsynaptic potentialHuman brainTranscranial magnetic stimulationTranscranial alternating current stimulationStimulationHyperpolarization (physics)Psychology

MeSH terms

AdultElectromagnetic FieldsElectromyographyHumansInterneuronsMotor CortexMotor NeuronsScalpSpinal CordEvoked Potentials, Motor
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.