Polarity-sensitive modulation of cortical neurotransmitters by transcranial stimulation.
Scientific Abstract
Transcranial direct current stimulation (tDCS) modulates cortical excitability and is being used for human studies more frequently. Here we probe the underlying neuronal mechanisms by measuring polarity-specific changes in neurotransmitter concentrations using magnetic resonance spectroscopy (MRS). MRS provides evidence that excitatory (anodal) tDCS causes locally reduced GABA while inhibitory (cathodal) stimulation causes reduced glutamatergic neuronal activity with a highly correlated reduction in GABA, presumably due to the close biochemical relationship between the two neurotransmitters.
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Polarity-sensitive modulation of cortical neurotransmitters by transcranial stimulation.
Scientific Abstract
Transcranial direct current stimulation (tDCS) modulates cortical excitability and is being used for human studies more frequently. Here we probe the underlying neuronal mechanisms by measuring polarity-specific changes in neurotransmitter concentrations using magnetic resonance spectroscopy (MRS). MRS provides evidence that excitatory (anodal) tDCS causes locally reduced GABA while inhibitory (cathodal) stimulation causes reduced glutamatergic neuronal activity with a highly correlated reduction in GABA, presumably due to the close biochemical relationship between the two neurotransmitters.
Citation
2009. J Neurosci, 29(16):5202-6.
DOI
10.1523/JNEUROSCI.4432-08.2009
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Similar content
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Dual-site beta transcranial alternating current stimulation during a bimanual coordination task modulates functional connectivity between motor areas
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Closed-loop beta stimulation enhances beta activity and motor behaviour
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Modulation of motor cortical theta and gamma oscillations using phase-targeted, closed-loop optogenetic stimulation of local excitatory and inhibitory neurons
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