Electrophysiological aftereffects of high-frequency transcranial random noise stimulation (hf-tRNS): an EEG investigation

Global motion; High-frequency transcranial random noise stimulation (hf-tRNS); Resting state; Time–frequency analysis; Transcranial electrical stimulation; Visual evoked potentials; Disease Progression; Electroencephalography; Electrophysiological Phenomena; Humans; Transcranial Direct Current Stimulation Transcranial electrical stimulation ; Disease Progression [MeSH] ; Global motion ; Resting state ; Humans [MeSH] ; Visual evoked potentials ; Time–frequency analysis ; Transcranial Direct Current Stimulation [MeSH] ; Electroencephalography [MeSH] ; High-frequency transcranial random noise stimulation (hf-tRNS) ; Research Article ; Electrophysiological Phenomena [MeSH] 05 social sciences Disease Progression Humans Electroencephalography 0501 psychology and cognitive sciences Transcranial Direct Current Stimulation Research Article Electrophysiological Phenomena
DOI: 10.1007/s00221-021-06142-4 Publication Date: 2021-06-08T16:03:17Z
ABSTRACT
There is evidence that high-frequency transcranial random noise stimulation (hf-tRNS) effective in improving behavioural performance several visual tasks. However, so far there has been limited research into the spatial and temporal characteristics of hf-tRNS-induced facilitatory effects. In present study, electroencephalogram (EEG) was used to investigate dynamics cortical activity modulated by offline hf-tRNS on a motion direction discrimination task. We EEG measure amplitude motion-related VEPs over parieto-occipital cortex, as well oscillatory power spectral density (PSD) at rest. A time-frequency decomposition analysis also performed shift event-related perturbation (ERSP) response stimuli between pre- post-stimulation period. The results showed accuracy task not hf-tRNS. Although able elicit motion-dependent VEP components (P1, N2, P2), none them any significant change post-stimulation. found time-dependent increase PSD alpha beta bands regardless protocol. Finally, modulation ERSP condition for gamma when compared pre-stimulation periods Sham stimulation. Overall, these show may induce moderate aftereffects brain activity.
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