A Review of Combined TMS-EEG Studies to Characterize Lasting Effects of Repetitive TMS and Assess Their Usefulness in Cognitive and Clinical Neuroscience
Top Cited Papers
- 28 October 2009
- journal article
- review article
- Published by Springer Nature in Brain Topography
- Vol. 22 (4), 219-232
- https://doi.org/10.1007/s10548-009-0115-4
Abstract
Transcranial magnetic stimulation (TMS) has developed into a powerful tool for studying human brain physiology and brain–behavior relations. When applied in sessions of repeated stimulation, TMS can lead to changes in neuronal activity/excitability that outlast the stimulation itself. Such aftereffects are at the heart of the offline TMS protocols in cognitive neuroscience and neurotherapeutics. However, whether these aftereffects are of applied interest critically depends on their magnitude and duration, which should fall within an experimentally or clinically useful range without increasing risks and adverse effects. In this short review, we survey combined TMS-EEG studies to characterize the TMS-aftereffects as revealed by EEG to contribute to the characterization of the most effective and promising repetitive TMS-parameters. With one session of conventional repetitive TMS (of fixed pulse frequency), aftereffects were consistently comparable in magnitude to EEG-changes reported after learning or with fatigue, and were short-lived (<70 min). The few studies using recently developed protocols (such as theta burst stimulation) suggest comparable effect-size but longer effect-durations. Based on the reviewed data, it is expected that TMS-efficacy can be further promoted by repeating TMS-sessions, by using EEG-gated TMS to tailor TMS to current neuronal state, or by other, non-conventional TMS-protocols. Newly emerging developments in offline TMS research for cognitive neuroscience and neurotherapeutics are outlined.Keywords
This publication has 94 references indexed in Scilit:
- Safety, ethical considerations, and application guidelines for the use of transcranial magnetic stimulation in clinical practice and researchClinical Neurophysiology, 2009
- State-Dependent Variability of Neuronal Responses to Transcranial Magnetic Stimulation of the Visual CortexNeuron, 2009
- Repetitive transcranial magnetic stimulation affects behavior by biasing endogenous cortical oscillationsFrontiers in Integrative Neuroscience, 2009
- State-Dependency of Transcranial Magnetic StimulationBrain Topography, 2008
- Measures of Cortical Plasticity after Transcranial Paired Associative Stimulation Predict Changes in Electroencephalogram Slow-Wave Activity during Subsequent SleepJournal of Neuroscience, 2008
- Combining TMS and EEG to study cognitive function and cortico–cortico interactionsBehavioural Brain Research, 2008
- Spontaneous Fluctuations in Posterior -Band EEG Activity Reflect Variability in Excitability of Human Visual AreasCerebral Cortex, 2007
- Attenuation of N2 amplitude of laser-evoked potentials by theta burst stimulation of primary somatosensory cortexExperimental Brain Research, 2007
- Triggering sleep slow waves by transcranial magnetic stimulationProceedings of the National Academy of Sciences, 2007
- TMS-Induced Cortical Potentiation during Wakefulness Locally Increases Slow Wave Activity during SleepPLOS ONE, 2007