TMS-EEG: From basic research to clinical applications

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dc.contributor University of Helsinki, BioMag Laboratory en
dc.contributor University of Helsinki, BioMag Laboratory en Hernandez-Pavon, Julio C. Sarvas, Jukka Ilmoniemi, Risto J.
dc.contributor.editor Bernal-Alvarado, José de Jesús
dc.contributor.editor Guzman-Cabrera, Rafael
dc.contributor.editor Brandan, María-Ester 2015-01-20T12:56:00Z 2015-01-20T12:56:00Z 2014
dc.identifier.citation Hernandez-Pavon , J C , Sarvas , J & Ilmoniemi , R J 2014 , TMS-EEG: From basic research to clinical applications . in J D J Bernal-Alvarado , R Guzman-Cabrera & M-E Brandan (eds) , 13th Mexican Symposium on Medical Physics . vol. 1626 , AIP Conference Proceedings , vol. 1626 , American Institute of Physics , NY , pp. 15-21 , Mexican Symposium on Medical Physics , León, Guanajuato , Mexico , 15/03/2014 . en
dc.identifier.citation conference en
dc.identifier.isbn 978-0-7354-1263-7
dc.identifier.other PURE: 45670302
dc.identifier.other PURE UUID: 78b7fdca-0a25-4c40-b0e4-31b46c9cf30a
dc.identifier.other WOS: 000345929100002
dc.identifier.other Scopus: 84911380385
dc.description.abstract Transcranial magnetic stimulation (TMS) combined with electroencephalography (EEG) is a powerful technique for non-invasively studying cortical excitability and connectivity. The combination of TMS and EEG has widely been used to perform basic research and recently has gained importance in different clinical applications. In this paper, we will describe the physical and biological principles of TMS-EEG and different applications in basic research and clinical applications. We will present methods based on independent component analysis (ICA) for studying the TMS-evoked EEG responses. These methods have the capability to remove and suppress large artifacts, making it feasible, for instance, to study language areas with TMS-EEG. We will discuss the different applications and limitations of TMS and TMS-EEG in clinical applications. Potential applications of TMS are presented, for instance in neurosurgical planning, depression and other neurological disorders. Advantages and disadvantages of TMS-EEG and its variants such as repetitive TMS (rTMS) are discussed in comparison to other brain stimulation and neuroimaging techniques. Finally, challenges that researchers face when using this technique will be summarized. en
dc.format.extent 8
dc.language.iso eng
dc.publisher American Institute of Physics
dc.relation.ispartof 13th Mexican Symposium on Medical Physics
dc.relation.ispartofseries AIP Conference Proceedings
dc.rights en
dc.subject DEPRESSION en
dc.subject RESPONSES en
dc.subject CORTEX en
dc.subject RTMS en
dc.subject 3111 Biomedicine en
dc.title TMS-EEG: From basic research to clinical applications en
dc.type Conference contribution
dc.type.uri info:eu-repo/semantics/other

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