Cortical current density oscillations in the motor cortex are correlated with muscular activity during pedaling exercise

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Deutscher übersetzter Titel:Kortikale Stromdichteschwingungen im motorischen Kortex korrelieren mit Muskelaktivität während eines Pedalier-Trainings
Autor:Schneider, S.; Rouffet, D.M.; Billaut, F.; Strüder, Heiko Klaus
Erschienen in:Neuroscience
Veröffentlicht:228 (2013), S. 309–314, Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Zeitschriftenartikel
Medienart: Elektronische Ressource (online) Gedruckte Ressource
Sprache:Englisch
ISSN:0306-4522, 1873-7544
DOI:10.1016/j.neuroscience.2012.10.037
Schlagworte:
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Erfassungsnummer:PU201407006528
Quelle:BISp
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last_indexed 2017-03-30T10:33:21Z
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subformat Zeitschriftenartikel
hierarchy_top_id JO00000100464
hierarchy_parent_id JOY20130100464
hierarchy_top_title Neuroscience
hierarchy_parent_title Neuroscience, 2013
is_hierarchy_id PU201407006528
is_hierarchy_title Cortical current density oscillations in the motor cortex are correlated with muscular activity during pedaling exercise
hierarchy_sequence 0309
recordtype bisparticle
publishDate 2013
publishDate_facet 2013
language eng
title Cortical current density oscillations in the motor cortex are correlated with muscular activity during pedaling exercise
spellingShingle Cortical current density oscillations in the motor cortex are correlated with muscular activity during pedaling exercise
Beeinflussung
Elektroenzephalographie
Fahrradergometerbelastung
Gehirn
Großhirn
Hirnrinde
Leistungsphysiologie
Muskelaktivität
Neurologie
Neurophysiologie
Oberflächen-EMG
Oszillation
title_sort cortical current density oscillations in the motor cortex are correlated with muscular activity during pedaling exercise
title_short Cortical current density oscillations in the motor cortex are correlated with muscular activity during pedaling exercise
title_alt Kortikale Stromdichteschwingungen im motorischen Kortex korrelieren mit Muskelaktivität während eines Pedalier-Trainings
title_alt_lang deu
media_type Elektronische Ressource (online)
Gedruckte Ressource
city Amsterdam
abstract Despite modern imaging techniques, assessing and localizing changes in brain activity during whole-body exercise is still challenging. Using an active electroencephalography (EEG) system in combination with source localization algorithms, this study aimed to localize brain cortical oscillations patterns in the motor cortex and to correlate these with surface electromyography (EMG)-detected muscular activity during pedaling exercise. Eight subjects performed 2-min isokinetic (90 rpm) cycling bouts at intensities ranging from 1 to 5 W kg−1 body mass on a cycle ergometer. These bouts were interspersed by a minimum of 2 min of passive rest to limit to development of peripheral muscle fatigue. Brain cortical activity within the motor cortex was analyzed using a 32-channel active EEG system combined with source localization algorithms. EMG activity was recorded from seven muscles on each lower limb. EEG and EMG activity revealed comparatively stable oscillations across the different exercise intensities. More importantly, the oscillations in cortical activity within the motor cortex were significantly correlated with EMG activity during the high-intensity cycling bouts. This study demonstrates that it is possible to localize oscillations in brain cortical activity during moderate- to high-intensity cycling exercise using EEG in combination with source localization algorithms, and that these oscillations match the activity of the active muscles in time and amplitude. Results of this study might help to further evaluate the effects of central vs. peripheral fatigue during exercise. Verf.-Referat
abstract_lang eng
abstract_type abstract
author2 Schneider, S.
Rouffet, D.M.
Billaut, F.
Strüder, Heiko Klaus
author_facet Schneider, S.
Rouffet, D.M.
Billaut, F.
Strüder, Heiko Klaus
author2-role Autor
Autor
Autor
Autor
author2-authorityid


P286
author_author_facet Schneider, S.
Rouffet, D.M.
Billaut, F.
Strüder, Heiko Klaus
author2-synonym


Strüder, H.K. ,Strüder, Heiko K. ,Strüder, Heiko
author2_hierarchy_facet 0/Autor/
1/Autor/Schneider, S./
0/Autor/
1/Autor/Rouffet, D.M./
0/Autor/
1/Autor/Billaut, F./
0/Autor/
1/Autor/Strüder, Heiko Klaus/
doi 10.1016/j.neuroscience.2012.10.037
spelling 10.1016/j.neuroscience.2012.10.037
0306-4522
1873-7544
NRSCD
196739-3
Beeinflussung
Elektroenzephalographie
Fahrradergometerbelastung
Gehirn
Großhirn
Hirnrinde
Leistungsphysiologie
Muskelaktivität
Neurologie
Neurophysiologie
Oberflächen-EMG
Oszillation
bicycle ergometer load
brain
brain cortex
cerebrum
electro-encephalography
exercise physiology
influencing
muscle activity
neurology
neurophysiology
oscillation
surface EMG
Physiologie
Arbeitsphysiologie
Sportphysiologie
Muskelaktion

Hirnszintigraphie
Einflussnahme
EEG
Belastung
physiology of exercise
performance physiology
cerebral cortex
influence, exertion of
persuasion
EEG
bicycle ergometer exercise
Cortical current density oscillations in the motor cortex are correlated with muscular activity during pedaling exercise
PU201407006528
201407006528
url http://www.sciencedirect.com/science/article/pii/S0306452212010524
https://dx.doi.org/10.1016/j.neuroscience.2012.10.037
url-type fulltext
fulltext
url-free 1
0
free_access 1
issn 0306-4522
1873-7544
coden NRSCD
zdb 196739-3
location_hierarchy_facet 0/Niederlande/
topic Beeinflussung
Elektroenzephalographie
Fahrradergometerbelastung
Gehirn
Großhirn
Hirnrinde
Leistungsphysiologie
Muskelaktivität
Neurologie
Neurophysiologie
Oberflächen-EMG
Oszillation
topic_facet Beeinflussung
Elektroenzephalographie
Fahrradergometerbelastung
Gehirn
Großhirn
Hirnrinde
Leistungsphysiologie
Muskelaktivität
Neurologie
Neurophysiologie
Oberflächen-EMG
Oszillation
topic_en bicycle ergometer load
brain
brain cortex
cerebrum
electro-encephalography
exercise physiology
influencing
muscle activity
neurology
neurophysiology
oscillation
surface EMG
topic_en_facet bicycle ergometer load
brain
brain cortex
cerebrum
electro-encephalography
exercise physiology
influencing
muscle activity
neurology
neurophysiology
oscillation
surface EMG
synonym Physiologie
Arbeitsphysiologie
Sportphysiologie
Muskelaktion

Hirnszintigraphie
Einflussnahme
EEG
Belastung
synonym_en physiology of exercise
performance physiology
cerebral cortex
influence, exertion of
persuasion
EEG
bicycle ergometer exercise
journal_facet Neuroscience
container_title Neuroscience
container_volume 228
container_start_page S. 309–314
has_references 1
institution BISp
journal_fac JO00000100464
journal_year 2013
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