Oscillatory pallidal local field potential activity correlates with involuntary EMG in dystonia.

The pathophysiology of dystonia is unclear. The authors recorded local field potentials (LFPs) from deep brain stimulation electrodes implanted in the pallidum of 13 dystonic patients. LFP power correlated with the level of dystonic EMG in the sternocleidomastoid, with maximal positive correlations...

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Detalhes bibliográficos
Principais autores: Chen, C, Kühn, A, Hoffmann, K, Kupsch, A, Schneider, G, Trottenberg, T, Krauss, J, Wöhrle, J, Bardinet, E, Yelnik, J, Brown, P
Formato: Journal article
Idioma:English
Publicado em: 2006
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author Chen, C
Kühn, A
Hoffmann, K
Kupsch, A
Schneider, G
Trottenberg, T
Krauss, J
Wöhrle, J
Bardinet, E
Yelnik, J
Brown, P
author_facet Chen, C
Kühn, A
Hoffmann, K
Kupsch, A
Schneider, G
Trottenberg, T
Krauss, J
Wöhrle, J
Bardinet, E
Yelnik, J
Brown, P
author_sort Chen, C
collection OXFORD
description The pathophysiology of dystonia is unclear. The authors recorded local field potentials (LFPs) from deep brain stimulation electrodes implanted in the pallidum of 13 dystonic patients. LFP power correlated with the level of dystonic EMG in the sternocleidomastoid, with maximal positive correlations at the lower contacts of pallidal electrodes. The data suggest that the neuronal synchronization indexed by LFP oscillations in the globus pallidus may be mechanistically linked to dystonic EMG activity.
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spelling oxford-uuid:eff0d8eb-eb99-44c4-a9f4-086e49cfc8fe2022-03-27T11:43:54ZOscillatory pallidal local field potential activity correlates with involuntary EMG in dystonia.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:eff0d8eb-eb99-44c4-a9f4-086e49cfc8feEnglishSymplectic Elements at Oxford2006Chen, CKühn, AHoffmann, KKupsch, ASchneider, GTrottenberg, TKrauss, JWöhrle, JBardinet, EYelnik, JBrown, PThe pathophysiology of dystonia is unclear. The authors recorded local field potentials (LFPs) from deep brain stimulation electrodes implanted in the pallidum of 13 dystonic patients. LFP power correlated with the level of dystonic EMG in the sternocleidomastoid, with maximal positive correlations at the lower contacts of pallidal electrodes. The data suggest that the neuronal synchronization indexed by LFP oscillations in the globus pallidus may be mechanistically linked to dystonic EMG activity.
spellingShingle Chen, C
Kühn, A
Hoffmann, K
Kupsch, A
Schneider, G
Trottenberg, T
Krauss, J
Wöhrle, J
Bardinet, E
Yelnik, J
Brown, P
Oscillatory pallidal local field potential activity correlates with involuntary EMG in dystonia.
title Oscillatory pallidal local field potential activity correlates with involuntary EMG in dystonia.
title_full Oscillatory pallidal local field potential activity correlates with involuntary EMG in dystonia.
title_fullStr Oscillatory pallidal local field potential activity correlates with involuntary EMG in dystonia.
title_full_unstemmed Oscillatory pallidal local field potential activity correlates with involuntary EMG in dystonia.
title_short Oscillatory pallidal local field potential activity correlates with involuntary EMG in dystonia.
title_sort oscillatory pallidal local field potential activity correlates with involuntary emg in dystonia
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