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Transcranial magnetic stimulation with a half-sine wave pulse elicits direction-specific effects in human motor cortex

BACKGROUND: Transcranial magnetic stimulation (TMS) commonly uses so-called monophasic pulses where the initial rapidly changing current flow is followed by a critically dampened return current. It has been shown that a monophasic TMS pulse preferentially excites different cortical circuits in the h...

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Autores principales: Jung, Nikolai H, Delvendahl, Igor, Pechmann, Astrid, Gleich, Bernhard, Gattinger, Norbert, Siebner, Hartwig R, Mall, Volker
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3519534/
https://www.ncbi.nlm.nih.gov/pubmed/23126287
http://dx.doi.org/10.1186/1471-2202-13-139
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author Jung, Nikolai H
Delvendahl, Igor
Pechmann, Astrid
Gleich, Bernhard
Gattinger, Norbert
Siebner, Hartwig R
Mall, Volker
author_facet Jung, Nikolai H
Delvendahl, Igor
Pechmann, Astrid
Gleich, Bernhard
Gattinger, Norbert
Siebner, Hartwig R
Mall, Volker
author_sort Jung, Nikolai H
collection PubMed
description BACKGROUND: Transcranial magnetic stimulation (TMS) commonly uses so-called monophasic pulses where the initial rapidly changing current flow is followed by a critically dampened return current. It has been shown that a monophasic TMS pulse preferentially excites different cortical circuits in the human motor hand area (M1-HAND), if the induced tissue current has a posterior-to-anterior (PA) or anterior-to-posterior (AP) direction. Here we tested whether similar direction-specific effects could be elicited in M1-HAND using TMS pulses with a half-sine wave configuration. RESULTS: In 10 young participants, we applied half-sine pulses to the right M1-HAND which elicited PA or AP currents with respect to the orientation of the central sulcus. Measurements of the motor evoked potential (MEP) revealed that PA half-sine stimulation resulted in lower resting motor threshold (RMT) than AP stimulation. When stimulus intensity (SI) was gradually increased as percentage of maximal stimulator output, the stimulus–response curve (SRC) of MEP amplitude showed a leftward shift for PA as opposed to AP half-sine stimulation. Further, MEP latencies were approximately 1 ms shorter for PA relative to AP half-sine stimulation across the entire SI range tested. When adjusting SI to the respective RMT of PA and AP stimulation, the direction-specific differences in MEP latencies persisted, while the gain function of MEP amplitudes was comparable for PA and AP stimulation. CONCLUSIONS: Using half-sine pulse configuration, single-pulse TMS elicits consistent direction-specific effects in M1-HAND that are similar to TMS with monophasic pulses. The longer MEP latency for AP half-sine stimulation suggests that PA and AP half-sine stimulation preferentially activates different sets of cortical neurons that are involved in the generation of different corticospinal descending volleys.
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spelling pubmed-35195342012-12-12 Transcranial magnetic stimulation with a half-sine wave pulse elicits direction-specific effects in human motor cortex Jung, Nikolai H Delvendahl, Igor Pechmann, Astrid Gleich, Bernhard Gattinger, Norbert Siebner, Hartwig R Mall, Volker BMC Neurosci Research Article BACKGROUND: Transcranial magnetic stimulation (TMS) commonly uses so-called monophasic pulses where the initial rapidly changing current flow is followed by a critically dampened return current. It has been shown that a monophasic TMS pulse preferentially excites different cortical circuits in the human motor hand area (M1-HAND), if the induced tissue current has a posterior-to-anterior (PA) or anterior-to-posterior (AP) direction. Here we tested whether similar direction-specific effects could be elicited in M1-HAND using TMS pulses with a half-sine wave configuration. RESULTS: In 10 young participants, we applied half-sine pulses to the right M1-HAND which elicited PA or AP currents with respect to the orientation of the central sulcus. Measurements of the motor evoked potential (MEP) revealed that PA half-sine stimulation resulted in lower resting motor threshold (RMT) than AP stimulation. When stimulus intensity (SI) was gradually increased as percentage of maximal stimulator output, the stimulus–response curve (SRC) of MEP amplitude showed a leftward shift for PA as opposed to AP half-sine stimulation. Further, MEP latencies were approximately 1 ms shorter for PA relative to AP half-sine stimulation across the entire SI range tested. When adjusting SI to the respective RMT of PA and AP stimulation, the direction-specific differences in MEP latencies persisted, while the gain function of MEP amplitudes was comparable for PA and AP stimulation. CONCLUSIONS: Using half-sine pulse configuration, single-pulse TMS elicits consistent direction-specific effects in M1-HAND that are similar to TMS with monophasic pulses. The longer MEP latency for AP half-sine stimulation suggests that PA and AP half-sine stimulation preferentially activates different sets of cortical neurons that are involved in the generation of different corticospinal descending volleys. BioMed Central 2012-11-05 /pmc/articles/PMC3519534/ /pubmed/23126287 http://dx.doi.org/10.1186/1471-2202-13-139 Text en Copyright ©2012 Jung et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Jung, Nikolai H
Delvendahl, Igor
Pechmann, Astrid
Gleich, Bernhard
Gattinger, Norbert
Siebner, Hartwig R
Mall, Volker
Transcranial magnetic stimulation with a half-sine wave pulse elicits direction-specific effects in human motor cortex
title Transcranial magnetic stimulation with a half-sine wave pulse elicits direction-specific effects in human motor cortex
title_full Transcranial magnetic stimulation with a half-sine wave pulse elicits direction-specific effects in human motor cortex
title_fullStr Transcranial magnetic stimulation with a half-sine wave pulse elicits direction-specific effects in human motor cortex
title_full_unstemmed Transcranial magnetic stimulation with a half-sine wave pulse elicits direction-specific effects in human motor cortex
title_short Transcranial magnetic stimulation with a half-sine wave pulse elicits direction-specific effects in human motor cortex
title_sort transcranial magnetic stimulation with a half-sine wave pulse elicits direction-specific effects in human motor cortex
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3519534/
https://www.ncbi.nlm.nih.gov/pubmed/23126287
http://dx.doi.org/10.1186/1471-2202-13-139
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