No modulatory effects by transcranial static magnetic field stimulation of human motor and somatosensory cortex
Background: Recently, it was reported that the application of a static magnetic field by placing a strong permanent magnet over the scalp for 10 min led to an inhibition of motor cortex excitability for at least 6 min after removing the magnet. When placing the magnet over the somatosensory cortex,...
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doaj-4268ff1c90cd4fccb267a3b57d35fe742021-03-19T07:10:00ZengElsevierBrain Stimulation1935-861X2017-05-01103703710No modulatory effects by transcranial static magnetic field stimulation of human motor and somatosensory cortexMarco Kufner0Sabrina Brückner1Thomas Kammer2Section for Neurostimulation, Department of Psychiatry, University of Ulm, GermanySection for Neurostimulation, Department of Psychiatry, University of Ulm, GermanyCorresponding author. Section for Neurostimulation, Department of Psychiatry, University of Ulm, Leimgrubenweg 12, D-89075 Ulm, Germany.; Section for Neurostimulation, Department of Psychiatry, University of Ulm, GermanyBackground: Recently, it was reported that the application of a static magnetic field by placing a strong permanent magnet over the scalp for 10 min led to an inhibition of motor cortex excitability for at least 6 min after removing the magnet. When placing the magnet over the somatosensory cortex, a similar inhibitory after effect could be observed as well. Objective: Our aim was to replicate the inhibitory effects of transcranial static magnetic field stimulation in the motor and somatosensory system. Methods: The modulatory effect of static magnetic field stimulation was investigated in three experiments. In two experiments motor cortex excitability was measured before and after 10 or 15 min of magnet application, respectively. The second experiment included a sham condition and was designed in a double-blinded manner. In a third experiment, paired-pulse SSEPs were measured pre and four times post positioning the magnet over the somatosensory cortex for 10 min on both hemispheres, respectively. The SSEPs of the non stimulated hemisphere served as control condition. Results: We did not observe any systematic effect of the static magnetic field neither on motor cortex excitability nor on SSEPs. Moreover, no SSEP paired-pulse suppression was found. Conclusion: We provide a detailed analysis of possible confounding factors and differences to previous studies on tSMS. After all, our results could not confirm the static magnetic field effect.http://www.sciencedirect.com/science/article/pii/S1935861X17306204tSMSPaired-pulse SSEPStatic magnetic fieldNeodymium magnetMotor systemSomatosensory system |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marco Kufner Sabrina Brückner Thomas Kammer |
spellingShingle |
Marco Kufner Sabrina Brückner Thomas Kammer No modulatory effects by transcranial static magnetic field stimulation of human motor and somatosensory cortex Brain Stimulation tSMS Paired-pulse SSEP Static magnetic field Neodymium magnet Motor system Somatosensory system |
author_facet |
Marco Kufner Sabrina Brückner Thomas Kammer |
author_sort |
Marco Kufner |
title |
No modulatory effects by transcranial static magnetic field stimulation of human motor and somatosensory cortex |
title_short |
No modulatory effects by transcranial static magnetic field stimulation of human motor and somatosensory cortex |
title_full |
No modulatory effects by transcranial static magnetic field stimulation of human motor and somatosensory cortex |
title_fullStr |
No modulatory effects by transcranial static magnetic field stimulation of human motor and somatosensory cortex |
title_full_unstemmed |
No modulatory effects by transcranial static magnetic field stimulation of human motor and somatosensory cortex |
title_sort |
no modulatory effects by transcranial static magnetic field stimulation of human motor and somatosensory cortex |
publisher |
Elsevier |
series |
Brain Stimulation |
issn |
1935-861X |
publishDate |
2017-05-01 |
description |
Background: Recently, it was reported that the application of a static magnetic field by placing a strong permanent magnet over the scalp for 10 min led to an inhibition of motor cortex excitability for at least 6 min after removing the magnet. When placing the magnet over the somatosensory cortex, a similar inhibitory after effect could be observed as well. Objective: Our aim was to replicate the inhibitory effects of transcranial static magnetic field stimulation in the motor and somatosensory system. Methods: The modulatory effect of static magnetic field stimulation was investigated in three experiments. In two experiments motor cortex excitability was measured before and after 10 or 15 min of magnet application, respectively. The second experiment included a sham condition and was designed in a double-blinded manner. In a third experiment, paired-pulse SSEPs were measured pre and four times post positioning the magnet over the somatosensory cortex for 10 min on both hemispheres, respectively. The SSEPs of the non stimulated hemisphere served as control condition. Results: We did not observe any systematic effect of the static magnetic field neither on motor cortex excitability nor on SSEPs. Moreover, no SSEP paired-pulse suppression was found. Conclusion: We provide a detailed analysis of possible confounding factors and differences to previous studies on tSMS. After all, our results could not confirm the static magnetic field effect. |
topic |
tSMS Paired-pulse SSEP Static magnetic field Neodymium magnet Motor system Somatosensory system |
url |
http://www.sciencedirect.com/science/article/pii/S1935861X17306204 |
work_keys_str_mv |
AT marcokufner nomodulatoryeffectsbytranscranialstaticmagneticfieldstimulationofhumanmotorandsomatosensorycortex AT sabrinabruckner nomodulatoryeffectsbytranscranialstaticmagneticfieldstimulationofhumanmotorandsomatosensorycortex AT thomaskammer nomodulatoryeffectsbytranscranialstaticmagneticfieldstimulationofhumanmotorandsomatosensorycortex |
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1724214272436731904 |