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Method for Simultaneous fMRI/EEG Data Collection during a Focused Attention Suggestion for Differential Thermal Sensation

In the present work, we demonstrate a method for concurrent collection of EEG/fMRI data. In our setup, EEG data are collected using a high-density 256-channel sensor net. The EEG amplifier itself is contained in a field isolation containment system (FICS), and MRI clock signals are synchronized with...

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Autores principales: Douglas, Pamela K., Pisani, Maureen, Reid, Rory, Head, Austin, Lau, Edward, Mirakhor, Ebrahim, Bramen, Jennifer, Gordon, Billi, Anderson, Ariana, Kerr, Wesley T., Cheong, Chajoon, Cohen, Mark S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MyJove Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4063545/
https://www.ncbi.nlm.nih.gov/pubmed/24429915
http://dx.doi.org/10.3791/3298
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author Douglas, Pamela K.
Pisani, Maureen
Reid, Rory
Head, Austin
Lau, Edward
Mirakhor, Ebrahim
Bramen, Jennifer
Gordon, Billi
Anderson, Ariana
Kerr, Wesley T.
Cheong, Chajoon
Cohen, Mark S.
author_facet Douglas, Pamela K.
Pisani, Maureen
Reid, Rory
Head, Austin
Lau, Edward
Mirakhor, Ebrahim
Bramen, Jennifer
Gordon, Billi
Anderson, Ariana
Kerr, Wesley T.
Cheong, Chajoon
Cohen, Mark S.
author_sort Douglas, Pamela K.
collection PubMed
description In the present work, we demonstrate a method for concurrent collection of EEG/fMRI data. In our setup, EEG data are collected using a high-density 256-channel sensor net. The EEG amplifier itself is contained in a field isolation containment system (FICS), and MRI clock signals are synchronized with EEG data collection for subsequent MR artifact characterization and removal. We demonstrate this method first for resting state data collection. Thereafter, we demonstrate a protocol for EEG/fMRI data recording, while subjects listen to a tape asking them to visualize that their left hand is immersed in a cold-water bath and referred to, here, as the cold glove paradigm. Thermal differentials between each hand are measured throughout EEG/fMRI data collection using an MR compatible temperature sensor that we developed for this purpose. We collect cold glove EEG/fMRI data along with simultaneous differential hand temperature measurements both before and after hypnotic induction. Between pre and post sessions, single modality EEG data are collected during the hypnotic induction and depth assessment process. Our representative results demonstrate that significant changes in the EEG power spectrum can be measured during hypnotic induction, and that hand temperature changes during the cold glove paradigm can be detected rapidly using our MR compatible differential thermometry device.
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spelling pubmed-40635452014-06-25 Method for Simultaneous fMRI/EEG Data Collection during a Focused Attention Suggestion for Differential Thermal Sensation Douglas, Pamela K. Pisani, Maureen Reid, Rory Head, Austin Lau, Edward Mirakhor, Ebrahim Bramen, Jennifer Gordon, Billi Anderson, Ariana Kerr, Wesley T. Cheong, Chajoon Cohen, Mark S. J Vis Exp Behavior In the present work, we demonstrate a method for concurrent collection of EEG/fMRI data. In our setup, EEG data are collected using a high-density 256-channel sensor net. The EEG amplifier itself is contained in a field isolation containment system (FICS), and MRI clock signals are synchronized with EEG data collection for subsequent MR artifact characterization and removal. We demonstrate this method first for resting state data collection. Thereafter, we demonstrate a protocol for EEG/fMRI data recording, while subjects listen to a tape asking them to visualize that their left hand is immersed in a cold-water bath and referred to, here, as the cold glove paradigm. Thermal differentials between each hand are measured throughout EEG/fMRI data collection using an MR compatible temperature sensor that we developed for this purpose. We collect cold glove EEG/fMRI data along with simultaneous differential hand temperature measurements both before and after hypnotic induction. Between pre and post sessions, single modality EEG data are collected during the hypnotic induction and depth assessment process. Our representative results demonstrate that significant changes in the EEG power spectrum can be measured during hypnotic induction, and that hand temperature changes during the cold glove paradigm can be detected rapidly using our MR compatible differential thermometry device. MyJove Corporation 2014-01-05 /pmc/articles/PMC4063545/ /pubmed/24429915 http://dx.doi.org/10.3791/3298 Text en Copyright © 2014, Journal of Visualized Experiments http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visithttp://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Behavior
Douglas, Pamela K.
Pisani, Maureen
Reid, Rory
Head, Austin
Lau, Edward
Mirakhor, Ebrahim
Bramen, Jennifer
Gordon, Billi
Anderson, Ariana
Kerr, Wesley T.
Cheong, Chajoon
Cohen, Mark S.
Method for Simultaneous fMRI/EEG Data Collection during a Focused Attention Suggestion for Differential Thermal Sensation
title Method for Simultaneous fMRI/EEG Data Collection during a Focused Attention Suggestion for Differential Thermal Sensation
title_full Method for Simultaneous fMRI/EEG Data Collection during a Focused Attention Suggestion for Differential Thermal Sensation
title_fullStr Method for Simultaneous fMRI/EEG Data Collection during a Focused Attention Suggestion for Differential Thermal Sensation
title_full_unstemmed Method for Simultaneous fMRI/EEG Data Collection during a Focused Attention Suggestion for Differential Thermal Sensation
title_short Method for Simultaneous fMRI/EEG Data Collection during a Focused Attention Suggestion for Differential Thermal Sensation
title_sort method for simultaneous fmri/eeg data collection during a focused attention suggestion for differential thermal sensation
topic Behavior
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4063545/
https://www.ncbi.nlm.nih.gov/pubmed/24429915
http://dx.doi.org/10.3791/3298
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