Potential of fast multipole method for mesoscale and multiscale brain modeling: applicability to EEG, MEG, TES, TMS, and DBS

Bibliographic Details
Main Authors: Manas Rachh, Vishwanath Iyer, Leslie Greengard, Samuel Zibman, Mohammad Daneshzand, Matti Hämäläinen, Jyrki P. Ahveninen, Tommi Raji, Aapo Nummenmaa, Sergey Makaroff
Format: Article
Language:English
Published: Elsevier 2023-01-01
Series:Brain Stimulation
Online Access:http://www.sciencedirect.com/science/article/pii/S1935861X23000700
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author Manas Rachh
Vishwanath Iyer
Leslie Greengard
Samuel Zibman
Mohammad Daneshzand
Matti Hämäläinen
Jyrki P. Ahveninen
Tommi Raji
Aapo Nummenmaa
Sergey Makaroff
author_facet Manas Rachh
Vishwanath Iyer
Leslie Greengard
Samuel Zibman
Mohammad Daneshzand
Matti Hämäläinen
Jyrki P. Ahveninen
Tommi Raji
Aapo Nummenmaa
Sergey Makaroff
author_sort Manas Rachh
collection DOAJ
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institution Directory Open Access Journal
issn 1935-861X
language English
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publishDate 2023-01-01
publisher Elsevier
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series Brain Stimulation
spelling doaj.art-45bd3cb591d1424f8479dfe3c69ace712023-02-17T04:51:00ZengElsevierBrain Stimulation1935-861X2023-01-01161135Potential of fast multipole method for mesoscale and multiscale brain modeling: applicability to EEG, MEG, TES, TMS, and DBSManas Rachh0Vishwanath Iyer1Leslie Greengard2Samuel Zibman3Mohammad Daneshzand4Matti Hämäläinen5Jyrki P. Ahveninen6Tommi Raji7Aapo Nummenmaa8Sergey Makaroff9Flatiron Institute, USAMathWorks, Inc., USAFlatiron Institute, USA; New York University, USABrainsWay LTd, IsraelHarvard Medical School, USAAalto University, FinlandHarvard Medical School, USAHarvard Medical School, USAHarvard Medical School, USAElectrical and Computer Engineering, Worcester Polytechnic Inst., USA; Harvard Medical School, USAhttp://www.sciencedirect.com/science/article/pii/S1935861X23000700
spellingShingle Manas Rachh
Vishwanath Iyer
Leslie Greengard
Samuel Zibman
Mohammad Daneshzand
Matti Hämäläinen
Jyrki P. Ahveninen
Tommi Raji
Aapo Nummenmaa
Sergey Makaroff
Potential of fast multipole method for mesoscale and multiscale brain modeling: applicability to EEG, MEG, TES, TMS, and DBS
Brain Stimulation
title Potential of fast multipole method for mesoscale and multiscale brain modeling: applicability to EEG, MEG, TES, TMS, and DBS
title_full Potential of fast multipole method for mesoscale and multiscale brain modeling: applicability to EEG, MEG, TES, TMS, and DBS
title_fullStr Potential of fast multipole method for mesoscale and multiscale brain modeling: applicability to EEG, MEG, TES, TMS, and DBS
title_full_unstemmed Potential of fast multipole method for mesoscale and multiscale brain modeling: applicability to EEG, MEG, TES, TMS, and DBS
title_short Potential of fast multipole method for mesoscale and multiscale brain modeling: applicability to EEG, MEG, TES, TMS, and DBS
title_sort potential of fast multipole method for mesoscale and multiscale brain modeling applicability to eeg meg tes tms and dbs
url http://www.sciencedirect.com/science/article/pii/S1935861X23000700
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