A computational model based on corticospinal functional MRI revealed asymmetrically organized motor corticospinal networks in humans

MRI and network modelling reveal correlation between the degree of involvement of the two corticospinal networks and the lateralization of handedness in humans.

Bibliographic Details
Main Authors: Eiji Takasawa, Mitsunari Abe, Hirotaka Chikuda, Takashi Hanakawa
Format: Article
Language:English
Published: Nature Portfolio 2022-07-01
Series:Communications Biology
Online Access:https://doi.org/10.1038/s42003-022-03615-2
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author Eiji Takasawa
Mitsunari Abe
Hirotaka Chikuda
Takashi Hanakawa
author_facet Eiji Takasawa
Mitsunari Abe
Hirotaka Chikuda
Takashi Hanakawa
author_sort Eiji Takasawa
collection DOAJ
description MRI and network modelling reveal correlation between the degree of involvement of the two corticospinal networks and the lateralization of handedness in humans.
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spelling doaj.art-fb2b0cb6d5ff44018111ca6c32789d342022-12-22T02:43:41ZengNature PortfolioCommunications Biology2399-36422022-07-015111010.1038/s42003-022-03615-2A computational model based on corticospinal functional MRI revealed asymmetrically organized motor corticospinal networks in humansEiji Takasawa0Mitsunari Abe1Hirotaka Chikuda2Takashi Hanakawa3Department of Advanced Neuroimaging, Integrative Brain Imaging Center, National Center of Neurology and PsychiatryDepartment of Advanced Neuroimaging, Integrative Brain Imaging Center, National Center of Neurology and PsychiatryDepartment of Orthopaedic Surgery, Gunma University Graduate School of MedicineDepartment of Advanced Neuroimaging, Integrative Brain Imaging Center, National Center of Neurology and PsychiatryMRI and network modelling reveal correlation between the degree of involvement of the two corticospinal networks and the lateralization of handedness in humans.https://doi.org/10.1038/s42003-022-03615-2
spellingShingle Eiji Takasawa
Mitsunari Abe
Hirotaka Chikuda
Takashi Hanakawa
A computational model based on corticospinal functional MRI revealed asymmetrically organized motor corticospinal networks in humans
Communications Biology
title A computational model based on corticospinal functional MRI revealed asymmetrically organized motor corticospinal networks in humans
title_full A computational model based on corticospinal functional MRI revealed asymmetrically organized motor corticospinal networks in humans
title_fullStr A computational model based on corticospinal functional MRI revealed asymmetrically organized motor corticospinal networks in humans
title_full_unstemmed A computational model based on corticospinal functional MRI revealed asymmetrically organized motor corticospinal networks in humans
title_short A computational model based on corticospinal functional MRI revealed asymmetrically organized motor corticospinal networks in humans
title_sort computational model based on corticospinal functional mri revealed asymmetrically organized motor corticospinal networks in humans
url https://doi.org/10.1038/s42003-022-03615-2
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