Cargando…

The 3D Structural Architecture of the Human Hand Area Is Nontopographic

The functional topography of the human primary somatosensory cortex hand area is a widely studied model system to understand sensory organization and plasticity. It is so far unclear whether the underlying 3D structural architecture also shows a topographic organization. We used 7 Tesla (7T) magneti...

Descripción completa

Detalles Bibliográficos
Autores principales: Doehler, Juliane, Northall, Alicia, Liu, Peng, Fracasso, Alessio, Chrysidou, Anastasia, Speck, Oliver, Lohmann, Gabriele, Wolbers, Thomas, Kuehn, Esther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10184749/
https://www.ncbi.nlm.nih.gov/pubmed/37001994
http://dx.doi.org/10.1523/JNEUROSCI.1692-22.2023
_version_ 1785042203549106176
author Doehler, Juliane
Northall, Alicia
Liu, Peng
Fracasso, Alessio
Chrysidou, Anastasia
Speck, Oliver
Lohmann, Gabriele
Wolbers, Thomas
Kuehn, Esther
author_facet Doehler, Juliane
Northall, Alicia
Liu, Peng
Fracasso, Alessio
Chrysidou, Anastasia
Speck, Oliver
Lohmann, Gabriele
Wolbers, Thomas
Kuehn, Esther
author_sort Doehler, Juliane
collection PubMed
description The functional topography of the human primary somatosensory cortex hand area is a widely studied model system to understand sensory organization and plasticity. It is so far unclear whether the underlying 3D structural architecture also shows a topographic organization. We used 7 Tesla (7T) magnetic resonance imaging (MRI) data to quantify layer-specific myelin, iron, and mineralization in relation to population receptive field maps of individual finger representations in Brodman area 3b (BA 3b) of human S1 in female and male younger adults. This 3D description allowed us to identify a characteristic profile of layer-specific myelin and iron deposition in the BA 3b hand area, but revealed an absence of structural differences, an absence of low-myelin borders, and high similarity of 3D microstructure profiles between individual fingers. However, structural differences and borders were detected between the hand and face areas. We conclude that the 3D structural architecture of the human hand area is nontopographic, unlike in some monkey species, which suggests a high degree of flexibility for functional finger organization and a new perspective on human topographic plasticity. SIGNIFICANCE STATEMENT Using ultra-high-field MRI, we provide the first comprehensive in vivo description of the 3D structural architecture of the human BA 3b hand area in relation to functional population receptive field maps. High similarity of precise finger-specific 3D profiles, together with an absence of structural differences and an absence of low-myelin borders between individual fingers, reveals the 3D structural architecture of the human hand area to be nontopographic. This suggests reduced structural limitations to cortical plasticity and reorganization and allows for shared representational features across fingers.
format Online
Article
Text
id pubmed-10184749
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Society for Neuroscience
record_format MEDLINE/PubMed
spelling pubmed-101847492023-05-16 The 3D Structural Architecture of the Human Hand Area Is Nontopographic Doehler, Juliane Northall, Alicia Liu, Peng Fracasso, Alessio Chrysidou, Anastasia Speck, Oliver Lohmann, Gabriele Wolbers, Thomas Kuehn, Esther J Neurosci Research Articles The functional topography of the human primary somatosensory cortex hand area is a widely studied model system to understand sensory organization and plasticity. It is so far unclear whether the underlying 3D structural architecture also shows a topographic organization. We used 7 Tesla (7T) magnetic resonance imaging (MRI) data to quantify layer-specific myelin, iron, and mineralization in relation to population receptive field maps of individual finger representations in Brodman area 3b (BA 3b) of human S1 in female and male younger adults. This 3D description allowed us to identify a characteristic profile of layer-specific myelin and iron deposition in the BA 3b hand area, but revealed an absence of structural differences, an absence of low-myelin borders, and high similarity of 3D microstructure profiles between individual fingers. However, structural differences and borders were detected between the hand and face areas. We conclude that the 3D structural architecture of the human hand area is nontopographic, unlike in some monkey species, which suggests a high degree of flexibility for functional finger organization and a new perspective on human topographic plasticity. SIGNIFICANCE STATEMENT Using ultra-high-field MRI, we provide the first comprehensive in vivo description of the 3D structural architecture of the human BA 3b hand area in relation to functional population receptive field maps. High similarity of precise finger-specific 3D profiles, together with an absence of structural differences and an absence of low-myelin borders between individual fingers, reveals the 3D structural architecture of the human hand area to be nontopographic. This suggests reduced structural limitations to cortical plasticity and reorganization and allows for shared representational features across fingers. Society for Neuroscience 2023-05-10 /pmc/articles/PMC10184749/ /pubmed/37001994 http://dx.doi.org/10.1523/JNEUROSCI.1692-22.2023 Text en Copyright © 2023 Doehler et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Articles
Doehler, Juliane
Northall, Alicia
Liu, Peng
Fracasso, Alessio
Chrysidou, Anastasia
Speck, Oliver
Lohmann, Gabriele
Wolbers, Thomas
Kuehn, Esther
The 3D Structural Architecture of the Human Hand Area Is Nontopographic
title The 3D Structural Architecture of the Human Hand Area Is Nontopographic
title_full The 3D Structural Architecture of the Human Hand Area Is Nontopographic
title_fullStr The 3D Structural Architecture of the Human Hand Area Is Nontopographic
title_full_unstemmed The 3D Structural Architecture of the Human Hand Area Is Nontopographic
title_short The 3D Structural Architecture of the Human Hand Area Is Nontopographic
title_sort 3d structural architecture of the human hand area is nontopographic
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10184749/
https://www.ncbi.nlm.nih.gov/pubmed/37001994
http://dx.doi.org/10.1523/JNEUROSCI.1692-22.2023
work_keys_str_mv AT doehlerjuliane the3dstructuralarchitectureofthehumanhandareaisnontopographic
AT northallalicia the3dstructuralarchitectureofthehumanhandareaisnontopographic
AT liupeng the3dstructuralarchitectureofthehumanhandareaisnontopographic
AT fracassoalessio the3dstructuralarchitectureofthehumanhandareaisnontopographic
AT chrysidouanastasia the3dstructuralarchitectureofthehumanhandareaisnontopographic
AT speckoliver the3dstructuralarchitectureofthehumanhandareaisnontopographic
AT lohmanngabriele the3dstructuralarchitectureofthehumanhandareaisnontopographic
AT wolbersthomas the3dstructuralarchitectureofthehumanhandareaisnontopographic
AT kuehnesther the3dstructuralarchitectureofthehumanhandareaisnontopographic
AT doehlerjuliane 3dstructuralarchitectureofthehumanhandareaisnontopographic
AT northallalicia 3dstructuralarchitectureofthehumanhandareaisnontopographic
AT liupeng 3dstructuralarchitectureofthehumanhandareaisnontopographic
AT fracassoalessio 3dstructuralarchitectureofthehumanhandareaisnontopographic
AT chrysidouanastasia 3dstructuralarchitectureofthehumanhandareaisnontopographic
AT speckoliver 3dstructuralarchitectureofthehumanhandareaisnontopographic
AT lohmanngabriele 3dstructuralarchitectureofthehumanhandareaisnontopographic
AT wolbersthomas 3dstructuralarchitectureofthehumanhandareaisnontopographic
AT kuehnesther 3dstructuralarchitectureofthehumanhandareaisnontopographic