Cytoarchitectonic, receptor distribution and functional connectivity analyses of the macaque frontal lobe

Author:

Rapan Lucija1ORCID,Froudist-Walsh Sean23,Niu Meiqi1ORCID,Xu Ting4,Zhao Ling1,Funck Thomas1,Wang Xiao-Jing2ORCID,Amunts Katrin15ORCID,Palomero-Gallagher Nicola15ORCID

Affiliation:

1. Institute of Neuroscience and Medicine INM-1, Research Centre Jülich

2. Center for Neural Science, New York University

3. Bristol Computational Neuroscience Unit, Faculty of Engineering, University of Bristol

4. Center for the Developing Brain, Child Mind Institute

5. C. & O. Vogt Institute for Brain Research, Heinrich-Heine-University

Abstract

Based on quantitative cyto- and receptor architectonic analyses, we identified 35 prefrontal areas, including novel subdivisions of Walker’s areas 10, 9, 8B, and 46. Statistical analysis of receptor densities revealed regional differences in lateral and ventrolateral prefrontal cortex. Indeed, structural and functional organization of subdivisions encompassing areas 46 and 12 demonstrated significant differences in the interareal levels of α2 receptors. Furthermore, multivariate analysis included receptor fingerprints of previously identified 16 motor areas in the same macaque brains and revealed 5 clusters encompassing frontal lobe areas. We used the MRI datasets from the non-human primate data sharing consortium PRIME-DE to perform functional connectivity analyses using the resulting frontal maps as seed regions. In general, rostrally located frontal areas were characterized by bigger fingerprints, that is, higher receptor densities, and stronger regional interconnections. Whereas more caudal areas had smaller fingerprints, but showed a widespread connectivity pattern with distant cortical regions. Taken together, this study provides a comprehensive insight into the molecular structure underlying the functional organization of the cortex and, thus, reconcile the discrepancies between the structural and functional hierarchical organization of the primate frontal lobe. Finally, our data are publicly available via the EBRAINS and BALSA repositories for the entire scientific community.

Funder

Horizon 2020 Framework Programme

Helmholtz Association

Bundesministerium für Bildung und Forschung

National Institutes of Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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