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Cross-species functional alignment reveals evolutionary hierarchy within the connectome
Author(s) -
Ting Xu,
KarlHeinz Nenning,
Ernst Schwartz,
SeokJun Hong,
Joshua T. Vogelstein,
Alexandros Goulas,
Damien A. Fair,
Charles M. Schroeder,
Daniel S. Margulies,
Jonny Smallwood,
Michael P. Milham,
Georg Langs
Publication year - 2020
Publication title -
neuroimage
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.259
H-Index - 364
eISSN - 1095-9572
pISSN - 1053-8119
DOI - 10.1016/j.neuroimage.2020.117346
Subject(s) - default mode network , connectome , neuroscience , evolutionary biology , posterior cingulate , biology , angular gyrus , human connectome project , brain morphometry , cognition , hierarchy , functional specialization , hippocampal formation , functional connectivity , economics , magnetic resonance imaging , market economy , medicine , radiology
Evolution provides an important window into how cortical organization shapes function and vice versa. The complex mosaic of changes in brain morphology and functional organization that have shaped the mammalian cortex during evolution, complicates attempts to chart cortical differences across species. It limits our ability to fully appreciate how evolution has shaped our brain, especially in systems associated with unique human cognitive capabilities that lack anatomical homologues in other species. Here, we develop a function-based method for cross-species alignment that enables the quantification of homologous regions between humans and rhesus macaques, even when their location is decoupled from anatomical landmarks. Critically, we find cross-species similarity in functional organization reflects a gradient of evolutionary change that decreases from unimodal systems and culminates with the most pronounced changes in posterior regions of the default mode network (angular gyrus, posterior cingulate and middle temporal cortices). Our findings suggest that the establishment of the default mode network, as the apex of a cognitive hierarchy, has changed in a complex manner during human evolution - even within subnetworks.

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