Evolution-driven functional changes in the primate brain are typically assessed by aligning monkey and human activation maps using cortical surface expansion models. These models use putative homologous areas as registration landmarks, assuming they are functionally correspondent. For cases in which functional changes have occurred in an area, this assumption prohibits to reveal whether other areas may have assumed lost functions. Here we describe a method to examine functional correspondences across species. Without making spatial assumptions, we assessed similarities in sensory-driven functional magnetic resonance imaging responses between monkey (Macaca mulatta) and human brain areas by temporal correlation. Using natural vision data, we revealed regions for which functional processing has shifted to topologically divergent locations during evolution. We conclude that substantial evolution-driven functional reorganizations have occurred, not always consistent with cortical expansion processes. This framework for evaluating changes in functional architecture is crucial to building more accurate evolutionary models.

Interspecies activity correlations reveal functional correspondence between monkey and human brain areas / Mantini, D; Hasson, U; Betti, Viviana; Perrucci, Mg; Romani, Gl; Corbetta, M; Orban, Ga; Vanduffel, W.. - In: NATURE METHODS. - ISSN 1548-7091. - STAMPA. - 9:(2012), pp. 277-282. [10.1038/nmeth.1868]

Interspecies activity correlations reveal functional correspondence between monkey and human brain areas

BETTI, VIVIANA;
2012

Abstract

Evolution-driven functional changes in the primate brain are typically assessed by aligning monkey and human activation maps using cortical surface expansion models. These models use putative homologous areas as registration landmarks, assuming they are functionally correspondent. For cases in which functional changes have occurred in an area, this assumption prohibits to reveal whether other areas may have assumed lost functions. Here we describe a method to examine functional correspondences across species. Without making spatial assumptions, we assessed similarities in sensory-driven functional magnetic resonance imaging responses between monkey (Macaca mulatta) and human brain areas by temporal correlation. Using natural vision data, we revealed regions for which functional processing has shifted to topologically divergent locations during evolution. We conclude that substantial evolution-driven functional reorganizations have occurred, not always consistent with cortical expansion processes. This framework for evaluating changes in functional architecture is crucial to building more accurate evolutionary models.
2012
correspondence analysis; evolution; functional magnetic resonance imaging; hemodynamics; human; Macaca mulatta; nonhuman; priority journal; secondary visual cortex; sensory stimulation; species difference; striate cortex; temporal cortex
01 Pubblicazione su rivista::01a Articolo in rivista
Interspecies activity correlations reveal functional correspondence between monkey and human brain areas / Mantini, D; Hasson, U; Betti, Viviana; Perrucci, Mg; Romani, Gl; Corbetta, M; Orban, Ga; Vanduffel, W.. - In: NATURE METHODS. - ISSN 1548-7091. - STAMPA. - 9:(2012), pp. 277-282. [10.1038/nmeth.1868]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/959393
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