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A natural history of the human mind: tracing evolutionary changes in brain and cognition

2008/04/01 by Chet C. Sherwood, Francys Subiaul, Tadeusz W. Zawidzki +1 · 364 citations
Neuroscience · Psychology · Social Sciences · #Ancestor #Biology #Brain size #Child and Animal Learning Development #Cognition #Cognitive science #Common descent #Evolutionary biology #Gene #Genetics #Hemispheric Asymmetry in Neuroscience #History #Homo sapiens #Human evolution #Language and cultural evolution #Lineage (genetic) #Most recent common ancestor #Neocortex #Neuroscience #Phylogenetic tree #Phylogenetics #Psychology

paper · pdf · doi:10.1111/j.1469-7580.2008.00868.x

published in Journal of Anatomy 212(4), 426-454 (Wiley)

openalex publication_date 2008/04/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/01

Abstract

Since the last common ancestor shared by modern humans, chimpanzees and bonobos, the lineage leading to Homo sapiens has undergone a substantial change in brain size and organization. As a result, modern humans display striking differences from the living apes in the realm of cognition and linguistic expression. In this article, we review the evolutionary changes that occurred in the descent of Homo sapiens by reconstructing the neural and cognitive traits that would have characterized the last common ancestor and comparing these with the modern human condition. The last common ancestor can be reconstructed to have had a brain of approximately 300-400 g that displayed several unique phylogenetic specializations of development, anatomical organization, and biochemical function. These neuroanatomical substrates contributed to the enhancement of behavioral flexibility and social cognition. With this evolutionary history as precursor, the modern human mind may be conceived as a mosaic of traits inherited from a common ancestry with our close relatives, along with the addition of evolutionary specializations within particular domains. These modern human-specific cognitive and linguistic adaptations appear to be correlated with enlargement of the neocortex and related structures. Accompanying this general neocortical expansion, certain higher-order unimodal and multimodal cortical areas have grown disproportionately relative to primary cortical areas. Anatomical and molecular changes have also been identified that might relate to the greater metabolic demand and enhanced synaptic plasticity of modern human brain's. Finally, the unique brain growth trajectory of modern humans has made a significant contribution to our species' cognitive and linguistic abilities.

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