Oxygen and the spark of human brain evolution: complex interactions of metabolism and cortical expansion across development and evolution
Author(s)
Type
Journal Article
Abstract
Scientific theories on the functioning and dysfunction of the human brain require an understanding of its development—before and after birth and through maturation to adulthood—and its evolution. Here we bring together several accounts of human brain evolution by focusing on the central role of oxygen and brain metabolism. We argue that evolutionary expansion of human transmodal association cortices exceeded the capacity of oxygen delivery by the vascular system, which led these brain tissues to rely on nonoxidative glycolysis for additional energy supply. We draw a link between the resulting lower oxygen tension and its effect on cytoarchitecture, which we posit as a key driver of genetic developmental programs for the human brain—favoring lower intracortical myelination and the presence of biosynthetic materials for synapse turnover. Across biological and temporal scales, this protracted capacity for neural plasticity sets the conditions for cognitive flexibility and ongoing learning, supporting complex group dynamics and intergenerational learning that in turn enabled improved nutrition to fuel the metabolic costs of further cortical expansion. Our proposed model delineates explicit mechanistic links among metabolism, molecular and cellular brain heterogeneity, and behavior, which may lead toward a clearer understanding of brain development and its disorders.
Date Issued
2024-04
Date Acceptance
2022-12-01
Citation
The Neuroscientist, 2024, 30 (2), pp.173-198
ISSN
1073-8584
Publisher
SAGE Publications
Start Page
173
End Page
198
Journal / Book Title
The Neuroscientist
Volume
30
Issue
2
Copyright Statement
© The Author(s) 2022. This article is distributed under the terms of the Creative Commons Attribution 4.0 License (https://creativecommons.org/licenses/by/4.0/) which permits any use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
License URL
Identifier
https://journals.sagepub.com/doi/10.1177/10738584221138032
Subjects
ACETYLCHOLINE
aerobic glycolysis
AEROBIC GLYCOLYSIS
CHIMPANZEES
Clinical Neurology
complex systems
cortical expansion
DEFAULT MODE NETWORK
development
DISORDERS
evolution
HYPOTHESIS
Life Sciences & Biomedicine
metabolism
MYELIN
Neurosciences
Neurosciences & Neurology
oxygen
plasticity
PLASTICITY
PREFRONTAL CORTEX
Science & Technology
SIZE
social brain
transmodal association cortex
Publication Status
Published
Date Publish Online
2022-12-08