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1.
Trends Cogn Sci ; 26(11): 909-922, 2022 11.
Article in English | MEDLINE | ID: mdl-36117080

ABSTRACT

Human cognitive abilities are generally thought to arise from cortical expansion over the course of human brain evolution. In addition to increased neuron numbers, this cortical expansion might be driven by adaptations in the properties of single neurons and their local circuits. We review recent findings on the distinct structural, functional, and transcriptomic features of human cortical neurons and their organization in cortical microstructure. We focus on the supragranular cortical layers, which showed the most prominent expansion during human brain evolution, and the properties of their principal cells: pyramidal neurons. We argue that the evolutionary adaptations in neuronal features that accompany the expansion of the human cortex partially underlie interindividual variability in human cognitive abilities.


Subject(s)
Neurons , Pyramidal Cells , Biological Evolution , Brain , Cognition , Humans , Neurons/physiology , Pyramidal Cells/physiology
2.
Cereb Cortex ; 32(11): 2343-2357, 2022 05 31.
Article in English | MEDLINE | ID: mdl-34550325

ABSTRACT

The left temporal lobe is an integral part of the language system and its cortical structure and function associate with general intelligence. However, whether cortical laminar architecture and cellular properties of this brain area relate to verbal intelligence is unknown. Here, we addressed this using histological analysis and cellular recordings of neurosurgically resected temporal cortex in combination with presurgical IQ scores. We find that subjects with higher general and verbal IQ scores have thicker left (but not right) temporal cortex (Brodmann area 21, BA21). The increased thickness is due to the selective increase in layers 2 and 3 thickness, accompanied by lower neuron densities, and larger dendrites and cell body size of pyramidal neurons in these layers. Furthermore, these neurons sustain faster action potential kinetics, which improves information processing. Our results indicate that verbal mental ability associates with selective adaptations of supragranular layers and their cellular micro-architecture and function in left, but not right temporal cortex.


Subject(s)
Pyramidal Cells , Temporal Lobe , Action Potentials , Humans , Intelligence/physiology , Neurons/physiology , Pyramidal Cells/physiology , Temporal Lobe/pathology
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