Bibliografía completa
Diffusion markers of dendritic density and arborization in gray matter predict differences in intelligence
Tipo de recurso
Autores/contribuidores
- Genç, Erhan (Author)
- Fraenz, Christoph (Author)
- Schlüter, Caroline (Author)
- Friedrich, Patrick (Author)
- Hossiep, Rüdiger (Author)
- Voelkle, Manuel C. (Author)
- Ling, Josef M. (Author)
- Güntürkün, Onur (Author)
- Jung, Rex E. (Author)
Title
Diffusion markers of dendritic density and arborization in gray matter predict differences in intelligence
Abstract
Abstract
Previous research has demonstrated that individuals with higher intelligence are more likely to have larger gray matter volume in brain areas predominantly located in parieto-frontal regions. These findings were usually interpreted to mean that individuals with more cortical brain volume possess more neurons and thus exhibit more computational capacity during reasoning. In addition, neuroimaging studies have shown that intelligent individuals, despite their larger brains, tend to exhibit lower rates of brain activity during reasoning. However, the microstructural architecture underlying both observations remains unclear. By combining advanced multi-shell diffusion tensor imaging with a culture-fair matrix-reasoning test, we found that higher intelligence in healthy individuals is related to lower values of dendritic density and arborization. These results suggest that the neuronal circuitry associated with higher intelligence is organized in a sparse and efficient manner, fostering more directed information processing and less cortical activity during reasoning.
Publication
Nature Communications
Date
2018-05-15
Volume
9
Issue
1
Pages
1905
Journal Abbr
Nat Commun
Accessed
10/5/25, 17:04
ISSN
2041-1723
Language
en
Library Catalog
DOI.org (Crossref)
Extra
TLDR: NODDI, a diffusion MRI technique, is used to confirm that neurite density and arborization are inversely related to measures of intelligence, and suggests that the neuronal circuitry associated with higher intelligence is organized in a sparse and efficient manner, fostering more directed information processing and less cortical activity during reasoning.
Citación
Genç, E., Fraenz, C., Schlüter, C., Friedrich, P., Hossiep, R., Voelkle, M. C., Ling, J. M., Güntürkün, O., & Jung, R. E. (2018). Diffusion markers of dendritic density and arborization in gray matter predict differences in intelligence. Nature Communications, 9(1), 1905. https://doi.org/10.1038/s41467-018-04268-8
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