Literature DB >> 22892423

The structure of the cerebral cortex across adult life: age-related patterns of surface area, thickness, and gyrification.

Larson J Hogstrom1, Lars T Westlye, Kristine B Walhovd, Anders M Fjell.   

Abstract

Older adults exhibit global reductions in cortical surface area, but little is known about the regional patterns of reductions or how these relate to other measures of brain structure. This knowledge is critical to understanding the dynamic relationship between different macrostructural properties of the cortex throughout adult life. Here, cortical arealization, local gyrification index (LGI), and cortical thickness were measured vertex wise across the brain surface in 322 healthy adults (20-85 years), with the aims of 1) characterizing age patterns of the three separate cortical measures and 2) testing the age-independent relationships among cortical surface area, gyrification, and thickness. Surface area showed strong age-related decreases, particularly pronounced in dorsomedial prefrontal, lateral temporal, and fusiform cortices, independently of total white matter volume. LGI decreased with age independently of regional surface area, with strongest effects laterally, extending from the angular gyrus in all directions. As expected, regional surface area and LGI were positively related. However, both measures correlated negatively with thickness, indicating increasing local arealization and gyrification with decreasing cortical thickness. We suggest that this pattern of regional "cortical stretching" reflects the well-established phylogenetic principle of maximizing surface area and gyrification rather than increase thickness to facilitate brain connectivity and functional development.

Keywords:  aging; cortical thickness; gray matter; magnetic resonance imaging morphometry; neurodevelopment

Mesh:

Year:  2012        PMID: 22892423     DOI: 10.1093/cercor/bhs231

Source DB:  PubMed          Journal:  Cereb Cortex        ISSN: 1047-3211            Impact factor:   5.357


  147 in total

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2.  Breadth and age-dependency of relations between cortical thickness and cognition.

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3.  Resting-State Retinotopic Organization in the Absence of Retinal Input and Visual Experience.

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Journal:  J Neurosci       Date:  2015-09-09       Impact factor: 6.167

4.  Visual Cortical Alterations and their Association with Negative Symptoms in Antipsychotic-Naïve First Episode Psychosis.

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5.  Age- and gender-related regional variations of human brain cortical thickness, complexity, and gradient in the third decade.

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6.  The human cerebral cortex flattens during adolescence.

Authors:  Yasser Alemán-Gómez; Joost Janssen; Hugo Schnack; Evan Balaban; Laura Pina-Camacho; Fidel Alfaro-Almagro; Josefina Castro-Fornieles; Soraya Otero; Immaculada Baeza; Dolores Moreno; Nuria Bargalló; Mara Parellada; Celso Arango; Manuel Desco
Journal:  J Neurosci       Date:  2013-09-18       Impact factor: 6.167

7.  A Longitudinal Study of Local Gyrification Index in Young Boys With Autism Spectrum Disorder.

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8.  Connectivity trajectory across lifespan differentiates the precuneus from the default network.

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9.  The Genetic Association Between Neocortical Volume and General Cognitive Ability Is Driven by Global Surface Area Rather Than Thickness.

Authors:  Eero Vuoksimaa; Matthew S Panizzon; Chi-Hua Chen; Mark Fiecas; Lisa T Eyler; Christine Fennema-Notestine; Donald J Hagler; Bruce Fischl; Carol E Franz; Amy Jak; Michael J Lyons; Michael C Neale; Daniel A Rinker; Wesley K Thompson; Ming T Tsuang; Anders M Dale; William S Kremen
Journal:  Cereb Cortex       Date:  2014-02-18       Impact factor: 5.357

10.  Brain development and aging: overlapping and unique patterns of change.

Authors:  Christian K Tamnes; Kristine B Walhovd; Anders M Dale; Ylva Østby; Håkon Grydeland; George Richardson; Lars T Westlye; J Cooper Roddey; Donald J Hagler; Paulina Due-Tønnessen; Dominic Holland; Anders M Fjell
Journal:  Neuroimage       Date:  2012-12-12       Impact factor: 6.556

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