Identifying cortical structure markers of resilience to adversity in young people using surface-based morphometry

Article


Cornwell, H., Toschi, N., Hamilton-Giachritsis, C., Staginnus, M., Smaragdi, A., Gonzalez-Madruga, K., Mackes, N., Rogers, J., Martinelli, A., Kohls, G., Raschle, N.M., Konrad, K., Stadler, C., Freitag, C.M., De Brito, S.A. and Fairchild, G. 2024. Identifying cortical structure markers of resilience to adversity in young people using surface-based morphometry. Social Cognitive and Affective Neuroscience. 19 (1). https://doi.org/10.1093/scan/nsae006
TypeArticle
TitleIdentifying cortical structure markers of resilience to adversity in young people using surface-based morphometry
AuthorsCornwell, H., Toschi, N., Hamilton-Giachritsis, C., Staginnus, M., Smaragdi, A., Gonzalez-Madruga, K., Mackes, N., Rogers, J., Martinelli, A., Kohls, G., Raschle, N.M., Konrad, K., Stadler, C., Freitag, C.M., De Brito, S.A. and Fairchild, G.
Abstract

Previous research on the neurobiological bases of resilience in youth has largely used categorical definitions of resilience and voxel-based morphometry methods that assess gray matter volume. However, it is important to consider brain structure more broadly as different cortical properties have distinct developmental trajectories. To address these limitations, we used surface-based morphometry and data-driven, continuous resilience scores to examine associations between resilience and cortical structure. Structural MRI data from 286 youths (Mage = 13.6 years, 51% female) who took part in the European multi-site FemNAT-CD study were pre-processed and analyzed using surface-based morphometry. Continuous resilience scores were derived for each participant based on adversity exposure and levels of psychopathology using the residual regression method. Vertex-wise analyses assessed for correlations between resilience scores and cortical thickness, surface area, gyrification and volume. Resilience scores were positively associated with right lateral occipital surface area and right superior frontal gyrification and negatively correlated with left inferior temporal surface area. Moreover, sex-by-resilience interactions were observed for gyrification in frontal and temporal regions. Our findings extend previous research by revealing that resilience is related to surface area and gyrification in frontal, occipital and temporal regions that are implicated in emotion regulation and face or object recognition.

Keywordsbrain structure; resilience; adolescent; cortical thickness; adversity
Sustainable Development Goals3 Good health and well-being
Middlesex University ThemeHealth & Wellbeing
PublisherOxford University Press (OUP)
JournalSocial Cognitive and Affective Neuroscience
ISSN1749-5016
Electronic1749-5024
Publication dates
Online27 Jan 2024
Print07 Feb 2024
Publication process dates
Submitted26 Jun 2023
Accepted23 Jan 2024
Deposited06 Oct 2025
Output statusPublished
Publisher's version
License
File Access Level
Open
Copyright Statement

© The Author(s) 2024. Published by Oxford University Press. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.

Digital Object Identifier (DOI)https://doi.org/10.1093/scan/nsae006
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