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Longitudinal hippocampal subfield development associated with psychotic experiences in young people

Psychology

Longitudinal hippocampal subfield development associated with psychotic experiences in young people

A. O'neill, N. Dooley, et al.

This study delves into the intriguing changes in hippocampal subfields among adolescents with sub-threshold psychotic experiences. With insights from authors including Aisling O'Neill and Niamh Dooley, discover how the brain's architecture may differ between those experiencing psychotic symptoms and healthy controls over a six-year span.

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~3 min • Beginner • English
Abstract
Hippocampal volumetric reductions are observed across the psychosis spectrum, with interest in the localisation of these reductions within the hippocampal subfields increasing. Deficits of the CA1 subfield in particular have been implicated in the neuropathophysiology of psychotic disorders. Investigating the trajectory of these abnormalities in healthy adolescents reporting sub-threshold psychotic experiences (PE) can provide insight into the neural mechanisms underlying psychotic symptoms without the potentially confounding effects of a formal disorder, or antipsychotic medication. In this novel investigation, a sample of 211 young people aged 11–13 participated initially in the Adolescent Brain Development study. PE classification was determined by expert consensus at each timepoint. Participants underwent neuroimaging at 3 timepoints, over 6 years. 78 participants with at least one scan were included in the final sample; 33 who met criteria for a definite PE at least once across all the timepoints (PE group), and 45 controls. Data from bilateral subfields of interest (CA1, CA2/3, CA4/DG, presubiculum and subiculum) were extracted for Linear Mixed Effects analyses. Before correction, subfield volumes were found to increase in the control group and decrease in the PE group for the right CA2 and CA2/3 subfields, with moderate to large effect sizes (d = −0.61, and d = −0.79, respectively). Before correction, right subiculum and left presubiculum volumes were reduced in the PE group compared to controls, regardless of time, with moderate effect sizes (d = −0.52, and d = −0.59, respectively). However, none of these effects survived correction. Severity of symptoms were not associated with any of the noted subfields. These findings provide novel insight to the discussion of the role of hippocampal subfield abnormalities in the pathophysiology underlying psychotic experiences.
Publisher
Translational Psychiatry
Published On
Jan 20, 2024
Authors
Aisling O'Neill, Niamh Dooley, Darren Roddy, Colm Healy, Eleanor Carey, Thomas Frodl, Erik O'Hanlon, Mary Cannon
Tags
hippocampal subfields
psychotic experiences
adolescents
neuroimaging
longitudinal study
CA2
subiculum
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