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Published on: November 21, 2013
Age at First Episode Modulates Diagnosis-Related Structural Brain Abnormalities in Psychosis
Laura Pina-Camacho1, Ángel Del Rey-Mejías2, Joost Janssen3
1lpina.iisgm@gmail.com.
Insights
Age at first episode psychosis (FEP) significantly alters brain abnormalities in patients. These changes vary nonlinearly and by diagnosis, impacting schizophrenia and affective psychosis presentations.
Area of Science:
- Neuroimaging
- Psychiatry
- Developmental Neuroscience
Background:
- Brain structural abnormalities are noted in first-episode psychosis (FEP).
- The influence of developmental stage, indicated by age at FEP, on these abnormalities remains unclear.
- Understanding age-dependent effects is crucial for interpreting neuroimaging findings in psychosis.
Purpose of the Study:
- To investigate the nonlinear relationship between age at first-episode psychosis (FEP) and brain structural changes.
- To determine if this relationship differs between schizophrenia spectrum disorders (SSD) and affective psychoses (AFP).
- To explore age-constant structural differences in FEP compared to healthy controls (HC).
Main Methods:
- Multicenter, cross-sectional, case-control brain MRI study.
- Inclusion of 196 FEP patients (12-35 years) and 157 matched healthy controls (HC).
- Gray matter volume and thickness analysis using FreeSurfer software, exploring nonlinear age effects.
Main Results:
- Early FEP in SSD (before 15-20 years) showed frontal/temporal deficits and basal ganglia/ventricular enlargements.
- Early FEP in AFP (before 18-20 years) revealed smaller cingulate and thicker temporal cortex.
- AFP group exhibited age-constant frontal/parietal volume enlargements across the 12-35 year span.
Conclusions:
- Age at first episode significantly modulates structural brain abnormalities in FEP.
- These age-related effects are nonlinear and diagnosis-dependent for SSD and AFP.
- Future neuroimaging research must consider age at onset and diagnosis for accurate interpretation.
Abstract:
Brain volume and thickness abnormalities have been reported in first-episode psychosis (FEP). However, it is unclear if and how they are modulated by brain developmental stage (and, therefore, by age at FEP as a proxy). This is a multicenter cross-sectional case-control brain magnetic resonance imaging (MRI) study. Patients with FEP (n = 196), 65.3% males, with a wide age at FEP span (12-35 y), and healthy controls (HC) (n = 157), matched for age, sex, and handedness, were scanned at 6 sites. Gray matter volume and thickness measurements were generated for several brain regions using FreeSurfer software. The nonlinear relationship between age at scan (a proxy for age at FEP in patients) and volume and thickness measurements was explored in patients with schizophrenia spectrum disorders (SSD), affective psychoses (AFP), and HC. Earlier SSD cases (ie, FEP before 15-20 y) showed significant volume and thickness deficits in frontal lobe, volume deficits in temporal lobe, and volume enlargements in ventricular system and basal ganglia. First-episode AFP patients had smaller cingulate cortex volume and thicker temporal cortex only at early age at FEP (before 18-20 y). The AFP group also had age-constant (12-35-y age span) volume enlargements in the frontal and parietal lobe. Our study suggests that age at first episode modulates the structural brain abnormalities found in FEP patients in a nonlinear and diagnosis-dependent manner. Future MRI studies should take these results into account when interpreting samples with different ages at onset and diagnosis.
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