Atypical functional connectivity in resting-state networks of individuals with 22q11.2 deletion syndrome: associations with neurocognitive and psychiatric functioning

Autor: Kevin M. Antshel, Wanda Fremont, Leah M. Mattiaccio, Ioana L. Coman, Carrie E. Bearden, Matthew J. Schreiner, Wendy R. Kates
Jazyk: angličtina
Předmět:
medicine.medical_specialty
Cognitive Neuroscience
Precuneus
Basic Behavioral and Social Science
050105 experimental psychology
Pathology and Forensic Medicine
03 medical and health sciences
0302 clinical medicine
Clinical Research
2.3 Psychological
Brief Psychiatric Rating Scale
Behavioral and Social Science
medicine
Psychology
0501 psychology and cognitive sciences
ICA
Resting-state fMRI
Aetiology
Psychiatry
Default mode network
screening and diagnosis
California Verbal Learning Test
Resting state fMRI
Research
05 social sciences
Neurosciences
medicine.disease
Serious Mental Illness
Brain Disorders
4.1 Discovery and preclinical testing of markers and technologies
Behavior Rating Inventory of Executive Function
Detection
medicine.anatomical_structure
Mental Health
Schizophrenia
22q11.2 deletion syndrome
Pediatrics
Perinatology and Child Health

Neurology (clinical)
social and economic factors
Neurocognitive
030217 neurology & neurosurgery
Zdroj: Journal of neurodevelopmental disorders, vol 8, iss 1
Journal of Neurodevelopmental Disorders
ISSN: 1866-1947
DOI: 10.1186/s11689-016-9135-z
Popis: Background 22q11.2 deletion syndrome (22q11DS) is a neurogenetic condition associated with deficits in neuropsychological functioning and psychiatric disorders. This deletion confers a high risk for the development of psychosis, as approximately 30–45 % of individuals develop psychosis in adulthood. Previous reports of resting-state functional magnetic resonance imaging (rs-fMRI) functional connectivity patterns in 22q11DS have demonstrated that atypical connectivity is associated with both the emergence and severity of psychotic symptoms. However, due to sample overlap and large age ranges of samples spanning multiple critical periods of brain maturation, more independent studies with samples within the window of time when psychotic symptoms have been shown to emerge (ages 17–26) are needed. Resting-state networks (RSNs) in 22q11DS during this stage of brain development may thus provide insight into the dynamic changes in functional integration that influence the incidence of prodromal symptoms and neurocognitive deficits characteristic of this syndrome. Methods Independent component analysis (ICA) was performed to identify RSNs in a combined sample of 55 individuals with 22q11DS (27 males; age range 17–26) and 29 controls (17 males; age range 17–23, consisting of 8 siblings without the deletion and 21 typically developed individuals) from two research sites. We conducted a full factorial analysis to determine group differences between 22q11DS and controls. A Poisson regression analysis was conducted in the 22q11DS group to determine relationships of rs-fMRI network connectivity with psychiatric symptoms based on factors of the 18-item Brief Psychiatric Rating Scale. Nonparametric Spearman correlations were performed to test associations between within-network functional connectivity (FC) and performance on measures of verbal memory (California Verbal Learning Test) and executive function (Behavior Rating Inventory of Executive Function Adult version) in 22q11DS. Results Between-group network connectivity analyses revealed significant differences in 9 RSNs. Decreased network FC in 22q11DS was observed in the following networks: high-level visual processing network (HLVPN), low-level visual processing network (LLVPN), visual/precuneus network, left frontal-parietal network (LFPN), right frontal-parietal network (RFPN), and self-referential network (SRN). In contrast, greater network FC in 22q11DS was observed in subclusters of the LLVPN, visual/precuneus network, limbic network (LN), default mode network (DMN), and visuospatial processing network (VSPN). Increased functional connectivity of the right cuneus (visual/precuneus network) and right superior parietal lobule (DMN) in 22q11DS was positively associated with both thought disturbance and disorganization factors of the Brief Psychiatric Rating Scale (BPRS). Decreased functional connectivity in the left posterior cingulate (LLVPN) was associated with higher thought disturbance scores in 22q11DS. No associations with our neurocognitive measures passed correction for multiple comparisons (Bonferroni-corrected p ≤ 0.0014). Conclusions Our findings suggest that atypical network connectivity within RSNs may be indicative of increased risk for developing psychosis and supports the utility of RSNs as biomarkers of prodromal symptoms in 22q11DS. Electronic supplementary material The online version of this article (doi:10.1186/s11689-016-9135-z) contains supplementary material, which is available to authorized users.
Databáze: OpenAIRE