Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 4 de 4
Filter
Add more filters










Database
Language
Publication year range
1.
Patterns (N Y) ; 5(7): 100987, 2024 Jul 12.
Article in English | MEDLINE | ID: mdl-39081570

ABSTRACT

Structural neuroimaging studies have identified a combination of shared and disorder-specific patterns of gray matter (GM) deficits across psychiatric disorders. Pooling large data allows for examination of a possible common neuroanatomical basis that may identify a certain vulnerability for mental illness. Large-scale collaborative research is already facilitated by data repositories, institutionally supported databases, and data archives. However, these data-sharing methodologies can suffer from significant barriers. Federated approaches augment these approaches by enabling access or more sophisticated, shareable and scaled-up analyses of large-scale data. We examined GM alterations using Collaborative Informatics and Neuroimaging Suite Toolkit for Anonymous Computation, an open-source, decentralized analysis application. Through federated analysis of eight sites, we identified significant overlap in the GM patterns (n = 4,102) of individuals with schizophrenia, major depressive disorder, and autism spectrum disorder. These results show cortical and subcortical regions that may indicate a shared vulnerability to psychiatric disorders.

2.
J Stroke Cerebrovasc Dis ; 33(8): 107771, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38788985

ABSTRACT

OBJECTIVES: Web-based interventions may assist in post-discharge stroke care. However, strategies for maximising uptake and engagement are needed. AIMS: To determine the: (1) effectiveness of a discharge support intervention (EnableMe web-based portal and strategies to encourage use) in improving quality of life and reducing depression (primary outcome); anxiety and unmet needs of survivors of stroke and transient ischemic attack (TIA); and (2) EnableMe use and acceptability. MATERIALS AND METHODS: An open, parallel-group, multi-centre randomised controlled trial (RCT) of the intervention compared to usual care for survivors of stroke/TIA and their support persons. Participants recruited from eight hospitals completed questionnaires at baseline, 3 and 6 months. Outcomes included quality of life, depression, anxiety and unmet needs. RESULTS: 98 survivors (n=52 intervention, n=47 control) and 30 support persons (n=11 intervention, n=19 control) enrolled in the RCT. Bayesian analyses showed substantial evidence of an intervention effect on survivors' quality of life scores at 3 months. There was moderate-to-strong evidence of a treatment effect on depression scores and strong evidence that intervention participants had fewer unmet needs at 3 and 6 months. 45 % of intervention group survivors and 63 % of support persons self-reported using EnableMe. 64 % of survivors and 84 % of support persons found it helpful. CONCLUSION: Substantial evidence for the discharge support intervention was found, with a difference between groups in survivor quality of life, depression, and unmet needs. Acceptability was demonstrated with largely positive attitudes towards EnableMe. Future research should explore different engagement strategies to improve uptake of online stroke resources.


Subject(s)
Anxiety , Depression , Ischemic Attack, Transient , Patient Discharge , Quality of Life , Stroke , Humans , Ischemic Attack, Transient/therapy , Ischemic Attack, Transient/psychology , Ischemic Attack, Transient/diagnosis , Ischemic Attack, Transient/physiopathology , Female , Male , Aged , Middle Aged , Treatment Outcome , Depression/therapy , Depression/psychology , Depression/diagnosis , Stroke/therapy , Stroke/diagnosis , Stroke/physiopathology , Stroke/psychology , Time Factors , Anxiety/therapy , Anxiety/psychology , Anxiety/diagnosis , Patient Portals , Internet-Based Intervention , Aged, 80 and over , Health Knowledge, Attitudes, Practice , Stroke Rehabilitation/methods
3.
Mol Psychiatry ; 2024 Feb 09.
Article in English | MEDLINE | ID: mdl-38336840

ABSTRACT

Schizophrenia is a prototypical network disorder with widespread brain-morphological alterations, yet it remains unclear whether these distributed alterations robustly reflect the underlying network layout. We tested whether large-scale structural alterations in schizophrenia relate to normative structural and functional connectome architecture, and systematically evaluated robustness and generalizability of these network-level alterations. Leveraging anatomical MRI scans from 2439 adults with schizophrenia and 2867 healthy controls from 26 ENIGMA sites and normative data from the Human Connectome Project (n = 207), we evaluated structural alterations of schizophrenia against two network susceptibility models: (i) hub vulnerability, which examines associations between regional network centrality and magnitude of disease-related alterations; (ii) epicenter mapping, which identifies regions whose typical connectivity profile most closely resembles the disease-related morphological alterations. To assess generalizability and specificity, we contextualized the influence of site, disease stages, and individual clinical factors and compared network associations of schizophrenia with that found in affective disorders. Our findings show schizophrenia-related cortical thinning is spatially associated with functional and structural hubs, suggesting that highly interconnected regions are more vulnerable to morphological alterations. Predominantly temporo-paralimbic and frontal regions emerged as epicenters with connectivity profiles linked to schizophrenia's alteration patterns. Findings were robust across sites, disease stages, and related to individual symptoms. Moreover, transdiagnostic comparisons revealed overlapping epicenters in schizophrenia and bipolar, but not major depressive disorder, suggestive of a pathophysiological continuity within the schizophrenia-bipolar-spectrum. In sum, cortical alterations over the course of schizophrenia robustly follow brain network architecture, emphasizing marked hub susceptibility and temporo-frontal epicenters at both the level of the group and the individual. Subtle variations of epicenters across disease stages suggest interacting pathological processes, while associations with patient-specific symptoms support additional inter-individual variability of hub vulnerability and epicenters in schizophrenia. Our work outlines potential pathways to better understand macroscale structural alterations, and inter- individual variability in schizophrenia.

4.
Biol Psychiatry ; 95(2): 147-160, 2024 Jan 15.
Article in English | MEDLINE | ID: mdl-37661008

ABSTRACT

BACKGROUND: Carriers of the 1q21.1 distal and 15q11.2 BP1-BP2 copy number variants exhibit regional and global brain differences compared with noncarriers. However, interpreting regional differences is challenging if a global difference drives the regional brain differences. Intraindividual variability measures can be used to test for regional differences beyond global differences in brain structure. METHODS: Magnetic resonance imaging data were used to obtain regional brain values for 1q21.1 distal deletion (n = 30) and duplication (n = 27) and 15q11.2 BP1-BP2 deletion (n = 170) and duplication (n = 243) carriers and matched noncarriers (n = 2350). Regional intra-deviation scores, i.e., the standardized difference between an individual's regional difference and global difference, were used to test for regional differences that diverge from the global difference. RESULTS: For the 1q21.1 distal deletion carriers, cortical surface area for regions in the medial visual cortex, posterior cingulate, and temporal pole differed less and regions in the prefrontal and superior temporal cortex differed more than the global difference in cortical surface area. For the 15q11.2 BP1-BP2 deletion carriers, cortical thickness in regions in the medial visual cortex, auditory cortex, and temporal pole differed less and the prefrontal and somatosensory cortex differed more than the global difference in cortical thickness. CONCLUSIONS: We find evidence for regional effects beyond differences in global brain measures in 1q21.1 distal and 15q11.2 BP1-BP2 copy number variants. The results provide new insight into brain profiling of the 1q21.1 distal and 15q11.2 BP1-BP2 copy number variants, with the potential to increase understanding of the mechanisms involved in altered neurodevelopment.


Subject(s)
Abnormalities, Multiple , Chromosome Deletion , Humans , Brain/diagnostic imaging , Magnetic Resonance Imaging , Chromosomes, Human, Pair 15 , DNA Copy Number Variations
SELECTION OF CITATIONS
SEARCH DETAIL