A topologically shifted WM functional connectome structure in adolescent MDD is revealed, providing new clues to aid in understanding the pathophysiology of its pathophysiology.
Abstract
Abstract Background Adolescence is a critical period for brain network remodeling and the onset of major depressive disorder (MDD); however, white matter (WM) functional topology in adolescent MDD remains underexplored. Given that WM functional signals reflect meaningful neural activity and are disrupted in psychiatric disorders, this study aimed to characterize WM functional connectome alterations in adolescents with MDD and examine their clinical associations. Methods Resting-state fMRI data were obtained from a cohort of adolescents with MDD (n = 320) and healthy controls (HCs, n = 144), as well as from an independent replication cohort. Following the construction of thresholded WM functional networks, graph-theoretical analyses were used to calculate global topological properties. Canonical correlation analysis (CCA) was used to examine associations between topology and clinical symptoms, while exploratory classification assessed their discriminative information and generalizability. Furthermore, subgroup analyses were conducted to evaluate the effects of a history of suicide attempt, non-suicidal self-injury, childhood trauma, and sex. Results Compared with HCs, adolescent MDD exhibited significant reductions in the clustering coefficient, characteristic path length, and local efficiency. CCA identified distinct covariation patterns: reduced global integration was linked to severe suicidal ideation and depressed mood, while impaired local segregation was associated with vegetative symptoms such as weight loss and insomnia. Subgroup analyses revealed significant sexual dimorphism, with male patients demonstrating more severe topological impairments than females. A similar pattern was observed in the independent replication cohort. The classification analysis achieved above-chance accuracy (69.6 and 60% in the two cohorts). Conclusions Our results reveal a topologically shifted WM functional connectome structure in adolescent MDD, providing new clues to aid in understanding the pathophysiology of its pathophysiology.
Abstract Background The habenula is a key region involved in mood and sleep regulation and is critically implicated in major depressive disorder (MDD). Aims & Objectives This imaging–genetics study aimed to characterize the relationships among genetic variation, habenula-centered brain connectivity, and clinical featur...
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BACKGROUND
Major depressive disorder (MDD) is consistently associated with an elevated risk of suicidal behaviours, including non-suicidal self-injury (NSSI). Neuroimaging evidence suggests that MDD patients with NSSI exhibit alterations in both brain structure and function, warranting further investigation into the un...
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BACKGROUND
Suicidal ideation (SI) is common in patients with major depressive disorder (MDD) and may represent a clinically meaningful phenotype within MDD rather than merely a marker of more severe depressive symptoms. SI may involve disturbances in affective regulation, cognitive control, reward valuation, self-refer...
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The incidence and clinical manifestations of major depressive disorder (MDD) differ between sexes. This implies distinct neuropathological mechanisms. This study aimed to investigate sex-specific brain patterns in MDD by stratifying patients according to both sex and disease course.
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Major depressive disorder (MDD) involves network‐level abnormalities that may reflect dysfunction in catecholaminergic nuclei, particularly the substantia nigra (SN) and locus coeruleus (LC), which regulate cortical gain and signal‐to‐noise ratio. However, whether MRI‐derived SN/LC phenotypes are linked to depressive s...
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