Microstructural functional coupling as a multimodal biomarker of emotional state transitions in bipolar disorder
Wei, L.; Wang, D.; Xue, S.; Wang, H.
Show abstract
Bipolar disorder (BD) is characterized by dynamic transitions between depressive and manic states, yet the neural mechanisms underlying these state shifts remain unclear. Here, we developed an integrative framework to quantify the microstructural-functional coupling (MFC) of the brain, which captures the distributional similarity between voxel-wise diffusion and functional features within each cortical region. Using multimodal MRI data from 72 BD patients and 65 matched healthy controls, we observed a global increase of MFC of BD, which indicates a de-similarity of brain microstructure and function. Partial least squares correlation (PLSC) analysis revealed that the principal latent component linking MFC to behavioral scores explained 67.2% of the variance, with the strongest contributions from the control and somatosensory networks. Mediation analysis demonstrated that regional MFC influenced anxiety indirectly through depressive symptoms, supporting a sequential affective transition from depression to anxiety. Moreover, macroscale gradient analysis showed that the principal MFC gradient was significantly correlated with neurotransmitter receptor distributions, including 4{beta}2, 5-HT1B, and H3. Together, these findings highlight MFC as a multimodal biomarker sensitive to emotional state transitions in BD and suggest its potential as a bridge between microstructural alterations, functional dynamics, and neurotransmitter systems.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Default Mode Network Hypoalignment of Function to Structure Correlates with Depression and Rumination 96%
- MRI-Derived Markers of Acute and Chronic Inflammatory Processes in the VTA Associated with Depression 95%
- Unraveling the Neural Landscape of Mental Disorders using Double Functional Independent Primitives (dFIPs) 94%
Similar papers in this journal
- Linking Brain Entropy to Molecular and Cellular Architecture in Psychosis 95%
- Analyzing Fractal Dimension in Electroconvulsive Therapy: Unraveling Complexity in Structural and Functional Neuroimaging 94%
- Striatal and prefrontal D2R and SERT distributions contrastingly correlate with default-mode connectivity 94%
Similar papers in this journal
- Neural Correlates of Positive and Negative Valence System Dysfunction in Adolescents Revealed by Data-Driven Parcellation and Resting-State Network Modeling 95%
- Amygdala subdivisions exhibit aberrant whole-brain functional connectivity in relation to stress intolerance and psychotic symptoms in 22q11.2DS 94%
- The effect of acute stress on the balance between goal-directed and habit networks in obsessive-compulsive disorder. 94%
Similar papers in this journal
- Multimodal fusion of structural and functional brain imaging in depression using linked independent component analysis 96%
- Mental health in the UK Biobank: a roadmap to self-report measures and neuroimaging correlates 95%
- Thalamic contributions to psychosis susceptibility: Evidence from co-activation patterns accounting for intra-seed spatial variability (μCAPs) 95%
Similar papers in this journal
- Clinical Response to Neurofeedback in Major Depression Relates to Subtypes of Whole-Brain Activation Patterns During Training 93%
- Peripheral inflammation is associated with micro-structural and functional connectivity changes in depression-related brain networks 93%
- Spatiotemporal Complexity in the Psychotic Brain 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.