Impaired Functional Brain-Heart Interplay Sustains Depressive Symptomatology
Insights
Depression involves impaired brain-heart communication. This study reveals hyperactivity in central-to-peripheral pathways and reduced vagal-to-central input in individuals with depressive symptoms.
Area of Science:
- Neuroscience
- Psychiatry
- Cardiology
Background:
- Depressive symptoms significantly impact global mental health, affecting emotional processing.
- Emerging research links emotion generation to cardiac activity, suggesting a role for brain-heart interactions in depression.
Purpose of the Study:
- To experimentally characterize brain-heart interplay (BHI) patterns in individuals with depressive symptoms.
- To compare BHI in depressed individuals versus healthy controls regarding emotional dysregulation and processing.
Main Methods:
- Utilized a synthetic data generation model to estimate functional BHI.
- Quantified ascending (peripheral-to-central) and descending (central-to-peripheral) interactions over time.
- Studied a cohort of 72 individuals, including those with depressive symptoms and healthy controls.
Main Results:
- Depressive symptoms correlated with continuous efferent (central-to-peripheral) hyperactivity during neutral/negative emotional conditioning.
- Observed afferent (vagal-to-central) hypoactivity, specifically during negative emotional processing.
- Healthy controls showed expected ascending interplay modulation; depressed individuals exhibited descending modulation during emotional conditioning.
Conclusions:
- Depression is characterized by distinct BHI patterns, including efferent hyperactivity and afferent hypoactivity.
- Findings highlight the dysfunctional brain-heart axis in depression, offering neurophysiological insights.
- This study provides novel understanding of the systemic basis of depression through BHI analysis.
Abstract:
Depressive symptoms are a leading worldwide cause of mental disorders and disability, strongly affecting emotional processing and regulation. Leveraging recent evidence on the cardiogenic generation of emotion, we hypothesize that dysfunctional behavior in depressive symptomatology is sustained by impaired nervous-system-wise dynamics. Accordingly, this study aims to experimentally characterize functional Brain-Heart Interplay (BHI) patterns specific to emotional dysregulation and processing in subjects exhibiting depressive symptoms compared to healthy controls. Functional BHI has been estimated through a synthetic data generation model, separately modeling and quantifying ascending peripheral-to-central, and descending central-to-peripheral interaction in a time-resolved way. Results gathered from a cohort of 72 individuals indicate that depressive symptoms are associated with continuous efferent central-to-peripheral hyperactivity, particularly in neutral and negative valence conditioning, and afferent vagal-to-central hypoactivity. This hypoactivity seems to be specific to negative emotional processing. Moreover, the expected modulation of ascending interplay during emotional elicitation was detected in healthy controls only, whereas a descending central-to-peripheral modulation in response to emotional conditioning has been found associated to depressive symptomatology, for the first time. This study offers novel insights into the systemic investigation of the neurophysiological bases of depression, serving as an exemplary pathological manifestation of the dysfunctional brain-heart axis.
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