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May 9, 2026Communications Biology0 citationsOpen Access

Brain-heart interactions in late-onset major depressive disorder revealed by multimodal HRV-driven fMRI

FGF. GoffiPEPaolo EnricoPRPierluigi Reali

Key Result

Late-onset major depressive disorder was associated with altered functional MRI responses to cardiac autonomic dynamics within central autonomic network regions compared to healthy controls.

Key Points

  • This research aims to explore the connections between cardiac autonomic regulation and brain function in late-onset major depressive disorder (MDD).
  • Forty participants (20 late-onset MDD patients, 20 healthy controls) underwent simultaneous electrocardiography and resting-state fMRI.
  • Heart rate variability (HRV) data was analyzed using time-varying bivariate autoregressive modeling, driving voxel-wise fMRI analysis via general linear model.
  • Group-level analyses assessed diagnostic effects with control for age and sex.
  • Distinct patterns of brain-autonomic coupling were identified in MDD, especially in regions like the insula and cingulate gyrus.
  • The right insula consistently showed hypoactivation, negatively correlating with depression severity.
  • Altered fMRI responses to autonomic dynamics were observed, indicating potential biomarkers for cardiac autonomic dysfunction in psychiatric disorders.

Study Design

Type

Cross-Sectional (n=40)

Multicenter

No

Structured PICO

Are there altered functional brain correlates of cardiac autonomic modulation in late-onset major depressive disorder compared to healthy controls?

P
Population
40 participants (20 late-onset major depressive disorder patients, 20 healthy controls)
I
Intervention
Simultaneous electrocardiography and resting-state fMRI to assess HRV-driven brain-autonomic coupling
C
Comparator
Healthy controls
O
Outcome
Functional brain correlates of cardiac autonomic modulation (fMRI responses to HRV-derived autonomic regressors)surrogate

Integration of HRV and fMRI reveals altered brain-autonomic coupling in late-onset major depressive disorder, highlighting potential multi-organ markers of cardiac autonomic dysfunction.

Limitations

  • Exploratory nature of the study
  • Modest sample size
  • Requires replication in larger and independent cohorts

Abstract

Major depressive disorder (MDD) is a heterogeneous, systemic disease often associated with cardiac autonomic dysfunction, yet neurophysiological mechanisms linking altered autonomic regulation to brain function remain largely unexplored to date. Here, we investigate functional brain correlates of cardiac autonomic modulation in MDD by integrating heart rate variability (HRV) with brain functional magnetic resonance imaging (fMRI). Forty participants (20 late-onset MDD patients, 20 healthy controls) undergo simultaneous electrocardiography and resting-state fMRI. HRV-derived autonomic regressors representing low-frequency and parasympathetic activity are estimated using time-varying bivariate autoregressive modeling and used to drive voxel-wise fMRI analysis via a general linear model. Group-level analyses assess diagnosis effects, controlling for age and sex. Post-hoc correlations are computed between HRV-related fMRI responses and clinical severity. Distinct patterns of brain-autonomic coupling emerge in MDD. Altered fMRI responses to autonomic dynamics are observed within central autonomic network regions, including the insula, cingulate gyrus, and hippocampus. The right insula shows consistent hypoactivation across multiple autonomic contrasts, with its response negatively correlating with depression severity. These findings provide preliminary evidence of altered brain-autonomic integration in MDD, particularly within interoceptive, self-referential, and affective networks. HRV-fMRI integration emerges as a promising multimodal framework for identifying multi-organ markers of cardiac autonomic dysfunction in psychiatric disorders. Integration of HRV and fMRI reveals altered brain-autonomic coupling in late-onset major depressive disorder, particularly within the central autonomic regions, default mode, and salience networks.

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Cite This Study

Goffi et al. (2026) conducted a cross-sectional in Late-onset major depressive disorder (n=40). HRV-driven fMRI vs. Healthy controls was evaluated on Group differences in HRV-related BOLD response. Late-onset major depressive disorder was associated with altered functional MRI responses to cardiac autonomic dynamics within central autonomic network regions compared to healthy controls.

synapsesocial.com/papers/69fed19ab9154b0b82878eb2https://doi.org/10.1038/s42003-026-10156-5
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