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Synapse
June 3, 20260 citationsOpen Access

Neurocardiology and the Bidirectional Brain-Heart Axis: Modern Concepts in Neurocardiovascular Physiology

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DLDr. Shahan LayekTKTania KhatunMNMohammad Nomanuddin

Key Result

The bidirectional brain-heart axis involves complex neural, hormonal, autonomic, and inflammatory communication pathways, with crucial implications for personalized medicine and novel therapies.

Key Points

  • The aim is to explore the bidirectional communication between the brain and heart, focusing on neurocardiology.
  • Review current literature on brain-heart interactions and physiological markers.
  • Examine the roles of emotional distress, autonomic dysfunction, and lifestyle on cardiovascular health.
  • Discuss advancements in digital health monitoring and neuroimaging technologies.
  • Identified significant impacts of emotional distress and autonomic dysfunction on heart function.
  • Highlighted the role of heart rate variability and vagal tone as physiological markers.
  • Emphasized the potential of digital biomarkers and network physiology in personalized medicine.

PICO

P
Population
Neurological and cardiovascular disorders

Abstract

The human brain and cardiovascular system are intimately interrelated through neural, hormonal, autonomic and inflammatory communication pathways. Emerging in the scientific literature, neurocardiology is a discipline centred around the bidirectional communication between the brain and heart, known as the brain-heart axis. Contemporary advancements in neurophysiology, cardiovascular physiology, neuroimaging, artificial intelligence and wearable technology have enabled an enhanced comprehension of brain-heart relationships. Emotional distress, autonomic dysfunction, neuroinflammation, sleep disorders and lifestyle are significantly impactful on cardiovascular function; while cardiovascular disease has negative effects on cerebral circulation and neural systems. Physiological markers for brain-heart communication include heart rate variability, vagal tone and autonomic balance, along with the newest concepts such as neurocardiovascular synchrony and network physiology, along with digital biomarkers, in the new paradigm of physiology. Here we review modern concepts in neurocardiology, including the brain-heart axis anatomical and physiological structure, neurocardiovascular regulation and dysfunction, digital health monitoring, and the prospects in future studies. Understanding of brain-heart interactions may have crucial implications for the development of personalised medicine and novel therapies for neurological and cardiovascular disorders.

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Cite This Study

Layek et al. (2026) conducted a review in Neurological and cardiovascular disorders. The bidirectional brain-heart axis involves complex neural, hormonal, autonomic, and inflammatory communication pathways, with crucial implications for personalized medicine and novel therapies.

synapsesocial.com/papers/6a1fc7dcdee9eb8c0dce8783https://doi.org/10.5281/zenodo.20488008
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Neurocardiology and the Bidirectional Brain-Heart Axis: Modern Concepts in Neurocardiovascular Physiology2026
  2. 2Heart Meets Brain: Insights into Neurocardiac Pathophysiology2026
  3. 3Brain-heart interaction: direct and indirect circuits in health and diseases2026 · 2 citations
  4. 4Neurocardiology: Brain–Heart Interactions in the Heart2026
  5. 5A review on brain-heart axis physiology and its clinical implications2025 · 1 citations