Autonomic Non-Responsiveness in HRV Biofeedback: A Narrative Conceptual Review and Future Directions for AI-Guided Closed-Loop Adaptive Systems
Review article, 2026

Heart rate variability (HRV) is widely used as a non-invasive marker of autonomic regulation and physiological adaptability, with relevance across cardiovascular, metabolic, neuropsychiatric, and stress-related conditions. HRV biofeedback has emerged as a non-pharmacological intervention intended to influence autonomic function through paced breathing, resonance-frequency training, and real-time physiological feedback. Although this approach has shown promise in improving stress regulation, emotional symptoms, autonomic balance, and selected cardiovascular outcomes, its effects are not consistent across individuals or clinical states. The reasons for this variability remain insufficiently conceptualized. In this narrative conceptual review, we propose the concept of autonomic non-responsiveness during HRV biofeedback as a descriptive framework for situations in which expected autonomic engagement is weakened, absent, or fails to translate into meaningful physiological or clinical benefit. We discuss potential contributors to non-response, including reduced autonomic flexibility, impaired baroreflex function, disease burden, fatigue, stress-related overload, dysfunctional breathing, methodological limitations, and cognitive-behavioral constraints. We then consider the clinical implications of recognizing non-response as a potentially informative state rather than a simple negative outcome. Finally, we outline a future research agenda focused on operational definition, candidate biomarkers, temporal characterization, and minimally adaptive closed-loop systems.

autonomic non-responsiveness

heart rate variability

personalized intervention

autonomic regulation

closed-loop biofeedback

baroreflex

physiological adaptability

HRV biofeedback

resonance breathing

artificial intelligence

Author

Alexandru Burlacu

Institute of Cardiovascular Diseases “Prof. Dr. George I.M. Georgescu”

University of Medicine and Pharmacy "Grigore T Popa" Iasi

Crischentian Brinza

University of Medicine and Pharmacy "Grigore T Popa" Iasi

Adrian Iftene

Alexandru Ioan Cuza University

Roxana Elena Bogdan-Goroftei

Universitatea Dunarea de Jos din Galati

Oana Geman

Chalmers, Computer Science and Engineering (Chalmers), Data Science and AI

University of Gothenburg

Medicina (Kaunas, Lithuania)

1010-660X (ISSN) 1648-9144 (eISSN)

Vol. 62 6 1102

Subject Categories (SSIF 2025)

Physiology and Anatomy

DOI

10.3390/medicina62061102

PubMed

42356115

More information

Latest update

7/6/2026 1