Lower breathing frequencies in personalized slow-paced breathing enhance relaxation and reduce arousal.
Lukas Moebus, Manuel Spitschan, Felix Ehrlenspiel
iScience June 19, 2026 DOI: 10.1016/j.isci.2026.115803 (opens in new tab) via PubMed
Summary
AI-generated from the abstractIn a randomized crossover trial with 42 university students, three personalized slow-paced breathing protocols at 40%, 60%, and 80% of each participant's spontaneous breathing frequency were compared. Lower breathing frequencies enhanced subjective relaxation and reduced physiological arousal, shown by decreased heart rate, increased heart rate variability, and increased peripheral skin temperature. Lower frequencies also shifted prefrontal neurophysiological arousal, decreasing relative delta power and increasing relative alpha and beta power. Prior experience with relaxation techniques strengthened subjective benefits, while higher anxious-depressive symptoms were linked to greater perceived stress after slow-paced breathing. Personalizing and optimizing breathing parameters may enhance relaxation and self-regulatory capacity.
Study at a glance
| Characteristics | Randomized crossover trial Peer reviewed |
|---|---|
| Sample size | 42 |
| Population | University students |
| Intervention | Slow-paced breathing |
| Duration | 5-min protocols |
| Keywords | Health sciences Physiology Psychiatry Psychology |
| Key finding | Lower breathing frequencies enhanced subjective relaxation and reduced physiological arousal, with prior relaxation experience strengthening benefits and higher anxious-depressive symptoms linked to greater perceived stress. |
Abstract
Among all vital functions, breathing is uniquely under both autonomic and volitional control. This dual control enables conscious recognition and regulation of arousal. While breathwork affects arousal and relaxation, research rarely investigates the impact of specific parameters or individual differences. In a randomized crossover trial (N = 42), university students practiced three 5-min, personalized slow-paced breathing protocols at 40%, 60%, and 80% of their spontaneous breathing frequency. Lower frequencies enhanced subjective relaxation and reduced physiological arousal, as indicated by decreased heart rate, increased heart rate variability, and increased peripheral skin temperature. Lower frequencies also induced a greater shift in prefrontal neurophysiological arousal, with decreased relative delta power and increased relative alpha and beta power. In addition, prior experience with relaxation techniques strengthened subjective benefits, whereas higher anxious-depressive symptoms were associated with greater perceived stress after slow-paced breathing. Personalization and parameter-based optimization of breathing protocols may enhance relaxation during practice and strengthen self-regulatory capacity.