Unlocking deep relaxation: the power of rhythmic breathing on brain rhythms.
Vaibhav Tripathi, Lakshmi Bhaskar, Chhaya Kharya, Manvir Bhatia, Vinod Kochupillai
npj Mental Health Research August 23, 2025 DOI: 10.1038/s44184-025-00156-4 (opens in new tab) via PubMed
Summary
AI-generated from the abstractRhythmic breathing during Sudarshan Kriya Yoga (SKY) accentuates theta brain rhythms, enabling an easier transition to a relaxed meditative state characterized by delta-theta rhythms, reduced alpha power, and decreased aperiodic signals. These findings come from EEG data collected from 43 subjects before, after, and during various stages of the technique.
Study at a glance
| Characteristics | Observational study Peer reviewed |
|---|---|
| Sample size | 43 |
| Population | Subjects undergoing Sudarshan Kriya Yoga |
| Intervention | Sudarshan Kriya Yoga |
| Key finding | Rhythmic breathing during SKY accentuates theta rhythms (d=0.63), reduces alpha power (d=1.70), and decreases aperiodic signals (d=2.04), facilitating a relaxed meditative state. |
Abstract
The pandemic has exacerbated mental health issues across the world. The limited availability of mental health professionals is preventing many from seeking help, which highlights the need for easily available mental health care routines like yoga, breathing, and meditation. A breath-based meditation technique known as Sudarshan Kriya Yoga (SKY) harnesses the power of breath to induce deep relaxation and makes meditation easier for beginners and has proven beneficial across multiple conditions, including depression, anxiety, and hypertension. The exact EEG dynamics happening during the practice are not well understood. We collected EEG data from 43 subjects undergoing SKY and analyzed their brain rhythms before, after, and during various stages of the technique, and found that rhythmic breathing accentuates theta rhythms (d = 0.63) which allows for an easier transition to a relaxed meditative state predominant with delta-theta rhythms, reduced alpha power (d = 1.70) and aperiodic signals (d = 2.04).