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Decreased CO2 saturation during circular breathwork supports emergence of altered states of consciousness

Martha N. Havenith, Max Leidenberger, Jelena Brasanac, Mafalda Corvacho, Inês Carmo Figueiredo, Leonie Schwarz, Malin V. Uthaug, Simona Rakusa, Marijan Bernardic, Liliana Vasquez-Mock, Sergio Pérez Rosal, Robin Carhart-Harris, Stefan M. Gold, Henrik Jungaberle, Andrea Jungaberle

Research Square February 22, 2024 preprint DOI: 10.21203/rs.3.rs-3976380/v1 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Observational study
Interventions Holotropic Breathwork Consciously-Connected breathwork
Topics Altered states of consciousness Breathwork
Keywords Circular breathwork Respiration Breathing techniques Profound altered states Unique mental experiences Conscious awareness Expanded awareness Carbon dioxide Co2 levels Co2 saturation Reduced co2 Hypocapnia Physiological mechanisms Physiology Body's response Biological processes Physiological effects
Citations 3
Key findings A reduction in end-tidal CO2 pressure due to deliberate hyperventilation is instrumental in catalyzing altered states of consciousness during circular breathwork, and these states are comparable to those produced by psychedelics.

Abstract

Abstract Altered states of consciousness (ASCs), induced e.g. by psychedelics, show great potential to treat widespread mental health disorders like depression and PTSD. However, access to such treatments is restricted by legal, medical, and financial barriers. Here, we explore the potential of circular breathwork to serve as an accessible, non-pharmacological alternative to engage similar therapeutic processes. Scientific studies investigating the mental health effects of breathwork are only just emerging and the underlying physiological and psychological mechanisms are largely unknown. In this study, we address these questions by tracking physiological and experiential dynamics throughout a breathwork session, comparing two popular forms of breathwork: Holotropic Breathwork® and Consciously-Connected breathwork. We show that a reduction in end-tidal CO2 pressure due to deliberate hyperventilation is instrumental in catalyzing ASCs during breathwork. ASCs evoked by breathwork were comparable to those produced by psychedelics, and their depth predicted psychological and physiological follow-on effects, including improved well-being and a reduction of depressive symptoms. Moreover, different breathwork formats produced highly similar physiological, experiential and psychological outcomes. These results outline physiological boundary conditions for ASCs to arise in a non-pharmacological context, shedding light on the functional mechanisms of breathwork as well as its potential as a psychotherapeutic tool.

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