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Acute fall and long-term rise in oxygen saturation in response to meditation.

Nicolò F Bernardi, Marco Bordino, Lucio Bianchi, Luciano Bernardi

Psychophysiology December 1, 2017 DOI: 10.1111/psyp.12972 (opens in new tab) via PubMed

Summary

AI-generated from the abstract

Meditation acutely lowers arterial and cerebral oxygen saturation, reduces chemoreflex sensitivity, and prolongs the RR interval, independently of respiration. In contrast, slow breathing improves heart rate variability regardless of concurrent meditation. Individuals with long-term meditation practice show higher baseline arterial and cerebral oxygen saturation, lower blood pressure, and slower baseline respiration, suggesting repeated exposure may lead to long-term adaptation through increased ventilatory efficiency and improved gas exchanges.

Study at a glance

Characteristics Controlled experiment Peer reviewed
Sample size 80
Population Adults with and without prior meditation experience
Interventions mantra meditation body scan meditation
Topics Meditation
Keywords Breathing Heart rate variability Oxygen saturation Oxygenation
Key finding Meditation acutely decreases arterial and cerebral oxygen saturation independently of respiration, while long-term practitioners show higher baseline oxygenation and lower blood pressure.

Abstract

The effects of meditation on arterial and tissue oxygenation are unknown and difficult to assess because respiration is often altered, directly or indirectly, during meditation practice. Thus, changes in respiration may affect cardiovascular responses independently from meditation. In this study, we aim to isolate the specific effect of meditation on arterial and tissue oxygenation and other cardiorespiratory indexes while systematically controlling for the role of respiration. Furthermore, we aim to clarify to what extent prior expertise in meditation practice is needed to observe reliable changes. Eighty participants, half with and half without prior meditation experience, were tested while pacing breathing at predetermined rates, in the presence or absence of mantra meditation instructions, and in a body scan meditation that did not involve controlled breathing. Continuous recordings were acquired for arterial and brain oxygenation, respiratory excursion, electrocardiogram, skin vasomotion, and blood pressure. In both groups, meditation acutely decreased arterial and cerebral oxygen saturation, reduced chemoreflex sensitivity, and prolonged the RR interval, independently of respiration. Conversely, slow breathing improved heart rate variability, independently of concurrent meditation. In addition to the immediate effects of meditation, the individuals with long-term practice of meditation had overall higher arterial and cerebral oxygen saturation, overall lower blood pressure, and slower baseline respiration. Meditation acutely lowers arterial and tissue oxygenation. A repeated exposure to this condition may lead to long-term adaptation and, through increased ventilatory efficiency and improved gas exchanges, to an increase in baseline oxygenation. Meditation induces favorable changes in cardiovascular and respiratory end points of clinical interest.

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