Evidence-based Complementary and Alternative Medicine · 2013 · 108 citations · 32 references
Physical ActivityRespiratory EffectYogaYogic Slow BreathingBlood PressureKinesiologyApplied PhysiologyRespiratory NeurobiologyHealth SciencesHeart RateRespiration (Physiology)Human PhysiologySlow BreathingPhysiologyExercise PhysiologyPulmonary PhysiologyMedicineYoga BeginnerAnesthesiology
Slow breathing increases cardiac-vagal baroreflex sensitivity (BRS), improves oxygen saturation, lowers blood pressure, and reduces anxiety. Within the yoga tradition slow breathing is often paired with a contraction of the glottis muscles. This resistance breath "ujjayi" is performed at various rates and ratios of inspiration/expiration. To test whether ujjayi had additional positive effects to slow breathing, we compared BRS and ventilatory control under different breathing patterns (equal/unequal inspiration/expiration at 6 breath/min, with/without ujjayi), in 17 yoga-naive young healthy participants. BRS increased with slow breathing techniques with or without expiratory ujjayi (P < 0.05 or higher) except with inspiratory + expiratory ujjayi. The maximal increase in BRS and decrease in blood pressure were found in slow breathing with equal inspiration and expiration. This corresponded with a significant improvement in oxygen saturation without increase in heart rate and ventilation. Ujjayi showed similar increase in oxygen saturation but slightly lesser improvement in baroreflex sensitivity with no change in blood pressure. The slow breathing with equal inspiration and expiration seems the best technique for improving baroreflex sensitivity in yoga-naive subjects. The effects of ujjayi seems dependent on increased intrathoracic pressure that requires greater effort than normal slow breathing.
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Effect of Intrathoracic Pressure on Left Ventricular Performance
Andrew J. Buda, Michael R. Pinsky, Neil B. Ingels et al. · New England Journal of Medicine · 1979 · 806 citations
Ravinder Jerath, John W. Edry, Vernon A. Barnes et al. · Medical Hypotheses · 2006 · 530 citations · Full text
Physiological Principle, Neural Respiratory Elements, Physiological Research +12
A new approach to analysis of the arterial baroreflex.
Giovanni Bertinieri, Marco Di Rienzo, Anita Cavallazzi et al. · PubMed · 1985 · 472 citations
Hypertension, Heart Failure, Anatomy +16