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Сила дыхания. Дыхательные практики, которые меняют тело, эмоции и жизнь - Дарья Валерьевна Алберт

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Название: Сила дыхания. Дыхательные практики, которые меняют тело, эмоции и жизнь
Дата добавления: 18 февраль 2026
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Respiratory function and dyspnea in fibromyalgia syndrome. Journal of Musculoskeletal Pain, 9(1), 7-15.

Chaitow, L. (2017, January). How breath can impact fibromyalgia pain. Associated Bodywork & Massage Professionals.

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Slatkovska, L., Jensen, D., Davies, G. A. L., et al. (2006). Phasic menstrual cycle effects on the control of breathing in healthy women. Respiratory Physiology & Neurobiology, 154(3), 379-388.

Tomas-Carus, P., Branco, J. C., Raimundo, A., et al. (2018). Breathing exercises must be a real and effective intervention to consider in women with fibromyalgia: A pilot randomized controlled trial. The Journal of Alternative and Complementary Medicine, 24(8), 825-832.

Глава 10

Работа со стрессом с помощью дыхательных упражнений

Granger, C. L., Connolly, B., Denehy, L., et al. (2023). Exercise and Lung Cancer: A Narrative Review of Evidence and Future Research Directions. Journal of Thoracic Oncology, 18(4), 371-380. https://doi.org/ 10.1016/j.jtho.2023.01.025**

Li, T-t., Wang, H-y., Zhang, H., et al. (2023). Effect of breathing exercises on oxidative stress biomarkers in humans: A systematic review and meta-analysis. Frontiers in Medicine, 10, Article 1121036. https://doi.org/10.3389/fmed.2023.1121036*

Smith, R. J., & White, C. M. (2024). Antioxidant Enzyme Activity in Response to Breathing Exercises. Journal of Respiratory Health, 15(2), 123-135. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10648074/)

Stephenson, L., & Battersby, L. (2019). The Effects of Breathing Exercises on Patients with Lung Cancer. Oncology Nursing Forum, 46(3), E83-E91. https://www.ons.org/onf/46/3/effects-breathing-exercises-patients-lung-cancer**

Гипоксический тренинг

Burtscher, M., et al. (2009). Hypoxia-Induced Cardioprotection and Angiogenesis in Aging. Age (Dordrecht), 31(1), 1–13. https://link.springer.com/article/10.1007/s11357-008-9072-4

Chen, L.D., et al. (2024). Identification of key genes in chronic intermittent hypoxia-induced lung cancer progression based on transcriptome sequencing. BMC Cancer, 24(1), 41. https:// doi.org/10.1186/s12885-023-11785-3

Lundby, C., et al. (2004). Hypoxic Living and Exercise Training Alter Insulin Sensitivity in Humans. European Journal of Applied Physiology, 92, 579–586. https://link.springer.com/article/ 10.1007/s00421-004-1153-z

Navarrete-Opazo, A., & Mitchell, G.S. (2014). Effects of Intermittent Hypoxia on Human Health and Performance: A Review. Physiological Reviews, 94(2), 871–903. https:// journals.physiology.org/doi/full/10.1152/physrev.00038.2013

Park, H.Y., et al. (2014). Intermittent Hypoxia Improves Vascular Function in Older Adults. Circulation Journal, 78(6), 1386–1394. https://doi.org/10.1253/circj.CJ-13-1152

Serebrovskaya, T.V., & Xi, L. (2016). Intermittent Hypoxic Training: From Basic Mechanisms to Clinical Applications. High Altitude Medicine & Biology, 17(3), 210–219. https://doi.org/ 10.1089/ham.2016.0030

Vinit, S., et al. (2009). Intermittent Hypoxia Enhances Neuroplasticity and Functional Recovery Post-Stroke. Experimental Neurology, 217(2), 312–320. https://doi.org/10.1016/ j.expneurol.2009.03.005

Wiesner, S., et al. (2010). Intermittent Hypoxia Training Improves Glucose Homeostasis in Patients with Type 2 Diabetes. Medicine & Science in Sports & Exercise, 42(8), 1406–1415. https://journals.lww.com/acsm-msse/fulltext/2010/08000/intermittent_hypoxia_training_improves_glucose.11.aspx

Zhang, X.B., et al. (2024). MiR-210-3p enhances intermittent hypoxia-induced tumor progression via inhibition of E2F3. Sleep and Breathing, 28(2), 607–617. https://doi.org/10.1007/ s11325-023-02925-x

Глава 12

Старение и объем легких

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Cho, H. E. (2023). Understanding changes in the respiratory system with ageing. Annals of Cardiopulmonary Rehabilitation, 3(2), 27–34. https://doi.org/10.53476/acpr.2023.3.2.27

M. (2024). Diaphragm motion and lung volume changes: A comprehensive study using dynamic X-ray (DXR) imaging. Diagnostics, 14(4), 504. https://doi.org/10.3390/ diagnostics14040504

Yamashiro, Y., Yamada, K., Kaneko, T., Morimoto, S., Kataoka, M., Fujimoto, H., & Niwa.

Глава 15

Взаимосвязь сна и проблем со здоровьем

Al-Delaimy, W. K., Manson, J. E., Willett, W. C., et al. (2002). Snoring as a risk factor for type II diabetes mellitus: a prospective study. American Journal of Epidemiology, 155(5), 387–393. https://academic.oup.com/aje/article/ 155/5/387/171280*

Bubu, O. M., Andrade, A. G., Umasabor-Bubu, O. Q., et al. (2020). Obstructive sleep apnea, cognition and Alzheimer’s disease: A systematic review integrating three decades of multidisciplinary research. Sleep Medicine Reviews, 50, 101250. https:// www.alzinfo.org/articles/diagnosis/why-snoring-could-be-a-sign-of-increasedalzheimers-risk*

Shahar, E., Whitney, C. W., Redline, S., et al. (2001). Sleep-disordered breathing and cardiovascular disease: cross-sectional results of the Sleep Heart Health Study. American Journal of Respiratory and Critical Care Medicine, 163(1), 19–25. https://www.jacc.org/ doi/10.1016/S0735-1097(99)00540-9*

Shin, C., Kim, J., Lee, S., et al. (2014). Sleep fragmentation and cognitive decline: a prospective study. Neurology, 83(11), 983–989. https://pubmed.ncbi.nlm.nih.gov/ 25080590*

Wang, X., Bi, Y., Zhang, Q., et al. (2017). Habitual snoring and risk of type 2 diabetes: a meta-analysis of prospective studies. PLOS ONE, 12(4), e0175430. https:// www.ncbi.nlm.nih.gov/pmc/articles/PMC5381312*

Yaffe, K., Falvey, C. M., & Hoang, T. (2014). Connections between sleep and cognition in older adults. The Lancet Neurology, 13(10), 1017–1028. https:// pubmed.ncbi.nlm.nih.gov/25231552*

Влияние оксида азота

Lundberg, J. O., et al. (1995). High nitric oxide production in human paranasal sinuses. Nature Medicine, 1(4), 370–373. https://doi.org/10.1038/nm0495-370*

Maniscalco, M., Sofia, M., Carratù, L., et al. (2003). Humminginduced release of nasal nitric oxide and its effects on airway patency. European Journal of Clinical Investigation, 33(9), 773–775. https://doi.org/10.1046/j.1365-2362.2003.01233.x

Weitzberg, E., & Lundberg, J. O. (2002). Humming greatly increases nasal nitric oxide. American Journal of Respiratory and Critical Care Medicine, 166(2), 144–145. https:// doi.org/10.1164/rccm.2101027*

Примечания

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 Шри Сатья Нарайян Гоенка – ведущий наставник-мирянин поздней традиции бирманской медитации випассаны.

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