Respiratory salon as a new organizational model in healthcare
https://doi.org/10.18093/0869-0189-2024-4616
Abstract
Fundamentally new approaches to the therapy of respiratory insufficiency (RI) have been developed based on the modern understanding of its pathogenesis. A new structure “Respiratory Salon” has been designed to solve the most important clinical and methodological problems facing public health in the field related to the use of medical gases in respiratory diseases. The aim of the work was to create “Respiratory Salon” for the complex treatment of respiratory insufficiency by medical gases. Conclusion. Fundamentally new approaches to the therapy of RI have been developed based on the modern understanding of its pathogenesis and a new structure named “Respiratory salon” has been created. The positive experience of the organization of “Respiratory Salon” for correction of respiratory insufficiency by medical gases in inpatient, outpatient and, therapeutic resort conditions is presented.
About the Authors
L. V. ShogenovaRussian Federation
Lyudmila V. Shogenova, Сandidate of Medicine, Associate Professor, Department of Hospital Therapy, Pediatric Faculty
ul. Ostrovityanova 1, Moscow, 117997;
tel.: (499) 780-08-50
Competing Interests:
The authors declare no conflict of interest.
A. G. Chuchalin
Russian Federation
Alexander G. Chuchalin, Doctor of Medicine, Professor, Academician of Russian Academy of Sciences, Head of Department of Hospital Internal Medicine, Pediatric Faculty; Chairman of the Executive Board of Russian Respiratory Society
ul. Ostrovityanova 1, Moscow, 117997;
tel.: (499) 780-08-50
Competing Interests:
The authors declare no conflict of interest.
References
1. Selemir V.D., Buranov S.N., Shirshin A.S. [Modern engineering solutions of creation of the original domestic nitric oxide generator (“Tianox”)]. Pul’monologiya. 2024; 34 (3): 409–416. DOI: 10.18093/0869-0189-2024-34-3-409-416 (in Russian).
2. Chuchalin A.G. [Nitric oxide – a molecule of the XXI century]. Pul’monologiya. 2024; 34 (3): 326–333. DOI: 10.18093/0869-0189-2024-34-3-326-333 (in Russian).
3. Vanin A.F. [Influence of exogenous and endogenous nitric oxide on human and animal organism]. Pul’monologiya. 2024; 34 (3): 311–325. DOI: 10.18093/0869-0189-2024-34-3-311-325 (in Russian).
4. Kutsenko M.A. [Acute respiratory failure in patients with exacerbation of chronic obstructive pulmonary disease and its treatment with oxygen-helium mixture]: Dis. Moscow; 2000. Available at: https://rusneb.ru/catalog/000200_000018_RU_NLR_bibl_271311 [Accessed: October 27, 2024] (in Russian).
5. Shogenova L.V. [Effectiveness of therapy with heliox patients with obstructive lung diseases in acute respiratory failure]: Dis. Moscow; 2003 (In Russian). Available at: https://rusneb.ru/catalog/000199_000009_004303599/ [Accessed: November 27, 2024] (in Russian).
6. Russian Respiratory Society. [Guidelines: Use of thermal heliox (t-He/O2) in the treatment of patients with respiratory failure (respiratory distress syndrome)]. Moscow; 2018. Available at: https://spulmo.ru/download/geliy2.pdf [Accessed: November 27, 2018] (in Russian).
7. Chyong T.T., Shogenova L.V. [The use of helium-oxygen mixture for respiratory diseases]. Prakticheskaya pul’monologiya. 2021; (1): 74–79. Available at: https://atmosphere-ph.ru/modules/Magazines/articles//pulmo/pp_1_2021_74.pdf [Accessed: November, 27, 2024] (in Russian).
8. Shogenova L.V., Petrikov S.S., Zhuravel S.V. et al. [Thermal helium-oxygen mixture in the treatment algorithm of patients with COVID-19]. Vestnik Rossiyskoy akademii meditsinskikh nauk. 2020; 75 (5, Suppl.): 353–362. DOI: 10.15690/vramn1412 (in Russian).
9. Varfolomeev S.D., Panin A.A., Ryabokon A.M. et al. [Proteome of thermal heliox. High-temperature heliox does not cause cell destruction of the human respiratory system]. Terapevticheskiy arkhiv. 2020; 92 (6): 69–72. DOI: 10.26442/00403660.2020.06.000769 (in Russian).
10. Chuchalin A.G., Shogenova L.V., Selemir V.D. et al. [Method of treatment of respiratory insufficiency (hypoxemia) in patients who have undergone SARS-CoV-2 virus infection]. Patent RU No.2808497C1. 2022. Available at: https://patents.google.com/patent/RU2808497C1/ru [Accessed: November 27, 2024] (in Russian).
11. Petrikov S.S., ed. [Diagnostics and intensive care of patients with COVID-19: Guide]. Moscow: GEOTAR-Media; 2021. Available at: https://www.rosmedlib.ru/book/ISBN9785970463406.html (in Russian).
12. Ministry of Health of the Russian Federation. [The temporary guidelines: Prevention, diagnosis and treatment of the new coronavirus infection (COVID-19)]. Version 14 (Desember 27, 2021). Alailable at: https://static-0.minzdrav.gov.ru/system/attachments/attaches/000/059/041/original/ВМР_COVID-19_V14_27-12-2021.pdf [Accessed: November 27, 2024] (in Russian).
13. Shogenova L.V., Truong T.T., Kryukova N.O. et al. [Hydrogen inhalation in rehabilitation program of the medical staff recovered from COVID-19]. Kardiovaskulyarnaya terapiya i profilaktika. 2021; 20 (6): 2986. DOI: 10.15829/1728-8800-2021-2986 (in Russian).
14. Chuchalin A.G., Medvedev O.S., Shogenova L.V. et al. [Method of rehabilitation of patients who have had COVID-19]: Patent RU No.2782953. Available at: https://yandex.ru/patents/doc/RU2789253C1_20230131 [Accessed: November 27, 2024] (in Russian).
15. Svitich O.A., Baranova I.A., Kryukova N.O. et al. [Hydrogen effect on the mechanisms of mucosal immunity in patients with COVID-19]. Terapevticheskiy arkhiv. 2022; 94 (3): 372–377. DOI: 10.26442/00403660.2022.03.201398.
16. Pozdnyakova D.D., Baranova I.A., Selemir V.D., Chuchalin A.G. [Combination therapy with medical gases (nitric oxide and molecular hydrogen): safety assessment]. Pul’monologiya. 2024; 34 (1): 42–49. DOI: 10.18093/0869-0189-2024-34-1-42-49 (in Russian).
17. Chuchalin A.G., Shogenova L.V., Selemir V.D. et al. [Method of individual dose titration and assessment of the effectiveness of inhalation therapy with nitric oxide]. Patent RU No.2806806. 2023. Available at: https://patents.google.com/patent/RU2806806C1/ru [Accessed: November 27, 2024] (in Russian).
18. Chuchalin A.G., Shogenova L.V., Selemir V.D. et al. [Method of treatment of chronic obstructive pulmonary disease (COPD), the course of which is complicated by hypercapnic form of respiratory insufficiency and secondary pulmonary arterial hypertension]. Patent RU No.2808497. Available at: https://patents.google.com/patent/RU2808497C1/ru [Accessed: November 27, 2024] (in Russian).
Supplementary files
Review
For citations:
Shogenova L.V., Chuchalin A.G. Respiratory salon as a new organizational model in healthcare. PULMONOLOGIYA. 2025;35(1):118-124. (In Russ.) https://doi.org/10.18093/0869-0189-2024-4616