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Feher, J. (2017). Lung Volumes and Airway Resistance. Quantitative Human Physiology (2nd ed.). An Introduction (pp. 633-641). https://doi.org/10.1016/B978-0-12-800883-6.00061-6
GBD Chronic Respiratory Disease Collaborators (2020). Prevalence and attributable health burden of chronic respiratory diseases, 1990-2017: a systematic analysis for the Global Burden of Disease Study 2017. The Lancet. Respiratory medicine, 8(6), 585-596. https://doi.org/10.1016/S2213- 2600(20)30105-3
International Organization for Standardization. (2007). Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans (ISO Standard No. 23747:2007).
International Organization for Standardization. (2009). Anaesthetic and respiratory equipment - Spirometers intended for the measurement of time forced expired volumes in humans (ISO Standard No. 26782:2009).
International Organization of Legal Metrology. (1995). Clinical electrical thermometers with maximum device (International Recommendation No. OIML R 115, ed. 1995 (E)).
International Organization of Legal Metrology. (2002). Non-invasive mechanical sphygmomanometers (International Recommendation No. OIML R 16-1, ed. 2002 (E)).
International Organization of Legal Metrology. (2020). National metrology systems - Developing the institutional and legislative framework (International Document No. OIML D 1, ed. 2020 (E)).
Ismailov, J. A. (2020). Study of pathologic changes in the cardiovascular system in patients with chronic obstructive pulmonary disease. (In Uzbek). Journal of cardiorespiratory research, 3(1), 14-17. http://dx.doi.org/10.26739/2181-0974-2020-3-2
Izoh.uz. (n.d.). An explanatory dictionary of the Uzbek language. Kimograf. https://izoh.uz/ word/kimograf
Juraev, Z. B., & Nishonov, V. X. (2018). Metrology service in the field of medicine. In Economics and Finance, Proceedings of the International scientific-practical conference under the theme of “Problems of modern science” (pp. 97-100). Namur, Belgium.
Khamidova, Z. A., & Nishonov, V. Kh. (2018). Risk management of equipment used in the medical field (In Uzbek). Standard, 1, 15-17. Tashkent.
Kulish, P. V. (2021). Problems of metrological assurance of measuring instruments for the study of external respiration parameters (In Russian). Problems of metrological support in the field of health care and production of medical devices: Proceedings of the 10th All-Russian Scientific and Technical Conference.
López-Campos, J. L., Tan, W., & Soriano, J. B. (2016). Global burden of COPD. Respirology, 21(1), 14-23. http://doi.org/10.1111/resp.12660
Mannino, D., & Buist, A. (2007). Global burden of COPD: risk factors, prevalence, and future trends. Lancet, 370(9589), 765-773. http://doi.org/10.1016/S0140-6736(07)61380-4
Miller, M. R., Hankinson, J., Brusasco, V., Burgos, F., Casaburi, R., Coates, A., Crapo, R., Enright, P., Van der Grinten, C. P. M., Gustafsson, P., Jensen, R., Johnson, D. C., MacIntyre, N., McKay, R., Navajas, D., Pedersen, O. F., Pellegrino, R., Viegi, G., & Wanger, J. (2005). Standardisation of spirometry. European Respiratory Journal, 26, 319-338. https://doi.org/10.1183/09031936.05.00034805
Muminov, N. Sh., & Nishonov, V. X. (2021). Metrological support system in the field of health care of the Republic of Uzbekistan. European Journal of Research Development and Sustainability, 2. Ispaniya
Nishonov, V. Kh. u., Badnjevich, A., & Muminov, N. Sh. (2023). Effectiveness of regulatory medical metrology in the Republic of Uzbekistan. Science and Innovative Development, 6(1), 42-53. https://dx.doi.org/10.36522/2181-9637-2023-1-6
Nishonov, V. Kh., Ismatullayev, Sh. Kh., & Muminov N. Sh. (2024). Metrological inspection of medical measuring devices. Tashkent: Innovative Development Publ.
Rakhmatullayeva, G. K. (2024). Conducting questionnaires and surveys in chronic obstructive pulmonary disease (In Uzbek). Journal of New Century Innovations, 48(1), 120-123. https://www. newjournal.org/index.php/new/article/view/11989
Rehman, A. U., Hassali, M. A. A., Muhammad, S. A., Harun, S. N., Shah, S., & Abbas, S. (2020). The economic burden of chronic obstructive pulmonary disease (COPD) in Europe: results from a systematic review of the literature. The European Journal of Health Economics: HEPAC: Health Economics in Prevention and Care, 21(2), 181-194. https://doi.org/10.1007/s10198-019-01119-1
Rodríguez-Roisin, R., & Soriano, J. (2008). Chronic obstructive pulmonary disease with lung cancer and/or cardiovascular disease. Proc Am Thorac Soc, 5(8), 842-847. http://doi.org/10.1513/ pats.200807-075
The World Health Organization (2024). Chronic obstructive pulmonary disease (COPD). https://www.emro.who.int/health-topics/chronic-obstructive-pulmonary-disease-copd/index.html
Uzbek Agency for Technical Regulation (2023). Spirometers, spirographs and spiroanalyzers. State standard. Methods and means of comparison (No. OzDSt 3655:2023).
Van de Hei, S. J., Flokstra-de Blok, B. M. J., Baretta, H. J., Doornewaard, N. E.. Van der Molen, T., Patberg, K. W., Ruberg, E. C. M., Schermer, T. R. J., Steenbruggen, I., Van den Berg, J. W. K., & Kocks, J. W. H. (2020). Quality of spirometry and related diagnosis in primary care with a focus on clinical use. NPJ Prim. Care Respir. Med., 30, 22. https://doi.org/10.1038/s41533-020-0177-z
Wu, Z., Huang, R., Zhong, L., Gao, Y., & Zheng, J. (2022). Technical performance analysis of different types of spirometers. BMC Pulmonary Medicine, 22(23). https://doi.org/10.1186/s12890- 021-01752-8