Characteristics of External Respiratory System Parameters in School-Age Children under the Environmental Conditions of the Republic of Karakalpakstan

Authors

  • Masharipova Sevaraxon Karakalpak State University

DOI:

https://doi.org/10.47134/phms.v2i4.456

Keywords:

Respiration, Air Pollution, Health Status, School Age, Infectious Diseases

Abstract

This study is  aimed at assessing the indicators of the external respiratory system in school-aged children living under the environmental conditions of the Republic of Karakalpakstan. A cross-sectional observational study was conducted involving 300 children aged 7 to 14, using spirometry to measure lung vital capacity (VLC) and peak expiratory flow rate (PEFR), pulse oximetry to assess blood oxygen saturation (SpO₂), and structured questionnaires to collect data on environmental and behavioral factors. The results showed that around 60% of the participants had reduced VLC and PEFR, and the average SpO₂ was 95%, indicating early signs of respiratory dysfunction. Environmental factors, such as high levels of dust and agrochemical use, were significantly correlated with reduced respiratory function. Furthermore, climatic conditions like low humidity and temperature fluctuations exacerbated these effects. Social and behavioral factors, including low physical activity and poor nutrition, were also linked to respiratory impairment. Comparative analysis with other Central Asian regions revealed a 15–20% higher prevalence of respiratory disorders among Karakalpak children. The findings highlight the urgent need for preventive interventions, including enhanced air quality monitoring, promotion of physical activity, improved nutrition, and regular medical screenings. These measures are essential to reduce the risk of chronic respiratory diseases and improve long-term health outcomes for children in environmentally vulnerable areas.

References

Albrecht, K., & Schneider, L. (2022). Urban Green Spaces and Respiratory Health in Children: A German Perspective. European Environmental Pediatric Journal, 11(2), 92–105.

Anderson, P., & Lee, C. (2019). Pediatric Pulmonary Development and Environmental Stressors. Journal of Environmental Pediatrics, 33(2), 145–159.

Baymuradov, S. (2023). Prevention of Respiratory Diseases in Children. Samarkand: Medical Bulletin.

Brown, A., & Singh, T. (2022). The Burden of Pediatric Asthma in Post-Soviet Ecological Crisis Zones. Eastern European Journal of Pediatrics, 17(3), 173–188.

Chebotarev, P.A. (2007). Assessment of Children's Health in Polluted Atmospheric Conditions. Moscow: Hygiene and Sanitation.

Choi, Y., & Kim, D. (2021). Indoor Air Pollution and Lung Function in Primary School Children: A Cross-Sectional Study. Korean Journal of Child Health, 18(1), 23–31.

Cohen, J., & Miller, D. (2023). Long-Term Impact of Particulate Matter on Lung Development. Journal of Pulmonary Research, 41(1), 17–29.

Fernandez, A., & Ortega, M. (2021). School-Based Respiratory Screening Programs: A Review of Global Practices. Public Health Perspectives, 29(2), 99–113.

Hassan, A., & Dube, M. (2021). Comparative Study of Pediatric Lung Function in Urban vs. Rural Settings. African Journal of Child Health, 19(3), 145–158.

Iskandarov, T.I. (1999). The Ecological Situation and Public Health in Karakalpakstan. Tashkent: Fan.

Jackson, T., & O’Neil, P. (2020). Physical Activity and Pulmonary Function in Children: A Meta-Analysis. Journal of Child Health and Fitness, 8(2), 75–88.

Khan, M., & Ali, R. (2019). Effects of Dust and Climate on School-Aged Children in Arid Regions. Global Pediatric Health, 6(1), 1–10.

Konstantinova, L.G., Kurbanov, A.B., Atanazarov, K.M. (2001). Air Quality and Children's Health. Nukus: Fan.

Müller, H., Schmidt, T. (2023). European Trends in Pediatric Respiratory Health. Berlin: European Journal of Public Health.

Nguyen, H., & Pham, T. (2019). Environmental Interventions to Reduce Pediatric Respiratory Disease Burden: A Vietnamese Experience. Southeast Asia Public Health, 15(2), 84–97.

Oliveira, R., & Mendes, F. (2020). Pediatric Health Inequalities in Ecologically Degraded Areas: The Amazon Case. Journal of Global Pediatrics, 7(1), 58–72.

Patel, N., & Kumar, S. (2017). The Role of Nutrition in Preventing Respiratory Infections in Children. International Journal of Pediatric Nutrition, 12(1), 36–42.

Petrov, V., Kuznetsov, A. (2018). The Impact of Environmental Conditions on Children's Health in CIS Countries. Saint Petersburg: Medical Ecology.

Sharma, L., & Gupta, R. (2018). Vitamin D Deficiency and Respiratory Infections in Children: Evidence from South Asia. Asian Journal of Pediatric Medicine, 6(4), 203–217.

Sidorov, I.V., Orlova, A.N. (2021). Chronic Lung Diseases in Children in Kazakhstan and Russia. Astana: Science and Health.

Smith, J., Johnson, L. (2020). Air Pollution and Respiratory Diseases in Children. Oxford: Environmental Health Perspectives.

Thompson, R., & Adams, S. (2018). Impact of Agrochemicals on Child Respiratory Health in Rural Communities. Environmental Health Review, 24(4), 211–224.

Williams, R., Brown, K. (2022). Long-Term Effects of Air Pollution on Pediatric Lung Function. New York: Journal of Pediatric Pulmonology.

Yuldashev, A. (2020). The Impact of Climatic Conditions on Children's Health in Uzbekistan. Tashkent: Healthcare of Uzbekistan.

Zhang, W., Huang, J., & Liu, X. (2020). Association between Air Quality Index and Pediatric Emergency Visits for Respiratory Symptoms. Chinese Medical Journal, 133(3), 289–295.

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Published

2025-08-14

How to Cite

Sevaraxon, M. (2025). Characteristics of External Respiratory System Parameters in School-Age Children under the Environmental Conditions of the Republic of Karakalpakstan. Health & Medical Sciences, 2(4), 14. https://doi.org/10.47134/phms.v2i4.456

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