Preview

Health care of the Russian Federation

Advanced search

Changes in quantitative and structural mortality indicators during the COVID-19 pandemic

https://doi.org/10.47470/0044-197X-2026-70-1-29-36

EDN: tfbzea

Abstract

Background. In the third decade of the twenty-first century, mortality increased and its structure changed worldwide due to the outbreak of the COVID-19 pandemic. Much remains unclear about the impact of the pandemic on mortality parameters, including at the regional level.

The purpose of the study is to evaluate changes in quantitative and structural mortality rates in the context of the COVID–19 pandemic (using the Irkutsk Region as an example).

Materials and methods. The levels and structure of mortality in the Irkutsk region in 2010–2022 were analyzed. Mortality rates (by sex, age groups, and classes/groups of causes of death) were calculated using data from Federal State Statistics Service and the Demographic Research Center of the Russian Economic School. Standardized indicators were used in studies of mortality trend, and absolute data was used in the study of structures.

Results. The pandemic has interrupted the positive trend in the mortality reduction. In the Irkutsk region, the standardized mortality rate for men in 2021 increased by 25.1%, for women — by 40.6% compared to the level of 2019. The increase in mortality among men occurred by 80.0, 30.8 and 2.8% in the classes of respiratory, digestive and non–classified diseases, while among women it increased by 179.2, 37.3 and 10.9%. In 2021 the standardized mortality rates due to coronavirus infection were: 397.660/0000 among men (42.9% higher than the average in the Russian Federation), 255.760/0000 among women (25.8% higher). The increase in age-related mortality rates in 2020–2021 was found to occur starting from the group of the average working age (30–44 years), and at a rate increasing with increasing age.

Research limitations: population-based epidemiological study based on statistical data.

Conclusion. In the region, coronavirus infection has had an adverse impact on the course of various forms of somatic pathology, which has led to higher levels of overall mortality and mortality in certain classes and groups of diseases.

Compliance with ethical standards. This study does not require a conclusion from the Local Ethics Committee.

Contribution of the authors:
Leshchenko Ya.A. — concept and design of research, collection and processing of material, writing, editing;
Lisovtsov A.A. — collection and processing of material, statistical data processing, writing, editing.
All co-authors are responsible for approving the final version of the article and ensuring the integrity of all parts of the article.

Funding. The study had no sponsorship.

Conflict of interest. The authors declare the absence of any conflicts of interest regarding the publication of this paper.

Received: March 26, 2025 / Revised: April 28, 2025 / Accepted: December 17, 2025 / Published: March 4, 2026

About the Authors

Yaroslav A. Leshchenko
East Siberian Institute of Medical and Ecological Research
Russian Federation

DSc (Medicine), Professor, leading researcher, Laboratory of ecological and hygienic research, East Siberian Institute of Medical and Ecological Research, Angarsk, 665827, Russian Federation

e-mail: yaleshenko@gmail.com



Aleksandr A. Lisovtsov
East Siberian Institute of Medical and Ecological Research
Russian Federation

PhD (Medicine), senior researcher, Laboratory of ecological and hygienic research, East Siberian Institute of Medical and Ecological Research, Angarsk, 665827, Russian Federation

e-mail: a.a.lisovtsov@gmail.com



References

1. Druzhinin P.V., Molchanova E.V., Podlevskikh Yu.L. COVID-19 pandemic effects on mortality rates in Russian regions. Trudy Karel’skogo nauchnogo tsentra Rossiiskoi akademii nauk. 2021; (7): 116–28. https://doi.org/10.17076/them1421 https://elibrary.ru/zlppmj (in Russian)

2. Kislitsyna O.A. Long-term adverse effects of the COVID-19 pandemic on population health. Sotsial’nye aspekty zdorov’ya naseleniya. 2021; 67(4): 2. https://doi.org/10.21045/2071-5021-2021-67-4-2 https://elibrary.ru/qtidyw (in Russian)

3. Ryazantsev S.V., Ivanova A.E., Arkhangelsky V.N. Increasing depopulation in Russia in the context of the COVID-19 pandemic: regional features. Vestnik Yuzhno-Rossiiskogo gosudarstvennogo tekhnicheskogo universiteta (NPI). Seriya: sotsial’no-ekonomicheskie nauki. 2021; 14(2): 7–20. https://doi.org/10.17213/2075-2067-2021-2-7-20 https://elibrary.ru/wcyzng (in Russian)

4. Kuznetsova R.S. Excess mortality in Samara region during COVID-19 pandemic. Ul’yanovskii mediko-biologicheskii zhurnal. 2023; (1): 91–103. https://doi.org/10.34014/2227-1848-2023-1-91-103 https://elibrary.ru/guezna (in Russian)

5. Sabgayda T.P., Zubko A.V., Semenova V.G. Changes in the structure of death causes in the second year of the COVID-19 pandemic in Moscow. Sotsial’nye aspekty zdorov’ya naseleniya. 2021; 67(4): 1. https://doi.org/10.21045/2071-5021-2021-67-4-1 https://elibrary.ru/zdjozg (in Russian)

6. Drapkina O.M., Samorodskaya I.V., Kakorina E.P., Perkhov V.I. Methods and problems of the nosological analysis of mortality in the period of COVID-19 pandemic. Natsional’noe zdravookhranenie. 2021; 2(1): 51–8. https://doi.org/10.47093/2713-069X.2021.2.1.51-58 https://elibrary.ru/ooajex (in Russian)

7. Goroshko N.V., Patsala S.V. Excess mortality during the COVID-19 pandemic: Russian regions against the backdrop of the country. Sotsial’no-trudovye issledovaniya. 2022; (1): 103–16. https://doi.org/10.34022/2658-3712-2022-46-1-103-116 https://elibrary.ru/xairbm (In Russian)

8. Semyonova V.G., Ivanova A.E., Sabgayda T.P., Evdokushkina G.N., Zaporozhchenko V.G. The first year of the pandemic: social response in the context of causes of death. Zdravookhranenie Rossiiskoi Federatsii. 2022; 66(2): 93–100. https://doi.org/10.47470/0044-197X-2022-66-2-93-100 https://elibrary.ru/hcevmg (in Russian)

9. Kashepov A.V. Excess mortality of the population in 2020–2021. Vestnik Altaiskoi akademii ekonomiki i prava. 2021; (5–2): 200–7. https://doi.org/10.17513/vaael.1706 https://elibrary.ru/tmlxmw (in Russian)

10. Kashepov A.V. Methodology for studying excess mortality in 2020–2021. Modern Science. 2021; (5–1): 77–88. https://elibrary.ru/hahdna (in Russian)

11. Sabgayda T.P., Semenova V.G. Relationship between decline in cardiovascular mortality in 2013–2015 and change in mortality from other causes. Sotsial’nye aspekty zdorov’ya naseleniya. 2017; (5): 2. https://doi.org/10.21045/2071-5021-2017-57-5-2 https://elibrary.ru/zsvyfl (in Russian)

12. Tkachenko A.A., ed. Demographic Encyclopedia [Demograficheskaya entsiklopediya] Moscow; 2013. (in Russian)

13. Ryazantsev S.V., Ivanova A.E., Arkhangelsky V.N. Demographic situation in the Tyumen region and the contribution of the COVID-19 pandemic to its transformation. Chelovecheskii kapital. 2021; (9): 81–92. https://doi.org/10.25629/HC.2021.09.08 https://elibrary.ru/oxhate (in Russian)


Review

For citations:


Leshchenko Ya.A., Lisovtsov A.A. Changes in quantitative and structural mortality indicators during the COVID-19 pandemic. Health care of the Russian Federation. 2026;70(1):29-36. (In Russ.) https://doi.org/10.47470/0044-197X-2026-70-1-29-36. EDN: tfbzea

Views: 506

JATS XML


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0044-197X (Print)
ISSN 2412-0723 (Online)
X