Preview

Medical alphabet

Advanced search

Institute of Phthisiopulmonology of the Ministry of Health

https://doi.org/10.33667/2078-5631-2022-20-52-60

Abstract

Modern functional diagnostics methods for the respiratory system in children (Part 1. Methods based on the study of tidal breathing in children) This review provides up-to-date information on practically significant functional diagnostics methods of the respiratory system in children, taking into account their physiological capabilities. In the published first part of the review, attention is paid to methods based on the study of tidal breathing in young children (tidal breathing flow-volume, computer bronchophonography, pulse oscillometry); this information is intended for functional diagnostics doctors, pulmonologists, neonatologists and pediatricians.

About the Authors

S. Е. Dyakova
Veltischev Research and Clinical Institute for Pediatrics and Pediatric Surgery of the Pirogov Russian National Research Medical University (Research Clinical Institute of Pediatrics)
Russian Federation


E. A. Orlova
SPB GBUZ Children’s City Multidisciplinary Clinical Center for High Medical Technologies named after. K. A. Rauhfus
Russian Federation


Y. B. Klyukhina
SPbGBUZ «Consultative and diagnostic center for children» Federal State Budgetary Educational Institution of Higher Education. «St. Petersburg State Pediatric Medical University» of the Ministry of Health of the Russian Federation St. Petersburg Research
Russian Federation


T. V. Kudinova
Federal State Budgetary Institution «National Medical Research Center for Pediatric Hematology, Oncology and Immunology named after Dmitry Rogachev» of the Ministry of Health of the Russian Federation, Treatment and Rehabilitation Center «Russian Field»
Russian Federation


References

1. Frey U., Merkus P. J.F.M. Pediatric Lung Function. European Respiratory Monograph, 2010: 324; DOI: 10.1183/1025448x.erm4710.

2. Eber E., Midulla F. at al. ERS Handbook of Pediatric Respiratory Medicine, 2021: 820; DOI:10.1183/9781849841313.eph01.

3. Mizernitsky Yu.L., Tsyplenkova S. E., Melnikova I. M. Modern methods for assessing the functional state of the bronchopulmonary system in children. M.: 'Medpraktika-M', 2012; 176.

4. Dyakova S. E., Mizernitsky Yu. L. New opportunities for studying the function of external respiration in children. Rossijskij vestnik perinatologii i pediatrii. 2018; 63:(4): 79–83. DOI: 10.21508/1027-4065-2018-63-4-79-834.

5. Lukina O. F. Modern methods of studying lung function in children. Lechaschi Vrach Journal, 2003; 3:32–34.

6. Lukina O. F. Features of the study of the function of external respiration in children and adolescents. Practical pulmonology. 2017; 4:39–44.

7. Furman E. G., Koryukina I. P., Ponomareva M. S., Teplykh S. V. Evaluation of the ventilation function of the lungs in preschool children. — A guide for doctors. Permian. 2008: 29–41.

8. Frey U., Stocks J., Coates A. et al. Specifi cations for equipment used for infant pulmonary function testing. The European Respiratory Society/American Thoracic Society task force on standards for infant respiratory function testing. Eur. Respir. J. 2000; 16: 731–740.

9. Weiner D., Allen J., Panitch H. Infant pulmonary function testing. Current Opinionin Pediatrics. 2003; 15: 316–322.

10. Namazova-Baranova L. S., Turti T. V., Davydova I. V. Tidal breathing flow-volume in children of the first year of life (methodological recommendations). M., Pediatr, 2012: 32.

11. L. Duijts, E. R. van Meel, L. Moschino et al. European Respiratory Society guideline on long-term management of children with bronchopulmonary dysplasia European Respiratory Journal.2020 (55): 1900788; DOI: 10.1183/13993003.00788–2019.

12. Lavizzari A., Zannin E., Ophorst M. et al. Tidal Breathing Measurements in Former Preterm Infants: A Retrospective Longitudinal Study. J Pediatr., 2021; 230: 112–8.

13. Geppe N. A., Seliverstova N. A., Malyshev V. S., Utyusheva M. G., Starostina L. S., Ozerskaya I. V. Bronchophonographic examination of the lungs in patients with early age bronchial asthma. Pulmonology; 2008(3): 38–41.

14. Egorova V. B. Diagnostic value of computer bronchophonography in respiratory diseases in newborns. Dissertation abstract. M. 2006.

15. Pavlinova E. B., Oksenchuk T. V., Krivtsova L. A. Bronchophonograp hy as a method for predicting the outcomes of respiratory distress syndrome in preterm infants. Bulletin of Siberian medicine.2011; 10(4):123–129.

16. Pasterkamp H., Brand Paul L. P., Everard M., Garcia-Marcos L., Melbye H., Priftis K. N. Towards the standardisation of lung sound nomenclature. Eur Respir J. 2016; 47:724–732.

17. Lerhendorf Yu.A., Lukina O. F., Petrenets T. N., Delyagin V. M. Bronch ophonography in children aged 2–7 years with broncho-obstructive syndrome. Practical medicine, 2017; 2(103): 134–137.

18. Furman E. G., Yakovleva E. V., Malinin S. V. Computer analysis of respiratory noises in children with bronchial asthma. Clinical medicine. 2014;6(1):83–88.

19. Melnikova I. M., Mizernitsky Yu.L., Pavlikov A. A. Differential diagnostic value of bronchophonography in case of frequent respiratory diseases in children. Questions of practical pediatrics. 2008;3(3):11–14.

20. Geppe N. A., Malyshev V. S. Computer bronchophonography of the respiratory cycle. M: Media Sphere 2016; 108.

21. Malyshev V. S., Melnikova I. M., Mizernitsky Yu.L., Dorovskaya N. L., Pavlenko V. A., Pavlikov A. A., Udaltsova E. V. Experience in the use of computer bronchophonography in pediatric practice. Meditsinskiy sovet. 2019; 2:188–193.

22. Du Bois A. B., Brody W., Lewis D. H., Burgess B. F. Oscillation mechanics of lung and chest in man. J. Appl. Physiol. 1956; 8: 587–594.

23. Müller E., Vogel J. Measurement and model-interpretation of new parameters of lung mechanics. Z. Erkr. Atmungsorgane. 1981; 157: 340.

24. Smith H. J., Peinhold P., Goldman V. D. Forced oscillation techniqueand impulse oscillometry. Eur Respir Monogr. 2005; 10 (31): 72–105.

25. Brashier B, Salvi S. Measuring lung function using sound waves: role of the forced oscillation technique and impulse oscillometry system. Breathe (Sheffi ld, England) 2015 Mar.; 11(1): 57–65.

26. G. G. King, J. Bates, K. I. Berger et all. Technical standards for respiratory oscillometry. European Respiratory Journal. 2020, 55(2):1900753; DOI: 10.1183/13993003.00753–2019.

27. Functional diagnostics. National leadership. Chief editors: Academician of the Russian Academy of Natural Sciences N. F. Beresten, Academician of the Russian Academy of Sciences V. A. Sandrikov, Professor S. I. Fedorova, 2019; 10(6):609–17.

28. Kameneva M. Yu., Savushkina O. I., Chernyak A. V. Impulse oscillometry. In: Pulmonary Function Tests: From Theory to Practice. A guide for doctors (edited by Savushkina O. V., Chernyak A. V.). M.: STROM, 2017: 121–48.

29. Song T. W., Kim K. W., Kim E. S., Park J.-W., Sohn M. N., Kim K.-E. Utility of impulse oscillometry in young children with asthma. Ped Alland Imm. 2008: 19; 763–768. DOI: 10.1111/j.1399–3038.2008.00734.

30. Antonova (Orlova) E. A. Diagnosis of respiratory disorders in young children (3–7 years old) with bronchial asthma, according to impulse oscillometry data. Dissertation abstract. — S.-Pb.; 2004: 25.

31. Kiryukhina L. D., Antonova E. A., Zhelenina L. A. The use of impulse oscillometry to assess respiratory function in respiratory pathology in children and adults (methodological recommendations). St.-Pb., 2003: 33.

32. Chernaya L. N., Fomina O. V., Ivanova I. V. Diagnosis of early violations of the function of external respiration in children with bronchial asthma according to impulse oscillometry. Pulmonology. 2007; 3:62–68.

33. Lukina O. F., Fastovskaya A. M., Khan M. A. et al. Impulse oscillometry in the assessment of respiratory disorders in children with chronic lung diseases. Functional diagnostics in pediatrics. 2010; 2 (3): 24–28.

34. Klyukhina Yu.B., Orlova E. A., Zhelenina L. A., Ivashikina T. M. Assessment of the function of external respiration by the method of impulse oscillometry in children 8 and 11 years old who were on artifi cial lung ventilation in the early neonatal period. Functional diagnostics. 2011; 1:53–54.

35. Zapevalova E. Yu., Boytsova E. V., Speranskaya A. A., Klyukhina Yu. B. Clinical, radiological and functional consequences of bronchopulmonary dysplasia in children of preschool and primary school age depending on birth weight. Pediatrics, 2021; 100(5): 8–13.

36. Kudinova T. V., Lukina O. F., Zakharova A. Yu. The function of external respiration in children with malignant mediastinal lymphomas. Russian Journal of Pediatric Hematology and Oncology. 2019; 6(1):58.


Review

For citations:


Dyakova S.Е., Orlova E.A., Klyukhina Y.B., Kudinova T.V. Institute of Phthisiopulmonology of the Ministry of Health. Medical alphabet. 2022;(20):52-60. (In Russ.) https://doi.org/10.33667/2078-5631-2022-20-52-60

Views: 475


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


ISSN 2078-5631 (Print)
ISSN 2949-2807 (Online)