Comment on the article of R. Iu. Ovsiannikov and K. M. Lebedinskii “Correlation between changes in arterial blood oxygen partial pressure, oxygen uptake and carbon dioxide elimination by the lungs with changes in positive end expiratory pressure: a prospe
ISSN (print) 1726-9806     ISSN (online) 1818-474X
#2023-1
PDF_2023-1_145-148 (Russian)
FULL TEXT (Russian)

Keywords

Comment

How to Cite

Yaroshetskiy A.I. Comment on the article of R. Iu. Ovsiannikov and K. M. Lebedinskii “Correlation between changes in arterial blood oxygen partial pressure, oxygen uptake and carbon dioxide elimination by the lungs with changes in positive end expiratory pressure: a prospe. Annals of Critical Care. 2023;(1):145–148. doi:10.21320/1818-474X-2023-1-145-148.

Statistics

Annotation views: 1976
PDF_2023-1_145-148 (Russian) downloads: 279
FULL TEXT (Russian) downloads: 2780

Language

Social Networks

Keywords

Abstract

Comment on the article of R.Iu. Ovsiannikov and K.M. Lebedinskii “Correlation between changes in arterial blood oxygen partial pressure, oxygen uptake and carbon dioxide elimination by the lungs with changes in positive end expiratory pressure: a prospective observational study”

PDF_2023-1_145-148 (Russian)
FULL TEXT (Russian)

References

  1. Овсянников Р.Ю., Лебединский К.М. Корреляция между изменениями парциального давления кислорода в артериальной крови, поглощения кислорода и выделения углекислого газа легкими при изменении положительного давления в конце выдоха: проспективное наблюдательное исследование. Вестник интенсивной терапии им. А.И. Салтанова. 2022; 4: 36–43. DOI: 10.21320/1818-474X-2022-4-36-43 [Ovsiannikov R.Iu., Lebedinskii K.M. Correlation between changes in arterial blood oxygen partial pressure, oxygen uptake and carbon dioxide elimination by the lungs with changes in positive end expiratory pressure: a prospective observational study. Annals of Critical Care. 2022; 4: 36–43. DOI: 10.21320/1818-474X-2022-4-36-43 (In Russ)]
  2. Ручина Е.В., Шарнин А.В., Лебединский К.М. и др. Оценка функциональной остаточной емкости легких и показателя потребления кислорода во время настройки уровня ПДКВ. Анестезиология и реаниматология. 2013; 3: 51–4. [Ruchina E.V., Sharnin A.V., Lebedinskii K.M., et al. Evaluation of functional residual capacity and oxygen consumption during PEEP titration. Anesteziol Reanimatol. 2013; 3: 51–4. (In Russ)]
  3. Ярошецкий А.И., Проценко Д.Н., Резепов Н.А. и др. Настройка положительного давления конца выдоха при паренхиматозной ОДН: статическая петля «давление–объем» или транспульмональное давление? Анестезиология и реаниматология. 2014; 4: 53–9. [Yaroshetskiy A.I., Protsenko D.N., Rezepov N.A., et al. Positive end-expiratory pressure titration in acute hypoxemic respiratory failure: static pressure-volume loop or transpulmonary pressure? Anesteziol Reanimatol. 2014; 4: 53–9. (In Russ)]
  4. Marino P.L. Marino’s the ICU book. Fourth, international Edition. 2013, Wolters Kluwer/Lippincott Williams and Wilkins, pp. 1100, ISBN 978-1451121186
  5. Fick A. Uber die Messung des Blutquantums in den Herzventrikeln, Seitung der Physikalisches und Medicinisches Gesellschaft zu Würzburg. 1870; 2: 290–1.
  6. Schumacker P.T., Cain S.M. The concept of a critical oxygen delivery. Intensive Care Med. 1987; 13(4): 223–9. DOI: 10.1007/BF00265110
  7. Мандель И.А., Подоксенов Ю.К., Михеев С.Л. и др. Влияние гипоксическо-гипероксического прекондиционирования на развитие периоперационных осложнений и транспорт кислорода в коронарной хирургии с применением искусственного кровообращения. Анестезиология и реаниматология. 2018; 63(1): 38–45. DOI: 10.18821/0201-7563-2018-63-1-38-45 [Mandel I.A., Podoksenov Yu.K., Mikheev S.L., et al. Influence of hypoxic-hyperopic preconditioning on postoperative complications and oxygen delivery in coronary graft surgery with cardiopulmonary bypass. Anesteziol Reanimatol. 2018; 63(1): 38–45. DOI: 10.18821/0201-7563-2018-63-1-38-45 (In Russ)]
  8. Sharan M., Singh M.P. Numerical simulation of pulmonary O2 and CO2 exchange. Int J Biomed Comput. 1985; 16(1): 59–80. DOI: 10.1016/0020-7101(85)90045-5
  9. Staub N.C., Schultz E.L. Pulmonary capillary length in dogs, cat and rabbit. Respir Physiol. 1968; 5(3): 371–8. DOI: 10.1016/0034-5687(68)90028-5
  10. Presson R.G. Jr., Graham J.A., Hanger C.C., et al. Distribution of pulmonary capillary red blood cell transit times. J Appl Physiol. 1995; 79(2): 382–8. DOI: 10.1152/jappl.1995.79.2.382
  11. Staub N.C. Alveolar-arterial oxygen tension gradient due to diffusion. J App Physiol 1963; 18(4): 673–80
  12. Behazin N., Jones S.B., Cohen R.I., et al. Respiratory restriction and elevated pleural and esophageal pressures in morbid obesity. J Appl Physiol (1985). 2010; 108(1): 212–8. DOI: 10.1152/japplphysiol.91356.2008
  13. Jardin F., Brun-Ney D., Cazaux P., et al. Relation between transpulmonary pressure and right ventricular isovolumetric pressure change during respiratory support. Cathet Cardiovasc Diagn. 1989; 16(4): 215–20. DOI: 10.1002/ccd.1810160402
Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.