The risk of mortality and use of high-flow oxygen device based on respiratory distress clinical classification on emergency department admission: a retrospective study in Persahabatan Hospital, Jakarta
Pulmonology and Respiratory Medicine Department, Faculty of Medicine Universitas Indonesia, Persahabatan National Respiratory Referral HospitalJakarta, Indonesia
Pulmonology and Respiratory Medicine Department, Faculty of Medicine Universitas Indonesia, Persahabatan National Respiratory Referral HospitalJakarta, Indonesia
Pulmonology and Respiratory Medicine Department, Faculty of Medicine Universitas Indonesia, Persahabatan National Respiratory Referral HospitalJakarta, Indonesia
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Campbell ML. Terminal dyspnea and respiratory distress. Critical Care Clinics. 2004;20(3): 403–417. doi:10.1016/j. ccc.2004.03.015.CampbellML.Terminal dyspnea and respiratory distress. Critical Care Clinics. 2004;20(3): 403–417. 10.1016/j.ccc.2004.03.015.Open DOISearch in Google Scholar
Cannon J, Pamplin J, Zonies D, Mason P, Sine C, Cancio L, et al. Acute respiratory failure. Military Medicine. 2018;183(Suppl_2): 123–129. doi:10.1093/milmed/usy151.CannonJPamplinJZoniesDMasonPSineCCancioLAcute respiratory failure. Military Medicine. 2018;183(Suppl_2): 123–129. 10.1093/milmed/usy151.Open DOISearch in Google Scholar
Cabrini L, Landoni G, Bocchino S, Lembo R, Monti G, Greco M, et al. Long-term survival rate in patients with acute respiratory failure treated with noninvasive ventilation in ordinary wards. Critical Care Medicine. 2016;44(12): 2139–2144. doi:10.1097/CCM.0000000000001866.CabriniLLandoniGBocchinoSLemboRMontiGGrecoMLong-term survival rate in patients with acute respiratory failure treated with noninvasive ventilation in ordinary wards. Critical Care Medicine. 2016;44(12): 2139–2144. 10.1097/CCM.0000000000001866.Open DOISearch in Google Scholar
Matthay MA, Zemans RL, Zimmerman GA, Arabi YM, Beitler JR, Mercat A, et al. Acute respiratory distress syndrome. Nature Reviews Disease Primers. 2019;5(1): 18. doi:10.1038/s41572-019-0069-0.MatthayMAZemansRLZimmermanGAArabiYMBeitlerJRMercatAAcute respiratory distress syndrome. Nature Reviews Disease Primers. 2019;5(1): 18. 10.1038/s41572-019-0069-0.Open DOISearch in Google Scholar
Owens RL, Derom E, Ambrosino N. Supplemental oxygen and noninvasive ventilation. European Respiratory Review. 2023;32(167): 220159. doi:10.1183/16000617.0159-2022.OwensRLDeromEAmbrosinoN.Supplemental oxygen and noninvasive ventilation. European Respiratory Review. 2023;32(167): 220159. 10.1183/16000617.0159-2022.Open DOISearch in Google Scholar
Crimi C, Murphy P, Patout M, Sayas J, Winck JC. Lessons from COVID-19 in the management of acute respiratory failure. Breathe. 2023;19(1): 230035. doi:10.1183/20734735.0035-2023.CrimiCMurphyPPatoutMSayasJWinckJC.Lessons from COVID-19 in the management of acute respiratory failure. Breathe. 2023;19(1): 230035. 10.1183/20734735.0035-2023.Open DOISearch in Google Scholar
Campbell ML, Templin T, Walch J. A respiratory distress observation scale for patients unable to self-report dyspnea. Journal of Palliative Medicine. 2010;13(3): 285–290. doi:10.1089/jpm.2009.0229.CampbellMLTemplinTWalchJ.A respiratory distress observation scale for patients unable to self-report dyspnea. Journal of Palliative Medicine. 2010;13(3): 285–290. 10.1089/jpm.2009.0229.Open DOISearch in Google Scholar
Prekker ME, Feemster LC, Hough CL, Carlbom D, Crothers K, Au DH, et al. The epidemiology and outcome of prehospital respiratory distress. Academic Emergency Medicine. 2014;21(5): 543–550. doi:10.1111/acem.12380.PrekkerMEFeemsterLCHoughCLCarlbomDCrothersKAuDHThe epidemiology and outcome of prehospital respiratory distress. Academic Emergency Medicine. 2014;21(5): 543–550. 10.1111/acem.12380.Open DOISearch in Google Scholar
World Health Organization. Clinical management of COVID-19: living guideline [Internet]. WHO; 2023 [cited 25 April 2025]. Available at https://www.ncbi.nlm.nih.gov/books/NBK582435/World Health Organization. Clinical management of COVID-19: living guideline [Internet]. WHO; 2023 [cited 25 April 2025]. Available at https://www.ncbi.nlm.nih.gov/books/NBK582435/Search in Google Scholar
Rasmin M. Lecture: respiratory distress. History, development, and challenges. Jakarta: 2022.RasminM.Lecture: respiratory distress. History, development, and challenges. Jakarta: 2022.Search in Google Scholar
Rasmin M, Elhidsi M, Yahya WS. Characteristics and outcomeof acute respiratory failure patients: a cross-sectional study from the National Referral Hospital for respiratory diseases. Pneumologia. 2018;67: 77–81. EID: 2-s2.0-85050739577RasminMElhidsiMYahyaWS.Characteristics and outcomeof acute respiratory failure patients: a cross-sectional study from the National Referral Hospital for respiratory diseases. Pneumologia. 2018;67: 77–81. EID: 2-s2.0-85050739577Search in Google Scholar
World Health Organization. Global tuberculosis report [Internet]. WHO; 2024 [cited 25 April 2025]. Available at https://www. who.int/teams/global-tuberculosis-programme/tb-reports/global-tuberculosis-report-2024World Health Organization. Global tuberculosis report [Internet]. WHO; 2024 [cited 25 April 2025]. Available at https://www.who.int/teams/global-tuberculosis-programme/tb-reports/global-tuberculosis-report-2024Search in Google Scholar
Park BD, Faubel S. Acute kidney injury and acute respiratory distress syndrome. Critical Care Clinics. 2021;37(4): 835–849. doi:10.1016/j.ccc.2021.05.007.ParkBDFaubelS.Acute kidney injury and acute respiratory distress syndrome. Critical Care Clinics. 2021;37(4): 835–849. 10.1016/j.ccc.2021.05.007.Open DOISearch in Google Scholar
DeVos E, Jacobson L. Approach to adult patients with acute dyspnea. Emergency Medicine Clinics of North America. 2016;34(1): 129–149. doi:10.1016/j.emc.2015.08.008.DeVosEJacobsonL.Approach to adult patients with acute dyspnea. Emergency Medicine Clinics of North America. 2016;34(1): 129–149. 10.1016/j.emc.2015.08.008.Open DOISearch in Google Scholar
Fujishima S. Guideline-based management of acute respiratory failure and acute respiratory distress syndrome. Journal of Intensive Care. 2023;11(1): 10. doi:10.1186/s40560-023-00658-3.FujishimaS.Guideline-based management of acute respiratory failure and acute respiratory distress syndrome. Journal of Intensive Care. 2023;11(1): 10. 10.1186/s40560-023-00658-3.Open DOISearch in Google Scholar
Qadir N, Sahetya S, Munshi L, Summers C, Abrams D, Beitler J, et al. An update on management of adult patients with acute respiratory distress syndrome: an official American Thoracic Society clinical practice guideline. American Journal of Respiratory and Critical Care Medicine. 2024;209(1): 24–36. doi:10.1164/rccm.202311-2011ST.QadirNSahetyaSMunshiLSummersCAbramsDBeitlerJAn update on management of adult patients with acute respiratory distress syndrome: an official American Thoracic Society clinical practice guideline. American Journal of Respiratory and Critical Care Medicine. 2024;209(1): 24–36. 10.1164/rccm.202311-2011ST.Open DOISearch in Google Scholar
Elhidsi M, Rasmin M, Agustin R, Prasenohadi P. Vital signs and work of breathing assessment in the emergency department as predictor for acute respiratory failure in COVID-19 pneumonia. Signa Vitae. 2024;20(2): 63–69. DOI: 10.22514/sv.2024.017ElhidsiMRasminMAgustinRPrasenohadiP.Vital signs and work of breathing assessment in the emergency department as predictor for acute respiratory failure in COVID-19 pneumonia. Signa Vitae. 2024;20(2): 63–69. 10.22514/sv.2024.017Open DOISearch in Google Scholar
Sjödahl Matsson V, Ekström M. Peripheral oxygen saturation misclassifies hypoxemia. Annals of the American Thoracic Society. 2023;20(7): 1070–1073. doi:10.1513/AnnalsATS.202208-702RL.Sjödahl MatssonVEkströmM.Peripheral oxygen saturation misclassifies hypoxemia. Annals of the American Thoracic Society. 2023;20(7): 1070–1073. 10.1513/AnnalsATS.202208-702RL.Open DOISearch in Google Scholar
Rasmin M, Elhidsi M, Prasenohadi P, Putra Yahya W, Sutanto Y, Setijadi A. Underlying diseases and in-hospital mortality of acute respiratory failure patients: Indonesian prospective cohort study. Journal of Natural Science, Biology and Medicine. 2021;12(1): 22–26. doi:10.4103/jnsbm.JNSBM_127_20.RasminMElhidsiMPrasenohadiPPutra YahyaWSutantoYSetijadiA.Underlying diseases and in-hospital mortality of acute respiratory failure patients: Indonesian prospective cohort study. Journal of Natural Science, Biology and Medicine. 2021;12(1): 22–26. 10.4103/jnsbm.JNSBM_127_20.Open DOISearch in Google Scholar
Neder JA. Residual exertional dyspnea in cardiopulmonary disease. Annals of the American Thoracic Society. 2020;17: 1516–1525. doi:10.1513/AnnalsATS.202004-398FR.NederJA.Residual exertional dyspnea in cardiopulmonary disease. Annals of the American Thoracic Society. 2020;17: 1516–1525. 10.1513/AnnalsATS.202004-398FR.Open DOISearch in Google Scholar
Bellani G, Laffey JG, Pham T, Fan E, Brochard L, Esteban A, et al. Epidemiology, patterns of care, and mortality for patients with acute respiratory distress syndrome in intensive care units in 50 countries. JAMA. 2016;315(8): 788–800. doi:10.1001/jama.2016.0291.BellaniGLaffeyJGPhamTFanEBrochardLEstebanAEpidemiology, patterns of care, and mortality for patients with acute respiratory distress syndrome in intensive care units in 50 countries. JAMA. 2016;315(8): 788–800. 10.1001/jama.2016.0291.Open DOISearch in Google Scholar
Sedhai YR, Yuan M, Ketcham SW, Co I, Claar DD, McSparron JI, et al. Validating measures of disease severity in acute respiratory distress syndrome. Annals of the American Thoracic Society. 2021;18(7): 1211–1218. doi:10.1513/AnnalsATS.202007-772OC.SedhaiYRYuanMKetchamSWCoIClaarDDMcSparronJIValidating measures of disease severity in acute respiratory distress syndrome. Annals of the American Thoracic Society. 2021;18(7): 1211–1218. 10.1513/AnnalsATS.202007-772OC.Open DOISearch in Google Scholar
Xu W, Xia S, Wang H, Chen H, Wang Y. Role of platelet activating factor in pathogenesis of acute respiratory distress syndrome. Chinese Medical Journal. 2007;120(20): 1840–1844. doi:10.1097/00029330-200710020-00022.XuWXiaSWangHChenHWangY.Role of platelet activating factor in pathogenesis of acute respiratory distress syndrome. Chinese Medical Journal. 2007;120(20): 1840–1844. 10.1097/00029330-200710020-00022.Open DOISearch in Google Scholar
Zhang Y, Li B, Ning B. Evaluating IL-6 and IL-10 as rapid diagnostic tools for Gram-negative bacteria and as disease severity predictors in pediatric sepsis patients in the intensive care unit. Frontiers in Immunology. 2022;13: 1043968. doi:10.3389/fimmu.2022.1043968.ZhangYLiBNingB.Evaluating IL-6 and IL-10 as rapid diagnostic tools for Gram-negative bacteria and as disease severity predictors in pediatric sepsis patients in the intensive care unit. Frontiers in Immunology. 2022;13: 1043968. 10.3389/fimmu.2022.1043968.Open DOISearch in Google Scholar
Dhont S, Derom E, Van Braeckel E, Depuydt P, Lambrecht BN. The pathophysiology of ‘happy’ hypoxemia in COVID-19. Respiratory Research. 2020;21: 198. doi:10.1186/s12931-020-01462-5.DhontSDeromEVan BraeckelEDepuydtPLambrechtBN.The pathophysiology of ‘happy’ hypoxemia in COVID-19. Respiratory Research. 2020;21: 198. 10.1186/s12931-020-01462-5.Open DOISearch in Google Scholar