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2026, Number S1

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Rev Mex Anest 2026; 49 (S1)

Should all patients be given a low FiO2 during anesthesia? Dr. José Alfredo Zavala-Villeda

Zavala-Villeda JA
Full text How to cite this article

Language: Spanish
References: 15
Page: 375-377
PDF size: 780.85 Kb.


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REFERENCES

  1. Mattishent K, Thavarajah M, Sinha A, Peel A, Egger M, Solomkin J,et al. Safety of 80% vs 30-35% fraction of inspired oxygen in patientsundergoing surgery: a systematic review and meta-analysis. Br J Anaesth. 2019;122:311-324.

  2. Chu DK, Kim LH, Young PJ, Zamiri N, Almenawer SA, Jaeschke R,et al. Mortality and morbidity in acutely ill adults treated with liberalversus conservative oxygen therapy (IOTA): a systematic review andmeta-analysis. Lancet. 2018;391:1693-1705.

  3. Wei X, Kang X, Zhang L, Huang J, Feng W, Duan P, et al. IndividualFiO2 guided by SpO2 prevents hyperoxia and reduces postoperativeatelectasis in colorectalsurgery: a randomized controlled trial. J ClinAnesth. 2025;101:111732.

  4. Rincón DA, Benavides A. Oxígeno suplementario intraoperatorio paradisminuir morbimortalidad en anestesia general: revisión sistemática ymeta-análisis de experimentos controlados aleatorizados. Rev ColombAnestesiol. 2012;40:35-51.

  5. Duggan M, Kavanagh BP. Pulmonary atelectasis Anesthesiology.2005;102:838-854.

  6. Bigatello LM, Pesenti A. Respiratory physiology for the anesthesiologist.Anesthesiology. 2019;130:1064-1077.

  7. Park M, Jung K, Sim WS, Kim DK, Chung IS, Choi JW, et al.Perioperative high inspired oxygen fraction induces atelectasis inpatients undergoing abdominal surgery: randomized controlled trial. JClin Anesth. 2021;72:110285.

  8. Hedenstierna G, Rothen H. Atelectasis formation during anesthesia:causes and measures to prevent it. J Clin Monit Comput.2000;16:329-335.

  9. Lim CH, Han JY, Cha SH, Kim YH, Yoo KY, Kim HJ. Effects ofhigh versus low inspiratory oxygen fraction on postoperative clinicaloutcomes in patients undergoing surgery under general anesthesia: asystematic review and meta-analysis of randomized controlled trials. JClin Anesth. 2021;75:110461.

  10. Cohen B, Schacham YN, Ruetzler K, Ahuja S, Yang D, Mascha EJ, etal. Effect of intraoperative hyperoxia on the incidence of surgical siteinfections: a meta-analysis. Br J Anaesth. 2018;120:1176-1186.

  11. Wang Z, Jiang M, Huang C, Zou H, Wen Y, Ou S. A low perioperativefraction of inspired oxygen reduces the incidence of postoperativeatelectasis in patients undergoing abdominal surgery under generalanesthesia: a systematic review and meta-analysis. J Int Med Res.2025;53:3000605251392431.

  12. Grupo Español de Rehabilitación Multimodal. FiO2 y riesgo de infecciónquirúrgica. Disponible en: https://grupogerm.es/

  13. Staehr-Rye AK, Meyhoff CS, Scheffenbichler FT, Vidal Melo MF, GatkeMR, Walsh JL, et al. High intraoperative inspiratory oxygen fraction andrisk of major respiratory complications. Br J Anaesth. 2017;119:140-149.

  14. Koo CH, Park EY, Lee SY, Ryu JH. The effects of intraoperative inspiredoxygen fraction on postoperative pulmonary parameters in patients withgeneral anesthesia: a systematic review and meta-analysis. J Clin Med.2019;8:583.

  15. Kanaya A, Satoh D, Kurosawa S. Higher fraction of inspired oxygenin anesthesia induction does not affect functional residual capacityreducción after intubation: a comparative study of higher and loweroxygen concentration. J Anesth. 2013:27:385-389.




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Rev Mex Anest. 2026;49