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Observational Study
. 2021 Jun;76(6):798-804.
doi: 10.1111/anae.15277. Epub 2020 Nov 11.

Exploring the limits of prolonged apnoea with high-flow nasal oxygen: an observational study

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Free article
Observational Study

Exploring the limits of prolonged apnoea with high-flow nasal oxygen: an observational study

Z M Piosik et al. Anaesthesia. 2021 Jun.
Free article

Abstract

High-flow nasal oxygen is increasingly used for oxygenation during apnoea. Extending apnoea duration using this technique has mainly been investigated during minor laryngeal surgery, but it is unclear how long it can be administered for before it should be discontinued due to acidosis. We aimed to describe the dynamics of arterial blood gases during apnoeic oxygenation with high-flow nasal oxygen with jaw thrust only, to explore the limits of this technique. We included adult orthopaedic patients scheduled for general anaesthesia. After pre-oxygenation, anaesthesia with neuromuscular blockade was induced and high-flow nasal oxygen (70 l.min-1 ) was continued with jaw thrust as the only means of airway management, with monitoring of vital signs and arterial blood gas sampling every 5 minutes. Apnoeic oxygenation with high-flow nasal oxygen was discontinued when arterial carbon dioxide tension (PaCO2 ) exceeded 12 kPa or pH fell to 7.15. This technique was used in 35 patients and median (IQR [range]) apnoea time was 25 (20-30 [20-45]) min and was discontinued in all patients when pH fell to 7.15. The mean (SD) PaCO2 increase was 0.25 (0.06) kPa.min-1 but it varied substantially (range 0.13-0.35 kPa.min-1 ). Mean (SD) arterial oxygen tension was 48.6 (11.8) kPa when high-flow nasal oxygen was stopped. Patients with apnoea time > 25 minutes were significantly older (p = 0.025). We conclude that apnoeic oxygenation with high-flow nasal oxygen resulted in a significant respiratory acidosis that varies substantially on the individual level, but oxygenation was maintained.

Keywords: apnoeic oxygenation; carbon dioxide; high-flow nasal oxygen; jaw thrust; respiratory acidosis.

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References

    1. Patel A, Nouraei SAR. Transnasal Humidified Rapid-Insufflation Ventilatory Exchange (THRIVE): A physiological method of increasing apnoea time in patients with difficult airways. Anaesthesia 2015; 70: 323-9.
    1. Groves N, Tobin A. High flow nasal oxygen generates positive airway pressure in adult volunteers. Australian Critical Care 2007; 20: 126-31.
    1. Ritchie J, Williams AB, Gerard C, Hockey H. Evaluation of a humidified nasal high-flow oxygen system, using oxygraphy, capnography and measurement of upper airway pressures. Anesthesia and Intensive Care 2011; 39: 1103-10.
    1. Gustafsson IM, Lodenius Å, Tunelli J, Ullman J, Jonsson FM. Apnoeic oxygenation in adults under general anaesthesia using Transnasal Humidified Rapid-Insufflation Ventilatory Exchange (THRIVE) - a physiological study. British Journal of Anaesthesia 2017; 118: 610-7.
    1. Lyons C, Callaghan M. Apnoeic oxygenation with high-flow nasal oxygen for laryngeal surgery: a case series. Anaesthesia 2017; 72: 1379-87.

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