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Pre- and Apnoeic Oxygenation for RSI in ED

Pre- and Apnoeic High Flow Oxygenation for RApid Sequence Intubation in The Emergency Department (Pre-AeRATE): a Multicentre Randomised Controlled Trial

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03396094
Acronym
Pre-AeRATE
Enrollment
192
Registered
2018-01-10
Start date
2018-05-07
Completion date
2020-07-31
Last updated
2021-03-03

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Intubation, Oxygen Inhalation Therapy

Keywords

high flow oxygenation, rapid sequence intubation

Brief summary

Critically ill patients may need support for breathing by means of intubation, which is placement of a breathing tube into the windpipe. Rapid sequence intubation (RSI) is a method commonly used and is performed by administering medications to induce coma and muscle paralysis, followed by intubation to allow the ventilator to provide oxygen into the lungs. This procedure may be filled with potential complications. During RSI, the patient stops spontaneous breathing after medically induced muscle paralysis occurs. Adequate oxygenation before and during paralysis is crucial to increase the reserves and prolong the time that oxygen levels in the blood remain above 90%, called the safe apnoea period. If the oxygen reserves are insufficient, the blood oxygen level will drop and can lead to permanent brain damage or even death. This study aims to explore if delivering high-flow humidified oxygen at 60L/min via the nostrils would be superior to current methods of mask ventilation at 15L/min and nasal cannula at 15L/min, before and during paralysis respectively. If successful, this new method would allow for a longer safe apnoeic period and increase the chances for doctors to perform intubation successfully without the blood oxygen dropping below 90%.

Detailed description

Maintaining adequate oxygenation during rapid sequence intubation (RSI) is imperative to prevent peri-intubation adverse events that can lead to increased duration of hospital and intensive care unit stay, or prolonged vegetative state requiring long-term institutionalisation. Preliminary data from our emergency department (ED) airway registry revealed that 15% of patients experienced desaturation during intubation despite employing current best practices during RSI. In this multicentre randomised controlled trial in the ED, we aim to test the hypothesis that use of humidified high flow oxygenation via nasal cannula (HFNC) at 60L/min maintains higher oxygen saturation compared with current usual care using non-rebreather mask for preoxygenation and provides superior apnoeic oxygenation compared to the typical practice of 15L/min via standard nasal cannula. The main goal of the study would be to improve on the lowest oxygen saturation during intubation, and thereby increase the safe apnoeic time during RSI. We plan to enrol adult patients who require rapid sequence intubation due to medical, surgical or traumatic conditions in the EDs of National University Hospital and Ng Teng Fong General Hospital. Eligible patients will undergo block randomisation at equal ratio into 2 possible treatment combinations of pre-oxygenation and apnoeic oxygenation. The primary endpoint will be the lowest oxygen saturation achieved from time of administration of paralytic agent until quantitative end-tidal carbon dioxide is detected for the first intubation attempt. Higher failure rates for intubation in unfasted patients in the ED compared to fasted patients in elective settings increase the risk of aspiration if re-oxygenation is required with bag-valve-mask ventilation. Prolongation of safe apnoea time through maintenance of oxygen saturation above 90% using HFNC oxygenation during RSI could potentially change current clinical practice, improve standard of care and translate to better outcomes for patients.

Interventions

DEVICEHigh-flow nasal cannulae (HFNC) oxygenation

Delivery of 60L/min of supplemental oxygen for pre-oxygenation and apnoeic oxygenation during rapid sequence intubation using the AIRVO™ 2 Humidifier with Integrated Flow Generator (Fisher & Paykel Healthcare, Auckland, New Zealand)

DEVICENon-rebreather mask and standard nasal cannula

Pre-oxygenation using non-rebreather mask and apnoeic oxygenation via nasal cannulae at 15L/min

Sponsors

Ng Teng Fong General Hospital
CollaboratorOTHER
Singapore Clinical Research Institute
CollaboratorOTHER
National University Hospital, Singapore
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

This study consists of 2 arms (intervention and control) of parallel design. The intervention arm will receive high flow nasal cannula (HFNC) oxygenation at 60L/min for pre- and apnoeic oxygenation while the control arm will receive pre-oxygenation via non-rebreather mask and apnoeic oxygenation via nasal cannulae at 15L/min.

Eligibility

Sex/Gender
ALL
Age
21 Years to 99 Years
Healthy volunteers
No

Inclusion criteria

* Adult patients aged 21 years and above, who require RSI due to medical, surgical and traumatic conditions, in the Emergency Departments of NUH and Ng Teng Fong General Hospital (NTFGH)

Exclusion criteria

* Patients with do-not-resuscitate orders * Crash, awake or delayed sequence intubations * Patients requiring non-invasive positive pressure ventilation * Cardiac arrest * Clinical suspicion or confirmed diagnosis of base of skull fractures or severe facial trauma that precludes nasal cannula placement * Vulnerable patient populations (e.g. pregnant women, prisoners)

Design outcomes

Primary

MeasureTime frameDescription
Lowest SpO2 achieved during first intubation attemptFrom time of administration of paralytic agent until quantitative ETCO2 is detected post-intubation up to 45 minutesLowest SpO2 achieved during first intubation attempt which is defined as first attempt to insert endotracheal tube into oropharynx

Secondary

MeasureTime frameDescription
Number of attempts at intubationNumber of attempts required until successful intubation up to 45 minutes or termination of procedure, whichever is earlierNumber of attempts until successful intubation as indicated by detection of quantitative ETCO2
Safe apnoea time during intubationFrom start of paralysis to time when SpO2 drops to less than 90% up to 45 minutesDuration of apnoea where SpO2 remains ≥ 90%
Incidence of SpO2 < 90%From start of paralysis to successful intubation up to 45 minutesIncidence of SpO2 \< 90% during apnoea
Peri-intubation adverse eventsFrom induction to 15 minutes after intubationPeri-intubation adverse events defined as hypotension, hypertension, tachycardia, bradycardia, regurgitation, aspiration, cardiac arrhythmia, cardiac arrest during RSI, oropharynx or dental trauma
Length of time to successful intubationFrom induction until successful intubation as confirmed by detection of quantitative ETCO2 up to 45 minutesTime taken from induction to successful intubation attempt

Countries

Singapore

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 22, 2026