Physiological Effects of a New Interface on Lung Ventilation and Gas Distribution
Acute Respiratory Failure
About this trial
This is an interventional treatment trial for Acute Respiratory Failure
Eligibility Criteria
Inclusion Criteria:
- presence of hypoxemic Acute Respiratory Failure
- absence of history of chronic respiratory failure or moderate-to-severe cardiac insufficiency
Exclusion Criteria:
- reduced level of consciousness, as indicated by a Glasgow Coma Scale < 12
- severe respiratory distress (i.e. respiratory rate > 35 breaths/min)
- hemodynamic instability, (i.e. systolic arterial pressure <90 mmHg or mean systolic pressure <65 mmHg despite fluid repletion)
- need for vasoactive agents, i.e. vasopressin or epinephrine at any dosage, or norepinephrine >0.3 mcg/kg/min or dobutamine>5 mcg/kg/min
- life-threatening arrhythmias or electrocardiographic signs of ischemia
- acute respiratory failure secondary to neurological disorders, status asthmaticus, chronic obstructive pulmonary disease (COPD), cardiogenic pulmonary oedema
- presence of tracheotomy
- uncontrolled vomiting
- more than 2 acute organ failures
- body mass index >30 kg/m2
- documented history or suspicion of obstructive sleep apnoea
- facial anatomy contraindicating helmet or nasal cannula application
- contraindications to placement of EIT (i.e., pneumothorax, pulmonary emphysema, chest burns or thoracic surgery within 1 week)
- inclusion in other research protocols.
Sites / Locations
Arms of the Study
Arm 1
Arm 2
Arm 3
Active Comparator
Active Comparator
Active Comparator
High flow nasal cannula (HFNC)
Continuous Positive Airway Pressure (CPAP)
HFNC+CPAP
HFNC will be applied by means of a dedicated device (AIRVO2, Fisher & Paykel Healthcare, Auckland, New Zealand). Gas flow will be set at 50 L/min, and humidification chamber will be set at 31°C.
CPAP will be delivered through a helmet (Castar Next, Intersurgical S.p.A., Mirandola, Italy), with an adjustable Positive End-Expiratory Pressure (PEEP) valve (2.5-20 cmH2O) set at 10 cmH2O (Intersurgical S.p.A., Mirandola, Italy). The helmet will be connected to a turbine-driven ventilator (Monnal T60, Air Liquide Medical Systems, Antony, France) set to deliver oxygen-air admixture at a continuous flow rate of 60 L/min, in order to improve CO2 wash out. No heated humidification will be applied to avoid the "fog effect" in the helmet.
HFNC+CPAP consists in the contemporaneous application of HFNC and CPAP through helmet. HFNC will be set at 30 L/min, with a temperature at 31° C and 100% of relative humidity, while CPAP will be delivered through a helmet (Castar Next, Intersurgical S.p.A., Mirandola, Italy), with an adjustable Positive End-Expiratory Pressure (PEEP) valve (2.5-20 cmH2O) set at 10 cmH2O (Intersurgical S.p.A., Mirandola, Italy). The helmet will be connected to a turbine-driven ventilator (Monnal T60, Air Liquide Medical Systems, Antony, France) set to deliver oxygen-air admixture at a continuous flow rate of 60 L/min, in order to improve CO2 wash out. No heated humidification will be applied to avoid the "fog effect" in the helmet