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FIO2 in an Adult Model Simulating High-Flow Nasal Cannula Therapy
Yusuke Chikata1, Mutsuo Onodera2, Jun Oto2
1Medical Equipment Center, Tokushima University Hospital, 2-50-1 Kuramoto, Tokushima 770-8503, Japan.
Background:
High-flow nasal cannula therapy (HFNC) is widely used for patients with acute respiratory failure. HFNC has a number of physiological effects. Although FIO is considered to be constant, because HFNC is an open system, FIO varies according to inspiratory flow, tidal volume (VT), and HFNC gas flow. We investigated the influence of HFNC gas flow and other respiratory parameters on FIO during HFNC.
Methods:
We evaluated an HFNC system and, for comparison, a conventional oxygen therapy system. The HFNC apparatus was composed of an air/oxygen blender, a heated humidifier, an inspiratory limb, and small, medium, and large nasal prongs. HFNC gas flow was set at 20, 40, and 60 L/min, and FIO was set at 0.3, 0.5, and 0.7. We measured FIO for 1-min intervals using an oxygen analyzer and extracted data for the final 3 breaths of each interval. Spontaneous breathing was simulated using a mechanical ventilator connected to the muscle compartment of a model lung. The lung compartment passively moved with the muscle compartment, thus inspiring ambient air via a ventilator limb. With a decelerating flow waveform, simulated VT was set at 300, 500, and 700 mL, breathing frequency at 10 and 20 breaths/min, and inspiratory time at 1.0 s.
Results:
With HFNC gas flow of 20 and 40 L/min, at all set FIO values, inspiratory oxygen concentration varied with VT (P < .001). As the set value for FIO increased, the difference between set FIO and measured FIO increased. Neither breathing frequency nor prong size influenced FIO .
Conclusions:
During HFNC with simulated spontaneous breathing, when HFNC gas flow was 60 L/min, measured FIO was similar to set FIO at 0.3 and 0.5, whereas at 0.7, as VT increased, measured FIO decreased slightly. However, at 20 or 40 L/min, changes in VT related with deviation from set FIO .
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