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Identifying the Best Flow Setting Strategy for High-Flow Nasal Cannula

Optimizing High-flow Nasal Cannula Settings: Comparing Different Flow Approaches and Exploring Physiological Phenotyping With End-expiratory Lung Volume, Peak Tidal Inspiratory Flow and Oxygen Demand

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07007715
Enrollment
480
Registered
2025-06-06
Start date
2025-06-05
Completion date
2028-06-30
Last updated
2026-07-20

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

Conditions

Extubation Readiness, Respiratory Failure With Hypoxia

Keywords

flow rate, high flow nasal cannula, peak inspiratory flow, reintubation

Brief summary

The goal of this randomized trial is to compare four different flow-setting approaches for post-extubation use of high-flow nasal cannula (HFNC). Selecting the appropriate flow rate when initiating HFNC oxygen therapy is both crucial and challenging for clinicians, as the physiological benefits of HFNC depend significantly on the flow rate. To date, there are no guidelines or consensus on flow-rate setting and weaning for HFNC oxygen therapy. The investigators hypothesized that physiological marker-guided flow setting using peak tidal inspiratory flow (PTIF) or PaO₂/FiO₂ ratios lead to better extubation outcomes as compared to empirical flow setting of 40 L/min or 60 L/min. Participants will be randomly assigned to one of four study groups with different flow setting strategies summarized as follows: (1) Setting flow at 40 L/min, (2) Setting flow at 5 L/min above the peak tidal inspiratory flow, up to a maximum of 60 L/min. (3) Setting flow according to P/F ratio prior to extubation. Flow will be set at 60, 50 40 L/min if P/F ratio \<250 mmHg, 250-300 mmHg and \>300 mmHg, respectively. (4) Setting flow at 60 L/min.

Detailed description

High-flow nasal cannula (HFNC) is a promising intervention for post-extubation oxygen therapy, with the potential to improve oxygenation, increase end-expiratory lung volume (EELV), reduce the work of breathing, and lower the risk of reintubation. Selecting an appropriate flow rate when initiating HFNC therapy is both crucial and challenging for clinicians. Although the physiological benefits of HFNC depend significantly on the flow rate, arbitrarily applying higher flow rates without appropriate patient selection may increase the risk of barotrauma and patient discomfort. Currently, there are no established guidelines or consensus on flow-rate setting for HFNC therapy. Given the growing use of HFNC, determining the optimal flow-setting strategy is urgently needed to ensure both clinical efficacy and cost-effectiveness. This 4-arm parallel-group randomized trial aims to compare four different flow-setting approaches for post-extubation use of HFNC in extubation outcomes. The individual flow-setting strategy for each study arm is summarized as follows: (1) Setting flow at 40 L/min, (2) Setting flow at 5 L/min above the peak tidal inspiratory flow, up to a maximum of 60 L/min. (3) Setting flow according to P/F ratio prior to extubation. Flow will be set at 60, 50 40 L/min if P/F ratio \<250 mmHg, 250-300 mmHg and \>300 mmHg, respectively. (4) Setting flow at 60 L/min. In addition, this study will incorporate measurements of peak tidal inspiratory flow and EELV to highlight the physiological characteristics of individual patients. These physiological measures may serve as both explanatory variables and potential predictors of flow responders. By examining the associations among flow responders, peak tidal inspiratory flow, pre-extubation oxygen demand, and changes in EELV, we aim to develop a comprehensive understanding of the mechanisms and key factors influencing flow responsiveness during post-extubation care with HFNC.

Interventions

OTHERFlow of 40L/min

Setting flow rate at 40L/min

OTHERPeak tidal inspiratory flow (PTIF) guided

Setting HFNC flow at 5 L/min above the peak tidal inspiratory flow (PTIF), up to a maximum of 60 L/min.

OTHERPaO2/FiO2 ratio guided

Setting HFNC flow according to P/F ratio prior to extubation. Flow will be set at 60, 50 40 L/min if P/F ratio \<250 mmHg, 250-300 mmHg and \>300 mmHg, respectively.

OTHERFlow of 60L/min

Setting flow rate at 60L/min

Sponsors

National Taiwan University Hospital
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Intubated and receiving mechanical ventilation for more than 24 hours * Ready for planned extubation after passing a spontaneous breathing trial * PaO2/FiO2 \<350 mmHg on the day of extubation

Exclusion criteria

* Age \<18 years * On do-not-reintubate code * Pregnant women * Having tracheostomies * Infeasibility of using HFNC * Planning to use preventive NIV after extubation by the primary care team * Life expectancy less than one month

Design outcomes

Primary

MeasureTime frameDescription
A composite outcome of noninvasive ventilation (NIV) use or reintubation within five days after extubation5 daysA single global test of significance to compare between-group difference in the composite outcome

Secondary

MeasureTime frameDescription
Proportion of reintubation within five days after extubation5 daysA single global test of significance to compare between-group difference in proportion of reintubation within five days
Proportion of NIV use within five days after extubation5 daysA single global test of significance to compare between-group difference in proportion of NIV use within five days.
28-day mortality28 days28-day mortality
Change in PaO2/FiO2 ratio between 0 and 24th hour24 hoursChange in PaO2/FiO2 ratio between 0 and 24th hour
Change in arterial CO2 level (mmHg) between 0 and 24th hour24 hoursChange in arterial CO2 level (mmHg) between 0 and 24th hour
Proportion of ahead-of-schedule change in flow rates in 24 hours24 hoursProportion of ahead-of-schedule change in flow rates in 24 hours

Countries

Taiwan

Contacts

CONTACTSheng-Yuan Ruan, MD, PhD
syruan@ntu.edu.tw886223123456

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jul 21, 2026