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Effect of Synchronized vs. Continuous HFNC Using NAVA on WOB in Infants With BPD

Effect of Synchronized vs. Continuous High Flow Nasal Cannula Using Neurally Adjusted Ventilatory Assist on Work of Breathing in Infants With Bronchopulmonary Dysplasia

Status
Terminated
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04274192
Enrollment
1
Registered
2020-02-18
Start date
2020-12-09
Completion date
2021-01-28
Last updated
2022-05-05

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

Conditions

Bronchopulmonary Dysplasia

Brief summary

Patients will be randomized to begin the study with either NAVA-synchronized or continuous HFNC. Each patient will receive two 15-minute trials at different levels of continuous HFNC and two 15-minute trials at corresponding levels of synchronized HFNC. In synchronized HFNC, using the NIV NAVA mode on the ventilator each subject will receive a constant minimum flow, but with each neurally triggered breath (as measured with an Edi catheter), an additional flow will be given to the patient. This differs from continuous HFNC in which the subject receives a constant flow without variation. Subjects will be observed during the entirety of these trials. Values for the primary and secondary outcomes will be monitored, recorded, and calculated.

Detailed description

Prior to the study period each subject will have the following monitoring equipment placed (if not already present): Edi catheter, transcutaneous monitor (TCM4, Radiometer, Brea, CA, USA) to measure CO2 and O2 levels, pulse oximeter probe (MasimoSET, Irvine, CA, USA) to measure oxygen saturations and heart rate, and RIP bands (SleepSense, MFI Medical, San Diego, CA, USA) around the chest and abdomen to measure breathing movements and relative tidal volume. Each subject will be randomized on the day the study is to occur to begin with either NAVA-synchronized or continuous HFNC before crossing over to the other mode to serve as his/her own control. The same RAM cannula will be used in both study arms and will provide a leak of 60-80% as recommended by the product manual. The delivery of high flow during both synchronized and continuous HFNC will be given at two commonly provided levels of high flow: 6 LPM and 8 LPM, given in the same order in each mode (6 LPM then 8 LPM). Each subject will receive 15-minute trials of each mode-level combination, for a total of four trials. During each trial, the first 10 minutes will be used for stabilization, and the last 5 minutes will be used for data collection, as has been done in previous trials. Thus, the mode-level combinations of the trials will be as follows: for infants randomized to begin with synchronized support: synchronized-6 LPM, synchronized-8 LPM, unsynchronized-6 LPM, unsynchronized-8 LPM. For infants randomized to begin with unsynchronized support: unsynchronized-6 LPM, unsynchronized-8 LPM, synchronized-6 LPM, unsynchronized-8 LPM. The flows described in the NAVA-synchronized trials refer to the peak flow provided during inspiration. A baseline flow rate of 2 LPM will be provided expiration in these trials (using the PEEP setting corresponding to the appropriate flow rate). During the unsynchronized trials, the continuous high flow rate will be provided (as is common practice with the use of HFNC). During the NAVA-synchronized HFNC trials, the Edi trigger will be set to 0.5 microvolts, apnea time to 5 seconds, back up rate to 10 breaths per minute, and backup pressure settings will be set to provide an estimated peak flow of 6 or 8 LPM according to the designated trial (again, using the pressure setting corresponding to the appropriate flow rate). During NAVA-synchronized HFNC, the NIV NAVA mode will be set in such a way that synchronized HFNC will be provided. A minimal end-expiratory flow of 2 LPM will be provided using the positive end expiratory pressure (PEEP) setting in the NIV NAVA mode on the ventilator. The PEEP setting corresponding to 2 LPM via the pneumotachograph will be used. In order to deliver the desired peak flow rate with each neurally-triggered breath, a NAVA level of 15 cmH2O/μV will be set, then the maximum pressure setting that corresponds to the desired flow rate using the pneumotachograph will be used for the study. The subject will thus be provided with synchronized HFNC. This contrasts with the constant-flow trials when subjects will receive a constant and non-synchronized flow using the HFNC software on the ventilator. Servo-u ventilators and Servo Tracker Software (Maquet Critical Care, Solna, Sweden) will be used in order to track Edi signal. The MP100 Biopac data acquisition (Biopac Systems Inc., Goleta, CA, USA) will be used to collect data from the monitoring devices. HFNC will be delivered using appropriately sized RAM cannula to allow for air leak around the subject's nares. Persistent bradycardia (less than 100 beats per minutes), desaturation (\<85%), or hypercarbia (transcutaneous CO2 \>70) will result in cessation of the study.

Interventions

OTHERSynchronized HFNC at 6 liters per minute (LPM)

HFNC given in synchrony with the subject's own respiratory effort using NAVA at 6 LPM

OTHERContinuous HFNC at 6 liters per minute (LPM)

Standard HFNC therapy at 6 LPM

OTHERSynchronized HFNC at 8 liters per minute (LPM)

HFNC given in synchrony with the subject's own respiratory effort using NAVA at 8 LPM

OTHERContinuous HFNC at 8 liters per minute (LPM)

Standard HFNC therapy at 8 LPM

Sponsors

University of Arkansas
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
28 Days to 1 Years
Healthy volunteers
No

Inclusion criteria

* Chronological age greater than 28 days * Gestational age at birth less than 32 weeks and 6 days * Diagnosis of BPD (supplemental oxygen requirement for greater than or equal to 28 days) * Currently receiving noninvasive ventilation support (NIV NAVA, NIPPV, nCPAP, HFNC)

Exclusion criteria

* Major congenital anomalies of the heart and lungs * Post menstrual age greater than 50 weeks 0 days * Oxygen requirement greater than 40%

Design outcomes

Primary

MeasureTime frameDescription
Work of Breathing15 minutesestimated using swing Edi

Secondary

MeasureTime frameDescription
Uncalibrated Tidal Volume15 minutesas estimated using data from respiratory plethysmography bands
FiO2 Requirement15 minutesthe amount of oxygen patient requires during the study
Thoracoabdominal Asynchrony15 minutesestimated by phase angle calculated by data obtained from respiratory inductance plethysmography bands
Transcutaneous Oxygen Level15 minutesusing a transcutaneous oxygen monitor
Transcutaneous Carbon Dioxide Level15 minutesusing a transcutaneous carbon dioxide monitor
Oxygen Saturation15 minutesmeasured by pulse oximetry

Countries

United States

Participant flow

Recruitment details

Only one participant was enrolled. The study was subsequently stopped. Reasons: 1. Lengthy study recruitment pause due to COVID 2. Principal investigator left the institution. 3. Insufficient staff to revise protocol and continue study. 4. Continuation of study would require significant protocol revision due to flow/pressure/ventilator interactions for this trial.

Participants by arm

ArmCount
Synchronized HFNC First
Subjects will first receive HFNC synchronized to his/her own efforts via NAVA at 6 LPM followed by continuous HFNC at 6 LPM and then HFNC synchronized to his/her own efforts via NAVA at 8 LPM followed by continuous HFNC at 8 LPM
1
Continuous HFNC First
Subjects will first receive continuous HFNC at 6 LPM followed by HFNC synchronized to his/her own efforts via NAVA at 6 LPM and then continuous HFNC at 8 LPM followed by HFNC synchronized to his/her own efforts via NAVA at 8 LPM.
0
Total1

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyProtocol Violation10

Baseline characteristics

CharacteristicSynchronized HFNC FirstTotalContinuous HFNC First
Age, Continuous56 days56 days
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Black or African American
0 Participants0 Participants0 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
1 Participants1 Participants0 Participants
Region of Enrollment
United States
1 participants1 participants
Sex: Female, Male
Female
0 Participants0 Participants0 Participants
Sex: Female, Male
Male
1 Participants1 Participants0 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 10 / 0
other
Total, other adverse events
1 / 10 / 0
serious
Total, serious adverse events
0 / 10 / 0

Outcome results

Primary

Work of Breathing

estimated using swing Edi

Time frame: 15 minutes

Population: Only one patient was enrolled, but that subject did not complete the study due to a protocol violation related to a lack of protocol feasibility with the equipment available. Therefore, there are no outcome data.

Secondary

FiO2 Requirement

the amount of oxygen patient requires during the study

Time frame: 15 minutes

Population: Only one patient was enrolled, but that subject did not complete the study due to a protocol violation related to a lack of protocol feasibility with the equipment available. Therefore, there are no outcome data.

Secondary

Oxygen Saturation

measured by pulse oximetry

Time frame: 15 minutes

Population: Only one patient was enrolled, but that subject did not complete the study due to a protocol violation related to a lack of protocol feasibility with the equipment available. Therefore, there are no outcome data.

Secondary

Thoracoabdominal Asynchrony

estimated by phase angle calculated by data obtained from respiratory inductance plethysmography bands

Time frame: 15 minutes

Population: Only one patient was enrolled, but that subject did not complete the study due to a protocol violation related to a lack of protocol feasibility with the equipment available. Therefore, there are no outcome data.

Secondary

Transcutaneous Carbon Dioxide Level

using a transcutaneous carbon dioxide monitor

Time frame: 15 minutes

Population: Only one patient was enrolled, but that subject did not complete the study due to a protocol violation related to a lack of protocol feasibility with the equipment available. Therefore, there are no outcome data.

Secondary

Transcutaneous Oxygen Level

using a transcutaneous oxygen monitor

Time frame: 15 minutes

Population: Only one patient was enrolled, but that subject did not complete the study due to a protocol violation related to a lack of protocol feasibility with the equipment available. Therefore, there are no outcome data.

Secondary

Uncalibrated Tidal Volume

as estimated using data from respiratory plethysmography bands

Time frame: 15 minutes

Population: Only one patient was enrolled, but that subject did not complete the study due to a protocol violation related to a lack of protocol feasibility with the equipment available. Therefore, there are no outcome data.

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026