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Flow-synchronized Nasal IMV in Preterm Infants

Effects of Flow-synchronized Nasal Intermittent Mandatory Ventilation in Preterm Infants

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02085499
Enrollment
11
Registered
2014-03-13
Start date
2014-03-31
Completion date
2018-06-01
Last updated
2024-05-16

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

Conditions

Premature Infant Disease, Respiratory Insufficiency

Keywords

nasal ventilation, premature infants, synchronized ventilation, non-invasive respiratory support

Brief summary

The use of non-invasive methods of respiratory support to reduce complications of prolonged invasive mechanical ventilation in preterm infants has increased. The most common mode is nasal intermittent mandatory ventilation (NIMV). In NIMV, the interval between mechanical breaths is fixed and is determined by the frequency dialed by the clinician. Asynchrony between the infant's spontaneous breathing may exist since mechanical breaths delivered at fixed intervals can occur at different times over the inspiratory or expiratory phases of the infant's spontaneous breathing. Synchronized-NIMV is a mode similar to NIMV where the ventilator cycle is delivered in synchrony with the infant's spontaneous inspiration. This has been achieved by using techniques to detect the infant's spontaneous inspiration. The advantages or disadvantages of synchronized compared to non-synchronized NIMV remain to be determined. This study seeks to evaluate the effect of synchronized NIMV versus non-synchronized NIMV on ventilation and gas exchange in premature infants who require supplemental oxygen. The hypothesis is that the use of flow synchronized nasal intermittent mandatory ventilation (S-NIMV) in comparison to non-synchronized NIMV will improve ventilation and gas exchange and reduce breathing effort. The objective of the study is to compare the effect of flow synchronized-NIMV to non-synchronized-NIMV on tidal volume (VT), minute ventilation (VE), gas exchange, breathing effort, apnea and chest wall distortion in preterm neonates with lung disease.

Interventions

OTHERnon-synchronized NIMV

During the study each infant will undergo a 2-hour period of NIMV at a frequency of 30 cycles per minute. NIMV will be provided by a time cycled, pressure limited neonatal ventilator (Puritan Bennett 840, Covidien, Boulder, CO).

OTHERSynchronized NIMV

During the study each infant will undergo a 2-hour period of S-NIMV at a frequency of 30 cycles per minute. S-NIMV will be provided by a time cycled, pressure limited neonatal ventilator, with leak compensation capacity and nasal flow triggered ventilation (Puritan Bennett 840, Covidien, Boulder, CO). Synchronization will be achieved by the leak compensation software and the internal sensor of the ventilator.

Sponsors

University of Miami
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
ALL
Healthy volunteers
No

Inclusion criteria

* Preterm infants of 30 or less weeks of gestational age * Receiving NIMV * Requiring Fi02 \> 0.21 to keep Sp02 \> 90% * Parental written informed consent

Exclusion criteria

* Major congenital anomalies * Proven sepsis within 72 hours of the study * Hypotension requiring pressors within 72 hours of the study * Pneumothorax or pneumomediastinum within 72 hours of the study * Current suspected necrotizing enterocolitis, spontaneous perforation or severe abdominal distention

Design outcomes

Primary

MeasureTime frameDescription
Minute Ventilation4 hoursMeasurements of minute ventilation (VE in ml-units/min/Kg) by respiratory inductance plethysmography during flow synchronized-NIMV will be compared to measurements during non-synchronized-NIMV
Ttidal volume (VT)4 hoursMeasurements of tidal volume (VT in ml-units/Kg) by respiratory inductance plethysmography during flow synchronized-NIMV will be compared to measurements during non-synchronized-NIMV

Secondary

MeasureTime frameDescription
Arterial oxygen saturation4 hoursMeasurements of arterial oxygen saturation (%) by pulse oximetry obtained during flow synchronized-NIMV will be compared to measurements obtained during non-synchronized-NIMV
fraction of inspired oxygen4 hoursRequired fraction of inspired oxygen during flow synchronized-NIMV will be compared to measurements obtained during non-synchronized-NIMV
transcutaneous carbon dioxide tension4 hoursMeasurements of transcutaneous carbon dioxide tension (mmHg) obtained during flow synchronized-NIMV will be compared to measurements obtained during non-synchronized-NIMV

Other

MeasureTime frameDescription
Chest wall distortion by phase lag4 hoursMeasurements of inspiratory chest wall distortion (phase lag in degrees) obtained during flow synchronized-NIMV will be compared to measurements obtained during non-synchronized-NIMV
Chest wall distortion by Tcd/Vt ratio4 hoursMeasurements of inspiratory chest wall distortion (Tcd/Vt ratio) obtained during flow synchronized-NIMV will be compared to measurements obtained during non-synchronized-NIMV
apnea frequency4 hoursMeasurements of apneic respiratory pauses (#/hour) obtained during flow synchronized-NIMV will be compared to measurements obtained during non-synchronized-NIMV
Inspiratory breathing effort4 hoursMeasurements of inspiratory breathing effort obtained by esophageal manometry (cmH2O) during flow synchronized-NIMV will be compared to measurements obtained during non-synchronized-NIMV

Countries

United States

Outcome results

None listed

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