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Regional Distribution Differences Between Neurally Adjusted Ventilatory Assist and Pressure Support Ventilation

Regional Distribution Differences Between Neurally Adjusted Ventilatory Assist and Pressure Support Ventilation

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT01504373
Enrollment
4
Registered
2012-01-05
Start date
2011-05-31
Completion date
2020-04-30
Last updated
2022-11-16

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

Conditions

Respiratory Failure

Keywords

NAVA, neurally adjusted ventilatory support, lung injury, ventilation, lung volume distribution, oxygen cost of breathing

Brief summary

Neurally adjusted ventilatory assist (NAVA) is an FDA approved mode of mechanical ventilation. This mode of ventilation is currently in routine use in adult, pediatric and neonatal intensive care units. The electrical activity of the diaphragm, the largest muscle used during inspiration, is measured. The ventilator triggers (synchronizes patient effort) and applies proportional assistance based on measured electrical activity of the diaphragm (Edi). This electrical activity is measured through a feeding tube that also has a multiple-array esophageal electrode in it. This mode of ventilation has been proven to be equivalent to pressure support ventilation (PSV). Theoretically, the breath-to-breath control offered by NAVA may not only trigger faster and synchronize better, but provide the support deemed appropriate by the central nervous center on demand. Traditionally in the intensive care unit (ICU), pressure support is applied to subject breathing spontaneously. Pressure is set to achieve a given tidal volume. The influence of changing lung compliance not only from the lung disease itself, but the interactions of the respiratory muscles can drastically change minute ventilation and contribute to hyper- or hypoventilation. These changes are typically found on assessment of end-tidal carbon dioxide (CO2), blood gas, or oxygen saturation (SpO2) monitoring; all of which are potentially preventable if we allowed the central nervous system to control the ventilator. NAVA may allow us to couple the central nervous system (neuro-coupling) with the ventilator to provide real-time proportional assistance, reduce work of breathing and apply physiologic breathing patterns.

Interventions

Subjects will be placed in the NAVA mode of ventilation.

Sponsors

Boston Children's Hospital
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
1 Months to 18 Years
Healthy volunteers
No

Inclusion criteria

* All intubated and mechanically ventilated patients in our intensive care units (ICUs) will be screened for the following inclusion criteria: 1. Age: 1 month to 18 years. 2. Mechanically ventilated for longer than 6 hours 3. Either: 1. Eligible for a spontaneous breathing mode of ventilation (not receiving chemical paralytics and has an appropriate spontaneous respiratory drive/rate given the size and condition of the patient) as determined by the team. or 2. Currently in the pressure support ventilation (PSV) or neurally adjusted ventilatory assist (NAVA) mode of ventilation

Exclusion criteria

1. Patients in which a nasal gastric or oral gastric tube is contraindicated. Examples are but not limited to: s/p esophagus, tracheal surgery, bleeding disorders, facial trauma. 2. Uncuffed endotracheal tube (ETT) 3. Cervical-spine injury that prohibits rolling the patient for electrical impedance tomography (EIT) band placement. 4. Difficult airway 5. Congenital cyanotic heart defects 6. Positive end expiratory pressure (PEEP) \> 15 cmH2O 7. Fractional inspired oxygen concentration (FIO2) \> 0.8 8. Peak inspiratory pressure (PIP) \> 30 cmH2O 9. Patients who are receiving chemical paralysis 10. History of prematurity (birth at post-conceptual age \<37 weeks)

Design outcomes

Primary

MeasureTime frameDescription
Regional distribution difference measured by electrical impedence tomography (EIT)Change from baseline regional distribution of ventilation after the 4th hour and after 8th hourRegional distribution difference measured by EIT. Area and upper to lower lung volume ratios (as determined with EIT) will be the primary data analyzed. Global and regional filling of the lung will be compared during pressure support ventilation and neurally adjusted ventilatory assist.
Oxygen and metabolic cost of breathingChange from baseline oxygen cost of breathing and carbon dioxide production after the 4th hour and after the 8th hourOxygen consumption (VO2), carbon dioxide production (VCO2), respiratory quotient (RQ), and Work of breathing (VO2/time) will be measured and compared between baseline, pressure support ventilation (PSV), and neurally adjusted ventilatory assist (NAVA) within each patient. Percent change will be compared between control (PSV) and NAVA group.

Secondary

MeasureTime frameDescription
OxygenationMonitored/recorded continuously for duration of study (8 hours total)Oxygen saturation measured by pulse oxymetry (SpO2), SpO2/FiO2 ratio, non-invasive oxygen content (SpOC), and frequency of desaturations will be recorded continuously and compared between pressure support ventilation (PSV) and neurally adjusted ventilatory assist (NAVA). Although not a primary outcome measure of this study, oxygenation will allow us to further determine the safety of NAVA compared to PSV.
Lung mechanicsMonitored/recorded every 30 seconds for duration of study (8 hours total)Compliance, peak inspiratory pressures, positive end expiratory pressure, tidal volumes, inspired oxygen concentration, electrical activity of the diaphragm (Edi), specific Edi (ratio of tidal volume to Edi), will be measured in each patient during pressure support ventilation and neurally adjusted ventilatory assist.

Countries

United States

Outcome results

None listed

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