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Published on: January 17, 2011
Predictors of extubation success and failure in mechanically ventilated infants and children
N Khan1, A Brown, S T Venkataraman
1Department of Anesthesiology/Critical Care Medicine, University of Pittsburgh, PA, USA.
Insights
Bedside respiratory function tests can predict extubation success or failure in infants and children. These measures help determine both low and high risks of extubation failure, aiding clinical decisions.
Area of Science:
- Pediatric Critical Care Medicine
- Respiratory Physiology
- Mechanical Ventilation
Background:
- Extubation failure in pediatric patients can lead to prolonged mechanical ventilation and increased morbidity.
- Predicting extubation success is crucial for optimizing patient outcomes and resource allocation.
- Existing predictive tools often lack validation in pediatric populations.
Purpose of the Study:
- To evaluate the efficacy of bedside respiratory function measurements in predicting extubation success and failure in mechanically ventilated infants and children.
- To identify specific respiratory parameters that can reliably differentiate between successful and failed extubation attempts.
- To establish risk thresholds for extubation failure based on these bedside measures.
Main Methods:
- Prospective data collection in a university-affiliated children's hospital critical care unit.
- Inclusion of infants and children mechanically ventilated for at least 24 hours (excluding neonates and those with neuromuscular disease).
- Bedside cardiorespiratory function measurements obtained immediately prior to extubation.
Main Results:
- The overall extubation failure rate was 16.3% (34/208 patients).
- Significant predictors of extubation failure included decreased indexed tidal volume, increased fraction of inspired oxygen (FIO2), increased mean airway pressure, increased oxygenation index, increased fraction of minute ventilation from the ventilator, increased peak inspiratory pressure, and decreased mean inspiratory flow.
- Threshold values for low (<10%) and high (>25%) risk of extubation failure were determined for several parameters.
Conclusions:
- Bedside measurements of respiratory function are valuable tools for predicting extubation success and failure in pediatric patients.
- Specific respiratory parameters can effectively stratify patients into low- and high-risk categories for extubation failure.
- Integrated indices proven effective in adults did not reliably predict extubation outcomes in this pediatric cohort.
Objective:
To predict extubation success and failure in mechanically ventilated infants and children using bedside measures of respiratory function.
Design:
Prospective collection of data.
Setting:
A university-affiliated children's hospital with a 51-bed critical care unit.
Patients:
All infants and children who were mechanically ventilated for at least 24 hrs, except neonates < or = 37 wks gestation and patients with neuromuscular disease.
Interventions:
Bedside measurements of cardiorespiratory function were obtained immediately before extubation.
Measurements And Main Results:
Extubation failure was defined as reintubation within 48 hrs of extubation in the absence of upper airway obstruction. Failure rates were calculated for different ranges (selected a priori) of preextubation measures of breathing effort, ventilatory support, respiratory mechanics, central inspiratory drive, and integrated indices useful in adults. Effort of spontaneous breathing was assessed by the respiratory rate standardized to age, the presence of retractions and paradoxical breathing, inspiratory pressure, maximal negative inspiratory pressure (maximal negative inspiratory pressure), inspiratory pressure/maximal negative inspiratory pressure ratio, and tidal volume indexed to body weight of a spontaneous breath. Ventilatory support was measured by the fraction of inspired oxygen (F10(2)), mean airway pressure, oxygenation index, and the fraction of total minute ventilation provided by the ventilator. Respiratory mechanics were assessed by determination of peak ventilatory inspiratory pressure and dynamic compliance. Central inspiratory drive was assessed by mean inspiratory flow. Frequency to tidal volume ratio and the compliance, rate, oxygenation, and pressure indexed to body weight, the integrated indices useful in predicting extubation failure in adults, were also calculated. Thirty-four of the 208 patients who were studied were reintubated for an overall failure rate of 16.3% (95% confidence interval 11.3% to 21.4%). The reasons for reintubation were poor effort (n = 8), excessive effort (n = 14), altered mental status or absent airway reflexes (n = 2), cardiovascular instability (n = 3), inadequate oxygenation (n = 3), respiratory acidosis (n = 3), and undocumented (n = 1). Extubation failure increased significantly with decreasing tidal volume indexed to body weight of a spontaneous breath, increasing F10(2), increasing mean airway pressure, increasing oxygenation index, increasing fraction of total minute ventilation provided by the ventilator, increasing peak ventilatory inspiratory pressure, or decreasing mean inspiratory flow (p < .05). Dynamic compliance showed a trend of increasing failure rate with decreasing dynamic compliance but did not reach statistical significance (p = .116). Respiratory rate standardized to age, inspiratory pressure, maximal negative inspiratory pressure, inspiratory pressure/maximal negative inspiratory pressure ratio, frequency to tidal volume ratio, and compliance, rate, oxygenation, and pressure did not show any trend in failure rate with increasing or decreasing values. Threshold values that defined a low risk (< or = 10%) and a high risk (> or = 25%) of extubation failure could be determined for tidal volume indexed to body weight of a spontaneous breath, F10(2), mean airway pressure, oxygenation index, fraction of total minute ventilation provided by the ventilator, peak ventilatory inspiratory pressure, dynamic compliance, and mean inspiratory flow. Neither a low nor a high risk of failure could be defined for frequency to tidal volume ratio or the compliance, rate, oxygenation, and pressure (CROP) index.
Conclusions:
Bedside measurements of respiratory function can predict extubation success and failure in infants and children. Both a low risk and a high risk of failure can be determined using these measures. Integrated indices useful in adults do not reliably predict extubation success or failure in
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