| Literature DB >> 28985727 |
Pablo Cruces1,2, Sebastián González-Dambrauskas3, Julio Quilodrán1, Jorge Valenzuela1, Javier Martínez3, Natalia Rivero1, Pablo Arias1, Franco Díaz4,5.
Abstract
BACKGROUND: Analysis of respiratory mechanics during mechanical ventilation (MV) is able to estimate resistive, elastic and inertial components of the working pressure of the respiratory system. Our aim was to discriminate the components of the working pressure of the respiratory system in infants on MV with severe bronchiolitis admitted to two PICU's.Entities:
Keywords: Bronchiolitis; Mechanical ventilation; Pediatrics; Respiratory mechanics; Work of breathing
Mesh:
Year: 2017 PMID: 28985727 PMCID: PMC6389183 DOI: 10.1186/s12890-017-0475-6
Source DB: PubMed Journal: BMC Pulm Med ISSN: 1471-2466 Impact factor: 3.317
Fig. 1Respiratory mechanics measurement. a Respiratory mechanics measurement protocol. b Illustration of Airway Pressure versus time and flow versus time curves during inspiratory and expiratory breathhold. The components of work of breathing, elastic and threshold are represented
Clinical characteristics of patients with acute respiratory failure secondary to bronchiolitis included in the study
| Patient | Age (mo) | Etiology | Comorbidities (1: No = 2: Yes) | PF ratio | PaCO2 | OI | PIM2 (%) | Outcome |
|---|---|---|---|---|---|---|---|---|
| 1 | 1 | RSV | 1 | 280 | 42 | 5.6 | 10.1 | Alive |
| 2 | 1 | RSV | 1 | 293 | 37 | 4.2 | 10.1 | Alive |
| 3 | 1 | RSV | 1 | 127 | 112 | 10.3 | 5.1 | Alive |
| 4 | 1 | RSV | 2: PNB 36 week | 224 | 65 | 4.3 | 7.5 | Alive |
| 5 | 1 | RSV | 1 | 246 | 67 | 4.5 | 1.5 | Alive |
| 6 | 1 | RSV | 1 | 208 | 52 | 8.1 | 7.6 | Alive |
| 7 | 2 | RSV | 1 | 165 | 65 | 7.2 | 3.5 | Alive |
| 8 | 2 | RSV | 2:Cardiac Arrest, PNB 32 week | 158 | 140 | 7.0 | 19.8 | Alive |
| 9 | 3 | RSV | 2, PNB 34 week | 172 | 86 | 8.5 | 0.6 | Alive |
| 10 | 4 | RSV | 1 | 205 | 91 | 6.9 | 5.0 | Alive |
| 11 | 4 | RSV | 1 | 270 | 62 | 4.9 | 0.6 | Alive |
| 12 | 5 | RSV + Pertussis | 1 | 206 | 48 | 7.0 | 11.9 | Alive |
| 13 | 6 | RSV | 1 | 125 | 71 | 14.1 | 17.5 | Alive |
| 14 | 10 | RSV | 2: PNB 30 week | 161 | 72 | 8.5 | 10.1 | Alive |
| 15 | 10 | RSV | 2:PNB 32 week HMD | 80 | 60 | 24.9 | 6.6 | Alive |
| 16 | 11 | (−)a | 1 | 133 | 44 | 11.1 | 7.6 | Alive |
Abbreviations: mo months old, PF ratio PaO2/FIO2 ratio, OI oxygenation index, PIM Pediatric index of mortality 2, RSV respiratory syncytial virus, PNB preterm newborn, HMD hyaline membrane disease
aViral Studies were negative, but pneumococcal superinfection was diagnosed
Ventilatory parameters and respiratory system mechanics of infants with severe bronchiolitis
| Number | FIO2 | VT | RR | IT | PIP | PPL | PEEP | CRS | RawI | RawE |
|---|---|---|---|---|---|---|---|---|---|---|
| 1 | 0.5 | 7.6 | 30 | 0.8 | 28 | 24 | 8 | 0.64 | 66 | 40 |
| 2 | 0.4 | 7.5 | 30 | 0.7 | 21 | 19.5 | 8 | 0.91 | 29 | 58 |
| 3 | 1 | 7 | 25 | 0.7 | 28 | 25 | 7 | 0.61 | 22 | 20 |
| 4 | 0.5 | 6.9 | 22 | 0.7 | 18 | 15 | 7 | 0.76 | 30 | 40 |
| 5 | 0.45 | 7.6 | 30 | 0.5 | 24 | 19 | 7 | 1.42 | 50 | 18 |
| 6 | 0.35 | 9.9 | 30 | 0.5 | 22 | 18 | 7 | 1.07 | 40 | 15 |
| 7 | 0.55 | 9.9 | 27 | 0.65 | 24 | 19 | 7 | 0.91 | 43 | 23 |
| 8 | 0.5 | 5.7 | 30 | 0.7 | 29 | 25 | 7 | 0.38 | 57 | 85 |
| 9 | 0.4 | 8,4 | 28 | 0.65 | 31 | 26 | 7 | 0.21 | 37 | 26 |
| 10 | 0.4 | 7.1 | 25 | 0.7 | 26 | 23 | 8 | 0.23 | 36 | 65 |
| 11 | 0.3 | 6,2 | 28 | 0.7 | 26 | 22 | 9 | 0.28 | 48 | 52 |
| 12 | 0.3 | 8 | 26 | 0.7 | 24 | 22 | 7 | 0.33 | 15 | 50 |
| 13 | 0.55 | 7.8 | 30 | 0.78 | 33 | 30 | 8 | 0.36 | 36 | 57 |
| 14 | 0.6 | 8.7 | 30 | 0.6 | 23 | 18 | 10 | 1.24 | 30 | 18 |
| 15 | 1 | 5.7 | 28 | 0.9 | 31 | 27 | 12 | 0.44 | 53 | 55 |
| 16 | 0.5 | 7.9 | 27 | 0.8 | 27 | 23 | 8 | 0.59 | 52 | 41 |
| Median | 0.5 | 7.6 | 28 | 0.7 | 29 | 24 | 7.5 | 0.55 | 38.5 | 40.5 |
| IQR | 0.15 | 0.95 | 3.25 | 0.07 | 4.5 | 6 | 1 | 0.56 | 20.5 | 33.25 |
FiO Fraction of inspired oxygen, %; V Tidal volume, ml·kg−1, RR respiratory rate, IT inspiratory time, seconds, PIP Peak inspiratory pressure, cmH2O, PPL Plateau pressure, cmH2O, PEEP Positive end-expiratory pressure, cmH2O, C respiratory system static compliance, mL·cmH2O−1·kg−1, Raw inspiratory airway resistance, cmH2O·L−1·s−1, Raw expiratory airway resistance, cmH2O·L−1·s−1