PEEP, auto-PEEP, and waterfalls.
Explore this paper's citation graph
- Type
- letter
- Published
- 1989-09-01
- Cited by
- 151
- References
- 17
- Access
- Open access
- OpenAlex
- https://openalex.org/W2015708899
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:26790126
Keywords
Elastic recoil, Expiration, Lung volumes, Medicine, Functional residual capacity
References
- Respiratory muscles in disease.
- Accuracy of tidal volume, lung volume, and flow measurements by inductance vest in COPD patients.
- Dynamic mechanisms determine functional residual capacity in mice, Mus musculus.
- The pattern of breathing during successful and unsuccessful trials of weaning from mechanical ventilation.
- The contributions of rib cage and abdominal displacements to the hyperinflation of acute bronchospasm.
- Dynamic hyperinflation and ventilator dependence in chronic obstructive pulmonary disease.
- Determinants of maximal expiratory flow from the lungs.
- Effect of positive end-expiratory pressure on breathing patterns of normal subjects and intubated patients with respiratory failure.
- Respiratory monitoring in the intensive care unit.
- Alveolar pressure, pulmonary venous pressure, and the vascular waterfall.
- Causes of error of respiratory pressure-volume curves in paralyzed subjects.
- The effects of positive expiratory pressure on isovolume flow and dynamic hyperinflation in patients receiving mechanical ventilation.
- Accuracy of respiratory inductive plethysmographic cross-sectional areas.
- Changes in end-expiratory lung volume during sleep in patients with occlusive apnea.
- Occult positive end-expiratory pressure in mechanically ventilated patients with airflow obstruction: the auto-PEEP effect.
- Ventilatory compensation for changes in functional residual capacity during sleep.
- The pattern of breathing during successful and unsuccessful trials of weaning from mechanical ventilation
Cited by
- A mechanical model of auto-PEEP.
- Effect of CPAP on intrinsic PEEP, inspiratory effort, and lung volume in severe stable COPD
- Soporte ventilatorio mecánico
- Exercise intolerance in chronic obstructive pulmonary disease patients.
- Respiratory monitoring during mechanical ventilation.
- Respiratory management in critical care
- Respiratory muscle dysfunction in mechanically-ventilated patients
- Review of ventilatory techniques to optimize mechanical ventilation in acute exacerbation of chronic obstructive pulmonary disease
- Intrapulmonary percussive ventilation in acute exacerbations of COPD patients with mild respiratory acidosis: a randomized controlled trial [ISRCTN17802078]
- Pressure Modes of Invasive Mechanical Ventilation
- Perioperative respiratory assessment and management.
- Auto-positive end-expiratory pressure and dynamic hyperinflation.
- Prise en charge de l’hypoxémie peropératoire en ventilation unipulmonaire
- Noninvasive ventilation in acute asthma.
- Applied PEEP during pressure support reduces the inspiratory threshold load of intrinsic PEEP.
- [Auto-PEEP effects on respiratory mechanics and blood gases in mechanically ventilated patients]
- Obstructive lung disease and sleep.
- Variability of intrinsic positive end-expiratory pressure in patients receiving mechanical ventilation.
- Respiratory measurements during weaning
- Effect of multimodality chest physiotherapy on the rate of recovery and prevention of complications in patients with mechanical ventilation: a prospective study in medical and surgical intensive care units.
Related papers
- Estimation of Auto-PEEP
- Alterations in pulmonary function of premature lambs due to positive end-expiratory pressure.
- Alterations in lung compliance and functional residual capacity with posture.
- Hyperinflation: control of functional residual lung capacity.
- 1849 TOTAL RESPIRATORY SYSTEM COMPLIANCE IN INFANTS WITH CYSTIC FIBROSIS
- Relationship of Functional Residual Capacity to Static Pulmonary Mechanics in Chronic Obstructive Pulmonary Disease
- Respiratory mechanics in adolescents with idiopathic scoliosis.
- Statics of the respiratory system in newborn mammals.