Ventilator-related causes of lung injury: the mechanical power.

scientific article published on 12 September 2016

Ventilator-related causes of lung injury: the mechanical power. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1007/S00134-016-4505-2
P698PubMed publication ID27620287

P50authorDavide ChiumelloQ56440867
Tommaso TonettiQ56978436
Alessandro ProttiQ61106358
Luciano GattinoniQ63378132
P2093author name stringM Gotti
P Herrmann
O Moerer
E Carlesso
M Cressoni
M Quintel
C Chiurazzi
P Cadringher
P2860cites workVentilation with lower tidal volumes as compared with traditional tidal volumes for acute lung injury and the acute respiratory distress syndrome. The Acute Respiratory Distress Syndrome NetworkQ27861021
Lung anatomy, energy load, and ventilator-induced lung injuryQ36373399
Injurious ventilatory strategies increase cytokines and c-fos m-RNA expression in an isolated rat lung modelQ37364413
The "baby lung" became an adultQ38701961
On the imperfect elasticity of lung tissueQ41285064
Time to generate ventilator-induced lung injury among mammals with healthy lungs: a unifying hypothesis.Q43892376
The concept of "baby lung".Q47820022
Mechanical Power and Development of Ventilator-induced Lung Injury.Q51526464
Role of Strain Rate in the Pathogenesis of Ventilator-Induced Lung Edema.Q51534375
A general mathematical model for respiratory dynamics relevant to the clinical setting.Q51653403
Positive end-expiratory pressure delays the progression of lung injury during ventilator strategies involving high airway pressure and lung overdistention.Q51664570
Is there an optimal breath pattern to minimize stress and strain during mechanical ventilation?Q51818543
Lung stress and strain during mechanical ventilation for acute respiratory distress syndrome.Q51887306
Area analysis of pressure-volume hysteresis in mammalian lungsQ53003126
Lung inhomogeneity in patients with acute respiratory distress syndrome.Q53088156
Effects of PEEP on inspiratory resistance in mechanically ventilated COPD patients.Q53991947
Alterations of lung and chest wall mechanics in patients with acute lung injury: effects of positive end-expiratory pressure.Q54166616
Pulmonary barotrauma during mechanical ventilationQ54168491
High inflation pressure pulmonary edema. Respective effects of high airway pressure, high tidal volume, and positive end-expiratory pressure.Q55060448
Pressure-volume curve of total respiratory system in acute respiratory failure. Computed tomographic scan studyQ68186564
Effects of positive end-expiratory pressure on regional distribution of tidal volume and recruitment in adult respiratory distress syndromeQ72279798
Effects of decreased respiratory frequency on ventilator-induced lung injuryQ73444980
Mechanics of breathing in manQ80752301
P433issue10
P921main subjectventilatorQ813243
pulmonary injuryQ7259546
P304page(s)1567-1575
P577publication date2016-09-12
P1433published inIntensive Care MedicineQ15749164
P1476titleVentilator-related causes of lung injury: the mechanical power
P478volume42

Reverse relations

cites work (P2860)
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Q59136565Is the mechanical power the final word on ventilator-induced lung injury?-we are not sure
Q47967633It is impossible to know the way if we do not know where to start: tidal volume, driving pressure, and positive end-expiratory pressure.
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