review article | Q7318358 |
scholarly article | Q13442814 |
P356 | DOI | 10.1164/RCCM.200706-893OC |
P698 | PubMed publication ID | 17962636 |
P50 | author | Laurent Brochard | Q59544365 |
Nicolás Nin | Q79932004 | ||
Paolo Pelosi | Q90448459 | ||
Niall D Ferguson | Q38324186 | ||
Fernando Frutos-Vivar | Q45339856 | ||
Yaseen M. Arabi | Q56900904 | ||
P2093 | author name string | Antonio Anzueto | |
Rui Moreno | |||
Fekri Abroug | |||
Peter Nightingale | |||
Konstantinos Raymondos | |||
Maureen O Meade | |||
Andrés Esteban | |||
Javier Hurtado | |||
Marco González | |||
Vinko Tomicic | |||
Manuel Jibaja | |||
Gabriel D'Empaire | |||
José Elizalde | |||
Dimitros Matamis | |||
Carlos Apezteguia | |||
VENTILA Group | |||
Ana María Montañez | |||
Fredi Sandi | |||
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | mechanical ventilation | Q3766250 |
P304 | page(s) | 170-177 | |
P577 | publication date | 2007-10-25 | |
P1433 | published in | American Journal of Respiratory and Critical Care Medicine | Q4744267 |
P1476 | title | Evolution of mechanical ventilation in response to clinical research | |
P478 | volume | 177 |
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Q51675249 | Assisted Ventilation. |
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Q35840869 | Both high level pressure support ventilation and controlled mechanical ventilation induce diaphragm dysfunction and atrophy |
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Q36633547 | Effects of increasing compliance with minimal sedation on duration of mechanical ventilation: a quality improvement intervention |
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Q35745393 | Epidemiological trends in invasive mechanical ventilation in the United States: A population-based study |
Q38715651 | Epidemiology of NIV for Acute Respiratory Failure in COPD Patients: Results from the International Surveys vs. the "Real World". |
Q39392006 | Epidemiology of Weaning Outcome according to a New Definition. The WIND Study. |
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Q47376792 | Invasive versus non-invasive ventilation for acute respiratory failure in neuromuscular disease and chest wall disorders. |
Q37181836 | Leaky ryanodine receptors contribute to diaphragmatic weakness during mechanical ventilation |
Q84407875 | Leaving invasive ventilation behind |
Q42428559 | Lipid overload: trigger or consequence of mitochondrial oxidative stress in ventilator-induced diaphragmatic dysfunction? |
Q36748957 | Lost in translation? The pursuit of lung-protective ventilation |
Q35868568 | Low Tidal Volume Ventilation in Patients without Acute Respiratory Distress Syndrome: A Paradigm Shift in Mechanical Ventilation |
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Q36905954 | Mechanical ventilation in ICUs in Poland: a multi-center point-prevalence study. |
Q45768091 | Mechanical ventilation in a critical care unit in southern Brazil: mortality risk factors |
Q45930592 | Mechanical ventilation in intensive and critical care units of Russia: RuVent national epidemiologic study. |
Q36672191 | Mechanical ventilation in patients in the intensive care unit of a general university hospital in southern Brazil: an epidemiological study |
Q43907693 | Mechanical ventilation: quo vadis? |
Q34424860 | Mitochondrial dysfunction and lipid accumulation in the human diaphragm during mechanical ventilation. |
Q55460489 | Modes of mechanical ventilation vary between hospitals and intensive care units within a university healthcare system: a retrospective observational study. |
Q37487614 | Monitoring Patient/Ventilator Interactions: Manufacturer's Perspective |
Q46830433 | NAVA enhances tidal volume and diaphragmatic electro-myographic activity matching: a Range90 analysis of supply and demand. |
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Q45824241 | Neurally Adjusted Ventilatory Assist (NAVA) or Pressure Support Ventilation (PSV) during spontaneous breathing trials in critically ill patients: a crossover trial |
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Q33797967 | Noninvasive Ventilation in Acute Hypoxemic Nonhypercapnic Respiratory Failure: A Systematic Review and Meta-Analysis |
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