Resp var./rev.
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{{tp|p=32035430|t=2020. [Recommendations on extracorporeal life support for critically ill patients with novel coronavirus pneumonia].|pdf=|usr=018}} | {{tp|p=32035430|t=2020. [Recommendations on extracorporeal life support for critically ill patients with novel coronavirus pneumonia].|pdf=|usr=018}} | ||
{{tp|p=32144514|t=2020. Optimal mean airway pressure during high-frequency oscillatory ventilation in an experimental model of acute respiratory distress syndrome: EIT-based method.|pdf=|usr=018}} | {{tp|p=32144514|t=2020. Optimal mean airway pressure during high-frequency oscillatory ventilation in an experimental model of acute respiratory distress syndrome: EIT-based method.|pdf=|usr=018}} | ||
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{{tp|p=32619530|t=2020. Supraglottic airways in the management of COVID-19 patients.|pdf=|usr=012}} | {{tp|p=32619530|t=2020. Supraglottic airways in the management of COVID-19 patients.|pdf=|usr=012}} | ||
{{tp|p=32646456|t=2020. Transpulmonary pressure in SARS-CoV-2-associated acute respiratory distress syndrome: a single-center observational study.|pdf=|usr=012}} | {{tp|p=32646456|t=2020. Transpulmonary pressure in SARS-CoV-2-associated acute respiratory distress syndrome: a single-center observational study.|pdf=|usr=012}} | ||
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{{tp|p=32680606|t=2020. Airway management lessons from case reports of negative outcomes. Comment on Br J Anaesth; 125: e168-70.|pdf=|usr=014}} | {{tp|p=32680606|t=2020. Airway management lessons from case reports of negative outcomes. Comment on Br J Anaesth; 125: e168-70.|pdf=|usr=014}} | ||
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{{tp|p=32692228|t=2020. Clinical outcome of standardized oxygen therapy nursing strategy in COVID-19.|pdf=|usr=014}} | {{tp|p=32692228|t=2020. Clinical outcome of standardized oxygen therapy nursing strategy in COVID-19.|pdf=|usr=014}} | ||
{{tp|p=32690356|t=?. COVID-19 and respiratory support devices.|pdf=|usr=015}} | {{tp|p=32690356|t=?. COVID-19 and respiratory support devices.|pdf=|usr=015}} | ||
{{tp|p=32696835|t=2020. COVID-19 pandemic and mechanical ventilation: facing the present, designing the future.|pdf=|usr=014}} | {{tp|p=32696835|t=2020. COVID-19 pandemic and mechanical ventilation: facing the present, designing the future.|pdf=|usr=014}} | ||
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{{tp|p=32698822|t=2020. Continuously available ratio of SpO2/FiO2 serves as a noninvasive prognostic marker for intensive care patients with COVID-19.|pdf=|usr=014}} | {{tp|p=32698822|t=2020. Continuously available ratio of SpO2/FiO2 serves as a noninvasive prognostic marker for intensive care patients with COVID-19.|pdf=|usr=014}} | ||
{{tp|p=32706108|t=2020. Treatment of acute respiratory failure in the course of COVID-19. Practical hints from the expert panel of the Assembly of Intensive Care and Rehabilitation of the Polish Respiratory Society.|pdf=|usr=017}} | {{tp|p=32706108|t=2020. Treatment of acute respiratory failure in the course of COVID-19. Practical hints from the expert panel of the Assembly of Intensive Care and Rehabilitation of the Polish Respiratory Society.|pdf=|usr=017}} | ||
{{ttp|p=32712309|t=2020. The Basics of ARDS Mechanical Ventilatory Care for Cardiovascular Specialists.|pdf=|usr=014}} | {{ttp|p=32712309|t=2020. The Basics of ARDS Mechanical Ventilatory Care for Cardiovascular Specialists.|pdf=|usr=014}} | ||
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{{tp|p=32736637|t=2020. Development of a work of breathing scale and monitoring need of intubation in COVID-19 pneumonia.|pdf=|usr=018}} | {{tp|p=32736637|t=2020. Development of a work of breathing scale and monitoring need of intubation in COVID-19 pneumonia.|pdf=|usr=018}} | ||
{{tp|p=32735446|t=2020. Update Alert: Ventilation Techniques and Risk for Transmission of Coronavirus Disease, Including COVID-19.|pdf=|usr=018}} | {{tp|p=32735446|t=2020. Update Alert: Ventilation Techniques and Risk for Transmission of Coronavirus Disease, Including COVID-19.|pdf=|usr=018}} | ||
{{tp|p=32737523|t=2020. Physiological dead space ventilation, disease severity and outcome in ventilated patients with hypoxaemic respiratory failure due to coronavirus disease 2019.|pdf=|usr=018}} | {{tp|p=32737523|t=2020. Physiological dead space ventilation, disease severity and outcome in ventilated patients with hypoxaemic respiratory failure due to coronavirus disease 2019.|pdf=|usr=018}} | ||
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{{tp|p=32748116|t=2020. P-SILI is not justification for intubation of COVID-19 patients.|pdf=|usr=018}} | {{tp|p=32748116|t=2020. P-SILI is not justification for intubation of COVID-19 patients.|pdf=|usr=018}} | ||
{{tp|p=32744456|t=2020. Ventilator Sharing using Volume-Controlled Ventilation During the COVID-19 Pandemic.|pdf=|usr=018}} | {{tp|p=32744456|t=2020. Ventilator Sharing using Volume-Controlled Ventilation During the COVID-19 Pandemic.|pdf=|usr=018}} | ||
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{{tp|p=32822615|t=2020. A Novel Approach to Fiberoptic Intubation in Patients With Coronavirus Disease 2019.|pdf=|usr=018}} | {{tp|p=32822615|t=2020. A Novel Approach to Fiberoptic Intubation in Patients With Coronavirus Disease 2019.|pdf=|usr=018}} | ||
{{tp|p=32814566|t=2020. Considerations for target oxygen saturation in COVID-19 patients: are we under-shooting?|pdf=|usr=018}} | {{tp|p=32814566|t=2020. Considerations for target oxygen saturation in COVID-19 patients: are we under-shooting?|pdf=|usr=018}} | ||
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{{ttp|p=32827395|t=2020. Evolving oxygenation management reasoning in COVID-19.|pdf=|usr=018}} | {{ttp|p=32827395|t=2020. Evolving oxygenation management reasoning in COVID-19.|pdf=|usr=018}} | ||
{{tp|p=32839960|t=2020. Airway management guidance for the endemic phase of COVID-19.|pdf=|usr=018}} | {{tp|p=32839960|t=2020. Airway management guidance for the endemic phase of COVID-19.|pdf=|usr=018}} | ||
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{{tp|p=32878559|t=2020. Respiratory management for patients with neuromuscular disorders during the COVID-19 pandemic.|pdf=|usr=018}} | {{tp|p=32878559|t=2020. Respiratory management for patients with neuromuscular disorders during the COVID-19 pandemic.|pdf=|usr=018}} | ||
{{tp|p=C7179066|t=2020. Airway Management in COVID-19: In the Den of the Beast.|pdf=|usr=015}} | {{tp|p=C7179066|t=2020. Airway Management in COVID-19: In the Den of the Beast.|pdf=|usr=015}} | ||
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{{ttp|p=C7316646|t=2020. COVID-19: How to Use a Jet Nebulizer for Drug Administration in Ventilated Patients without Putting the Healthcare Workers at Risk.|pdf=|usr=015}} | {{ttp|p=C7316646|t=2020. COVID-19: How to Use a Jet Nebulizer for Drug Administration in Ventilated Patients without Putting the Healthcare Workers at Risk.|pdf=|usr=015}} | ||
{{tp|p=C7346788|t=?. Precautions for weaning from invasive mechanical ventilation with critically ill COVID-19.|pdf=|usr=015}} | {{tp|p=C7346788|t=?. Precautions for weaning from invasive mechanical ventilation with critically ill COVID-19.|pdf=|usr=015}} | ||
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{{tp|p=32874907|t=2020. A multicomponent oxygen delivery strategy for COVID-19 patients in a step-down intensive care unit: A case series.|pdf=|usr=018}} | {{tp|p=32874907|t=2020. A multicomponent oxygen delivery strategy for COVID-19 patients in a step-down intensive care unit: A case series.|pdf=|usr=018}} | ||
{{tp|p=C7346828|t=?. Fisioterapia respiratoria con cinturones de vibración en el paciente crítico Covid-19 en posición de prono.|pdf=|usr=015}} | {{tp|p=C7346828|t=?. Fisioterapia respiratoria con cinturones de vibración en el paciente crítico Covid-19 en posición de prono.|pdf=|usr=015}} | ||
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| + | {{tp|p=32287142|t=2020. Pediatric Airway Management in Coronavirus Disease 2019 Patients: Consensus Guidelines From the Society for Pediatric Anesthesia?s Pediatric Difficult Intubation Collaborative and the Canadian Pediatric Anesthesia Society |pdf=|usr=}} | ||
| + | {{tp|p=32350543|t=ä. COVID-19-Pandemie: strukturierte Erweiterung von Beatmungskapazitäten mithilfe von Heimrespiratoren |pdf=|usr=}} | ||
| + | {{tp|p=32345852|t=2020. COVID-19 and One-Lung Ventilation |pdf=|usr=}} | ||
| + | {{tp|p=32209810|t=2020. Recommendations for Endotracheal Intubation of COVID-19 Patients |pdf=|usr=}} | ||
| + | {{tp|p=32250977|t=2020. Your COVID-19 Intubation Kit |pdf=|usr=}} | ||
| + | {{tp|p=32345859|t=2020. Use of a Modified System for Manual Ventilation of the Patient for In-Hospital and Extra-Hospital Transport to Avoid Aerosolizing Spread of Droplets During COVID-19 Outbreak |pdf=|usr=}} | ||
| + | {{tp|p=32345856|t=2020. Adaptation to the Plastic Barrier Sheet to Facilitate Intubation During the COVID-19 Pandemic |pdf=|usr=}} | ||
| + | {{tp|p=32324597|t=2020. Barrier Shields: Not Just for Intubations in Today?s COVID-19 World?|pdf=|usr=}} | ||
| + | {{tp|p=32282387|t=2020. A Carton-Made Protective Shield for Suspicious/Confirmed COVID-19 Intubation and Extubation During Surgery |pdf=|usr=}} | ||
| + | {{tp|p=32304463|t=2020. COVID-19 Putting Patients at Risk of Unplanned Extubation and Airway Providers at Increased Risk of Contamination |pdf=|usr=}} | ||
| + | {{tp|p=32315800|t=ä. A model for a ventilator-weaning and early rehabilitation unit to deal with post-ICU impairments with severe COVID-19 |pdf=|usr=}} | ||
| + | {{tp|p=32334882|t=ä. A Protection Tent for Airway Management in Patients With COVID-19 Infection |pdf=|usr=}} | ||
| + | {{tp|p=32195703|t=2020. Precautions for Intubating Patients with COVID-19 |pdf=|usr=}} | ||
| + | {{tp|p=32195705|t=2020. Intubation and Ventilation amid the COVID-19 Outbreak: Wuhan?s Experience |pdf=|usr=}} | ||
| + | {{tp|p=32232219|t=2020. The COVID-19 Intubation and Ventilation Pathway (CiVP); a Commentary |pdf=|usr=}} | ||
| + | {{tp|p=32362339|t=ä. The Wuhan COVID-19 intubation experience |pdf=|usr=}} | ||
| + | {{tp|p=32312573|t=ä. Fibreoptic tracheal intubation in COVID-19: not so fast |pdf=|usr=}} | ||
| + | {{tp|p=32312571|t=ä. Emergency tracheal intubation in 202 patients with COVID-19 in Wuhan, China: lessons learnt and international expert recommendations |pdf=|usr=}} | ||
| + | {{tp|p=32180173|t=ä. Lidocaine during intubation and extubation in patients with coronavirus disease (COVID-19) |pdf=|usr=}} | ||
| + | {{tp|p=32323101|t=ä. Safer intubation and extubation of patients with COVID-19 |pdf=|usr=}} | ||
| + | {{tp|p=32357995|t=2020. Tracheal intubation in patients with COVID-19 |pdf=|usr=}} | ||
| + | {{tp|p=32223782|t=ä. Just the Facts: Airway management during the coronavirus disease 2019 (COVID-19) pandemic |pdf=|usr=}} | ||
| + | {{tp|p=32313971|t=ä. Ventilation of COVID-19 patients in intensive care units |pdf=|usr=}} | ||
| + | {{tp|p=32303885|t=ä. Summary of 20 tracheal intubation by anesthesiologists for patients with severe COVID-19 pneumonia: retrospective case series |pdf=|usr=}} | ||
| + | {{tp|p=32238613|t=2020. Novel Coronavirus 2019 (2019-nCoV) Infection: Part II - Respiratory Support in the Pediatric Intensive Care Unit in Resource-limited Settings |pdf=|usr=}} | ||
| + | {{tp|p=32238612|t=2020. Novel Coronavirus 2019 (2019-nCoV) Infection: Part I - Preparedness and Management in the Pediatric Intensive Care Unit in Resource-limited Settings |pdf=|usr=}} | ||
| + | {{tp|p=32312554|t=ä. Early pulmonary rehabilitation for SARS-CoV-2 pneumonia: Experience from an intensive care unit outside of the Hubei province in China |pdf=|usr=}} | ||
| + | {{tp|p=32145829|t=2020. Respiratory support for patients with COVID-19 infection |pdf=|usr=}} | ||
| + | {{tp|p=32278367|t=ä. COVID-19: Respiratory support outside the intensive care unit |pdf=|usr=}} | ||
| + | {{tp|p=32236089|t=2020. Respiratory physiotherapy in patients with COVID-19 infection in acute setting: a Position Paper of the Italian Association of Respiratory Physiotherapists (ARIR) |pdf=|usr=}} | ||
| + | {{tp|p=32268719|t=2020. Intubation and mechanical ventilation of patients with COVID-19: what should we tell them?|pdf=|usr=}} | ||
| + | {{tp|p=32340583|t=2020. COVID-19 pandemic: overview of protective-ventilation strategy in ARDS patients |pdf=|usr=}} | ||
| + | {{tp|p=32200645|t=2020. Lung Recruitability in COVID-19?associated Acute Respiratory Distress Syndrome: A Single-Center Observational Study |pdf=|usr=}} | ||
| + | {{tp|p=32204751|t=2020. Consideration of the respiratory support strategy of severe acute respiratory failure caused by SARS-CoV-2 infection in children |pdf=|usr=}} | ||
| + | {{ttp|p=32281885|t=2020. Basing Respiratory Management of COVID-19 on Physiological Principles |pdf=|usr=}} | ||
| + | {{ttp|p=32348678|t=2020. Respiratory Pathophysiology of Mechanically Ventilated Patients with COVID-19: A Cohort Study |pdf=|usr=}} | ||
| + | {{ttp|p=32221970|t=2020. Consensus guidelines for managing the airway in patients with COVID-19: Guidelines from the Difficult Airway Society, the Association of Anaesthetists the Intensive Care Society, the Faculty of Intensive Care Medicine and the Royal College of Anaesthetists |pdf=|usr=}} | ||
| + | {{tp|p=32366375|t=2020. Management of respiratory failure due to covid-19 |pdf=|usr=}} | ||
| + | {{tp|p=32102726|t=2020. Expert Recommendations for Tracheal Intubation in Critically ill Patients with Noval Coronavirus Disease 2019 |pdf=|usr=}} | ||
| + | {{ttp|p=32366580|t=2020. Respiratory advice for the non-respiratory physician in the time of COVID-19 |pdf=|usr=}} | ||
| + | {{ttp|p=32375488|t=ä. Respiratory management in severe acute respiratory syndrome coronavirus 2 infection |pdf=|usr=}} | ||
| + | {{tp|p=32351196|t=2020. Initial experiences from patients with COVID-19 on ventilatory support in Denmark |pdf=|usr=}} | ||
| + | {{tp|p=32164082|t=2020. Respiratory support for severe 2019-nCoV pneumonia suffering from acute respiratory failure: time and strategy |pdf=|usr=}} | ||
| + | {{tp|p=32100976|t=2020. Airway management of COVID-19 patients with severe pneumonia |pdf=|usr=}} | ||
| + | {{tp|p=32306624|t=2020. Airway management of COVID-19 patients with severe pneumonia |pdf=|usr=}} | ||
| + | {{tp|p=C7144845|t=ä. Cuidado respiratorio en COVID-19 |pdf=|usr=}} | ||
| + | {{tp|p=32329799|t=2020. Management of COVID-19 Respiratory Distress |pdf=|usr=}} | ||
| + | {{tp|p=C7179052|t=2020. Barrier System for Airway Management of COVID-19 Patients |pdf=|usr=}} | ||
| + | {{tp|p=32317591|t=2020. Potential for Lung Recruitment and Ventilation-Perfusion Mismatch in Patients With the Acute Respiratory Distress Syndrome From Coronavirus Disease 2019 |pdf=|usr=}} | ||
| + | {{tp|p=32395930|t=2020. Soporte respiratorio en el paciente adulto con insuficiencia respiratoria aguda secundaria a COVID-19 en urgencias y emergencias.|pdf=|usr=007}} | ||
| + | {{tp|p=C7200124|t=ä. Airway management for COVID-19: a move towards universal videolaryngoscope?|pdf=|usr=}} | ||
| + | {{ttp|p=C7154064|t=ä. COVID-19 pneumonia: different respiratory treatments for different phenotypes?|pdf=|usr=}} | ||
| + | {{tp|p=31924443|t=2020. (+)Factores de riesgo de fracaso de ventilacion no invasiva en neumonia primaria por influenza A en pacientes criticos |pdf=|usr=}} | ||
| + | {{ttp|p=32412891|t=2020. Hyperbaric oxygen therapy in preventing mechanical ventilation in COVID-19 patients: a retrospective case series.|pdf=|usr=007}} | ||
| + | {{tp|p=32507464|t=2020. One-Lung Ventilation: A Simple Technique to Reduce Air Contamination During the Coronavirus Disease 2019 (COVID-19) Pandemic.|pdf=|usr=007}} | ||
| + | {{tp|p=32460464|t=2020. Noninvasive versus invasive ventilation: one modality cannot fit all during COVID-19 outbreak.|pdf=|usr=007}} | ||
| + | {{tp|p=C7155153|t=2020. Außerklinische Beatmung: Lungenerkrankungen |pdf=|usr=}} | ||
| + | {{tp|p=32436581|t=2020. Buying Time: Using OMM to Potentially Reduce the Demand for Mechanical Ventilation in Patients With COVID-19.|pdf=|usr=007}} | ||
| + | {{tp|p=32484298|t=2020. Neck circumference as reliable predictor of mechanical ventilation support in adult inpatients with COVID-19: A multicentric prospective evaluation.|pdf=|usr=007}} | ||
| + | {{tp|p=32496506|t=2020. Alternatives to Invasive Ventilation in the COVID-19 Pandemic.|pdf=|usr=007}} | ||
| + | {{tp|p=32409443|t=2020. Respiratory failure in patients infected with SARS-CoV-2.|pdf=|usr=007}} | ||
| + | {{ttp|p=32479162|t=2020. Respiratory Mechanics of COVID-19 vs. Non-COVID-19 Associated Acute Respiratory Distress Syndrome.|pdf=|usr=007}} | ||
| + | {{tp|p=32414708|t=2020. Airway management considerations in patients with COVID-19.|pdf=|usr=007}} | ||
| + | {{tp|p=32327566|t=2020. One ventilator for two patients: feasibility and considerations of a last resort solution in case of equipment shortage |pdf=|usr=}} | ||
| + | {{tp|p=32521584|t=2020. Rethinking the early intubation paradigm of COVID-19: time to change gears?|pdf=|usr=008}} | ||
| + | {{tp|p=32402207|t=2020. Mechanical Ventilation in COVID-19: Interpreting the Current Epidemiology.|pdf=|usr=007}} | ||
| + | {{ttp|p=32423431|t=2020. Unconventional approaches to mechanical ventilation-step-by-step through the COVID-19 crisis.|pdf=|usr=008}} | ||
| + | {{tp|p=32435934|t=2020. Flowchart for non-invasive ventilation support in COVID-19 patients from a northern Italy Emergency Department.|pdf=|usr=008}} | ||
| + | {{ttp|p=32446177|t=2020. Airway management and ventilation principles in COVID-19 patients.|pdf=|usr=008}} | ||
| + | {{tp|p=32427182|t=2020. Pragmatic recommendations for intubating critically ill patients with suspected COVID-19.|pdf=|usr=008}} | ||
| + | {{tp|p=32515384|t=2020. Respiratory and ventilator management of COVID-19.|pdf=|usr=008}} | ||
| + | {{tp|p=32357074|t=2020. Advanced Pulmonary and Cardiac Support of COVID-19 Patients: Emerging Recommendations From ASAIO-a Living Working Document.|pdf=|usr=008}} | ||
| + | {{tp|p=32427171|t=2020. Respiratory support for adult patients with COVID-19.|pdf=|usr=008}} | ||
| + | {{ttp|p=32532318|t=2020. A plea for avoiding systematic intubation in severely hypoxemic patients with COVID-19-associated respiratory failure.|pdf=|usr=008}} | ||
| + | {{tp|p=32483500|t=2020. Refractory Acute Respiratory Distress Syndrome Secondary to COVID-19 Successfully Extubated to Average Volume-assured Pressure Support Non-invasive Ventilator.|pdf=|usr=008}} | ||
| + | {{tp|p=32503600|t=2020. In-hospital airway management of COVID-19 patients.|pdf=|usr=008}} | ||
| + | {{tp|p=32456368|t=2020. [Therapy of coronavirus disease 2019 induced acute respiratory distress syndrome is different from traditional acute respiratory distress syndrome].|pdf=|usr=008}} | ||
| + | {{tp|p=32410773|t=2020. Guide pour le suivi respiratoire des patients ayant presente une pneumonie a SARS-CoV-2. Propositions de prise en charge elaborees par la Societe de pneumologie de langue francaise. Version du 10 mai 2020.|pdf=|usr=009}} | ||
| + | {{ttp|p=32437877|t=2020. Distinct phenotypes require distinct respiratory management strategies in severe COVID-19.|pdf=|usr=009}} | ||
| + | {{tp|p=32048501|t=2020. [Respiratory support for severe 2019-nCoV pneumonia suffering from acute respiratory failure: time and strategy].|pdf=|usr=008}} | ||
| + | {{tp|p=32423368|t=2020. Factors Associated With Intubation and Prolonged Intubation in Hospitalized Patients With COVID-19.|pdf=|usr=009}} | ||
| + | {{tp|p=C7154064|t=ä. COVID-19 pneumonia: different respiratory treatments for different phenotypes?|pdf=|usr=}} | ||
| + | {{tp|p=32519064|t=2020. Caution about early intubation and mechanical ventilation in COVID-19.|pdf=|usr=008}} | ||
| + | {{ttp|p=32358232|t=2020. Advanced Pulmonary and Cardiac Support of COVID-19 Patients: Emerging Recommendations From ASAIO-A "Living Working Document".|pdf=|usr=008}} | ||
| + | {{ttp|p=32396457|t=2020. Subphenotyping ARDS in COVID-19 Patients: Consequences for Ventilator Management.|pdf=|usr=008}} | ||
| + | {{tp|p=32552914|t=2020. Single ventilator for multiple patients during COVID19 surge: matching and balancing patients.|pdf=|usr=010}} | ||
| + | {{tp|p=32588066|t=2020. Rapidly scalable mechanical ventilator for the COVID-19 pandemic.|pdf=|usr=010}} | ||
| + | {{tp|p=32319424|t=2020. Respiratory Support in COVID-19 Patients, with a Focus on Resource-Limited Settings.|pdf=|usr=008}} | ||
| + | {{tp|p=32588271|t=2020. Calculation of air change rates and post-aerosol pause times for a COVID-19 airway management enclosure.|pdf=|usr=010}} | ||
| + | {{ttp|p=32564028|t=2020. Position Paper for the State-of-the-Art Application of Respiratory Support in Patients with COVID-19.|pdf=|usr=010}} | ||
| + | {{ttp|p=32546230|t=2020. The ARDSnet protocol may be detrimental in COVID-19.|pdf=|usr=010}} | ||
| + | {{tp|p=32601006|t=2020. Importance of respiratory airway management as well as psychological and rehabilitative treatments to COVID-19 patients.|pdf=|usr=011}} | ||
| + | {{tp|p=32539283|t=2020. An Innovative Way to Achieve Safe Lung Deflation During One-Lung Ventilation in a Potential Coronavirus Disease 2019 Patient: A Case Report.|pdf=|usr=011}} | ||
| + | {{tp|p=32525226|t=2020. Oxygen: under or over a surgical facemask for COVID-19 patients?|pdf=|usr=008}} | ||
| + | {{tp|p=32506482|t=2020. One-lung ventilation during the COVID-19 pandemic.|pdf=|usr=008}} | ||
| + | {{ttp|p=32536444|t=2020. Using applied lung physiology to understand COVID-19 patterns.|pdf=|usr=011}} | ||
| + | {{tp|p=32366771|t=2020. Non-Invasive versus Invasive Ventilation in COVID-19: One Size Does Not Fit All!|pdf=|usr=008}} | ||
| + | {{ttp|p=32579017|t=2020. Mechanics of Breathing and Gas Exchange in Mechanically Ventilated Patients with COVID-19 Associated Respiratory Failure.|pdf=|usr=010}} | ||
| + | {{tp|p=32599285|t=2020. Nocturnal oxygen therapy as an option for early COVID-19.|pdf=|usr=011}} | ||
| + | {{tp|p=32578791|t=2020. Ventilatory support recommendations in children with Sars-CoV-2.|pdf=|usr=011}} | ||
| + | {{tp|p=32584770|t=2020. Quick Thinking Turns out Low-Cost Ventilators.|pdf=|usr=011}} | ||
| + | {{tp|p=32559026|t=2020. Ventilator management of adult patients in the emergency department.|pdf=|usr=011}} | ||
| + | {{tp|p=32605992|t=2020. Respiratory failure and non-invasive respiratory support during the covid-19 pandemic: an update for re-deployed hospital doctors and primary care physicians.|pdf=|usr=011}} | ||
| + | {{ttp|p=32599509|t=2020. Airway management strategies for the Covid 19 patients: A brief narrative review.|pdf=|usr=011}} | ||
| + | {{tp|p=32607232|t=2020. First COVID-19 sub-intensive respiratory unit in Europe: the Italian experience.|pdf=|usr=011}} | ||
Aktuelle Version vom 30. September 2020, 16:48 Uhr
vor nicht einmal 2 wochen haben unsere oberspatzen die eingelagerten beatmungsgeräte verramscht, und nun stehen uns #n19200 tageszugänge bevor. welche irren regieren uns ! #coviki
32035430 2020. [Recommendations on extracorporeal life support for critically ill patients with novel coronavirus pneumonia].
32144514 2020. Optimal mean airway pressure during high-frequency oscillatory ventilation in an experimental model of acute respiratory distress syndrome: EIT-based method.
32619530 2020. Supraglottic airways in the management of COVID-19 patients.
32646456 2020. Transpulmonary pressure in SARS-CoV-2-associated acute respiratory distress syndrome: a single-center observational study.
32680606 2020. Airway management lessons from case reports of negative outcomes. Comment on Br J Anaesth; 125: e168-70.
32692228 2020. Clinical outcome of standardized oxygen therapy nursing strategy in COVID-19.
32690356 ?. COVID-19 and respiratory support devices.
32696835 2020. COVID-19 pandemic and mechanical ventilation: facing the present, designing the future.
32698822 2020. Continuously available ratio of SpO2/FiO2 serves as a noninvasive prognostic marker for intensive care patients with COVID-19.
32706108 2020. Treatment of acute respiratory failure in the course of COVID-19. Practical hints from the expert panel of the Assembly of Intensive Care and Rehabilitation of the Polish Respiratory Society.
| 32712309 2020. The Basics of ARDS Mechanical Ventilatory Care for Cardiovascular Specialists. |
32736637 2020. Development of a work of breathing scale and monitoring need of intubation in COVID-19 pneumonia.
32735446 2020. Update Alert: Ventilation Techniques and Risk for Transmission of Coronavirus Disease, Including COVID-19.
32737523 2020. Physiological dead space ventilation, disease severity and outcome in ventilated patients with hypoxaemic respiratory failure due to coronavirus disease 2019.
32748116 2020. P-SILI is not justification for intubation of COVID-19 patients.
32744456 2020. Ventilator Sharing using Volume-Controlled Ventilation During the COVID-19 Pandemic.
32738055 2020. Discrepancy between Sp O2 and Sa O2 in patients with COVID-19.
32756545 2020. Early intubation and restrictive fluid management are key in the treatment of patients with moderate-severe COVID-19 pneumonitis.
32755309 2020. High Respiratory Drive and Excessive Respiratory Efforts Predict Relapse of Respiratory Failure in Critically Ill Patients with COVID-19.
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