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Respiratory Distress Syndrome clinical trials

View clinical trials related to Respiratory Distress Syndrome.

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NCT ID: NCT04158479 Recruiting - Heart Failure Clinical Trials

China Extracorporeal Life Support Registry

Start date: January 1, 2017
Phase:
Study type: Observational [Patient Registry]

Extracorporeal life support (ECLS), also known as extracorporeal membrane oxygenation (ECMO), is an extracorporeal technique of providing effective cardiac and respiratory support to patients with lungs and/or heart failure. There was a growth in ECLS cases, centers, and center scale in China during the past decade. This multi-center registry was conducted by Chinese Society of Extracorporeal Life Support. The objectives were to investigate China statistics of ECLS and to evaluate the short-term and long-term outcomes of patients with ECLS.

NCT ID: NCT04156438 Completed - Clinical trials for Acute Respiratory Distress Syndrome

Airway Pressure Release Ventilation for Moderate-to-severe Acute Respiratory Distress Syndrome

EARL
Start date: June 29, 2020
Phase: N/A
Study type: Interventional

This study will examine the feasibility of a large clinical trial investigating the effectiveness of airway pressure release ventilation and low tidal volume ventilation for patients with moderate-to-severe acute respiratory distress syndrome.

NCT ID: NCT04141293 Withdrawn - ARDS, Human Clinical Trials

Hemodynamic Effects of Changes in Transpulmonary Pressure During Recruitment Maneuver in Patients Under Pressure Supported Mechanical Ventilation

Start date: August 1, 2017
Phase: N/A
Study type: Interventional

According to the anatomical proximity of the heart temporarily elevated intrathoracic pressures may have direct and indirect effects on the cardiovascular system. Undesirable hemodynamic effects of a recruitment maneuver primarily arise from the transiently increased airway pressure, manifesting in decreased right heart filling, increased pulmonary vascular resistance, a drop in left ventricular systolic transmural pressure, right and left heart ventricular interactions and subsequent changes in cardiac index. These effects can be more pronounced in patients suffering from ARDS, a condition commonly accompanied by hemodynamic instability. The complex pathophysiological changes account for why routine intensive care monitoring, such as invasive arterial blood pressure or central venous pressure monitoring is insufficient to follow hemodynamic changes under recruitment maneuver. Previous studies by the same research team confirmed that the alveolar recruitment maneuver improves oxygenation in patients with moderate-to-severe hypoxemic respiratory failure under pressure supported ventilation. Following recruitment maneuver, arterial oxygenation increased in 74 % of all patients. However, there is lack of information regarding the actual degree of changes in transpulmonary pressure and the consequent hemodynamic alterations. The primary aim of the study is to evaluate precisely the transpulmonary pressure changes during recruitment in patients with severe hypoxemic respiratory failure ventilated in pressure support mode following insertion of a balloon-catheter into the esophagus. In the meantime, hemodynamic changes are monitored by PiCCO and transthoracic echocardiography, and lung field aeration by electric impedance tomography.

NCT ID: NCT04139733 Recruiting - Clinical trials for Respiratory Distress Syndrome, Adult

Early Use of Prone Position in ECMO for Severe ARDS

Start date: November 1, 2019
Phase:
Study type: Observational

Venovenous extracorporeal membrane oxygenation (VV-ECMO) is widely used in the salvage treatment of critical acute respiratory distress syndrome (ARDS). However, reducing lung injury, accelerating lung recovery, shortening VV-ECMO support time, and decreasing complications during the treatment need further study. By changing the body position of ARDS patients, the prone position can increase the lung's dorsal ventilation and improve the lung's ventilation/blood flow ratio to improve oxygenation. Previous multicenter studies have proved that the prone position can significantly reduce the mortality of patients with moderate and severe ARDS. However, patients with severe ARDS rescue by VV-ECMO rarely combine with a prone position.On the one hand, with the support of ECMO, the patient's oxygenation will be significantly improved, and they will no longer need the assistance of a prone position. In addition, the ECMO cannula brings some challenges to implementing a prone position. Only a few cohort studies have reported that VV-ECMO combined with a prone position could improve the oxygenation index and respiratory system compliance during the late treatment period. The initial reason for PP in ARDS patients was to alleviate severe hypoxemia, as it was an efficient means to improve oxygenation in most patients. However, some patients were categorized as non-responders in the PP regarding oxygenation, which caused VV-ECMO therapy to be initiated. Should we decide to perform PP after VV-ECMO therapy no longer? This study evaluates whether early use of PP during VV-ECMO would increase the proportion of patients successfully weaned from VV-ECMO support compared with supine positioning in severe ARDS patients who received PP before ECMO.

NCT ID: NCT04115709 Completed - Clinical trials for Acute Respiratory Distress Syndrome

Decision Support System to Evaluate VENTilation in ARDS

DeVENT
Start date: March 19, 2020
Phase: N/A
Study type: Interventional

Patients with Acute Respiratory Distress Syndrome (ARDS) residing in the intensive care unit (ICU) often require support for their breathing from a mechanical ventilator to provide adequate gas exchange, and although it is life-saving in this setting, it is also known to contribute to the morbidity and mortality in the condition. Mechanical ventilation delivers a volume and pressure of gas for each breath and can vary oxygen levels. Selecting the correct oxygen, pressure and volume levels is important, as incorrect levels can harm the patient, and result in an increased time connected to the ventilator. Recently, a system has been developed (the Beacon Caresystem) which advises the healthcare practitioner by the bedside as to how to best set the ventilator. This system is based on mathematics which describes the patients disease and may therefore provide ventilator settings which better suit the individual. The purpose of this study is to compare mechanical ventilation in ARDS patients following advice from the Beacon Caresystem to that of standard care to investigate whether the use of the system results in improved ventilation in all severities and phases of ARDS and thus reducing morbidity in ARDS. The investigators plan to recruit 110 patients (50 in the UK and 30 in each of the other 2 sites). The study also aims to examine the biological and physiological factors that determine the worsening of ARDS and the processes involved in recovery from ARDS with the aim to develop new therapies to help detect the condition and improve recovery. The investigators will utilise all raw data will be collected from the Beacon Caresystem to physiologically characterise the progression and resolution phases of ARDS. Additionally blood and Urine samples will be taken from healthy volunteers (100 in total) as a control comparison group for the biological analyses carried out in the DeVENT study.

NCT ID: NCT04115514 Recruiting - ARDS, Human Clinical Trials

Treatment of ARDS With Instilled T3

ARDS+T3
Start date: October 21, 2019
Phase: Phase 2
Study type: Interventional

It is hypothesized that instillation of Liothyronine Sodium (T3) into the airspace will be safe, well tolerated, and will increase alveolar fluid clearance and decrease inflammation in patients with ARDS, reflected in improved oxygenation index (OI) and oxygenation saturation index (OSI).

NCT ID: NCT04113434 Active, not recruiting - Clinical trials for Acute Respiratory Distress Syndrome

Linking Endotypes and Outcomes in Pediatric Acute Respiratory Distress Syndrome

LEOPARDS
Start date: January 7, 2020
Phase:
Study type: Observational

The overall goal of the study is to risk stratify pediatric Acute Respiratory Distress Syndrome (ARDS) patients and to identify sub-phenotypes with shared biology in order to appropriately target therapies in future trials. This is a prospective, multicenter study of 500 intubated children with ARDS, with planned blood collection within 24 hours of ARDS onset and subsequent measurement of plasma protein biomarkers and peripheral blood gene expression.

NCT ID: NCT04106128 Completed - Clinical trials for Respiratory Distress Syndrome,Adult

Prevalence, Impact and Reversibility of Acute Diaprhagmatic Dysfunction in Acute Respiratory Detresse

PIRD-DRA
Start date: April 5, 2019
Phase: N/A
Study type: Interventional

The diaphragm is a fine striated muscle with both extra respiratory and respiratory functions. It does most of the breathing work in interaction with the accessory respiratory muscles, the rib cage and the abdomen. Its activity can be measured by the transdiaphragmatic pressure generated by the magnetic stimulation of phrenic nerves (gold standard). It has been shown in the literature that diaphragmatic ultrasound, via the measurement of diaphragmatic excursion and especially the thickening fraction, is an easily accessible, non-invasive, reproducible and relevant technique for evaluating acute diaphragmatic dysfunction in resuscitation patients. The objective of this project is to evaluate the prevalence of diaphragmatic dysfunction at admission in patients hospitalized in intensive care / respiratory intensive care unit for hypercapnic and/or hypoxic acute respiratory distress and requiring ventilatory support by non-invasive ventilation or high flow oxygen therapy. A subgroup analysis will then be carried out on 3 populations: - Hypercapnic exacerbation of chronic obstructive pulmonary disease - Hypoxic acute respiratory distress on infectious lung disease - Acute pulmonary edema

NCT ID: NCT04079829 Active, not recruiting - Respiratory Failure Clinical Trials

Postoperative Respiratory Abnormalities

AI-ARF
Start date: September 1, 2019
Phase:
Study type: Observational

The study aims to determine how historical cases of respiratory abnormalities are documented by clinicians in the electronic health records (EHR) of Memorial Hermann Healthcare System (MHHS) inpatient facilities. The knowledge gained from this study will support the design of modern data-driven surveillance approach to continuously collect, monitor and timely recognize postoperative respiratory abnormalities using electronic healthcare recorded data.

NCT ID: NCT04070053 Completed - Clinical trials for Acute Respiratory Distress Syndrome

Treatment of Hypoxemic Respiratory Failure and ARDS With Protection, Paralysis, and Proning (TheraPPP) Pathway

TheraPPP
Start date: August 23, 2019
Phase: N/A
Study type: Interventional

Treatment of patients with Hypoxemic respiratory failure (HRF) and Acute Respiratory Distress Syndrome (ARDS) is complex. Therapies that have been shown to save the lives of patients with HRF and ARDS are available but they are not always provided. To reduce practice variation and improve adherence to evidence-informed therapies, the investigators developed the Treatment of Hypoxemic Respiratory Failure (HRF) and ARDS with Protection, Paralysis, and Proning (TheraPPP) Pathway. The purpose of this pilot study is to test the feasibility and acceptability of the TheraPPP Pathway. To assess feasibility, the investigators will test the ability to measure adherence to the pathway as well as patient and economic outcomes. To assess perceptions about the acceptability of the TheraPPP Pathway, the investigators will conduct a survey to clinicians who used the Pathway.