Clinical Trials Logo

Respiratory Distress Syndrome clinical trials

View clinical trials related to Respiratory Distress Syndrome.

Filter by:

NCT ID: NCT05692557 Completed - Clinical trials for Acute Respiratory Distress Syndrome

Virtual Reality Distraction Technique to Improve Chest Burns With Acute Respiratory Distress Syndrome

Start date: September 1, 2020
Phase: N/A
Study type: Interventional

Inhalation of toxic gases and chemical irritants during the fire leads to damage to the respiratory tract or the alveolar tissue, which is known as smoke inhalation injury. Acute Respiratory Distress Syndrome (ARDS) is associated with smoke inhalation injury. These patients usually need physiotherapy in the form of chest mobilization and breathing exercises for up to 4 to 6 weeks after discharge from the burns care centre. The patients during this phase are usually in pain and extremely anxious about these exercises. Virtual reality distraction (VRD) is one such technique that is gaining immense popularity recently, it has more immersive distraction when compared to traditional distraction techniques. This study aims to investigate the effect of a virtual reality distraction (VRD) technique as a pain alleviation tool for reducing pain during physiotherapy in burns patients with acute respiratory distress syndrome (ARDS) in a hospital setting.

NCT ID: NCT05682612 Recruiting - Clinical trials for COVID-19 Acute Respiratory Distress Syndrome

Prognostic Value of PtcO2 in Patients With COVID-19

Start date: January 9, 2023
Phase:
Study type: Observational

Five percent of patients with COVID-19 progressed to respiratory failure and required ICU admission, such patients often have abnormal oxygen tolerance. However, there is still a lack of clinical indicators to predict the prognosis and treatment responsiveness of COVID-19.

NCT ID: NCT05677165 Completed - Pneumonia Clinical Trials

The Relationship Between Driving Pressure, Mechanical Power, Oxygenation and Saturation Indices: Retrospective Observational Study

Start date: March 18, 2020
Phase:
Study type: Observational

By using Mechanical Power and Driving Pressure instead of Pmean we calculate new oxygen saturation indices like Driving Pressure Oxygen Index (OIDP), Dynamic Power Oxygen Index (OIMPdyn), Total Power Oxygen Index (OIMPtot), Driving Pressure Saturation Index (OSIDP), Dynamic Power Saturation Index (OSIMPdyn) ve Power Saturation Index (OSIMPtot). New oxygenation and saturation indices are able to predict ICU mortality better than the conventional indexes and rates.

NCT ID: NCT05676723 Completed - Clinical trials for Acute Respiratory Distress Syndrome

Thoracic Fluid Content by Bioimpedance-based Starling System

TFC-Bio
Start date: January 18, 2022
Phase:
Study type: Observational

The Starling system is a completely non-invasive hemodynamic monitoring technique. It is able to measure the thoracic fluid content (TFC). The TFC is supposed to reflect the total content of fluid in the thorax. Thus, TFC may include two of the variables that are commonly used for hemodynamic monitoring: the extravascular lung water (EVLW), and the global end-diastolic volume (GEDV). However, whether the TFC actually reflects GEDV and EVLW has not been clearly established. The objective of the study is to establish the determinants of TFC among hemodynamic variables including EVLW and GEDV.

NCT ID: NCT05675696 Not yet recruiting - Clinical trials for Acute Respiratory Distress Syndrome

Assessment of Occult Lung Stress During Lung Protective Mechanical Ventilation

Start date: October 2024
Phase: N/A
Study type: Interventional

The present study will utilize esophageal manometry to measure the presence and magnitude of persistent patient effort during lung protective ventilation, allowing identification and mitigation of occult lung stress.

NCT ID: NCT05672472 Not yet recruiting - Clinical trials for Acute Respiratory Distress Syndrome

Neutrophil Elastase Inhibitor in Treatment of ARDS Patients With Mechanical Ventilation Caused by Sepsis

Start date: January 10, 2023
Phase: N/A
Study type: Interventional

Sepsis is a life-threatening organ dysfunction caused by the host's maladjusted response to infection. It is one of the common clinical critical diseases, often accompanied by multiple organ failure, immune imbalance and high mortality. Sepsis is a syndrome of physiological, pathological and biochemical abnormalities caused by infection. Its incidence rate and prevalence have been on the rise in the past few years. Sepsis has greatly endangered the lives and health of the public. Among them, ARDS is a fatal complication of sepsis and a common critical illness syndrome in ICU. At present, the conventional treatment for ARDS caused by sepsis is still limited to indirect supportive therapy such as primary disease treatment, infection control, mechanical ventilation support, and nutrition improvement, lacking specific direct treatment methods. So far, the drug treatment effect of ARDS at home and abroad is not satisfactory. Therefore, it has become an urgent task to find a new treatment strategy to alleviate ARDS. Neutrophil elastase inhibitors can reversibly and competitively inhibit the release of neutrophil elastase, inhibit the activation of neutrophils and the infiltration of inflammatory cells in the lungs, alleviate the release of inflammatory mediators, and thus improve respiratory function, which has a good protective effect on various experimental ARDS. However, the efficacy of neutrophil elastase inhibitor represented by sivelestat sodium in the treatment of ARDS has reached a relatively consistent positive conclusion in animal experiments, while the results of clinical studies are different. These differences in clinical research still need further analysis, research and verification in clinical trials. At present, the clinical studies of neutrophil elastase inhibitors in the treatment of sepsis induced ARDS are very few, and there is a lack of related prospective randomized controlled clinical studies. Therefore, further prospective clinical trials are needed to evaluate the therapeutic effect of neutrophil elastase inhibitors on sepsis induced ARDS patients. This study is intended to determine whether neutrophil elastase inhibitor can reduce the mechanical ventilation time, Murray lung injury score, ICU hospitalization time and 28-day mortality of septic ARDS patients compared with the control group through a single center randomized controlled trial, so as to provide a new basis for the treatment strategy of septic ARDS patients.

NCT ID: NCT05658692 Recruiting - Clinical trials for Acute Respiratory Distress Syndrome

Platform Adaptive Embedded Trial for Acute Respiratory Distress Syndrome

PETARDS
Start date: October 1, 2022
Phase: Phase 4
Study type: Interventional

Platform adaptive embedded trial for acute respiratory distress syndrome (PETARDS) is a randomized, embedded, multifactorial, adaptive platform trial for ARDS. The study aimed to assess the impact of multiple interventions on outcomes in patients with ARDS admitted to the ICU.

NCT ID: NCT05650957 Active, not recruiting - COVID-19 Clinical Trials

PRactice of VENTilation in Patients With ARDS Due to COVID-19 vs Pneumonia

PRoVENT-COP
Start date: August 1, 2022
Phase:
Study type: Observational

This study aims to compare epidemiology, management of invasive ventilation and outcomes in critically ill patients with COVID-19 ARDS and ARDS from another pulmonary infection. The investigators will use individual patient data from four recently published large observational COVID-9 studies, including the 'Practice of VENTilation in COVID-19 patients' (PRoVENT-COVID) study, the 'Epidemiology of COVID-19 patients in the ICU' (EPICCoV) study, the 'SATI-COVID-19 - Clinical Characteristics and Outcomes of Patients With COVID-19 on Mechanical Ventilation in Argentina: a Prospective, Multicenter Cohort Study' and the CIBERESUCICOVID - Personalized Risk and Prognosis Factors and Follow-up at One Year of the Patients Hospitalized in the Spanish Intensive Care Units Infected with COVID -19' study. The investigators will use the individual patient data from ARDS patients with another pulmonary infection from the 'LUNG -SAFE - Large Observational Study to UNderstand the Global Impact of Severe Acute Respiratory FailurE' study and the 'ERICC - Epidemiology of Respiratory Insufficiency in Critical Care' study.

NCT ID: NCT05647850 Recruiting - Neonatology Clinical Trials

Optimization and Clinical Study of Early Prediction Model for Neonatal Acute Respiratory Distress Syndrome

Start date: January 1, 2023
Phase:
Study type: Observational

The goal of this observational study is to learn about neonatal acute respiratory distress syndrome in describe participant population. The main question it aims to answer is: using perinatal factors to predict early neonatal acute respiratory distress syndrome and reduce its mortality. Participants' umbilical cord blood will be collected for testing, but will not receive any intervention.

NCT ID: NCT05640635 Not yet recruiting - Clinical trials for Acute Respiratory Distress Syndrome

Inflammation During ECMO Therapy and ECMO Weaning

ECMOWean
Start date: January 2023
Phase: N/A
Study type: Interventional

The goal of this interventional clinical trial is to compare patients who undergo ECMO therapy for treatment of acute respiratory distress syndrome (ARDS) and a randomized into one of two possible weaning strategy groups. Group 1: Weaning from ventilator occurs before ECMO weaning. Group 2: Weaning from ECMO occurs before weaning from ventilator. This study investigates which one of these strategies is more indulgent for the lung, and leads to less inflammation and therefore less potential side effects and an overall more favourable clinical course. As a primary criterion, measure of IL-6 in blood samples will beused. As secondary criterions, SOFA score at various time points, ventilation pressures, lung injury score (LIS), length of stay in the intensive care unit, and ventilator-associated pneumonia as well as levels of inflammatory cells and cytokines in both blood samples and bronchoalveolar lavage at different time points will be determined.