View clinical trials related to Respiratory Distress Syndrome.
Filter by:• Check the efficacy, safety and tolerability of the compound Modified isothymol against the SARS-CoV-2 agent in patients COVID-19.
Esophageal manometry was used as surrogate of pleural pressure to titrate positive end-expiratory pressure (PEEP) in ARDS patients. However, Absolute values of esophageal pressure (Pes) could be affected by the PEEP setting. In moderate to severe ARDS patients, the end-expiratory Pes changed differently with PEEP adjustment. and the esophageal phenotypes could be divided into type I and type II. with Type I (ΔPes≥30%ΔPEEP)and Type II(ΔPes<30%ΔPEEP).
To test the effectiveness of a respiratory physiotherapy treatment plan in patients who have passed COVID-19, comparing two randomized groups, for the performance of different respiratory musculature training protocols. To objectify the results data obtained by means of ultrasound measurements and spirometry, observing the differences obtained at the beginning and end of the study, verifying the effectiveness of the PowerBreathe® ,Therosold PEP® tools and the effectiveness of diaphragmatic, abdominal and expiratory exercises.
Neurally Adjusted Ventilatory Assist (NAVA) is a mode of ventilation where the electrical activity of the diaphragm (EDI) - a signal representing the baby's respiratory drive - is used to control the timing and amount of assist provided. NAVA was introduced to the market in 2007 and since has been used in more than 40 countries. In the current clinical practice, the Edi signal from the patient is captured with miniature sensors (the size of a hair) embedded in the wall of a specially designed naso/orogastric feeding tube. This FDA and Health Canada approved, commercially available catheter (Getinge, Solna, Sweden), is 6 Fr in size (outer diameter), 49 cm in length and has 8 pairs of sensors that are placed 6 mm apart (so-called inter electrode distance (IED) is 6 mm). While no obvious side effects have been noted by clinicians, for the smallest of neonates, the currently used commercial catheter (size 6F, 49 cm long) may have 'excessive' post-array catheter length. In these neonates, typically those with weight < 750 grams, following the correct placement of catheter as per the electrode array positioning at gastro-esophageal junction, the feeding holes in the catheter may end at the level of distal stomach instead of the desirable mid-stomach location. The changing demographics of the patients in the Neonatal Intensive Care Units (NICU) has created a clinical need to redesign the currently used Edi catheter specifically to suit the smallest of patients, such that following adequate placement the feeding holes sit at the level of mid-stomach. Drs. Christer Sinderby and Jennifer Beck in Toronto, Canada, are the original designers of the 6 mm/49 cm currently used Edi catheter. These investigators (at St-Michael's Hospital, Toronto) in collaboration with their team at Neurovent Research Inc. (NVR) have re-designed and invented a new prototype of the current FDA-approved catheter specifically suited for use in extreme premature neonates. They have done so by reducing the interelectrode distance from the originally set 6 mm to 4 mm, which reduces the overall insertion depth to capture the same signal from the diaphragm. All other parameters are exactly same as the original catheter (6F, 49 cm long). In this small feasibility study the investigators wish to provide a clinical proof of concept for the use of this newly designed prototype in 10 extremely premature neonates who are already receiving NAVA ventilation in the NICU.
ALT-100 is a monoclonal antibody developed by Aqualung Therapeutics Corp. as a treatment for Acute Respiratory Distress Syndrome (ARDS). ARDS can occur as a serious complication in patients with respiratory infections such as COVID-19 and Influenza or have acquired trauma to their lungs. 32 healthy male or female participants between the ages of 18 and 55 years will be enrolled into 4 cohorts of single ascending doses. The doses being investigated are 0.1mg/kg, 0.4mg/kg, 1mg/kg and 4mg/kg administered by intravenous infusion. Participants will be screened within 28 days of study treatment, be admitted to the clinical research unit for 3 nights and attend 7 outpatient visits on study days 8, 15, 22, 29, 60, 90 and 120 respectively. This study will collect data to evaluate safety and tolerability, Pharmacokinetics of ALT-100, Pharmacodynamics of ALT-100 and determine if Anti-drug Antibodies are produced in the participants.
This study aims to compare care provided by physiotherapists, combining respiratory care and early rehabilitation in intensive care unit, with standard care on the rate of acute respiratory failure within 7 days after extubation, in patients with high risk of extubation failure.
This phase IIb study, LEONARDO is a multicenter, randomized, double-blind, placebo- controlled, parallel group study, to assess the therapeutic efficacy and safety of Plerixafor in patients over 18 years of age, - with acute respiratory failure related to COVID-19 and - Recently admitted in ICU or equivalent structure (within 48 hours) for COVID-19 related respiratory failure - without invasive mechanical ventilation and - requiring oxygen support ≥ 5L/min to obtain a transcutaneous O2 saturation > 94% A total of 150 participants, will be randomized in a 2:1 ratio to receive either Plerixafor (n=100) or placebo (n=50) as a continuous IV infusion for 7 days (from D1 to D8) in addition to standard of care (e.g. glucocorticoids...). Safety data will be reviewed by an independent Data and Safety Monitoring Board (DSMB) during the study.
In ARDS patients, mechanical ventilation should minimize ventilator-induced lung injury. The mechanical power which is the energy per unit time released to the respiratory system according to the applied tidal volume, PEEP, respiratory rate, and flow should reflect the ventilator-induced lung injury
Treatment of acute respiratory distress syndrome (ARDS) relies on invasive mechanical ventilation with supposedly protective settings (low tidal volume ventilation). Mortality of ARDS remains high in observational studies (40 to 50%). Approximately 30% of ARDS patients exhibit tidal hyperinflation despite low tidal volume ventilation, suggesting that personalization of tidal volume is required to improve ARDS prognostic. To date, reliable bedside tools to adjust tidal volume are lacking. Excessive tidal volume can be detected using computed tomography by quantification of tidal hyperinflation, but this technique is reserved to research studies and requires patient transport to imaging facility. Mechanical ventilation generates cardio-pulmonary interaction, whose magnitude is influenced by tidal volume and respiratory system characteristics. Pulse pressure variation is a bedside tool with potential to quantify cardio-pulmonary interactions. Increasing tidal volume will decrease right ventricular preload and increase right ventricular afterload, hence maximizing cardio-pulmonary interactions. The investigators hypothesize that pulse pressure variation might help to detect excessive tidal volume during a tidal volume challenge (i.e. stepwise increase in tidal volume)
With this research, we are aiming at finding out the effectiveness of prone positioning in this region population affected by moderate pneumonia due to covid 19 infection so that the hospital staff and doctors may be encouraged with facts and data to use such an easy maneuver to stabilize patient's oxygen saturation as we believe that prone positioning does have a protective effect against severe disease and has an effect on reducing mortality if patients are encouraged for prone positioning with proper technique and for suitable time duration as has been observed in the clinical practice in the covid wards. Therefore, we want to assess the effects of 8 hours per day prone positioning the patients with confirmed covid pneumonia admitted in the covid wards.