15 Clinical Trials for Various Conditions
SUMMARY: This is a quantitative, non-inferiority study using healthy participants to compare tidal volumes at rest measured by both a standard RIP belt and a flow-regulated nasal oxygen delivery system FRNDS cannula. Recording of tidal breathing is essential for patients undergoing evaluation for respiratory disease and reduced exercise capacity. Conventional spirometry techniques involving pneumotachometers are currently employed worldwide in pulmonary testing laboratories to record pulmonary flow and calculate tidal volumes by allowing subjects to breath out of mouth into these devices. However, concurrent use of pneumotachometers while testing a novel nasal device is not feasible. Respiratory inductive plethysmography (RIP) has been developed and validated to evaluate tidal ventilation during quiet breathing using a band around the chest. RIP signals may be contaminated by body movements resulting in artifacts which may be a limitation. However, although a crude method when compared to spirometry, RIP remains a viable method for comparison. FRNDS is a novel cannula device that can both measure tidal volume (VT) in real time while simultaneously delivering air to the patient. The gold-standard of measuring VT clinically is spirometry; however, this test cannot be completed when patients are receiving supplemental oxygen or air. Thus far, the FRNDS cannula has been tested in vitro with a cylindrical flow model and has accurately measured simulated VTs with 80% accuracy, but has not yet been validated in Human subjects. To assess the devices robustness in a clinical scenario is essential to the development and eventually adaptation of FRNDS in clinical care. OBJECTIVES:- In this study the investigators aim to describe and validate flow-regulated nasal oxygen delivery system (FRNDS) instrumented nasal cannula as a non-inferior methodology of measuring flows at the nasal interface compared to conventional methods (e.g., RIP belts) with the added benefit of administering a dose of air to the subjects. While the FRNDS device was validated in vitro in a cylindrical model, the investigators aim to show equivalence to standard respiratory measurement methods in healthy subjects. This milestone will be essential towards the eventual translation of an adaptive cannula system that measures and adjusts air flow according to patient needs in real time. ENDPOINTS: The primary endpoint of this study is the continuous measurement of a test subjects Vt and Minute ventilation ( VE) while simultaneously delivering variable volumes of air to the patient and comparing these results with Vts and VE captured with conventional technology (RIP belts). The investigators will also be collecting inspiratory time (Ti) expiratory time (Te) continuously and a single measurement of nasal cavity openings (e.g., internal vertical and horizontal dimensions 1 cm inside the nares using calipers)
This study is designed to provide preliminary data to determine if concentrations of piperacillin/tazobactam change in patients with severe respiratory failure receiving extracorporeal membrane oxygenation (ECMO). The investigators hypothesize that patients will have significant changes in concentration measurements, specifically an increased clearance rate and increased volume of distribution, during ECMO as compared to critically ill patients.
Optimal delivery of nutritional support during critical illness is central to appropriate intensive care unit management, and yet fundamental gaps in knowledge exist regarding timing, route, dose, and type of nutritional support for critically ill infants and children. Understanding how to optimize nutritional support during pediatric critical illness is important because even brief periods of malnutrition in infancy result in permanent negative effects on long-term neurocognitive development. Optimized nutrition support is a way to improve morbidity for survivors of pediatric critical illness. Parenteral nutrition (PN) supplementation could improve long-term neurocognitive outcome for pediatric critical illness by preventing acute malnutrition, but has unknown effects on intestinal barrier function; a proposed mechanism for late sepsis and infectious complications during critical illness. While randomized controlled trials (RCT) support early PN in premature infants and late PN in critically ill adults, the optimal time to begin PN is unknown for critically ill infants and children. Acute malnutrition may develop within 48 hours of admission in critically ill infants and children, and repleted energy stores are predictive of survival. And yet, due to concerns for PN-associated infectious morbidity, current PICU standard of care is to supplement with PN only in children who fail to enterally feed, as late as 7 days into their admission. Delays in nutrition may have long-term effects on cognitive outcome in older infants and children. In premature infants, PN begun within hours of birth results in improved 18-month neurocognitive outcome without an increase in infectious complications. An RCT is needed to determine if early PN in critically ill infants and children prevents acute malnutrition and improves short and long-term outcomes of PICU hospitalization. The central hypothesis of this proposal is that optimized early protein and calorie delivery will improve nutritional outcomes and intestinal barrier function for critically ill infants and children. The overall purpose of this study is to evaluate the efficacy and safety of early PN as a supplement to enteral nutrition to improve nutritional delivery, nutritional outcomes, and intestinal barrier function for infants and children with acute respiratory failure who are mechanically ventilated in the pediatric intensive care unit.
Coronavirus disease 2019 (COVID-19) is caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) and in infected patients, it produces symptoms which range from completely asymptomatic to those expressing severe illness. Early recognition of those developing severe manifestations allows for rapid and appropriate intervention, including admission to intensive care unit and intensive care therapy, such as mechanical ventilation. A current problem is that only limited data exist predicting the clinical course of COVID-19. This study will determine whether non-invasive urinalysis is useful in assessing and predicting the severity or clinical course of patients with COVID-19.
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.
Complications are common during endotracheal intubation of critically ill adults. Manual ventilation between induction and intubation ("bag-valve-mask" ventilation) has been proposed as a means of preventing hypoxemia, the most common complication of intubation outside the operating room. Safety and efficacy data, however, are lacking. PreVent is a randomized trial comparing manual ventilation between induction and laryngoscopy to no manual ventilation between induction an laryngoscopy during endotracheal intubation of critically ill adults. The primary efficacy endpoint will be the lowest arterial oxygen saturation. The primary safety endpoints will be the lowest oxygen saturation, highest fraction of inspired oxygen, and highest positive end-expiratory pressure in the 24 hours after the procedure.
An assessment of early management of moderate-severe ARDS in the United States, including ventilator management and use of rescue therapy.
A multimodal educational intervention to target an oxygen saturation target range (SpO2 90-96%) will reduce ventilator length of stay and reduce occult hypoxemia by increased awareness and adherence to a designated oxygen saturation target range.
Patients with severe chronic diseases are often admitted to the hospital complaining of shortness of breath. Some of these patients decide that they do not want placement of a breathing tube in the windpipe to assist their breathing. In this situation, these patients are treated with oxygen, a variety of medications like morphine or masks that are connected to breathing machines, something called bilevel positive airway pressure (BiPAP) or noninvasive ventilation (NIV), to help with their breathing. Not much is known about how much noninvasive ventilation helps these patients, especially how comfortable they feel with it and how much their families think it helps. Our aim is to monitor use of ways to help breathing in patients who don't want a breathing tube, see how often noninvasive ventilation is used and ask surviving patients, patient's families and caregivers about their experience with noninvasive ventilation and how much it seemed to help. With our findings, we hope to improve the use of noninvasive ventilation in these patients and come up with ways to relieve their shortness of breath and provide as much comfort as possible.
Intraoperative intravenous fluid management practice varies greatly between anesthesiologists. Postoperative fluid based weight gain is associated with major morbidity. Postoperative respiratory complications are associated with increased morbidity, mortality and hospital costs. The literature shows conflicting data regarding intraoperative fluid resuscitation volume. No large-scale studies have focused on intraoperative fluid management and postoperative respiratory dysfunction. Hypotheses: Primary - Liberal intraoperative fluid resuscitation is associated with an increased risk of 30 day mortality Secondary - Liberal intraoperative fluid resuscitation is associated with increased likelihood of postoperative respiratory failure, pulmonary edema, reintubation, atelectasis, acute kidney injury and peri-extubation oxygen desaturation.
Inhaled nitric oxide (iNO) improves oxygenation in term infants with respiratory failure. However, iNO has been primarily used in infants receiving mechanical ventilation. This study is a pilot study to determine if iNO given into an oxygen hood is effective in improving oxygenation in term and near-term infants who have poor oxygenation but who are not yet mechanically ventilated.
1. To determine the lowest nasal cannula flow rate in which upper airway deadspace is reduced. Hypothesis - The lowest flow rate of high flow nasal cannula (HFNC) will reduce upper airway (extrathoracic) deadspace and improve respiratory efficiency by reducing transcutaneous CO2 and/or lower respiratory rate. 2. To determine the lowest nasal cannula flow rate in which regional distribution (as defined by EIT) of ventilation changes. Hypothesis - Moderate to high flow rates will create positive pressure that leads to improved regional distribution of ventilation.
Rapid Sequence Intubation (RSI) is a high-risk procedure in the emergency department (ED). Patients are routinely preoxygenated (given supplemental oxygen) prior to RSI to prevent hypoxia during intubation. For many years anaesthetists have used end-tidal oxygen (ETO2) levels to guide the effectiveness of preoxygenation prior to intubation. The ETO2 gives an objective measurement of preoxygenation efficacy. This is currently not available in most EDs. This trial evaluates the use of ETO2 on the rate of hypoxia during intubation for patients in the ED.
To determine whether the use of oxygen hoods as compared to conventional high-flow oxygen delivery systems, and the effects on oxygenation, mechanical ventilation and mortality rates in hypoxic patients with COVID-19.
This study is being conducted to compare the incidence of preterm infants (up to 28+6 weeks GA) who achieve a peripheral oxygen saturation of 80 percent by 5 minutes of life (MOL) given mask CPAP/PPV with an FiO2 of 1.0 during DCC for 90 seconds (HI Group) to infants given mask CPAP/PPV with an FiO2 of .30 during DCC for 90 seconds (LO Group).