View clinical trials related to Respiration Disorders.
Filter by:This feasibility study is being conducted to investigate the practicalities and potential benefits of equipping patients with wearable monitoring devices.
One of the major problems in suppressing the spreading of an epidemic resides in understanding and monitoring its propagation patterns, and in evaluating how these are modified by enforced policies. The standard solution requires detailed information at the microscopic scales, e.g. how infected people have moved and whom they came in contact with, which is hardly ever available. The researchers propose a novel approach to the study of the propagation of COVID-19, in which a proxy of this information is derived at macroscopic scales. This will be based on two ingredients: the spatiotemporal study in shiny with mathematical models with aggregated or non aggregated data and the reconstruction of functional networks of spreading patterns, and the development of a supporting software.
Collect data from the CardiacSense1's sensors and Capnograph, for the purpose of developing a wearable system for monitoring of Respiratory Rate (RR) in patients while at hospital
It is widely described in the literature that exercise training improves patients' exercise tolerance, quality of life, symptoms, anxiety and depression, regardless of the location. Despite overwhelming evidence of the benefits of exercise training, only a very small percentage of eligible people have ever completed a program. Alternative modes of exercise training are needed to improve equity of access for patients with chronic respiratory disease. So TeleRehabilitation, using information and communication technologies to provide distance exercise training services, may be an answer.
Fiberoptic bronchoscopy (FOB) is widely used as a diagnostic or therapeutic procedure in intensive care units. Patients with ARDS or COVID-19 disease often undergoes to these procedures. However, intensive care patients might suffer from serious side effects such as prolonged oxygen desaturation and adverse change in lung compliance and resistance. This study aims to evaluate these changes and determine their impact on patient stability.
Contactless and widely available health monitoring technologies are of growing interest in the context of the worldwide COVID-19 pandemic. Remote photoplethysmography (rPPG) is a well-studied technology that interprets variations in skin colour related to blood flow which, when analysed with complex mathematical algorithm, generates vital sign readings. This technology has been refined and embedded in a smartphone app designed to acquire heart rate, respiratory rate and oxygen saturation using a front-facing smartphone camera. Preliminary data comparing the accuracy of smartphone rPPG readings with conventional vital sign monitor readings are promising; however, less than 5% of the population studied in the app development phase had oxygen saturation levels below 95% making it impossible to ensure reliability in these populations. The goal of this study is to compare readings acquired using this rPPG app with the readings from hospital grade, Health Canada approved vital signs monitors used in healthcare settings with a focus on subject with low oxygen saturations. We will also study other sociodemographic and clinical features that may influence the accuracy of the readings. This will be achieved by recruiting consenting adults presenting to care in acute care settings and a designated COVID outpatient clinic. Vital signs will be acquired using the rPPG app and conventional hospital vital sign monitors simultaneously. Readings will be repeated within 2-5 minutes when time permits. Statistical analysis will be performed to analyze the findings and determine the accuracy and precision of the rPPG app readings. It is expected that the vital sign readings acquired with the rPPG app will be almost identical to those acquired using hospital-grade monitors for all subjects regardless of age, gender, skin colour, COVID status and relevant comorbidities.
the study aimed to determine the distribution of respiratory infections in Tunisian population and evaluate the frequency of antibiotics prescribed according to current international recommendations.
The COVID-19 pandemic has had a dramatic effect in public health worldwide. In Brazil, there have been more than 2 million confirmed cases and over 75,000 deaths since February 26, 2020. Based on reports of a hyperinflammatory state associated with COVID-19, the use of immunosuppressive drugs may be efficacious in the treatment of this disease. JAK inhibitors have been shown to harness inflammation in a number of different pathologic conditions. The aim of the present study is to evaluate the efficacy and safety of JAK inhibitor ruxolitinib in patients with acute respiratory distress syndrome due to COVID-19.
Expiratory muscle strength training (EMST) is an emerging palliative intervention for prolonging pulmonary and swallow function in patients with amyotrophic lateral sclerosis (PALS), but it is unknown whether EMST may result in detrimental immediate to short-term fatigue because there is no way to measure fatigue non-invasively. This study will determine the immediate to short-term impact of EMST on objective respiratory and swallow function, whether subjective ratings of dyspnea and fatigue map to objective decompensation of respiratory and swallow function, and the ability to monitor fatigue of the respiratory and swallowing musculature non-invasively. Findings from this research study will provide preliminary evidence regarding optimal timing for PALS to complete EMST and will provide PALS and clinicians increased capabilities to monitor fatigue non-invasively.
People with lung conditions can suffer significantly with their symptoms and often require multiple trips to their GP or secondary care before a diagnosis is made. It can be difficult to diagnose lung disease and to differentiate between different lung conditions, so many people may be misdiagnosed or incorrectly not given a diagnosis. The tests currently used to diagnose lung diseases can be difficult or uncomfortable to do, especially if the person is experiencing lots of symptoms, and therefore can give poor or unreliable results.A new quick and easy to perform test is needed that can differentiate between various lung conditions and people with no lung disease, that can be performed in primary and secondary care with immediate results.