View clinical trials related to Respiration Disorders.
Filter by:The overall aim of the study is to determine the clinical efficacy and mechanisms of action of anti-IL-4a (dupilumab) as treatment for patients with Aspirin-Exacerbated Respiratory Disease (AERD).
The purpose of this study is to evaluate the feasibility and the mid-term effects of a pulmonary rehabilitation intervention, delivered by digital App, on quality of life of patients affected by respiratory diseases. The App will include a monitored exercise training program based on most recent cardiopulmonary rehabilitation guidelines, including alerts, reminders and educational contents as well as chat and online visits with healthcare professionals to improve patient engagement.
Clinical pharmacists in the healthcare system are experts in therapeutics and the use of drugs. They routinely provide medication reviews and recommendations to patients and healthcare professionals. Clinical pharmacists are a scientifically valid source of information and give advice on the safe and appropriate use of medicines and pharmacoeconomics. Clinical pharmacist researchers produce, distribute and apply new information that contributes to improving health and quality of life. Thus, it is ensured that many of the drug treatment errors that occur after inappropriate therapeutic decisions are made at the point of prescribing are prevented In this investigation, the effects of clinical pharmacists on respiratory would be investigated. This research area will cover lower respiratory tract infections and chronic lung disease exacerbations with ICD-10 codes J05, J9-22, J40-47, J69, J85 -J86. In this study, two groups, control and intervention groups, were identified. In the control group; There will be no intervention done by the Clinical Pharmacist. Hospital stay, antimicrobial suitability, microbial resistance development, antimicrobial induced nephrotoxicity, infection-related mortality, pharmacoeconomic evaluation, re-hospitalization within 30 days after discharged, medication reconciliation report will be created, patients will be monitored for the detection and management of drug-related problems will be recorded in both control and intervention groups. In the intervention group; recommendations will be given to the physicians by the Clinical Pharmacist on the selection of antibiotics, drug suitability, dosage and route of administration advice, and determination of drug-related problems related to drugs used simultaneously.
Due to ageing-related physiological changes, diagnosing older adults is challenging. Delayed disease recognition lead to adverse health outcomes and increased hospitalisation, which is why there is a need to develop new procedures for timely diagnosis and treatment of older adults. Point-of-care technology, e.g. focused lung ultrasound scan and bedside analysis of blood samples (leucocytes with differential count, electrolytes and creatinine) carried out in the patients' home may support clinical decision-making, and potentially reduce acute hospital admissions. The trial's overall aim is to investigate whether increased point-of-care technology, i.e. focused lung ultrasound scan and bedside blood analysis, used as in-home diagnostics in older adults with acute respiratory symptoms, can qualify the general practitioner's clinical decision-making for early treatment initiation and eventually reduce acute hospital admission.
The purpose of this retrospective study is to evaluate the effectiveness of CPM nasal spray as part of the treatment of COVID-19 and its impact on clinical symptoms. Two cohort groups will be compared (CPM vs. standard care). The hypothesis to be tested is that patients treated with CPM nasal spray showed more rapid clinical improvement than those treated with standard of care alone. Clinical improvement will be evaluated by the total number of days with the manifestation of COVID-19 symptoms, including cough, nasal congestion, ageusia, and anosmia, among others. The rate of hospitalization between the cohorts will also be evaluated.
There are many techniques that can allow for the quantification of lung function in children; some are being used clinically and others are under development. Many of these tools are available at BC Children's Hospital. This registry study will act as a central repository for the results of traditional and novel pulmonary function tests done at BC Children's Hospital to allow for future analysis.
The investigators expect to reveal the association between air pollution and childhood respiratory diseases through a multi-center observational study, and summarize the relationship between air pollution and childhood respiratory diseases.
Symptoms such as cough, wheeze, and breathlessness are among the most common reasons for general practitioner or emergency department visits in the UK. Such symptoms have a profound impact on patients' ability to live a fulfilled life, often rendering people unable to work and socialise. Azithromycin (a type of antibiotic) improves symptoms and reduces flare-ups of diseases such as asthma and chronic obstructive pulmonary disease (COPD). The reason why it works is unclear. Many people believe that it either decreases the number of bacteria in the lungs or reduces inflammation in the lungs and the upper airways. Neither theory is proven. Another possible mechanism that has been much less studied is that Azithromycin encourages the body to move food and fluid through the gut more quickly, thus preventing reflux and aspiration of small food particles and stomach acid. It has been shown that lung damage can occur when gut contents enter the airways, which may contribute chronic lung disease patients' symptoms In this study the investigators will test the effect of azithromycin on the gut in patients with chronic lung diseases. The investigators will measure the strength of a patients swallow by measuring the pressures in their gullet, using high-resolution oesophageal manometry (HROM), before and after treatment, in people being started on azithromycin as part of their routine care. The investigators will also measure the effect that azithromycin has on their symptoms and observe whether there is a relationship between the strength of their swallow and their symptoms. At the end of this study, the investigators hope to better understand the way in which azithromycin helps to improve the symptoms of patients with chronic lung diseases. The investigators also hope to open the door to investigate the effect of other drugs that improve gut function in patients with chronic lung diseases.
The study is conducted in the context of the COVID-19 pandemic in general, and more specifically in the context of the evaluation of the use of protective masks as a barrier to the spread of the virus. The wearing of masks is one of the recommended barrier measures to limit the spread of the SARS-CoV-2 virus responsible for COVID-19. It is recommended in all circumstances, and mandatory in some. Regardless of the type of mask used (noting that the so-called "surgical" masks are by far the most common), there are various disadvantages associated with wearing them. Dyspnoea (unpleasant or upsetting perception of respiratory activity) is one of these disadvantages. It can lead to reluctance to wear the mask, or to the adoption of inappropriate practices that reduce its effectiveness. This "side effect" of the mask is more pronounced in patients with underlying respiratory diseases. However, not all mask designs are equivalent in terms of their physical properties, which can theoretically generate varying levels of dyspnoea. It is therefore important to determine which mask designs are more or less dyspnogenic, in order to guide the preferential use of certain designs in certain patient categories. The TOLMASK study (Tolerance of SARS-CoV2 Surgical Masks in Patients with Chronic Respiratory Diseases) is a prospective, randomised, triple-blind, single-centre study comparing several surgical masks in a crossover design. The primary objective of the study is to evaluate the respiratory tolerance of different surgical masks and the secondary objective is to evaluate their general tolerance.
Investigation Device: EZVent Ventilator System is designed for respiratory support in hospitalized mechanical ventilated patients. The Ventilator is designed to be used for adults patients. It is designed to be a stationary product suitable for service in hospitals, critical care situations to provide continuous positive pressure respiratory support to the patient. The ventilator met EDA, ISO 80601-2-12 requirements on essential performance of critical care ventilator and other applicable international standards. Study Title: Open-labeled, non-randomized, self-controlled study to evaluate the safety and performance of EZVent in hospitalized mechanically ventilated patients. Investigational Device EZVent Ventilator System. Purpose: Evaluation of the safety and performance of EZVent in hospitalized mechanically ventilated patients. Objectives: Evaluation of the safety and performance of EZVent through monitoring the vital signs and arterial blood gases (ABG) in comparison to a commercial ventilator.