View clinical trials related to Respiratory Tract Infections.
Filter by:Rationale: Prevention of virus induced acute respiratory infection (ARI) is a public health priority. As different respiratory virus infections can interact with each other, occurrence of one virus may influence occurrence of other virus infections. Such interactions can have implications for the effects of vaccination on non-target diseases. In this project, we will quantify such interactions between respiratory viruses by longitudinally studying a cohort of young children. Objective: To quantify the strength and direction of interactions between important respiratory virus infections in young children. Study design: This is a prospective observational cohort study. Study population: Children between 6 weeks and 4 years of age residing in the Utrecht area of the Netherlands. Main study parameters/endpoints: Frequency, timing and sequences of occurrence of respiratory virus infections will be studied for each participant using weekly collected nasal specimens during 16 weeks follow-up. Detection will be based on PCR testing for a panel of common respiratory viruses. From these data, estimation of virus interaction parameters will be based on self-controlled-case series analysis. Nature and extend of the burden and risks associated with participation, benefit and group relatedness: This study is observational in nature. There will be no direct benefit to research participants. The study includes biological sampling. The results of the tests done on these samples may not contribute to improving the participant's health. Minimal inconvenience and discomfort to the participant may arise from study visits and biological sampling.
The purpose of this study is to investigate the effects of a training program in patients that have suffered a COVID infection
The researchers will recruit volunteers from various organisations who are willing and able to be randomised to either working from home for 4 weeks followed by working in the office for 4 weeks, or vice versa. The goal is to assess whether working from home has an impact on the risk of symptoms of respiratory infection.
This is a stepped wedge, cluster randomized study of a clinical algorithm that includes point-of-care C-reactive protein testing to inform antibiotic treatment decisions by village health workers for children presenting with acute respiratory illness in the Bugoye sub-county of the Kasese District in southwestern Uganda. The purpose of this study is to assess the impact of the algorithm on antibiotic use.
SARS-COV-2 (severe acute respiratory syndrome- corona virus - 2) infection reframed medical knowledge in many aspects, yet there is still a lot to be discovered. Coronavirus disease 19 (COVID-19) can cause neuropsychiatric, psychological and psychosocial impairments. Literature regarding cognitive impact of COVID-19 is still limited. Objective: evaluation of cognitive function, anxiety and depression among patients with Coronavirus disease 19.
Viral respiratory tract infections (VRTI) are among the most common human illnesses, impacting billions globally. There is an unmet need to identify novel ways to detect, treat and prevent their spread. New wearable devices could address this need, using special biosensors worn by patients. This is a single centre, controlled, before and after, longitudinal, clinical trial. Participants will receive FluMist, a live attenuated influenza vaccine, which will act as a proxy to a viral respiratory tract infection and create a very minor response to the immune system. Vital signs and activity levels will be monitored continuously using wearable biosensors for 7 days prior to and 7 days following, along with symptom tracking and blood tests to measure immune responses. Artificial intelligence (AI) and machine learning (ML) algorithms will be used to analyse the data. AI and ML will identify subtle changes in vital signs and activity levels from the immune response to respiratory viruses. These data will help develop future methods to address important public health questions related to respiratory virus detection, containment and management. The purpose of this study is to explore whether wearable sensors can detect, track the progress and recovery from viral respiratory tract infection.
Severe Community-acquired pneumonia (SCAP) is a leading global infectious cause of intensive care unit (ICU) admission (approximately 20%-30%), and the primary reason of mortality and morbidity in immunocompromised patients. There is a global increase of patients with distinct immunocompromised conditions due to the advance of cancer treatment, increasing biologics, and immunosuppressants for autoimmune diseases and growing organ transplant recipients, and it has been estimated that patients with immunocompromised conditions account for approximately 35% of all intensive care unit (ICU) admissions. Immunocompromised patients with SCAP have more factors to complicate with sepsis, respiratory failure, acute respiratory distress syndrome, and the mortality rate can be up to 50%. With the aim to apply early accurate antimicrobial therapy to improve clinical prognosis of SCAP patients with immunocompromised conditions, timely identification of pathogen is particularly important. Conventional microbiological diagnostic methods such as standard microbiologic cultures, microscopy, polymerase chain reaction (PCR), respiratory virus multiplex PCR, as well as pathogen-specific antigens and antibody assays, are currently commonly used to detect pathogens, although they have various limitations. However, conventional antimicrobial therapy depends on the results of conventional diagnostic methods, which may delay timely accurate antimicrobial therapy at the initial stage, and the mortality of immunocompromised patients with SCAP may be increased. Metagenomic next-generation sequencing (mNGS), which can determine pathogens more quickly (usually within 24h) and accurately comparing with conventional diagnostic methods by analyzing cell-free nucleic acid fragments of pathogens using appropriate lower respiratory tract (LRT) specimen, is increasingly used in severe respiratory infectious disease, especially among immunocompromised patients. This study aims to determine whether mNGS (using LRT specimen) guided antimicrobial treatment improves clinical prognosis of SCAP patients with immunocompromised conditions when compared with conventional antimicrobial treatment.
COVID-19 is an infectious disease which presents a heterogenous clinical presentation. Recent investigations suggest that people who were infected by COVID-19 often develop physical disabilities (i.e. pain, fatigue) and neurological complications after hospital discharge. Many therapeutic approaches such as transcranial direct current stimulation (tDCS) have been proposed to minimize functional and structural impairments. Electroencephalogram (EEG) has been used in this population to assess electrophysiological changes in the brain. However, evidences about EEG utilization as efficacy predictor of tDCS in COVID-19 people rest inconclusive.Our objective is to evaluate EEG as neurobiological predictor marker of tDCS efficacy on fatigue, pain, quality of life, self-efficacy and functional capacity in the chronic phase of COVID-19.
COVID-19 is an infectious disease which presents a heterogenous clinical presentation. Recent investigations suggest that people who were infected by COVID-19 often develop physical disabilities (i.e. pain, fatigue) and neurological complications after hospital discharge. Many therapeutic approaches such as transcranial direct current stimulation high definition (HD-tDCS) have been proposed to minimize functional and structural impairments. Recently, I electroencephalogram (EEG) has been used as predictor of HD-tDCS effectiveness in diverse neurological populations. However, evidences about this tool utilization as efficacy predictor of tDCS in COVID-19 people rest inconclusive. Thereby, our objective is to evaluate HD-tDCS efficacy on fatigue, pain and functional capacity of patients with COVID-19 chronic.
Randomized, placebo-controlled trial to evaluate the coadjuvant effect of a combination of L. plantarum and P. acidilactici probiotic strains, taken twice daily, in children 6 months to 5 years-old with upper respiratory tract infections with pharyngitis and/or tonsillitis. Main objective is to evaluate efficacy of this probiotic in reducing fever and pain, as well to evaluate its safety.