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Browse 3,705 clinical trials for asthma. Find studies that match your criteria and connect with research centers.
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NCT00144443
Objective: Our overall objective is to test the hypothesis that the health of children with chronic respiratory symptoms or chronic exposures to environmental hazards can be improved through a combination of standard home maintenance interventions and a set of interim controls and targeted repair interventions. I. Background: The Bi-State Kansas City Enhanced Enterprise Community (KCEEC) is one of pervasive poverty, unemployment and general distress. This same area is also an area of poor environmental health with a disproportionate number of children with lead poisoning, asthma, and home injuries. In May 2001, the Metropolitan (Kansas City) Health Council released a report urging the implementation of strategies to address this growing concern. They stated, "Environmental assessments and interventions in homes, schools, and workplaces are needed to promote indoor air quality and thereby help prevent asthma and asthma flare-ups," in combination with the need for, "trained community-based peer educators needed to work with families/communities in areas of high asthma incidence,". The need for major rehabilitation is echoed in the 1999 Consolidated Plan, as well as by most community development and housing officials. The KC CERT project responds to these concerns by demonstrating low-cost, replicable intervention strategies that can have an impact on the health and safety of children and their families. By providing training and employment opportunities to residents in high-risk areas to assess, prevent and remediate environmental hazards, this project promotes sustained systematic change within the KCEEC.
NCT04716023
The purpose of this research project is to study small airways physiological function in patients with chronic obstructive lung disease or COVID-19 and explore the relationship with in-vivo microanatomical small airway structure as measured by OCT. Correlating endobronchial assessment with multiple breath nitrogen washout and impulse oscillometry will allow the characterisation of the relationship between small airway structural findings and these validated investigations. A small volume lung wash, endobronchial brushings and the collection of a limited number of endobronchial cryobiopsy samples will be performed to better understand the endobronchial environment of the small airways through inflammatory studies. Following the completion of any such work, residual samples will be stored in a "bio-bank" to enable the completion of future work. Understanding the relationship with symptom-based quality of life scoring questionnaires and a functional assessment of exercise capacity will help elucidate the clinical impact of in-vivo small airways findings.