Background: Indoor air quality is an important environmental factor that triggers and exacerbates asthma, the most common chronic disease in children. A mobile app to monitor indoor air quality could help occupants keep their indoor air quality clean. However, no app is available that allows children to monitor and improve their indoor air quality.
Objective: Previously, we conducted a series of user-centered design studies to identify user needs and design requirements toward creating a mobile app that helps children with asthma to engage in monitoring and improving indoor air quality as part of their asthma management. Based on the findings from these studies, we created AirBuddy, a child-friendly app that visualizes air quality indoors and outdoors.
Methods: This paper reports on the findings from a field deployment with 7 pediatric asthma patients, where we evaluated AirBuddy's usability and usefulness in real-world settings by conducting weekly semistructured interviews for 8 weeks.
Results: All participants positively responded to the usefulness and usability of AirBuddy, which we believe is thanks to the iterative, user-centered design approach that allowed us to identify and address potential usability issues early on and throughout the design process.
Conclusions: This project contributes to the field of mHealth app design for children by demonstrating how a user-centered design process can lead to the development of digital devices that are more acceptable and relevant to target users' needs.
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http://dx.doi.org/10.2196/37118 | DOI Listing |
Alzheimers Dement
December 2024
UNIVERSITY OF CALIFORNIA, BERKELEY, California, CA, USA; Department of Psychiatry, SRIHER, Chennai, India.
Background: Exposure to the household air pollution (HAPIN) is a leading health risk in populations in LMIC s and accounts for an estimated 2.3 million premature deaths annually and 91.5 million disability-adjusted life years (Bennitt et al,2021).
View Article and Find Full Text PDFEnviron Sci Process Impacts
January 2025
Department of Civil, Architectural, and Environmental Engineering, Illinois Institute of Technology, Alumni Memorial Hall Room 228, 3201 South Dearborn Street, Chicago, IL 60616, USA.
There is an increasing number of randomized clinical trials intended to assess the effectiveness of indoor air cleaners for improving participant outcomes in real-world settings. In this communication, we synthesize the current state of registered air cleaner intervention trials and call attention to the critical importance of conducting measurements to characterize the performance and utilization of air cleaners in such trials to improve interpretation of exposure measurements and patient outcomes. We draw upon the existing literature and preliminary findings from our ongoing one-year, randomized, single-blind, placebo-controlled case-control trial of stand-alone air filtration in the homes of U.
View Article and Find Full Text PDFACS EST Air
September 2024
Office of the Director, Health Effects Laboratory Division, National Institute for Occupational Safety and Health, Morgantown, West Virginia 26505, United States.
During use of sodium hypochlorite bleach, gas-phase hypochlorous acid (HOCl) and chlorine (Cl) are released, which can react with organic compounds present in indoor air. Reactivity between HOCl/Cl and limonene, a common constituent of indoor air, has been observed. The purpose of this study was to characterize the chemical species generated from gas-phase reactions between HOCl/Cl and limonene.
View Article and Find Full Text PDFPLOS Glob Public Health
January 2025
Royal Danish Academy - Architecture, Design, Conservation, Copenhagen, Denmark.
Improved cooking stoves (ICS) are intended to reduce indoor air pollution and the inefficient use of fuel yet there is often reticence to shift permanently to ICS. Drawing on a scoping review, this article aims to provide a comprehensive overview of factors affecting the acceptability of ICS. A scoping review was carried out using a systematic search strategy of literature.
View Article and Find Full Text PDFToxics
December 2024
Department of Public Health, University of Massachusetts Lowell, Lowell, MA 01854, USA.
Nitrogen dioxide (NO) and particulate matter of 2.5 microns (PM) are air pollutants that impact health, especially among vulnerable populations with respiratory disease. This study identifies factors influencing indoor NO and PM in low-income households of older adults with asthma who use gas stoves in Lowell, Massachusetts.
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