Scaling up natural experimental studies: harnessing emerging technologies to transform physical activity and built environment research

被引:0
作者
Jack S. Benton [1 ]
Marilyn E. Wende [2 ]
Declan J. Ryan [3 ]
Rachel L. Thompson [4 ]
J. Aaron Hipp [5 ]
机构
[1] The University of Manchester,Department of Geography, School of Environment, Education and Development
[2] University of Florida,Department of Health Education and Behavior, College of Health and Human Performance
[3] University of Northampton,Centre for Physical Activity and Life Sciences
[4] City University of New York,Department of Environmental, Occupational, and Geospatial Health Sciences, Graduate School of Public Health and Health Policy
[5] NC State University,Department of Parks, Recreation, and Tourism Management, College of Natural Resources
关键词
Built environment; Natural experiments; Physical activity; Measurement; Emerging technology;
D O I
10.1186/s12966-025-01742-7
中图分类号
学科分类号
摘要
Evaluating how built environment interventions influence physical activity is crucial for informing effective policies. Natural experiments provide opportunities to assess real-world interventions, yet traditional data collection methods - such as surveys, accelerometers, manual observation and environmental audit tools - limit scalability due to inefficiencies, low participant engagement, and biases. As a result, there is a lack of robust, generalisable evidence to inform policymakers on the most effective built environment interventions for promoting physical activity across diverse communities. In this commentary, we outline four emerging technologies that could address these challenges: (1) smartphone applications and wearable technology for physical activity measurement, (2) geolocation data for assessing mobility patterns, (3) automated systematic observation of physical activity behaviours, and (4) automated environmental audits. We discuss how these approaches can enhance the scalability of natural experimental studies while also considering important ethical implications, including privacy, inclusivity, and community engagement. Advancing and integrating these technologies is critical for generating robust evidence to design built environments that equitably support physical activity.
引用
收藏
相关论文
共 24 条
  • [21] Understanding variations in the built environment over time to inform longitudinal studies of young children's physical activity behaviour - The BEACHES project
    Robinson, Trina
    Boruff, Bryan
    Duncan, John
    Murray, Kevin
    Schipperijn, Jasper
    Nathan, Andrea
    Beck, Ben
    Stratton, Gareth
    Griffiths, Lucy J.
    Fry, Richard
    Beesley, Bridget
    Christian, Hayley
    HEALTH & PLACE, 2024, 90
  • [22] Foot-based audit of streets adjacent to new light rail stations in Houston, Texas: measurement of health-related characteristics of the built environment for physical activity research
    Abiodun O. Oluyomi
    Gregory Knell
    Casey P. Durand
    Clara Mercader
    Deborah Salvo
    Ipek N. Sener
    Kelley Pettee Gabriel
    Deanna M. Hoelscher
    Harold W. Kohl
    BMC Public Health, 19
  • [23] Foot-based audit of streets adjacent to new light rail stations in Houston, Texas: measurement of health-related characteristics of the built environment for physical activity research
    Oluyomi, Abiodun O.
    Knell, Gregory
    Durand, Casey P.
    Mercader, Clara
    Salvo, Deborah
    Sener, Ipek N.
    Gabriel, Kelley Pettee
    Hoelscher, Deanna M.
    Kohl, Harold W.
    BMC PUBLIC HEALTH, 2019, 19 (1)
  • [24] Psychological benefits of outdoor physical activity in natural versus urban environments: A systematic review and meta-analysis of experimental studies
    Wicks, Claire
    Barton, Jo
    Orbell, Sheina
    Andrews, Leanne
    APPLIED PSYCHOLOGY-HEALTH AND WELL BEING, 2022, 14 (03) : 1037 - 1061