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1.
Environ Pollut ; 176: 92-9, 2013 May.
Article in English | MEDLINE | ID: mdl-23416743

ABSTRACT

Traditional methods of exposure assessment in epidemiological studies often fail to integrate important information on activity patterns, which may lead to bias, loss of statistical power, or both in health effects estimates. Novel sensing technologies integrated with mobile phones offer potential to reduce exposure measurement error. We sought to demonstrate the usability and relevance of the CalFit smartphone technology to track person-level time, geographic location, and physical activity patterns for improved air pollution exposure assessment. We deployed CalFit-equipped smartphones in a free-living population of 36 subjects in Barcelona, Spain. Information obtained on physical activity and geographic location was linked to space-time air pollution mapping. We found that information from CalFit could substantially alter exposure estimates. For instance, on average travel activities accounted for 6% of people's time and 24% of their daily inhaled NO2. Due to the large number of mobile phone users, this technology potentially provides an unobtrusive means of enhancing epidemiologic exposure data at low cost.


Subject(s)
Air Pollution/statistics & numerical data , Environmental Monitoring/methods , Inhalation Exposure/statistics & numerical data , Activities of Daily Living , Adult , Female , Geographic Information Systems , Humans , Inhalation Exposure/analysis , Male , Spain
2.
Environ Int ; 37(4): 766-77, 2011 May.
Article in English | MEDLINE | ID: mdl-21419493

ABSTRACT

BACKGROUND: Substantial policy changes to control obesity, limit chronic disease, and reduce air pollution emissions, including greenhouse gasses, have been recommended. Transportation and planning policies that promote active travel by walking and cycling can contribute to these goals, potentially yielding further co-benefits. Little is known, however, about the interconnections among effects of policies considered, including potential unintended consequences. OBJECTIVES AND METHODS: We review available literature regarding health impacts from policies that encourage active travel in the context of developing health impact assessment (HIA) models to help decision-makers propose better solutions for healthy environments. We identify important components of HIA models of modal shifts in active travel in response to transport policies and interventions. RESULTS AND DISCUSSION: Policies that increase active travel are likely to generate large individual health benefits through increases in physical activity for active travelers. Smaller, but population-wide benefits could accrue through reductions in air and noise pollution. Depending on conditions of policy implementations, risk tradeoffs are possible for some individuals who shift to active travel and consequently increase inhalation of air pollutants and exposure to traffic injuries. Well-designed policies may enhance health benefits through indirect outcomes such as improved social capital and diet, but these synergies are not sufficiently well understood to allow quantification at this time. CONCLUSION: Evaluating impacts of active travel policies is highly complex; however, many associations can be quantified. Identifying health-maximizing policies and conditions requires integrated HIAs.


Subject(s)
Exercise , Health Policy , Transportation/statistics & numerical data , Travel , Accidents, Traffic/statistics & numerical data , Air Pollution/adverse effects , Air Pollution/statistics & numerical data , Bicycling/statistics & numerical data , Environmental Exposure/statistics & numerical data , Environmental Policy , Health Behavior , Health Status , Hot Temperature/adverse effects , Humans , Noise, Transportation/adverse effects , Noise, Transportation/statistics & numerical data , Sunlight/adverse effects , Walking/statistics & numerical data
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