Area of research
Sociology and Political Science · Pollution
Research interest
Research interests include Environmental health, Environmental science, Arsenic, Psychology, Citizen science, and Environmental planning.
Lead source apportionment and climatic impacts in rural environmental justice mining communities
Organic micropollutants measured in roof-harvested rainwater from rural and urban environmental justice communities in Arizona
Arsenic in Drinking Water and Diabetes
Probabilistic risk assessment of residential exposure to metal(loid)s in a mining impacted community
Communicating environmental data through art: the role of emotion and memory in evoking environmental action
Minding the gap: socio-demographic factors linked to the perception of environmental pollution, water harvesting infrastructure, and gardening characteristics
Assessing Children’s Lead Exposure in an Active Mining Community Using the Integrated Exposure Uptake Biokinetic Model
Alleviating Environmental Health Disparities Through Community Science and Data Integration
Outdoor/Indoor Contaminant Transport by Atmospheric Dust and Aerosol at an Active Smelter Site
Engaging Diverse Citizen Scientists for Environmental Health: Recommendations from Participants and <i>Promotoras</i>
Understanding the Intrinsic and Extrinsic Motivations Associated with Community Gardening to Improve Environmental Public Health Prevention and Intervention
Increasing Environmental Health Literacy through Contextual Learning in Communities at Risk
Effective integrated frameworks for assessing mining sustainability
Finding Pathways to More Equitable and Meaningful Public-Scientist Partnerships
Extracellular Trapping of Soil Contaminants by Root Border Cells: New Insights into Plant Defense
Building a co-created citizen science program with gardeners neighboring a superfund site: The Gardenroots case study.
PubMed 2015cited by 123position: first
Balancing Benefits and Risks of Immortal Data
Home gardening near a mining site in an arsenic-endemic region of Arizona: Assessing arsenic exposure dose and risk via ingestion of home garden vegetables, soils, and water
A greenhouse and field-based study to determine the accumulation of arsenic in common homegrown vegetables grown in mining-affected soils