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Title: A Generalizable Evaluated Approach, Applying Advanced Geospatial Statistical Methods, to Identify High Lead Exposure Locations at Census Tract Scale: Michigan Case Study

Journal Article · · Environmental Health Perspectives
DOI:https://doi.org/10.1289/ehp9705· OSTI ID:1983051

BACKGROUND: Despite great progress in reducing environmental lead (Pb) levels, many children in the United States are still being exposed. OBJECTIVE: Our aim was to develop a generalizable approach for systematically identifying, verifying, and analyzing locations with high prevalence of children’s elevated blood Pb levels (EBLLs) and to assess available Pb models/indices as surrogates, using a Michigan case study. METHODS: We obtained ~1:9 million BLL test results of children <6 years of age in Michigan from 2006–2016; we then evaluated them for data representativeness by comparing two percentage EBLL (%EBLL) rates (number of children tested with EBLL divided by both number of children tested and total population). We analyzed %EBLLs across census tracts over three time periods and between two EBLL reference values (≥5 vs. ≥10 μg/dL) to evaluate consistency. Locations with high %EBLLs were identified by a top 20 percentile method and a Getis-Ord Gi* geospatial cluster “hotspot” analysis. For the locations identified, we analyzed convergences with three available Pb exposure models/indices based on old housing and sociodemographics. RESULTS: Analyses of 2014–2016 %EBLL data identified 11 Michigan locations via cluster analysis and 80 additional locations via the top 20 percentile method and their associated census tracts. Data representativeness and consistency were supported by a 0.93 correlation coefficient between the two EBLL rates over 11 y, and a Kappa score of ~0:8 of %EBLL hotspots across the time periods (2014–2016) and reference values. Many EBLL hotspot locations converge with current Pb exposure models/indices; others diverge, suggesting additional Pb sources for targeted interventions. DISCUSSION: This analysis confirmed known Pb hotspot locations and revealed new ones at a finer geographic resolution than previously available, using advanced geospatial statistical methods and mapping/visualization. It also assessed the utility of surrogates in the absence of blood Pb data. This approach could be applied to other states to inform Pb mitigation and prevention efforts. https://doi.org/10.1289/EHP9705

Research Organization:
Oak Ridge Institute for Science and Education (ORISE), Oak Ridge, TN (United States)
Sponsoring Organization:
USDOE Office of Science (SC); USEPA; Michigan Department of Health and Human Services
Grant/Contract Number:
SC0014664; GS-35F-0343W/68HE0319F0020
OSTI ID:
1983051
Journal Information:
Environmental Health Perspectives, Vol. 130, Issue 7; ISSN 0091-6765
Publisher:
National Institute of Environmental Health SciencesCopyright Statement
Country of Publication:
United States
Language:
English

References (27)

Blood Lead Levels of Children in Flint, Michigan: 2006-2016 journal June 2018
Explaining variation in elevated blood lead levels among children in Minnesota using neighborhood socioeconomic variables journal February 2019
Systematic review and meta-analyses of lead (Pb) concentrations in environmental media (soil, dust, water, food, and air) reported in the United States from 1996 to 2016 journal December 2019
Individual- and Community-Level Factors Associated With Detectable and Elevated Blood Lead Levels in US Children journal December 2021
The Measurement of Observer Agreement for Categorical Data journal March 1977
The intersectional effect of poverty, home ownership, and racial/ethnic composition on mean childhood blood lead levels in Milwaukee County neighborhoods journal June 2020
Screening for Elevated Blood Lead Levels: False-Positive Rates of Tests on Capillary Samples, Minnesota, 2011-2017 journal January 2019
Blood Lead Levels in U.S. Children Ages 1–11 Years, 1976–2016 journal March 2021
Blood Lead Levels in Young Children: US, 2009-2015 journal August 2016
Lead Emissions and Population Vulnerability in the Detroit (Michigan, USA) Metropolitan Area, 2006–2013: A Spatial and Temporal Analysis journal November 2017
Statistical methods for assays with limits of detection: Serum bile acid as a differentiator between patients with normal colons, adenomas, and colorectal cancer journal January 2011
Elevated Blood Lead Levels in Children Associated With the Flint Drinking Water Crisis: A Spatial Analysis of Risk and Public Health Response journal February 2016
Identifying Jurisdictions at Risk of Containing Housing Units With Deteriorated Paint journal July 2020
Childhood Blood Lead Levels in Children Aged <5 Years — United States, 2009–2014 journal January 2017
Environmental Justice and the Health of Children
  • Landrigan, Philip J.; Rauh, Virginia A.; Galvez, Maida P.
  • Mount Sinai Journal of Medicine: A Journal of Translational and Personalized Medicine, Vol. 77, Issue 2 https://doi.org/10.1002/msj.20173
journal March 2010
Analysis of multiple‐variable missing‐not‐at‐random survey data for child lead surveillance using NHANES journal August 2016
Local Spatial Autocorrelation Statistics: Distributional Issues and an Application journal October 1995
Screening for Pediatric Lead Poisoning journal May 1994
Assessing Child Lead Poisoning Case Ascertainment in the US, 1999–2010 journal May 2017
Exploring Childhood Lead Exposure through GIS: A Review of the Recent Literature journal June 2014
Lead Emissions and Population Vulnerability in the Detroit Metropolitan Area, 2006–2013: Impact of Pollution, Housing Age and Neighborhood Racial Isolation and Poverty on Blood Lead in Children journal March 2021
Children’s Blood Lead Seasonality in Flint, Michigan (USA), and Soil-Sourced Lead Hazard Risks journal March 2016
Children’s Lead Exposure: A Multimedia Modeling Analysis to Guide Public Health Decision-Making journal September 2017
Local Lead Data Are Needed for Local Decision Making journal September 2001
Update of the Blood Lead Reference Value — United States, 2021 journal October 2021
Measurement Challenges at Low Blood Lead Levels journal August 2017
Predicting Blood-Lead Levels Among U.S. Children at the Census Tract Level journal October 2017