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- W2895246596 abstract "We propose a new estimator of spatial autocorrelation of areal incidence or prevalence rates in small areas, such as crime and health indicators, for correcting spatially heterogeneous sampling errors in denominator data. The approach is dubbed the heteroscedasticity‐consistent empirical Bayes (HC‐EB) method. As American Community Survey (ACS) data have been released to the public for small census geographies, small‐area estimates now form the demographic landscape of neighborhoods. Meanwhile, there is growing awareness of the diminished statistical validity of global and local Moran’s I when such small‐area estimates are used in denominator data. Using teen birth rates by census tracts in Mecklenburg County, North Carolina, we present comparisons of conventional and new HC‐EB estimates of Global and Local Moran’s I statistics created on ACS data, along with estimates on ground truth values from the 2010 decennial census. Results show that the new adjustment method dramatically enhances the statistical validity of global and local spatial autocorrelation statistics." @default.
- W2895246596 created "2018-10-12" @default.
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- W2895246596 date "2018-09-30" @default.
- W2895246596 modified "2023-10-14" @default.
- W2895246596 title "Spatial Autocorrelation Statistics of Areal Prevalence Rates under High Uncertainty in Denominator Data" @default.
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- W2895246596 doi "https://doi.org/10.1111/gean.12177" @default.
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