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Child obesity associated with social disadvantage of children's neighborhoods

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  • Greves Grow, H. Mollie
  • Cook, Andrea J.
  • Arterburn, David E.
  • Saelens, Brian E.
  • Drewnowski, Adam
  • Lozano, Paula

Abstract

Evidence suggests variability in adult obesity risk at a small-scale geographic area is associated with differences in neighborhood socioeconomic status (SES). However, the extent to which geographic variability in child obesity is associated with neighborhood SES is unknown. The objective of this paper was to estimate risk of child obesity associated with multiple census tract SES measures and race within a large urban U.S. county. Height, weight, age, sex, medical insurance type and census tract residence were obtained for 6-18 year old children (n = 8616) who received medical care at a health plan in King County, Washington, in 2006. Spatial analyses examined the individual risk of obesity (BMI >= 95th percentile) with 2000 US census tract measures of median household income, home ownership, adult female education level, single parent households, and race as predictors. Conditional autoregressive regression models that incorporated adjacent census tracts (spatial autocorrelation) were applied to each census tract variable, adjusting for individual variables. We found that in adjusted spatial models, child obesity risk was significantly associated with each census tract variable in the expected direction: lower household income, lower home ownership, and for each 10% increase in less educated women, and single parent households, as well as non-white residents. In a spatial model including all variables, the SES/race variables explained approximately 24% of geographic variability in child obesity. Results indicated that living in census tracts with social disadvantage defined by multiple different measures was associated with child obesity among insured children in a large U.S. urban county. These results contribute new information on relationships between broader social and economic context and child obesity risk using robust spatial analyses.

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  • Greves Grow, H. Mollie & Cook, Andrea J. & Arterburn, David E. & Saelens, Brian E. & Drewnowski, Adam & Lozano, Paula, 2010. "Child obesity associated with social disadvantage of children's neighborhoods," Social Science & Medicine, Elsevier, vol. 71(3), pages 584-591, August.
  • Handle: RePEc:eee:socmed:v:71:y:2010:i:3:p:584-591
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    Cited by:

    1. Kimbro, Rachel Tolbert & Denney, Justin T., 2013. "Neighborhood context and racial/ethnic differences in young children's obesity: Structural barriers to interventions," Social Science & Medicine, Elsevier, vol. 95(C), pages 97-105.
    2. Nobari, Tabashir Z. & Wang, May-Choo & Chaparro, M. Pia & Crespi, Catherine M. & Koleilat, Maria & Whaley, Shannon E., 2013. "Immigrant enclaves and obesity in preschool-aged children in Los Angeles County," Social Science & Medicine, Elsevier, vol. 92(C), pages 1-8.
    3. Evans, Clare R. & Onnela, Jukka-Pekka & Williams, David R. & Subramanian, S.V., 2016. "Multiple contexts and adolescent body mass index: Schools, neighborhoods, and social networks," Social Science & Medicine, Elsevier, vol. 162(C), pages 21-31.
    4. Rigal, Natalie & Champel, Camille & Hébel, Pascale & Lahlou, Saadi, 2019. "Food portion at ages 8–11 and obesogeny: The amount of food given to children varies with the mother's education and the child's appetite arousal," Social Science & Medicine, Elsevier, vol. 228(C), pages 111-116.
    5. Ashley W. Kranjac & Justin T. Denney & Rachel T. Kimbro & Brady S. Moffett & Keila N. Lopez, 2019. "Child Obesity and the Interaction of Family and Neighborhood Socioeconomic Context," Population Research and Policy Review, Springer;Southern Demographic Association (SDA), vol. 38(3), pages 347-369, June.
    6. Carlson, Jordan A. & Shook, Robin P. & Davis, Ann M. & Papa, Amy & Steel, Chelsea & Bejarano, Carolina & Noel-MacDonnell, Janelle R. & Summar, Shelly & Dean, Kelsey & Hampl, Sarah E., 2021. "Investigating associations between physical activity-related neighborhood built environment features and child weight status to inform local practice," Social Science & Medicine, Elsevier, vol. 270(C).
    7. Oshan, Taylor M. & Smith, Jordan & Fotheringham, Alexander Stewart, 2020. "Targeting the spatial context of obesity determinants via multiscale geographically weighted regression," OSF Preprints u7j29, Center for Open Science.
    8. Brañas-Garza, Pablo & Espín, Antonio M. & Lenkei, Balint, 2015. "BMI is not related to altruism, fairness, trust or reciprocity: Experimental evidence from the field and the lab," MPRA Paper 68184, University Library of Munich, Germany.

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