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Neighborhood disadvantage may be an environmental risk factor for brain development

Study suggests improving social and educational resources could alleviate risk

Date:
May 4, 2021
Source:
University of Southern California
Summary:
A new study suggests that certain neighborhoods - particularly those characterized by poverty and unemployment - may pose an environmental risk to the developing brains of children, impacting neurocognitive performance and even brain size.
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A new USC study suggests that certain neighborhoods -- particularly those characterized by poverty and unemployment -- may pose an environmental risk to the developing brains of children, impacting neurocognitive performance and even brain size.

The research was published May 3 in the journal JAMA Pediatrics.

These findings highlight the importance of neighborhood environments for child and adolescent brain development, the researchers said, and suggest that policies, programs and investments that help improve local neighborhood conditions and empower communities could support children's neurodevelopment and long-term health.

"This is the first large, national study of neurodevelopment to determine that the role of neighborhood disadvantage is similar across all regions of the country, and we found that what mattered most were the local differences in neighborhood disadvantage within each city, rather than how cities differ from each other overall," said lead author Daniel Hackman, assistant professor at the USC Suzanne Dworak-Peck School of Social Work.

Researchers from the USC Suzanne Dworak-Peck School of Social Work and the Keck School of Medicine of USC used data from the Adolescent Brain and Cognitive Development (ABCD) Study, collected from October 2016 -- 2018. The ABCD Study is the largest long-term study of brain development and child health in the United States.

Neighborhood disadvantage, after accounting for family socioeconomic status and perceptions of neighborhood safety, showed associations with multiple aspects of neurocognition and smaller total cortical surface area, particularly in the frontal, parietal and temporal lobes.

"Our findings aren't specific to the child's home life, as we adjusted for socioeconomic factors at each child's home. But the research suggests neighborhoods may have different levels of social and educational resources and opportunities that can impact a child's neurodevelopment," said senior author Megan Herting, assistant professor at the department of preventive medicine at the Keck School of Medicine at USC.

In addition, the researchers said, disadvantaged neighborhoods may lack quality health services, access to nutritional foods, and well-maintained parks and rec facilities; they may also expose residents to more pollutants or social stressors.

"This research is important as it not only highlights that neighborhoods matter, but it also suggests that promoting neighborhood equity based on the unique local conditions within cities may improve short and long-term health and development of children and adolescents," said Hackman.


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Materials provided by University of Southern California. Note: Content may be edited for style and length.


Journal Reference:

  1. Daniel A. Hackman, Dora Cserbik, Jiu-Chiuan Chen, Kiros Berhane, Bita Minaravesh, Rob McConnell, Megan M. Herting. Association of Local Variation in Neighborhood Disadvantage in Metropolitan Areas With Youth Neurocognition and Brain Structure. JAMA Pediatrics, 2021; e210426 DOI: 10.1001/jamapediatrics.2021.0426

Cite This Page:

University of Southern California. "Neighborhood disadvantage may be an environmental risk factor for brain development." ScienceDaily. ScienceDaily, 4 May 2021. <www.sciencedaily.com/releases/2021/05/210504191443.htm>.
University of Southern California. (2021, May 4). Neighborhood disadvantage may be an environmental risk factor for brain development. ScienceDaily. Retrieved April 24, 2024 from www.sciencedaily.com/releases/2021/05/210504191443.htm
University of Southern California. "Neighborhood disadvantage may be an environmental risk factor for brain development." ScienceDaily. www.sciencedaily.com/releases/2021/05/210504191443.htm (accessed April 24, 2024).

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