AI Article Synopsis

  • Lead exposure is toxic and particularly harmful to the central nervous system, but its specific effects on brain microstructure and function had not been thoroughly studied before this research.
  • The study analyzed data from 920 young adults, revealing that higher levels of lead in hair samples are weakly linked to changes in brain activity during memory tasks and alterations in the brain’s white matter structure.
  • Participants with increased lead levels also showed poorer performance in cognitive tests and higher impulsivity, suggesting that even low levels of lead exposure can have subtle but significant effects on brain function and behavior.

Article Abstract

Lead is a toxin known to harm many organs in the body, particularly the central nervous system, across an individual's lifespan. To date, no study has yet investigated the associations between body lead level and the microstructural properties of gray matter areas, and brain activity during attention-demanding tasks. Here, utilizing data of diffusion tensor imaging, functional magnetic resonance imaging and cognitive measures among 920 typically developing young adults, we show greater hair lead levels are weakly but significantly associated with (a) increased working memory-related activity in the right premotor and pre-supplemental motor areas, (b) lower fractional anisotropy (FA) in white matter areas near the internal capsule, (c) lower mean diffusivity (MD) in the dopaminergic system in the left hemisphere and other widespread contingent areas, and (d) greater MD in the white matter area adjacent to the right fusiform gyrus. Higher lead levels were also weakly but significantly associated with lower performance in tests of high-order cognitive functions, such as the psychometric intelligence test, greater impulsivity measures, and higher novelty seeking and extraversion. These findings reflect the weak effect of daily lead level on the excitability and microstructural properties of the brain, particularly in the dopaminergic system.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8313694PMC
http://dx.doi.org/10.1038/s42003-021-02435-0DOI Listing

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