Altered white matter microstructural integrity revealed by voxel-wise analysis of diffusion tensor imaging in welders

Yangho Kim1, Kyoung Sook Jeong, Hui-Jin Song

  • 1Department of Occupational and Environmental Medicine, Ulsan University Hospital, University of Ulsan College of Medicine, Ulsan, South Korea.

Neurotoxicology
|November 30, 2010
PubMed

Insights

Chronic manganese (Mn) exposure in welders damages white matter (WM) integrity, particularly in the corpus callosum and frontal areas. This microstructural damage, likely due to demyelination, correlates with subtle motor and cognitive deficits.

Area of Science:

  • Neuroimaging
  • Neurotoxicology
  • Occupational Health

Background:

  • Chronic manganese (Mn) exposure is linked to motor and cognitive deficits.
  • Previous studies suggest altered brain function in Mn-exposed individuals.
  • The impact of Mn exposure on white matter (WM) structure remains unclear.

Purpose of the Study:

  • To investigate the effects of chronic Mn exposure on WM integrity in welders.
  • To compare WM structure between Mn-exposed welders and control subjects using diffusion tensor imaging (DTI).

Main Methods:

  • Diffusion tensor imaging (DTI) was used to assess WM integrity.
  • Key DTI metrics included fractional anisotropy (FA), mean diffusivity (MD), axial diffusivity (AD), and radial diffusivity (RD).
  • Voxel-wise analysis using Statistical Parametric Mapping (SPM) compared 30 male welders with 19 age- and gender-matched controls.

Main Results:

  • Welders exposed to Mn showed reduced FA in the corpus callosum (CC) and frontal WM.
  • Increased radial diffusivity (RD) and minimal changes in axial diffusivity (AD) suggest demyelination.
  • Microstructural abnormalities in WM correlated with subtle motor and cognitive impairments.

Conclusions:

  • Chronic manganese exposure in welders leads to white matter microstructural changes.
  • Demyelination in the CC and frontal WM may underlie observed neurobehavioral deficits.
  • DTI is a valuable tool for detecting Mn-induced brain alterations.

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