White matter tract disconnection in Gerstmann's syndrome: Insights from a single case study

Cortex. 2023 Sep:166:322-337. doi: 10.1016/j.cortex.2023.05.016. Epub 2023 Jun 27.

Abstract

It has been suggested that Gerstmann's syndrome is the result of subcortical disconnection rather than emerging from damage of a multifunctional brain region within the parietal lobe. However, patterns of white matter tract disconnection following parietal damage have been barely investigated. This single case study allows characterising Gerstmann's syndrome in terms of disconnected networks. We report the case of a left parietal patient affected by Gerstmann's tetrad: agraphia, acalculia, left/right orientation problems, and finger agnosia. Lesion mapping, atlas-based estimation of probability of disconnection, and DTI-based tractography revealed that the lesion was mainly located in the superior parietal lobule, and it caused disruption of both intraparietal tracts passing through the inferior parietal lobule (e.g., tracts connecting the angular, supramarginal, postcentral gyri, and the superior parietal lobule) and fronto-parietal long tracts (e.g., the superior longitudinal fasciculus). The lesion site appears to be located more superiorly as compared to the cerebral regions shown active by other studies during tasks impaired in the syndrome, and it reached the subcortical area potentially critical in the emergence of the syndrome, as hypothesised in previous studies. Importantly, the reconstruction of tracts connecting regions within the parietal lobe indicates that this critical subcortical area is mainly crossed by white matter tracts connecting the angular gyrus and the superior parietal lobule. Taken together, these findings suggest that this case study might be considered as empirical evidence of Gerstmann's tetrad caused by disconnection of intraparietal white matter tracts.

Keywords: Gerstmann's syndrome; Lesion Mapping; Optic ataxia; White matter tract disconnection; stroke.

Publication types

  • Case Reports
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Agnosia* / complications
  • Brain
  • Gerstmann Syndrome*
  • Humans
  • Parietal Lobe
  • White Matter* / pathology