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February 28, 20260 citationsOpen Access

Long-Range White Matter Fibres and Post-Stroke Verbal and Non-Verbal Cognition

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RRRebecca W RothDBDeena Schwen BlackettEGEzequiel Gleichgerrcht

Key Points

  • This research aims to explore how white matter integrity relates to post-stroke aphasia severity and cognition.
  • Eighty-seven stroke survivors were studied in the chronic stage.
  • Participants underwent diffusion MRI to assess white matter integrity.
  • Behavioural tests measured language and cognitive function.
  • Structural connectomes calculated the ratio of long-range to short-range fibres.
  • Higher long-range fibre proportions correlated with lower aphasia severity.
  • Individuals with more long-range fibres showed better performance in picture naming.
  • Enhanced scores in non-verbal semantic memory and reasoning were also linked to increased long-range fibres.

Abstract

Among stroke survivors, linguistic and non-linguistic impairments exhibit substantial inter-individual variability. Stroke lesion volume and location do not sufficiently explain outcomes, and the neural mechanisms underlying the severity of aphasia or non-verbal cognitive deficits remain inadequately understood. Converging evidence supports the idea that white matter is particularly susceptible to ischaemic injury, and long-range fibres are commonly associated with verbal and non-verbal function. Here, we investigated the relationship among post-stroke aphasia severity, cognition, and white matter integrity. Eighty-seven individuals in the chronic stage of stroke underwent diffusion MRI and behavioural testing, including language and cognitive measures. We used whole-brain structural connectomes from each participant to calculate the ratio of long-range fibres to short-range fibres. We found that a higher proportion of long-range fibres was associated with lower aphasia severity, more accurate picture naming, and increased performance on non-verbal semantic memory/processing and non-verbal reasoning while controlling for lesion volume, key damage areas, age, and years post stroke. Our findings corroborate the hypothesis that, after accounting for age and lesion anatomy, inter-individual differences in post-stroke aphasia severity, verbal, and non-verbal cognitive outcomes are related to the preservation of long-range white matter fibres beyond the lesion.

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Cite This Study

Roth et al. (2024) studied this question.

synapsesocial.com/papers/69a287460a974eb0d3c02e5chttps://doi.org/10.1093/braincomms/fcae262">https://doi.org/10.1093/braincomms/fcae262</a></p
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