Disentangling neuroplasticity mechanisms in post-stroke language recovery

Brain Lang. 2024 Apr:251:105381. doi: 10.1016/j.bandl.2024.105381. Epub 2024 Feb 23.

Abstract

A major objective in post-stroke aphasia research is to gain a deeper understanding of neuroplastic mechanisms that drive language recovery, with the ultimate goal of enhancing treatment outcomes. Subsequent to recent advances in neuroimaging techniques, we now have the ability to examine more closely how neural activity patterns change after a stroke. However, the way these neural activity changes relate to language impairments and language recovery is still debated. The aim of this review is to provide a theoretical framework to better investigate and interpret neuroplasticity mechanisms underlying language recovery in post-stroke aphasia. We detail two sets of neuroplasticity mechanisms observed at the synaptic level that may explain functional neuroimaging findings in post-stroke aphasia recovery at the network level: feedback-based homeostatic plasticity and associative Hebbian plasticity. In conjunction with these plasticity mechanisms, higher-order cognitive control processes dynamically modulate neural activity in other regions to meet communication demands, despite reduced neural resources. This work provides a network-level neurobiological framework for understanding neural changes observed in post-stroke aphasia and can be used to define guidelines for personalized treatment development.

Keywords: Aphasia; Control; Hebbian plasticity; Homeostatic plasticity; Neuroplasticity; Recovery; Rehabilitation; Stroke; fMRI.

Publication types

  • Review

MeSH terms

  • Aphasia* / diagnostic imaging
  • Aphasia* / etiology
  • Humans
  • Language
  • Neuroimaging
  • Neuronal Plasticity
  • Recovery of Function
  • Stroke* / complications