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Post-stroke aphasia recovery is a dynamic process involving neural repair, compensatory reorganization, and behavioral optimization. While diaschisis, a functional disconnection of brain regions remote from the primary lesion, plays a pivotal role in the acute phase of recovery, its resolution and interaction with later stages remain underexplored. This narrative review synthesizes evidence from neuroimaging, neurophysiological, and clinical studies to integrate current understanding of post-stroke aphasia recovery mechanisms. Relevant literature was identified through targeted review of studies focusing on neuroplasticity and rehabilitation strategies. Building on this synthesis and on known existing models, we define a mechanistically grounded framework for aphasia rehabilitation, the Three-Tiered Recovery Model, to better describe the recovery trajectory. This model integrates emerging neurobiological insights with therapeutic timing to improve clinical outcomes. This framework integrates current evidence on neurovascular repair, diaschisis resolution, neuroplasticity, and therapeutic approaches, including vessel reperfusion, non-invasive brain stimulation, and behaviorally driven rehabilitation. Drawing on functional imaging and network-based models, we delineate three linked stages of recovery operating at distinct time scales: neural recovery (hours to days), compensatory reorganization (days to weeks), and behavioral optimization (weeks to months). Each tier is supported by distinct yet interacting mechanisms and intervention strategies. Early reperfusion and diaschisis resolution appear to set the stage for effective compensatory neuroplasticity and subsequent behavioral gains. Empirical evidence, including longitudinal and modeling-based studies, suggests that early interventions may exert disproportionately large effects on long-term outcomes, supporting a front-loaded recovery trajectory. Overall, by offering a revamped characterization of the well-established stroke framework, the Three-Tiered Recovery Model provides a clinically relevant framework for aligning intervention strategies with the biological stages of recovery, enabling a more individualized and mechanism-informed approach to post-stroke aphasia rehabilitation. Future work should validate this model through longitudinal imaging and precision rehabilitation trials.
Maraka et al. (Thu,) studied this question.