Large-scale alterations of cortical activity induced by brain lesions and their relevance to behavioural deficits.
In plain English
AI plain-English summaryA brain injury in one spot can silently disrupt activity in far-flung, physically undamaged regions, and this project will map exactly how that happens. The problem is that current understanding of brain damage focuses too narrowly on the site of injury itself. Patients often show behavioural deficits that cannot be explained by the lesion alone, because the damage alters communication between distant, healthy brain areas. This project will close that gap by combining controlled lesions in macaque monkeys with computational modelling. The researchers will damage specific parietal areas, then track how functional connectivity shifts across the intact cortex and how those shifts correlate with impaired behaviour. If successful, the work will produce a theoretical framework that predicts how a lesion in one region reshapes activity across the whole brain. This could eventually guide rehabilitation strategies—for example, by identifying which intact circuits to strengthen after a stroke. The project will also develop more accurate techniques for measuring brain connectivity in injured subjects, improving how clinicians interpret scans in patients with brain damage. This is primarily fundamental science, building a mechanistic account of remote lesion effects that does not yet exist.
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