Neural mechanisms underlying flexible behaviour
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AI plain-English summaryA monkey learns to navigate a new maze by recognising that the same abstract rules—like “avoid the red shape”—apply even when the objects themselves change. This research asks how the brain builds such flexible knowledge, allowing us to generalise from one situation to another without starting from scratch each time. Current neuroscience often studies simple, repetitive tasks that don’t capture how humans and primates make deep inferences—combining learned rules to solve entirely new problems. The gap is that we understand cellular activity in rodents but lack a clear picture of how primate brains perform the sophisticated abstractions that underpin everyday reasoning, from navigating a city to understanding a metaphor. If successful, this work will create new analytical tools that bridge cellular recordings in macaques with non-invasive brain imaging in humans. That could eventually help clinical researchers pinpoint exactly which neural circuits break down in conditions like schizophrenia or dementia, where flexible thinking is impaired. For now, the research is fundamental science—it asks how brains represent relationships, not how to fix them. But understanding the neural code for abstraction is a necessary step before anyone can build better diagnostics or brain-inspired artificial intelligence.
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