Neural Simulation as a Neurocomputational Mechanism Underpinning Pathological Worry
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AI plain-English summaryWorry hijacks the brain’s ability to simulate future threats, turning a useful survival tool into a source of chronic distress. Generalised anxiety disorder affects 6% of the population at any time, yet the core neurocomputational mechanism—how the brain runs mental simulations to guide avoidance—remains poorly understood. This project uses computational modelling and neuroimaging to track how neural state reactivation supports these simulations during gamified avoidance tasks. The researcher will then test causality by temporarily altering brain circuits with transcranial ultrasound and pharmacological manipulation, and examine how genetic risk, early-life stress, and real-world adult stress shape aberrant simulation strategies. If successful, this work could reveal why some people’s mental simulations spiral into pathological worry, and point toward targeted treatments—for example, training patients to adopt more positive simulation strategies. This is fundamental science: it aims to explain a core cognitive process rather than deliver an immediate therapy. But understanding how the brain simulates danger has the same flavour of research that, in other fields, eventually enabled interventions for conditions once considered untreatable.
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