Characterising the neural mechanisms of human memory at high resolution
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AI plain-English summaryA wearable brain scanner will track how personal memories form and change, millisecond by millisecond, as people go about their daily lives. Autobiographical memory—the ability to recall specific past experiences—is essential for independent living and a stable sense of self. Yet the neural mechanisms that build, reconstruct, and transform these memories over time remain poorly understood. Existing brain imaging methods cannot capture the rapid, dynamic activity across deep brain structures like the hippocampus and ventromedial prefrontal cortex. This project aims to fill that gap by combining a new wearable MEG system with ultra-high-resolution MRI, allowing researchers to observe memory processing at the level of cortical layers and hippocampal subfields. This is primarily fundamental science. If successful, it would provide the first detailed, real-time account of how autobiographical memories are encoded during experience, consolidated during sleep, and retrieved months or years later. The immediate impact will be theoretical: a richer, mechanism-based understanding of memory. In the longer term, that understanding could illuminate why memory fails in conditions such as dementia, depression, and post-traumatic stress disorder—and point toward more targeted interventions. Similar foundational work on memory systems has already shaped treatments for amnesia and epilepsy.
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