Establishing circuit, neuronal and synaptic mechanisms of associative recognition memory
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AI plain-English summaryEvery time you recognise a familiar face in a crowd or remember where you parked your car, a network of brain regions must rapidly coordinate its activity—but exactly how they talk to each other, and when, remains unknown. This project tackles a fundamental gap in neuroscience: we know which brain areas are involved in associative recognition memory (the ability to link an object with its location), but we do not know which specific connections between those areas are required for encoding a memory versus retrieving it later, nor which synaptic mechanisms control each stage. The researchers will use a technique that lets them silence specific neural pathways with millisecond precision in rats, combined with recordings from individual neurons and measurements of synaptic changes in brain slices. This is fundamental science. If successful, it will provide the first circuit-level wiring diagram for how associative memories are formed and recalled across the medial temporal lobe, frontal cortex, and thalamus. Understanding these basic mechanisms could eventually inform treatments for memory disorders such as Alzheimer’s disease or amnesia, where associative recognition is often the first cognitive function to decline. But the immediate value lies in establishing principles that may apply broadly across learning and memory systems.
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