Hyperpolarisation using SABRE as a new tool for imaging.
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AI plain-English summaryA new MRI technique could amplify the signal from a standard hospital scanner by a factor that would make invisible brain chemistry suddenly visible. The core problem this research tackles is that doctors and scientists have very few ways to watch what is happening inside the living brain at the molecular level. Conditions like Alzheimer’s disease involve inflammation and changes in how brain cells use energy, but the blood-brain barrier blocks most imaging probes, and conventional MRI is too insensitive to detect the subtle chemical signals involved. This project aims to develop hyperpolarised compounds—molecules whose nuclear spins are temporarily aligned to produce a vastly stronger MRI signal—that can cross the blood-brain barrier and report on specific biochemical processes such as microglial activation and neuronal metabolism. If the approach works in humans, it could transform how neurological diseases are diagnosed and monitored. Instead of relying on scans that show only brain structure or blood flow, clinicians might one day see the actual chemistry of neuroinflammation in a patient’s brain, enabling earlier detection of Alzheimer’s and better tracking of treatment effects. The project also aims to train a new generation of interdisciplinary researchers and create an international hub for the method, so the impact could extend well beyond a single lab.
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