Completed Brain & Nervous System Psychology & Behaviour

Control of neuronal networks and cognitive behaviour by deep brain, transcranial and optogenetic stimulation

In plain English

AI plain-English summary

A tiny, imperceptible electrical pulse delivered to a precise spot in the brain can re-coordinate the neural chatter that goes haywire during a decision in a person with schizophrenia. The problem is that brain diseases like schizophrenia disrupt the subtle timing of electrical activity across different regions, making it hard for patients to weigh past experience against the present moment. Current drugs struggle to fix these impaired thought processes. This project tests whether targeted brain stimulation—applied during waking decisions or even during sleep—can restore that coordination. Sleep is particularly important because the brain replays and sorts recent events during rest, and poor sleep worsens cognitive symptoms. If the approach works, it could lead to a new class of treatments for thought disorders that are not reliant solely on drugs. The techniques being developed—deep brain, transcranial, and optogenetic stimulation—could eventually be combined with future medications to treat the core cognitive deficits of schizophrenia and related conditions. This is fundamental science aimed at understanding how to control neural networks, but it directly targets a real-world clinical gap: the lack of effective therapies for disordered thinking.

View original technical description
Your brain is constantly doing sums, weighing-up past experience and the current situation in order to decide how best to behave. Unfortunately, patients with brain diseases like schizophrenia have trouble coping with these decisions that most of us take for granted; electrical activity in different parts of their brains becomes subtly uncoordinated, making it difficult to see the wood for the trees. This project will use stimulation techniques designed to control the brain‘s electrical signalling (very carefully - you wouldn‘t notice if it was done to you) to see if we can re-coordinate brain activity at important times, such as during decisions. Brain activity during sleep is also important, often mirroring previous events. This reflects the brain ‘sorting out‘ recent thoughts, preparing useful information for long term storage. A bad night‘s sleep is often followed by sluggish thoughts, and sleep is commonly impaired in brain disease. We will therefore also use brain stimulation during sleep to see if that can boost efficient decision-making. It is difficult to design drugs to treat impaired thought processes. Our research will develop new techniques that - potentially in combination with future drugs - can be used to treat thought disorders in schizophrenia and related diseases.

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Researchers

Matt Jones (Principal Investigator)

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Original classification

Fellowship

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