3-D movie shows, for the first time, what happens in the brain as it loses consciousness

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3-D movie shows, for the first time, what happens in the brain as it loses consciousness

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3-D movie shows, for the first time, what happens in the brain as it loses consciousness

Posted: 10 Jun 2011 05:00 AM PDT

( From http://www.rxpgnews.com ) Amsterdam, The Netherlands: For the first time researchers have been able to watch what happens to the brain as it loses consciousness. Using sophisticated imaging equipment they have constructed a 3-D movie of the brain as it changes while an anaesthetic drug takes effect. Brian Pollard, Professor of Anaesthesia at The University of Manchester (UK), will tell the European Anaesthesiology Congress in Amsterdam that the real-time 3-D images seemed to show that losing consciousness involves a change in electrical activity deep within the brain, changing the activity of certain groups of nerve cells (neurons) and hindering communication between different parts of the brain. He said the findings appear to support a hypothesis put forward by Professor Susan Greenfield, of the University of Oxford, about the nature of consciousness itself. Prof Greenfield suggests consciousness is formed by different groups of brain cells (neural assemblies), which work efficiently together, or not, depending on the available sensory stimulations, and that consciousness is not an all-or-none state but more like a dimmer switch, changing according to growth, mood or drugs. When someone is anaesthetised it appears that small neural assemblies either work less well together or inhibit communication with other neural assemblies. Our findings suggest that unconsciousness may be the increase of inhibitory assemblies across the brain's cortex. These findings lend support to Greenfield's hypothesis of neural assemblies forming consciousness, said Prof Pollard. The team use an entirely new imaging method called functional electrical impedance tomography by evoked response (fEITER *), which enables high speed imaging and monitoring of electrical activity deep within the brain and is designed to enable researchers to measure brain function. The new device was developed by a multidisciplinary team drawn from the Schools of Medicine and Electrical and...

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