Basal forebrain

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Brain: Basal forebrain
The Basal Forebrain

The basal forebrain is a collection of structures located ventrally to the striatum. It is considered to be the major cholinergic output of the CNS.

This structure defined - in part - as the place where adenosine acts on A1 receptors of cholinergic neurons resulting in hyperpolarization of these neurons. Thus they inhibit the release of acetylcholine from these neurons. Acetylcholine is known to promote wakefulness in the basal forebrain. Inhibition of acetylcholine release in the basal forebrain by adenosine causes slow wave sleep. The basal forebrain and apposing areas are a focus for sleep research. Stimulating the basal forebrain gives rise to EEG sychrony and sleep. It is located near the sub-arachnoidal space.

The basal forebrain includes a group of structures that lie near the bottom of the front of the brain, including the nucleus basalis, diagonal band, medial septum and substantia innominata. These structures are important in the production of a brain chemical called acetylcholine, which is then distributed widely throughout the brain. Acetylcholine affects the ability of brain cells to transmit information to one another, and also encourages plasticity, or learning. Thus, damage to the basal forebrain can reduce the amount of acetylcholine in the brain and impair learning. This may be one reason why basal forebrain damage can result in memory impairments such as amnesia and confabulation. One common cause of basal forebrain damage is aneurysm of the anterior communicating artery.[1] Research, conducted by investigators from Children's Hospital Boston and the University of Helsinki, ties together previous observations about sleep and finds that nitric oxide production in the basal forebrain is both necessary and sufficient to produce sleep.[2]


References

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  • This page was last modified on 26 August 2008, at 07:55.

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