Proceedings of the National Academy of Sciences · 1992 · 293 citations · 42 references
Basal GangliaSelective AttentionNeurotransmissionAlzheimer Disease PathologyCellular NeurobiologySynaptic SignalingSocial SciencesInhibitory InterneuronsNeurologyNeurochemistryCognitive ScienceNervous SystemBasal Forebrain-neocortex PathwaySynaptic PlasticityNeurobiological MechanismNeurophysiologyNeuroanatomyNeuroscienceCentral Nervous SystemMedicine
The basal forebrain-neocortex pathway--involved in higher cognitive processing, selective attention, and arousal--is considered one of the functionally most important ascending subcortical projections. The mechanism by which this relatively sparse subcortical pathway can control neuronal activity patterns in the entire cortical mantle is still unknown. The present study in the cat provides evidence that gamma-aminobutyric acid-containing basal forebrain neurons participate in the neocortical projection and establish multiple synaptic connections with gamma-aminobutyric acid-releasing interneurons containing somatostatin or parvalbumin. We propose that a mechanism by which the numerically small ascending pathways can exert a powerful global effect in the neocortex is by the selective innervation of gamma-aminobutyric acid-releasing interneurons, which, in turn, control the activity of large populations of pyramidal cells through their extensive axon arborizations. Finally, these results demonstrate a direct anatomical link between two cell populations implicated in Alzheimer disease pathology: basal forebrain neurons and cortical somatostatin cells.
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Alzheimer's Disease and Senile Dementia: Loss of Neurons in the Basal Forebrain
PJ Whitehouse, DL Price, R. G. Struble et al. · Science · 1982 · 3.6K citations
M.‐Marsel Mesulam, Elliott J. Mufson, Allan I. Levey et al. · The Journal of Comparative Neurology · 1983 · 2K citations
Synaptic Transmission, Neurotransmitter, Basic Neuroscience +28
Charles R. Gerfen, Paule E. Sawchenko · Brain Research · 1984 · 1.2K citations · Full text
Biology, Ganglion Cell, Immunohistochemical Localization +14
Nucleus basalis and thalamic control of neocortical activity in the freely moving rat
György Buzsáki, RG Bickford, G Ponomareff et al. · Journal of Neuroscience · 1988 · 1K citations · Full text