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PMID: 1644125 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Attentional functions of the forebrain cholinergic systems: effects of intraventricular hemicholinium, physostigmine, basal forebrain lesions and intracortical grafts on a multiple-choice serial reaction time task.

Experimental brain research ·Vol. 89 ·No. 3 ·1992-00-00 ·Pages 611-22

Muir JL, Dunnett SB, Robbins TW, Everitt BJ

Abstract

Degeneration of the cholinergic magnocellular neurons in the basal forebrain and their cortical projections is a major feature of the neuropathology of Alzheimer's disease. In the present study, two experiments examined the disruptive effects on visual attentional performance of two different manipulations that reduce central cholinergic function. In Expt. I, pharmacological manipulation of the cholinergic system was investigated using icv administration of hemicholinium (HC-3), a high affinity choline uptake blocker, administered either alone or in conjunction with the anticholinesterase, physostigmine. The results revealed impairments in the ability of the rats to localize brief visual targets in a serial reaction time task, as shown in particular by a reduction in choice accuracy and lengthening of the latency to respond correctly to the visual stimulus. Cholinergic specificity was supported by the reversal of these behavioural impairments by pre-treatment with the anticholinesterase, physostigmine. In Expt. II, quisqualate-induced lesions of the basal forebrain produced behavioural deficits at 3 weeks post-lesion surgery similar to those observed following icv infusion of HC-3. In an attempt to restore the extrinsic cortical cholinergic innervation by reinnervation of the deafferented cortex, embryonic basal forebrain cholinergic cells were transplanted into the cortex of lesioned animals. After three months recovery, impairments in performance on the baseline schedule of the task were no longer apparent in lesioned animals. However, behavioural deficits, observed predominantly as a lengthening of correct response latency, could be reinstated in the lesioned animals by interpolation of distracting bursts of white noise during each trial, and this deficit was ameliorated by the cholinergic grafts. Furthermore, a non-specific effect of both cholinergic and non-cholinergic grafts in controlling the increase in perseverative time-out responses which occurred as a result of the basal forebrain lesion was consistently observed. These results suggest that cholinergic dysfunction can produce deficits in visual attention which can be ameliorated by cholinergic treatments such as physostigmine or cholinergic-rich cortical grafts. These data provide support for a role for the basal forebrain-neocortical cholinergic projection in attentional function.

MeSH Terms
Acetylcholine/physiology Analysis of Variance Animals Attention/drug effects Brain Tissue Transplantation/physiology Cerebral Cortex/drug effects,physiology Cerebral Ventricles/drug effects,physiology Choice Behavior/drug effects Fetal Tissue Transplantation/physiology Hemicholinium 3/administration & dosage,pharmacology Injections, Intraventricular Male Physostigmine/administration & dosage,pharmacology Prosencephalon/drug effects,pathology,physiology Quisqualic Acid/toxicity Rats Rats, Inbred Strains Reaction Time/drug effects
Chemicals
Hemicholinium 3 Quisqualic Acid Physostigmine Acetylcholine
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Muir J L
Department of Experimental Psychology, University of Cambridge, UK.
Dunnett S B
Robbins T W
Everitt B J
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Article Info
Journal
Experimental brain research
Abbr.
Exp Brain Res
ISSN
0014-4819
Published
1992-00-00
Pages
611-22
Language
English
Region
Germany
NLM ID
0043312
Subset
IM
Grants
Wellcome Trust · United Kingdom
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