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R van Buskirk

Publications and source records attributed to R van Buskirk.

7 recordsLinked to original sources

Effects of diethyldithiocarbamate and fusaric acid upon memory storage processes in rats.

Diethyldithiocarbamate (DDC) and fusaric acid (FA), administered immediately posttraining, disrupted retention performance of rats trained on a one-trial inhibitory avoidance task. Posttraining DDC disrupted retention performance if the treatment was delayed up to at least 24 h (but not 72 h) after training. A single DDC injection also disrupted retention performance if the treatment was administered up to 10 days prior to training. The effects of DDC and FA upon several neurobiological measures were also investigated. Amnestic doses of DDC influence brain and adrenal catecholamine levels, brain electrographic activity and hippocampal Timm's staining. On the other hand, amnestic doses of FA only affected catecholamine levels. The amnestic effects of DDC were dissociated from brain seizure activity produced by DDC. The effects of DDC and FA upon retention may have been related to the drugs' effects upon catecholamine systems, but the bleaching by DDC of Timm's staining could reflect additional processes involved in DDC's effects upon retention. As opposed to the more widespread effects of DDC, FA's relative lack of effect upon other neurobiological measures more strongly supports a catecholaminergic interpretation for its effect upon retention.

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Facilitation of retention performance in mice by posttraining diethyldithiocarbamate.

These experiments examined the effects in mice of posttraining injections of diethyldithiocarbamate (DDC) upon retention (7 days after training) of active avoidance learning and upon whole brain catecholamine levels. When administered immediately following training, DDC enhanced retention performance. The degree of enhancement varied directly with dose. DDC did not significantly affect retention performance if the injections were delayed 1 or 4 hours after training. Also, DDC administered 30 min prior to training did not affect retention performance. DDC (900 mg/kg) produced a large but transient increase in whole brain dopamine (DA) levels while norepinephrine (NE) levels were lowered.

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