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L Werbrouck

Publications and source records attributed to L Werbrouck.

2 recordsLinked to original sources

Synaptic plasticity in rat hippocampus associated with learning.

Rats subjected to a one-way active avoidance task consisting of 3 daily training sessions, showed obvious shape changes in dendritic spines of the hippocampal supragranular molecular layer. Performance, expressed as the number of avoidances per 10 trials, significantly improved in the second and third session (P < 0.001). In trained animals, at the end of the third session, the amount of perforated concave synapses significantly increased as compared to untrained controls (P < 0.05). When compared with a group of sham-shocked rats, the increase was less pronounced. The length of the postsynaptic density in both, perforated and non-perforated synapses, significantly increased in comparison with untrained control and sham-shocked animals (perforated: P < 0.005; non-perforated: P < 0.05). The results are indicative for the existence of synaptic remodeling and turnover in rats subjected to one-way active avoidance training.

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Pharmacological treatment dose-relatedly improves learning and hippocampal long-term potentiation.

In the CA1 region of hippocampal slices prepared from guinea-pigs, which had been orally treated with sabeluzole, long-term potentiation was significantly enhanced in those slices obtained from animals given 2.5 or 10.0 mg/kg. In an active avoidance task oral treatment of guinea-pigs with 2.5 or 10.0 mg/kg of sabeluzole significantly increased learning. The dose of 0.63 mg/kg was inactive in both paradigms. These results provide new evidence supporting the involvement of LTP in learning.

Animals↗