4.3 Article

Reversible disconnection of the hippocampal-prelimbic cortical circuit impairs spatial learning but not passive avoidance learning in rats

期刊

NEUROBIOLOGY OF LEARNING AND MEMORY
卷 90, 期 2, 页码 365-373

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.nlm.2008.05.009

关键词

hippocampus; prefrontal cortex; prelimbic cortex; hippocampal-prefrontal cortical circuit; hippocampal-prelimbic cortical circuit; Morris water maze; passive avoidance; spatial learning; Wistar rats

资金

  1. NSFC [30070251]
  2. 973 Program of China [G1999054000]
  3. Applied Basic Research Fund of Yunnan Province [2007C051 M]
  4. Yunnan Normal University Natural Science Research Foundation for Young Scientists

向作者/读者索取更多资源

Wistar rats, treated with the GABA(A) receptor agonist muscimol, were used to investigate the role of the hippocampal-prelimbic cortical (Hip-PLC) circuit in spatial learning in the Morris water maze task, and in passive avoidance learning in the step-through task. In the water maze task, animals were trained for three consecutive days and tested 24 h after the end of training. In the step-through task, the animals were trained once and tested 24 h after training. On the training days, daily infusion of muscimol (0.5 mu g/0.25 mu l) was given (1) bilaterally to the ventral hippocampus (vHip), (2) bilaterally to the prelimbic cortex (PLC), (3) to the unilateral vHip and the ipsilateral PLC, or (4) for disconnecting the Hip-PLC circuit, to both the unilateral vHip and the contralateral PLC 30 min before training. The results showed that inhibition of the vHip resulted in disruption of performance in both tasks. Inhibition of the PLC produced impaired water maze performance, but had no effect on the step-through task. Disconnection of the Hip-PLC circuit produced similar effects to PLC inhibition. However, simultaneous inhibition of the unilateral vHip and the ipsilateral PLC had little effect on performance of the water maze task. The results suggested that spatial learning depends on the Hip-PLC circuit, whereas passive avoidance learning is independent of this circuit. (C) 2008 Elsevier Inc. All rights reserved.

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