Reversible hippocampal lesions disrupt water maze performance during both recent and remote memory tests
- 1 March 2006
- journal article
- research article
- Published by Cold Spring Harbor Laboratory in Learning & Memory
- Vol. 13 (2) , 187-191
- https://doi.org/10.1101/lm.134706
Abstract
Conventional lesion methods have shown that damage to the rodent hippocampus can impair previously acquired spatial memory in tasks such as the water maze. In contrast, work with reversible lesion methods using a different spatial task has found remote memory to be spared. To determine whether the finding of spared remote spatial memory depends on the lesion method, we reversibly inactivated the hippocampus with lidocaine either immediately (0-DAY) or 1 mo (30-DAY) after training in a water maze. For both the 0-DAY and 30-DAY retention tests, rats that received lidocaine infusions exhibited impaired performance. In addition, when the 0-DAY group was retested 2 d later, (when the drug was no longer active), the effect was reversed. That is, rats that had previously received lidocaine performed as well as control rats did. These findings indicate that the rodent hippocampus is important for both recent and remote spatial memory, as assessed in the water maze. What determines whether remote spatial memory is preserved or impaired following disruption of hippocampal function appears to be the type of task used to assess spatial memory, not the method used to disrupt the hippocampus.Keywords
This publication has 24 references indexed in Scilit:
- Retrograde amnesia: neither partial nor complete hippocampal lesions in rats result in preferential sparing of remote spatial memory, even after remindingNeuropsychologia, 2005
- Impaired remote spatial memory after hippocampal lesions despite extensive training beginning early in lifeHippocampus, 2005
- Hippocampus and remote spatial memory in ratsHippocampus, 2004
- Sites of Neocortical Reorganization Critical for Remote Spatial MemoryScience, 2004
- Reversible Hippocampal Inactivation Partially Dissociates How and Where to Search in the Water Maze.Behavioral Neuroscience, 2004
- Recognition Memory and the Human HippocampusNeuron, 2003
- Retrograde amnesiaHippocampus, 2001
- Retrograde amnesia and selective damage to the hippocampal formation: memory for places and object discriminationsBehavioural Brain Research, 1999
- Involvement of entorhinal cortex or parietal cortex in long-term spatial discrimination memory in rats: Retrograde amnesia.Behavioral Neuroscience, 1996
- Involvement of entorhinal cortex or parietal cortex in long-term spatial discrimination memory in rats: Retrograde amnesia.Behavioral Neuroscience, 1996