Evelyn F. McKnight Brain Institute, Arizona Research Laboratories Division of Neural Systems, Memory, and Aging, University of Arizona, Tucson, Arizona 85724, USA.
J Neurosci. 2013 Feb 13;33(7):3094-106. doi: 10.1523/JNEUROSCI.1348-12.2013.
Distinct ensembles of hippocampal cells can be active in numerous contexts, but specific "cognitive maps" tend to be retrieved on repeat visits to the same place. During aging, the reliability of map retrieval in CA1 networks is reduced; this provides a unique opportunity to investigate correlations between inconsistent activity patterns in circuits hypothesized to enable context encoding and hippocampus-dependent learning ability. Here, CA1 pyramidal cells were recorded in six young and six old rats, while memory for specific locations was probed using a place-dependent eyeblink conditioning task. Rats were conditioned twice daily for 31 days, during which a total of 8259 and 7042 cells were recorded from young and old rats, respectively. Spontaneous remapping, a change in location of the majority of place fields between two consecutive sessions in the same environment, was observed in two young rats and four old rats during this task, but only after at least 13 days of training. Under these conditions the altered network representation did not result in loss of spatial accuracy of the blink, and in fact those rats with the best place conditioning remapped the most, whereas those with the best memory in a spatial water maze task remapped the least. These results suggest that when the hippocampal representation for a particular context is weak or unstable, such as can occur in senescence, extra-hippocampal systems that mediate alternate learning strategies are more likely to dominate behavior.
在众多情境中,不同的海马体细胞集合可以活跃,但特定的“认知地图”往往在重复访问同一个地方时被检索到。随着年龄的增长,CA1 网络中地图检索的可靠性降低;这为研究假设能够实现上下文编码和海马体依赖性学习能力的电路中不一致活动模式之间的相关性提供了一个独特的机会。在这里,在六只年轻和六只老年大鼠中记录 CA1 锥体神经元,同时使用与位置相关的眨眼条件反射任务来探测特定位置的记忆。大鼠在 31 天内每天接受两次训练,在此期间,从年轻和老年大鼠中分别记录了 8259 和 7042 个细胞。在这个任务中,在同一个环境中,两个年轻大鼠和四个老年大鼠在两个连续的会话中观察到了自发的重映射,即大部分位置场的位置发生了变化,但只有在至少 13 天的训练后才会出现。在这些条件下,改变的网络表示并没有导致眨眼的空间准确性丧失,实际上,那些在位置条件反射中表现最好的大鼠重映射最多,而那些在空间水迷宫任务中记忆最好的大鼠重映射最少。这些结果表明,当特定上下文的海马体表示较弱或不稳定时,例如在衰老时可能发生的情况,介导替代学习策略的海马体外系统更有可能主导行为。