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Proactive and retroactive interference with associative memory consolidation in the snail Lymnaea is time and circuit dependent

机译:蜗牛Lymnaea中与联想记忆整合的主动和追溯干扰取决于时间和电路

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摘要

Interference-based forgetting occurs when new information acquired either before or after a learning event attenuates memory expression (proactive and retroactive interference, respectively). Multiple learning events often occur in rapid succession, leading to competition between consolidating memories. However, it is unknown what factors determine which memory is remembered or forgotten. Here, we challenge the snail, Lymnaea, to acquire two consecutive similar or different memories and identify learning-induced changes in neurons of its well-characterized motor circuits. We show that when new learning takes place during a stable period of the original memory, proactive interference only occurs if the two consolidating memories engage the same circuit mechanisms. If different circuits are used, both memories survive. However, any new learning during a labile period of consolidation promotes retroactive interference and the acquisition of the new memory. Therefore, the effect of interference depends both on the timing of new learning and the underlying neuronal mechanisms.
机译:当在学习事件之前或之后获取的新信息减弱了内存表达(分别为主动干扰和回溯干扰)时,就会发生基于干扰的遗忘。多次学习事件经常快速连续发生,从而导致巩固记忆之间的竞争。但是,尚不清楚哪些因素决定记住或忘记哪个记忆。在这里,我们向蜗牛Lymnaea发起挑战,以获取两个连续的相似或不同的记忆,并识别学习性良好的运动电路神经元的学习诱发变化。我们表明,当在原始内存的稳定时期内进行新的学习时,仅当两个合并的内存使用相同的电路机制时才会发生主动干扰。如果使用不同的电路,则两个存储器都将保留。但是,在不稳定的整合期间进行的任何新学习都会促进追溯干扰和获取新的内存。因此,干扰的影响既取决于新学习的时机,也取决于潜在的神经元机制。

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