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首页> 外文期刊>The Journal of Experimental Biology >Boosting intermediate-term into long-term memory
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Boosting intermediate-term into long-term memory

机译:将中期提升为长期记忆

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Aerial respiration in the pond snail Lymnaea stagnalis can be operantly conditioned.. Depending on the specific training procedure used (i.e. a 0.5 h vs a 1.0 h interval between training sessions) either intermediate (ITM) or long-term memory (LTM) is formed. ITM, which persists for 2-3 h, is dependent only on de novo protein synthesis, whilst LTM persists for up to 4 weeks and is dependent on both transcription and de novo protein synthesis. We found that although the behavioural phenotype of ITM was not apparent 24 h after the last training session, a residual memory trace was present that serves as a foundation upon which a subsequent ITM-training-procedure builds on to form LTM (i.e. a 'changed memory'). This residual memory trace could be perturbed by cooling, the behavioural process of context-specific extinction and by increasing the interval between the training procedures. Furthermore in preparations where the somata of RPeD1 (one of three interneurons in the central pattern generator required for aerial respiratory behavior) had been ablated before training, LTM could not be observed following a second bout of ITM-training. These data support the concept that a molecular memory trace is established as a consequence of ITM-training, which serves as a 'permissive substrate', when the ITM memory is made active, sufficient to permit the necessary transcription and translation processes that are causal for LTM formation.
机译:可以对池塘蜗牛的天蛾Lynnaea stagnalis进行空气呼吸。根据所使用的特定训练程序(即训练间隔0.5小时vs 1.0小时的间隔),可以形成中间(ITM)或长期记忆(LTM) 。持续2-3小时的ITM仅取决于从头蛋白质的合成,而LTM持续长达4周,并且取决于转录和从头蛋白质的合成。我们发现,尽管ITM的行为表型在最后一次训练后24小时仍未明显,但仍存在残余记忆轨迹,可作为后续ITM训练过程建立LTM的基础(即“记忆')。可能会因冷却,特定环境下的灭绝行为过程以及增加训练程序之间的间隔而干扰此剩余的记忆轨迹。此外,在训练之前已经消融了RPeD1(中央模式发生器中三个中间神经元之一,以进行空中呼吸行为的躯干)之一的躯体,在准备中,第二次ITM训练后无法观察到LTM。这些数据支持以下概念:由于ITM训练而建立了分子记忆痕迹,当ITM记忆激活时,它充当“允许的底物”,足以允许必要的转录和翻译过程LTM形成。

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