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首页> 外文期刊>The Journal of Experimental Biology >An automated training paradigm reveals long-term memory in planarians and its persistence through head regeneration
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An automated training paradigm reveals long-term memory in planarians and its persistence through head regeneration

机译:自动化的训练范式揭示了涡虫的长期记忆及其通过头部再生的持久性

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Planarian flatworms are a popular system for research into the molecular mechanisms that enable these complex organisms to regenerate their entire body, including the brain. Classical data suggest that they may also be capable of long-term memory. Thus, the planarian system may offer the unique opportunity to study brain regeneration and memory in the same animal. To establish a system for the investigation of the dynamics of memory in a regenerating brain, we developed a computerized training and testing paradigm that avoided the many issues that confounded previous, manual attempts to train planarians. We then used this new system to train flatworms in an environmental familiarization protocol. We show that worms exhibit environmental familiarization, and that this memory persists for at least 14 days - long enough for the brain to regenerate. We further show that trained, decapitated planarians exhibit evidence of memory retrieval in a savings paradigm after regenerating a new head. Our work establishes a foundation for objective, high-throughput assays in this molecularly tractable model system that will shed light on the fundamental interface between body patterning and stored memories. We propose planarians as key emerging model species for mechanistic investigations of the encoding of specific memories in biological tissues. Moreover, this system is likely to have important implications for the biomedicine of stem-cell-derived treatments of degenerative brain disorders in human adults.
机译:扁平虫是一种流行的系统,用于研究使这些复杂生物能够再生整个身体(包括大脑)的分子机制。经典数据表明它们也可能具有长期记忆能力。因此,涡虫系统可以提供独特的机会来研究同一只动物的大脑再生和记忆。为了建立一个调查再生大脑中记忆动态的系统,我们开发了一种计算机化的训练和测试范式,避免了许多困扰先前人工训练平面素的尝试的问题。然后,我们使用此新系统按照环境熟悉协议训练扁虫。我们证明蠕虫表现出对环境的熟悉,并且这种记忆可以持续至少14天-足够使大脑再生。我们进一步表明,训练有素,断头的平面虫在重新生成新的头部后在储蓄范式中显示出了内存检索的证据。我们的工作为这种分子易处理的模型系统中的客观,高通量分析奠定了基础,这将阐明人体构图与存储的记忆之间的基本界面。我们建议涡虫是关键的新兴模型物种,用于对生物组织中特定记忆的编码进行机械研究。此外,该系统可能对干细胞衍生的成人变性性脑疾病治疗的生物医学具有重要意义。

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