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Learning-related representational changes reveal dissociable integration and separation signatures in the hippocampus and prefrontal cortex

机译:与学习相关的代表性变化会发现海马和前额外皮层中的可解释的集成和分离签名

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The episodic memory system enables accurate retrieval while maintaining flexibility by representing both specific episodes and generalizations across events. Although theories suggest that the hippocampus (HPC) is dedicated to represent specific episodes while the medial prefrontal cortex (MPFC) generalizes, other accounts posit that HPC can also integrate related memories. Here we use high-resolution functional magnetic resonance imaging in humans to examine how representations of memory elements change to either differentiate or generalize across related events. We show that while posterior HPC and anterior MPFC maintain distinct memories for individual events, anterior HPC and posterior MPFC integrate across memories. Integration is particularly likely for established memories versus those encoded simultaneously, highlighting the greater impact of prior knowledge on new encoding. We also show dissociable coding signatures in ventrolateral PFC, a region previously implicated in interference resolution. These data highlight how memory elements are represented to simultaneously promote generalization across memories and protect from interference.
机译:插值存储系统通过代表跨事件的特定剧集和概括来保持灵活性,可以准确检索。虽然理论表明海马(HPC)专用于代表特定的剧集,而内侧前额定皮层(MPFC)推广,但HPC也可以集成相关的存储器。在这里,我们在人类中使用高分辨率功能磁共振成像来检查内存元素的表示如何变化,以区分或概括相关事件。我们展示了后部HPC和前MPFC的虽然为单个事件,前HPC和后部MPFC保持了不同的回忆。集成尤其可能具有既定的存储器与同时编码的存储器,突出了先前知识对新编码的影响。我们还显示了ventrolateral PFC中的可解离编码签名,该区域以前涉及干扰分辨率。这些数据突出显示内存元素的表示如何同时促进记忆的泛化并保护免受干扰。

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