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On the Value of Reptilian Brains to Map the Evolution of the Hippocampal Formation

机译:论爬行动物大脑的价值映射海马形成演变

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Our ability to navigate through the world depends on the function of the hippocampus. This old cortical structure plays a critical role in spatial navigation in mammals and in a variety of processes, including declarative and episodic memory and social behavior. Intense research has revealed much about hippocampal anatomy, physiology, and computation; yet, even intensely studied phenomena such as the shaping of place cell activity or the function of hippocampal firing patterns during sleep remain incompletely understood. Interestingly, while the hippocampus may be a 'higher order' area linked to a complex cortical hierarchy in mammals, it is an old cortical structure in evolutionary terms. The reptilian cortex, structurally much simpler than the mammalian cortex and hippocampus, therefore presents a good alternative model for exploring hippocampal function. Here, we trace common patterns in the evolution of the hippocampus of reptiles and mammals and ask which parts can be profitably compared to understand functional principles. In addition, we describe a selection of the highly diverse repertoire of reptilian behaviors to illustrate the value of a comparative approach towards understanding hippocampal function. (C) 2017 S.Karger AG, Basel
机译:我们浏览世界的能力取决于海马的功能。这种旧皮质结构在哺乳动物的空间导航中和各种过程中起着关键作用,包括声明性和巨大内存和社会行为。激烈的研究揭示了海马解剖学,生理学和计算;然而,甚至强烈地研究了诸如睡眠期间的地区细胞活性的整形或睡眠期间的海马烧制模式的功能仍然不完全理解。有趣的是,虽然海马可以是与哺乳动物中的复杂皮质等级相关的“高阶”区域,但它是进化术语的旧皮质结构。爬行动物皮质,结构性比哺乳动物皮质和海马更简单,因此提供了一种探索海马功能的良好替代模型。在这里,我们追踪爬行动物和哺乳动物海马的演变中的常见模式,并询问哪些部件可以获得有利可图,以了解功能原则。此外,我们描述了一系列高度多样化的爬行动物行为,以说明对理解海马功能的比较方法的价值。 (c)2017年S.Karger AG,巴塞尔

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