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Caching for where and what: evidence for a mnemonic strategy in a scatter-hoarder

机译:缓存何处和何处:散布-积者中助记符策略的证据

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摘要

Scatter-hoarding animals face the task of maximizing retrieval of their scattered food caches while minimizing loss to pilferers. This demand should select for mnemonics, such as chunking, i.e. a hierarchical cognitive representation that is known to improve recall. Spatial chunking, where caches with the same type of content are related to each other in physical location and memory, would be one such mechanism. Here we tested the hypothesis that scatter-hoarding eastern fox squirrels (Sciurus niger) are organizing their caches in spatial patterns consistent with a chunking strategy. We presented 45 individual wild fox squirrels with a series of 16 nuts of four different species, either in runs of four of the same species or 16 nuts offered in a pseudorandom order. Squirrels either collected each nut from a different location or collected all nuts from a single location; we then mapped their subsequent cache distributions using GPS. The chunking hypothesis predicted that squirrels would spatially organize caches by nut species, regardless of presentation order. Our results instead demonstrated that squirrels spatially chunked their caches by nut species but only when caching food that was foraged from a single location. This first demonstration of spatial chunking in a scatter hoarder underscores the cognitive demand of scatter hoarding.
机译:散布动物的任务是最大程度地回收散落的食物,同时最大程度地减少对盗窃者的损失。这种需求应该选择助记符,例如分块,即已知可以提高召回率的分层认知表示。具有相同内容类型的高速缓存在物理位置和内存上彼此相关的空间分块就是这样一种机制。在这里,我们测试了以下假设:散布ho积的东部狐狸松鼠(Sciurus niger)正在按照与分块策略一致的空间模式来组织它们的缓存。我们介绍了45只野生狐狸松鼠,它们有16种来自四个不同物种的坚果,或者是四个相同物种的运行,或者是16个以伪随机顺序提供的坚果。松鼠要么从不同的位置收集每个螺母,要么从一个位置收集所有螺母。然后,我们使用GPS映射其后续缓存分配。分块假设预测松鼠将在空间上按坚果种类组织藏匿处,而与呈现顺序无关。相反,我们的结果表明,松鼠在空间上按坚果种类将它们的存储空间分割成块,但仅在从单个位置缓存觅食的食物时才如此。散布ho积器中空间分块的第一个演示强调了散布ho积的认知需求。

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