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Short-Term Memory Effects on Crossing the Boundary: Discrimination between Large and Small Quantities in Angelfish (Pterophyllum scalare)

机译:跨越边界的短期记忆效应:神仙鱼(Pterophyllum scalare)中大数量和小数量的区分

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摘要

Rudimentary quantification abilities are found in numerous animal species and in human infants all demonstrating the ability to discriminate between quantities differing in numerical size. An open question is whether individuals rely on different underlying systems to discriminate between large (analogue magnitude system (AMS) for number of items exceeding 3) and small quantities (object-file system (OFS) for number of items below 4), or they use only one system (AMS) for the entire number range. The two-system hypothesis has been supported by finding reduced ability to discriminate between quantities that cross the large-small boundary in several species. Recently, the role of cognitive representation, i.e., memory, in quantity discrimination has also been recognized. Here, we investigated whether angelfish can discriminate quantities across the boundary under two memory conditions. In a binary choice test, single angelfish were allowed to see groups (shoals) of conspecifics of different numerical size on the two sides of their test tank. In Experiment 1, their choice was recorded after a 2-sec retention interval during which shoal size information was unavailable. Angelfish were able to discriminate the larger shoal across the boundary when the shoals differed by a 2:1 or higher ratio, but not when the ratio was lower. In Experiment 2, however, with a 15-sec retention interval, angelfish could only detect a four-fold difference in ratio but failed to detect a three- or a two-fold difference across the boundary. These results suggest that angelfish can remember smaller differences for a short (2 sec) but not for a longer (15 sec) period. Together with previous findings, the current results support the idea that angelfish use two distinct systems for representing quantity, but they may recruit the AMS even for the small number range under some circumstances, e.g., when higher memory demand is imposed by a greater retention interval.
机译:在许多动物物种和人类婴儿中都发现了基本的量化能力,所有这些都证明了区分数值大小不同的数量的能力。一个悬而未决的问题是,个人是否依赖于不同的基础系统来区分大型(对于超过3个项目的模拟量级系统(AMS))和少量(对于小于4个项目的对象大小的对象文件系统(OFS)),还是他们整个号码范围只能使用一个系统(AMS)。通过发现区分几个物种中通过大-小边界的数量的能力降低,已经支持了两个系统的假设。最近,也认识到认知表征,即记忆在数量歧视中的作用。在这里,我们研究了神仙鱼是否可以在两种记忆条件下区分边界上的数量。在二元选择测试中,单个神仙鱼被允许在其测试水箱的两侧看到不同数值大小的同种异体群(浅滩)。在实验1中,在2秒钟的保留间隔后记录了他们的选择,在这段间隔内无法获得浅滩尺寸信息。当浅滩相差2:1或更高的比率时,神仙鱼能够在边界上辨别较大的浅滩,但当比率较低时则无法。但是,在实验2中,保留时间间隔为15秒,神仙鱼只能检测到比率的四倍差异,而无法检测到跨越边界的三倍或两倍差异。这些结果表明神仙鱼可以在较短的时间内(2秒)记住较小的差异,而在较长的时间内(15秒)不能记住。结合以前的发现,当前的结果支持了神仙鱼使用两个不同的系统表示数量的想法,但是在某些情况下,例如,当较大的保留间隔带来更高的内存需求时,即使在很小的数量范围内,它们也可能会募集AMS。 。

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  • 年(卷),期 -1(11),9
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  • 总页数 14
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