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Discrimination of small quantities by fish (redtail splitfin, Xenotoca eiseni)

机译:鱼类对少量鱼的鉴别(红尾鱼,异色藻)

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摘要

Discrimination of quantity has been argued to rely on two non-verbal representational systems: an object file system (OFS) for representing small values (a parts per thousand currency sign3-4) and an analog magnitude system (AMS) for representing large magnitudes (> 4). Infants' ability to discriminate 1 versus 2, 1 versus 3, 2 versus 3, but not 1 versus 4 or 2 versus 4 seems to prove the independence of such systems. Here, we show that redtail splitfin fish (Xenotoca eiseni) performed relative quantity estimations preferring to approach the location previously occupied by the larger in number between two groups of conspecifics (no longer visible at test) in sets of 1 versus 2 and 2 versus 3 items, but failed at 3 versus 4 items, thus showing the same set-size limit as infants for discrimination of small quantities. However, when tested with quantities that spanned the boundary of the two systems, that is, 1 versus 4 and 2 versus 4, fish succeeded. These results thus point to either the use of continuous physical variables and/or the use of the AMS also for small numerousness in fish in this task.
机译:数量辨别被认为依赖于两个非语言的表示系统:用于表示较小值(千分之三的货币符号3-4)的对象文件系统(OFS)和用于表示较大幅度的模拟量级系统(AMS)( > 4)。婴儿区分1对2、1对3、2对3而不是1对4或2对4的能力似乎证明了这种系统的独立性。在这里,我们显示红尾tail鱼(Xenotoca eiseni)进行了相对数量估计,他们倾向于接近1对2对,2对2对和3对同种的特定物种(在测试中不再可见)中较大数量占据的位置。项,但在3项对4项中不及格,因此显示出与婴儿相同的尺寸限制,以区分少量。但是,当使用跨越两个系统边界的数量进行测试时,即1对4和2对4,鱼成功了。因此,这些结果表明,在该任务中,对于鱼类中的数量很少,使用连续物理变量和/或使用AMS。

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