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Mapping the Origins of Time: Scalar Errors in Infant Time Estimation

机译:映射时间的起源:婴儿时间估计中的标量误差

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摘要

Time is central to any understanding of the world. In adults, estimation errors grow linearly with the length of the interval, much faster than would be expected of a clock-like mechanism. Here we present the first direct demonstration that this is also true in human infants. Using an eye-tracking paradigm, we examined 4-, 6-, 10-, and 14-month-olds' responses to the omission of a recurring target, on either a 3- or 5-s cycle. At all ages (a) both fixation and pupil dilation measures were time locked to the periodicity of the test interval, and (b) estimation errors grew linearly with the length of the interval, suggesting that trademark interval timing is in place from 4 months.
机译:时间是任何了解世界的中心。在成年人中,估计误差随时间间隔的长度呈线性增长,比类似时钟的机制所预期的要快得多。在这里,我们提供第一个直接证明,这在人类婴儿中也是如此。使用眼动追踪范例,我们以3或5 s周期检查了4、6、10、14个月大的婴儿对重复目标遗漏的反应。在所有年龄段(a)固定和瞳孔扩张措施都被锁定在测试间隔的周期性上,并且(b)估计误差随着间隔的长度线性增长,这表明从4个月开始实施商标间隔时间。

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