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首页> 外文期刊>Developmental psychology >Developmental change in the acuity of approximate number and area representations.
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Developmental change in the acuity of approximate number and area representations.

机译:近似数量和面积表示的敏锐度发生发展变化。

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From very early in life, humans can approximate the number and surface area of objects in a scene. The ability to discriminate between 2 approximate quantities, whether number or area, critically depends on the ratio between the quantities, with the most difficult ratio that a participant can reliably discriminate known as the Weber fraction. While developmental improvements in the Weber fraction have been demonstrated for number, the developmental trajectory of improvement in area discrimination remains unknown. Here we investigated whether the development of area discrimination parallels that of number discrimination. We tested forty 3- to 6-year-old children and adults in both a number and an area discrimination task in which participants selected the greater of 2 quantities across a range of ratios. We used formal psychophysical models to derive, for each participant and each age group, the Weber fraction for both number and area discrimination. We found that, like number acuity, area acuity steadily improves during childhood. However, we also found area acuity to be consistently higher than number acuity, suggesting a potential difference in the underlying mechanisms that encode and/or represent approximate area and approximate number. We discuss these findings in the context of quantity processing and its development. (PsycINFO Database Record (c) 2013 APA, all rights reserved)
机译:从一开始,人就可以估算场景中物体的数量和表面积。区分2个近似数量(无论是数量还是面积)的能力主要取决于数量之间的比率,其中参与者可以可靠区分的最困难的比率称为韦伯分数。尽管已经证明了韦伯级数在发展上的改进,但是在区域分辨力上改进的发展轨迹仍然未知。在这里,我们调查了区域歧视的发展是否与数字歧视的发展平行。我们在数量和区域歧视任务中对40名3至6岁的儿童和成人进行了测试,其中参与者选择了多个比率范围内的2个数量中较大的一个。我们使用正式的心理物理模型为每个参与者和每个年龄组推导了韦伯分数,以区分人数和地区。我们发现,像数字敏锐度一样,区域敏锐度在儿童时期也逐渐提高。但是,我们还发现面积敏锐度始终高于数字敏锐度,这表明编码和/或表示近似面积和近似数的潜在机制存在潜在差异。我们在数量处理及其发展的背景下讨论这些发现。 (PsycINFO数据库记录(c)2013 APA,保留所有权利)

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