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Space Constancy vs Shape Constancy

机译:空间常数与形状常数

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The perceived distance between objects has been found to decrease over time in memory, demonstrating a partial failure of space constancy. Such mislocalization has been attributed to a generalized compression effect in memory. We confirmed this drift with a pair of remembered dot positions but did not find a compression of perceived distance when the space between the dots was filled with a connecting line. When the dot pairs were viewed eccentrically the compression in memory was substantially less. These results are in line with a combination of factors previously demonstrated to cause distortion in spatial memory — foveal bias and memory averaging — rather than a general compression of remembered visual space. Our findings indicate that object shape does not appear to bc vulnerable to failures of space constancy observed with remmbcrcd positions.
机译:已经发现对象之间的感知距离会随着时间在内存中减小,这表明空间恒定性会部分失败。这种误定位已归因于存储器中的普遍压缩效应。我们用一对记忆的点位置确认了这种漂移,但是当点之间的空间被连接线填充时,并没有发现感知距离的压缩。偏心观察点对时,内存中的压缩明显减少。这些结果与先前证明会导致空间记忆失真(中央凹偏向和记忆平均)而不是对记忆的视觉空间进行一般压缩的多种因素相吻合。我们的发现表明,对象形状似乎不易受remmbcrcd位置观察到的空间恒定性破坏的影响。

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