首页> 外文期刊>Journal of experimental psychology. Learning, memory, and cognition >Functional Equivalence of Spatial Images From Touch and Vision: Evidence From Spatial Updating in Blind and Sighted Individuals
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Functional Equivalence of Spatial Images From Touch and Vision: Evidence From Spatial Updating in Blind and Sighted Individuals

机译:来自触摸和视觉的空间图像的功能等效性:来自盲人和有视力个体的空间更新的证据

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摘要

This research examined whether visual and haptic map learning yield functionally equivalent spatial images in working memory, as evidenced by similar encoding bias and updating performance. In 3 experiments, participants learned 4-point routes either by seeing or feeling the maps. At test, blindfolded participants made spatial judgments about the maps from imagined perspectives that were either aligned or misaligned with the maps as represented in working memory. Results from Experiments 1 and 2 revealed a highly similar pattern of latencies and errors between visual and haptic conditions. These findings extend the well-known alignment biases for visual map learning to haptic map learning, provide further evidence of haptic updating, and most important, show that learning from the 2 modalities yields very similar performance across all conditions. Experiment 3 found the same encoding biases and updating performance with blind individuals, demonstrating that functional equivalence cannot be due to visual recoding and is consistent with an amodal hypothesis of spatial images.
机译:这项研究检查了视觉和触觉地图学习是否在工作记忆中产生功能上等效的空间图像,这由相似的编码偏差和更新性能所证明。在3个实验中,参与者可以通过查看或感觉到地图来学习4点路线。在测试中,被蒙住眼睛的参与者从与工作记忆中表示的地图对齐或未对齐的想象角度对地图进行空间判断。实验1和2的结果表明,视觉和触觉条件之间的延迟和错误模式非常相似。这些发现将视觉地图学习的众所周知的对齐偏差扩展到了触觉地图学习,为触觉更新提供了进一步的证据,最重要的是,表明从这两种方式中学习在所有条件下都具有非常相似的性能。实验3发现盲人具有相同的编码偏见并更新了性能,这表明功能等效不能归因于视觉编码,并且与空间图像的无模态假设一致。

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