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由三维声音、空间语言和视觉所指定的多个物体位置的编码、学习和空间更新。

Encoding, learning, and spatial updating of multiple object locations specified by 3-D sound, spatial language, and vision.

作者信息

Klatzky Roberta L, Lippa Yvonne, Loomis Jack M, Golledge Reginald G

机构信息

Department of Psychology, Carnegie-Mellon University, Pittsburgh, PA 15213,USA.

出版信息

Exp Brain Res. 2003 Mar;149(1):48-61. doi: 10.1007/s00221-002-1334-z. Epub 2002 Dec 19.

Abstract

Participants standing at an origin learned the distance and azimuth of target objects that were specified by 3-D sound, spatial language, or vision. We tested whether the ensuing target representations functioned equivalently across modalities for purposes of spatial updating. In experiment 1, participants localized targets by pointing to each and verbalizing its distance, both directly from the origin and at an indirect waypoint. In experiment 2, participants localized targets by walking to each directly from the origin and via an indirect waypoint. Spatial updating bias was estimated by the spatial-coordinate difference between indirect and direct localization; noise from updating was estimated by the difference in variability of localization. Learning rate and noise favored vision over the two auditory modalities. For all modalities, bias during updating tended to move targets forward, comparably so for three and five targets and for forward and rightward indirect-walking directions. Spatial language produced additional updating bias and noise from updating. Although spatial representations formed from language afford updating, they do not function entirely equivalently to those from intrinsically spatial modalities.

摘要

站在原点的参与者学习了由三维声音、空间语言或视觉所指定的目标物体的距离和方位。我们测试了随后形成的目标表征在空间更新方面是否在不同模态间等效发挥作用。在实验1中,参与者通过指向每个目标并说出其距离来对目标进行定位,既可以直接从原点进行,也可以通过一个间接的中途点进行。在实验2中,参与者通过直接从原点或经由一个间接的中途点走到每个目标来对目标进行定位。空间更新偏差通过间接定位和直接定位之间的空间坐标差异来估计;更新产生的噪声通过定位变异性的差异来估计。学习率和噪声方面,视觉优于两种听觉模态。对于所有模态,更新过程中的偏差往往会使目标向前移动,对于三个和五个目标以及向前和向右的间接行走方向来说都是如此。空间语言产生了额外的更新偏差和更新产生的噪声。尽管由语言形成的空间表征能够进行更新,但它们的功能并不完全等同于来自内在空间模态的表征。

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