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交叉手缺陷的三维空间特征

A three-dimensional spatial characterization of the crossed-hands deficit.

作者信息

Azañón Elena, Mihaljevic Kim, Longo Matthew R

机构信息

Department of Psychological Sciences, Birkbeck, University of London, London WC1E 7HX, UK.

Department of Psychological Sciences, Birkbeck, University of London, London WC1E 7HX, UK.

出版信息

Cognition. 2016 Dec;157:289-295. doi: 10.1016/j.cognition.2016.09.007. Epub 2016 Sep 30.

Abstract

To perceive the location of touch in space, we integrate information about skin-location with information about the location of that body part in space. Most research investigating this process of tactile spatial remapping has used the so-called crossed-hands deficit, in which the ability to judge the temporal order of touches on the two hands is impaired when the arms are crossed. This posture induces a conflict between skin-based and tactile external spatial representations, specifically in the left-right dimension. Thus, it is unknown whether touch is affected by posture when spatial relations other than the right-left dimension are available. Here, we tested the extent to which the crossed-hands deficit is a measure of tactile remapping, reflecting tactile encoding in three-dimensional space. Participants judged the temporal order of tactile stimuli presented to crossed and uncrossed hands. The arms were placed at different elevations (up-down dimension; Experiments 1 and 2), or at different distances from the body in the depth plane (close-far dimension; Experiment 3). The crossed-hands deficit was reduced when other sources of spatial information, orthogonal to the left-right dimension (i.e., close-far, up-down), were available. Nonetheless, the deficit persisted in all conditions, even when processing of non-conflicting information in the close-far or up-down dimensions was enough to solve the task. Together, these results demonstrate that the processing underlying the crossed-hands deficit is related to the encoding of tactile localization in three-dimensional space, rather than related uniquely to the cost of processing information in the right-left dimension. Furthermore, the persistence of the crossing effect provides evidence for automatic integration of all available information during the encoding of tactile information.

摘要

为了感知空间中触摸的位置,我们将有关皮肤位置的信息与该身体部位在空间中的位置信息进行整合。大多数研究这一触觉空间重新映射过程的实验都采用了所谓的交叉手缺陷,即当双臂交叉时,判断双手上触摸时间顺序的能力会受损。这种姿势会在基于皮肤的和触觉外部空间表征之间引发冲突,特别是在左右维度上。因此,当存在左右维度以外的空间关系时,触摸是否会受到姿势的影响尚不清楚。在这里,我们测试了交叉手缺陷在多大程度上是一种触觉重新映射的度量,反映了三维空间中的触觉编码。参与者判断呈现给交叉手和非交叉手的触觉刺激的时间顺序。手臂被放置在不同的高度(上下维度;实验1和2),或者在深度平面上与身体保持不同的距离(远近维度;实验3)。当存在与左右维度正交的其他空间信息来源(即远近、上下)时,交叉手缺陷会减少。尽管如此,即使在远近或上下维度中处理非冲突信息足以完成任务时,这种缺陷在所有条件下仍然存在。总之,这些结果表明,交叉手缺陷背后的处理过程与三维空间中触觉定位的编码有关,而不仅仅与左右维度中信息处理的成本有关。此外,交叉效应的持续存在为触觉信息编码过程中所有可用信息的自动整合提供了证据。

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