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运动及其视觉效果的感觉整合不会因空间接近而增强。

Sensory integration of movements and their visual effects is not enhanced by spatial proximity.

作者信息

Debats Nienke B, Heuer Herbert

机构信息

Department of Cognitive Neuroscience, Universität Bielefeld, Bielefeld, Germany.

Cognitive Interaction Technology Center of Excellence (CITEC), Universität Bielefeld, Bielefeld, Germany.

出版信息

J Vis. 2018 Oct 1;18(11):15. doi: 10.1167/18.11.15.

Abstract

Spatial proximity enhances the sensory integration of exafferent position information, likely because it indicates whether the information comes from a single physical source. Does spatial proximity also affect the integration of position information regarding an action (here a hand movement) with that of its visual effect (here a cursor motion), that is, when the sensory information comes from physically distinct objects? In this study, participants made out-and-back hand movements whereby the outward movements were accompanied by corresponding cursor motions on a monitor. Their subsequent judgments of hand or cursor movement endpoints are typically biased toward each other, consistent with an underlying optimal integration mechanism. To study the effect of spatial proximity, we presented the hand and cursor either in orthogonal planes (horizontal and frontal, respectively) or we aligned them in the horizontal plane. We did not find the expected enhanced integration strength in the latter spatial condition. As a secondary question we asked whether spatial transformations required for the position judgments (i.e., horizontal to frontal or vice versa) could be the origin of previously observed suboptimal variances of the integrated hand and cursor position judgments. We found, however, that the suboptimality persisted when spatial transformations were omitted (i.e., with the hand and cursor in the same plane). Our findings thus clearly show that the integration of actions with their visual effects is, at least for cursor control, independent of spatial proximity.

摘要

空间接近性增强了外部传入位置信息的感觉整合,这可能是因为它表明信息是否来自单一物理源。当感觉信息来自物理上不同的物体时,空间接近性是否也会影响关于动作(这里是手部运动)的位置信息与其视觉效果(这里是光标运动)的整合呢?在本研究中,参与者进行来回的手部运动,向外运动时显示器上会伴随相应的光标运动。他们随后对手部或光标运动终点的判断通常会相互偏向,这与潜在的最优整合机制一致。为了研究空间接近性的影响,我们将手部和光标分别呈现在正交平面(分别为水平和 frontal)中,或者将它们在水平面上对齐。我们在后一种空间条件下未发现预期的增强整合强度。作为一个次要问题,我们询问位置判断所需的空间转换(即从水平到 frontal 或反之亦然)是否可能是先前观察到的整合后的手部和光标位置判断次优方差的根源。然而,我们发现当省略空间转换时(即手部和光标在同一平面),次优性仍然存在。因此,我们的研究结果清楚地表明,动作与其视觉效果的整合,至少对于光标控制而言,与空间接近性无关。

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