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多感官交互作用随着双手越过身体中线:来自非空间视觉 - 触觉一致性任务的证据。

Multisensory interactions follow the hands across the midline: evidence from a non-spatial visual-tactile congruency task.

作者信息

Holmes Nicholas P, Sanabria Daniel, Calvert Gemma A, Spence Charles

机构信息

Department of Experimental Psychology, South Parks Road, Oxford OX1 3UD, UK.

出版信息

Brain Res. 2006 Mar 10;1077(1):108-15. doi: 10.1016/j.brainres.2005.11.010. Epub 2006 Feb 17.

Abstract

Crossing the hands over, whether across the body midline or with respect to each other, leads to measurable changes in spatial compatibility, spatial attention, and frequently to a general decrement in discrimination performance for tactile stimuli. The majority of multisensory crossed hands effects, however, have been demonstrated with explicit or implicit spatial discrimination tasks, raising the question of whether non-spatial discrimination tasks also show spatial effects when the hands are crossed. We designed a novel, non-spatial tactile discrimination task to address this issue. Participants made speeded discriminations of single- versus double-pulse vibrotactile targets, while trying to ignore simultaneous visual distractor stimuli, in both hands uncrossed and hands crossed postures. Tactile discrimination performance was significantly affected by the visual distractors (demonstrating a significant crossmodal congruency effect) and was affected most by visual distractors in the same external location as the tactile target (i.e., spatial modulation), regardless of the posture (uncrossed or crossed) of the hands (i.e., spatial 'remapping' of visual-tactile interactions). Finally, crossing the hands led to a general performance decrement with visual distractors, but not in a control task with unimodal visual or tactile judgements. These results demonstrate, for the first time, significant spatial and postural modulations of crossmodal congruency effects in a non-spatial discrimination task.

摘要

双手交叉,无论是越过身体中线还是双手相互交叉,都会导致空间兼容性、空间注意力发生可测量的变化,并且常常会使触觉刺激的辨别性能普遍下降。然而,大多数多感官双手交叉效应是在明确或隐含的空间辨别任务中得到证明的,这就引发了一个问题:当双手交叉时,非空间辨别任务是否也会表现出空间效应。我们设计了一项新颖的非空间触觉辨别任务来解决这个问题。参与者在双手不交叉和交叉的姿势下,对单脉冲与双脉冲振动触觉目标进行快速辨别,同时试图忽略同时出现的视觉干扰刺激。触觉辨别性能受到视觉干扰刺激的显著影响(表现出显著的跨模态一致性效应),并且在与触觉目标相同的外部位置受到视觉干扰刺激的影响最大(即空间调制),无论双手的姿势是不交叉还是交叉(即视觉 - 触觉相互作用的空间“重新映射”)。最后,双手交叉会导致在有视觉干扰刺激的情况下整体性能下降,但在单模态视觉或触觉判断的控制任务中则不会。这些结果首次证明了在非空间辨别任务中跨模态一致性效应存在显著的空间和姿势调制。

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