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跨模态视触消失:姿势调节暗示了在本体感受重建空间中的偏向竞争。

Crossmodal visual-tactile extinction: Modulation by posture implicates biased competition in proprioceptively reconstructed space.

机构信息

Department of Psychology, University of Essex, Colchester, UK.

出版信息

J Neuropsychol. 2010 Mar;4(Pt 1):15-32. doi: 10.1348/174866409X415942. Epub 2009 Oct 10.

Abstract

Extinction is a common consequence of unilateral brain injury: contralesional events can be perceived in isolation, yet are missed when presented concurrently with competing events on the ipsilesional side. This can arise crossmodally, where a contralateral touch is extinguished by an ipsilateral visual event. Recent studies showed that repositioning the hands in visible space, or making visual events more distant, can modulate such crossmodal extinction. Here, in a detailed single-case study, we implemented a novel spatial manipulation when assessing crossmodal extinction. This was designed not only to hold somatosensory inputs and hand/arm-posture constant, but also to hold (retinotopic) visual inputs constant, yet while still changing the spatial relationship of tactile and visual events in the external world. Our right hemisphere patient extinguished left-hand touches due to visual stimulation of the right visual field (RVF) when tested in the usual default posture with eyes/head directed straight ahead. But when her eyes/head were turned to the far left (and any visual events shifted along with this), such that the identical RVF retinal stimulation now fell at the same external location as the left-hand touch, crossmodal extinction was eliminated. Since only proprioceptive postural cues could signal this changed spatial relationship for the critical condition, our results show for the first time that such postural cues alone are sufficient to modulate crossmodal extinction. Identical somatosensory and retinal inputs can lead to severe crossmodal extinction, or none, depending on current posture.

摘要

单侧脑损伤会导致物种灭绝

对侧事件可以单独感知,但当同侧存在竞争事件时会被忽略。这种现象可以发生在跨模态中,即对侧触觉会被同侧视觉事件所抑制。最近的研究表明,重新定位手在可见空间中,或者使视觉事件更加遥远,可以调节这种跨模态灭绝。在这里,我们在一项详细的个案研究中实施了一种新的空间操作来评估跨模态灭绝。这种操作不仅可以保持体感输入和手/手臂姿势不变,还可以保持(视网膜)视觉输入不变,同时改变外部世界中触觉和视觉事件的空间关系。我们的右半球患者在以正常默认姿势进行测试时,即眼睛/头部直视前方,由于右视野(RVF)的视觉刺激而对左手触摸产生了消光。但是,当她的眼睛/头部转向最左侧(并且任何视觉事件都随之移动)时,相同的 RVF 视网膜刺激现在落在与左手触摸相同的外部位置,跨模态消光就会消除。由于只有本体感受姿势线索可以为关键条件的这种改变的空间关系发出信号,因此我们的结果首次表明,仅这些姿势线索就足以调节跨模态消光。相同的体感和视网膜输入可能导致严重的跨模态灭绝,也可能没有,这取决于当前的姿势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/488d/3229705/ea3223709b81/jnp0004-0015-f1.jpg

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