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跨模态空间注意中的预备状态:空间特异性及可能的控制机制。

Preparatory states in crossmodal spatial attention: spatial specificity and possible control mechanisms.

作者信息

Macaluso E, Eimer M, Frith C D, Driver J

机构信息

Institute of Cognitive Neuroscience, University College London, Alexandra House, 17 Queen Square, London WC1N 3AR, UK.

出版信息

Exp Brain Res. 2003 Mar;149(1):62-74. doi: 10.1007/s00221-002-1335-y. Epub 2003 Jan 9.

Abstract

We used event-related functional magnetic resonance imaging to study the neural correlates of endogenous spatial attention for vision and touch. We examined activity associated with attention-directing cues (central auditory pure tones), symbolically instructing subjects to attend to one hemifield or the other prior to upcoming stimuli, for a visual or tactile task. In different sessions, subjects discriminated either visual or tactile stimuli at the covertly attended side, during bilateral visuotactile stimulation. To distinguish cue-related preparatory activity from any modulation of stimulus processing, unpredictably on some trials only the auditory cue was presented. The use of attend-vision and attend-touch blocks revealed whether preparatory attentional effects were modality-specific or multimodal. Unimodal effects of spatial attention were found in somatosensory cortex for attention to touch, and in occipital areas for attention to vision, both contralateral to the attended side. Multimodal spatial effects (i.e. effects of attended side irrespective of task-relevant modality) were detected in contralateral intraparietal sulcus, traditionally considered a multimodal brain region; and also in the middle occipital gyrus, an area traditionally considered purely visual. Critically, all these activations were observed even on cue-only trials, when no visual or tactile stimuli were subsequently presented. Endogenous shifts of spatial attention result in changes of brain activity prior to the presentation of target stimulation (baseline shifts). Here, we show for the first time the separable multimodal and unimodal components of such preparatory activations. Additionally, irrespective of the attended side and modality, attention-directing auditory cues activated a network of superior frontal and parietal association areas that may play a role in voluntary control of spatial attention for both vision and touch.

摘要

我们使用事件相关功能磁共振成像来研究视觉和触觉内源性空间注意的神经关联。我们检查了与注意力引导线索(中央听觉纯音)相关的活动,这些线索在即将到来的刺激之前,以符号形式指示受试者关注一个半视野或另一个半视野,用于视觉或触觉任务。在不同的实验环节中,受试者在双侧视觉触觉刺激期间,对隐蔽关注侧的视觉或触觉刺激进行辨别。为了将与线索相关的准备活动与刺激处理的任何调制区分开来,在某些试验中,仅不可预测地呈现听觉线索。使用关注视觉和关注触觉的实验块揭示了准备性注意效应是模态特异性的还是多模态的。在体感皮层中发现了空间注意对触觉的单模态效应,在枕叶区域发现了空间注意对视觉的单模态效应,两者均与关注侧对侧。在对侧顶内沟(传统上被认为是一个多模态脑区)以及中枕回(传统上被认为是纯视觉区域)中检测到了多模态空间效应(即无论任务相关模态如何,关注侧的效应)。至关重要的是,即使在仅呈现线索的试验中,即随后没有呈现视觉或触觉刺激时,也观察到了所有这些激活。空间注意的内源性转移会导致在目标刺激呈现之前大脑活动的变化(基线转移)。在这里,我们首次展示了这种准备性激活的可分离的多模态和单模态成分。此外,无论关注侧和模态如何,注意力引导听觉线索激活了一个由额上回和顶叶联合区组成的网络,该网络可能在视觉和触觉空间注意的自愿控制中发挥作用。

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