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人类视觉中的注意力负荷与感觉竞争:外周视野任务无关刺激期间注视点负荷对功能磁共振成像反应的调制

Attentional load and sensory competition in human vision: modulation of fMRI responses by load at fixation during task-irrelevant stimulation in the peripheral visual field.

作者信息

Schwartz Sophie, Vuilleumier Patrik, Hutton Chloe, Maravita Angelo, Dolan Raymond J, Driver Jon

机构信息

Laboratory for Neurology and Imaging of Cognition, Department of Neurosciences, University of Geneva, Switzerland.

出版信息

Cereb Cortex. 2005 Jun;15(6):770-86. doi: 10.1093/cercor/bhh178. Epub 2004 Sep 30.

Abstract

Perceptual suppression of distractors may depend on both endogenous and exogenous factors, such as attentional load of the current task and sensory competition among simultaneous stimuli, respectively. We used functional magnetic resonance imaging (fMRI) to compare these two types of attentional effects and examine how they may interact in the human brain. We varied the attentional load of a visual monitoring task performed on a rapid stream at central fixation without altering the central stimuli themselves, while measuring the impact on fMRI responses to task-irrelevant peripheral checkerboards presented either unilaterally or bilaterally. Activations in visual cortex for irrelevant peripheral stimulation decreased with increasing attentional load at fixation. This relative decrease was present even in V1, but became larger for successive visual areas through to V4. Decreases in activation for contralateral peripheral checkerboards due to higher central load were more pronounced within retinotopic cortex corresponding to 'inner' peripheral locations relatively near the central targets than for more eccentric 'outer' locations, demonstrating a predominant suppression of nearby surround rather than strict 'tunnel vision' during higher task load at central fixation. Contralateral activations for peripheral stimulation in one hemifield were reduced by competition with concurrent stimulation in the other hemifield only in inferior parietal cortex, not in retinotopic areas of occipital visual cortex. In addition, central attentional load interacted with competition due to bilateral versus unilateral peripheral stimuli specifically in posterior parietal and fusiform regions. These results reveal that task-dependent attentional load, and interhemifield stimulus-competition, can produce distinct influences on the neural responses to peripheral visual stimuli within the human visual system. These distinct mechanisms in selective visual processing may be integrated within posterior parietal areas, rather than earlier occipital cortex.

摘要

对干扰物的知觉抑制可能取决于内源性和外源性因素,例如当前任务的注意力负荷以及同时出现的刺激之间的感觉竞争。我们使用功能磁共振成像(fMRI)来比较这两种注意力效应,并研究它们在人脑中如何相互作用。我们改变了在中央注视点对快速信息流执行的视觉监测任务的注意力负荷,而不改变中央刺激本身,同时测量对单侧或双侧呈现的与任务无关的外周棋盘格的fMRI反应的影响。随着注视点注意力负荷的增加,视觉皮层中对无关外周刺激的激活减少。这种相对减少甚至在V1中也存在,但在直至V4的连续视觉区域中变得更大。由于较高的中央负荷导致对侧外周棋盘格激活的减少,在对应于相对靠近中央目标的“内侧”外周位置的视网膜拓扑皮层中比在更偏心的“外侧”位置更明显,这表明在中央注视点较高任务负荷期间,主要是对附近周围区域的抑制,而不是严格的“隧道视觉”。仅在顶下小叶皮层中,一个半视野中外周刺激的对侧激活会因与另一个半视野中同时刺激的竞争而减少,而在枕叶视觉皮层的视网膜拓扑区域中则不会。此外,中央注意力负荷与双侧和单侧外周刺激引起的竞争之间的相互作用,特别发生在后顶叶和梭状区域。这些结果表明,任务依赖的注意力负荷和半视野间刺激竞争,可对人类视觉系统中对外周视觉刺激的神经反应产生不同影响。选择性视觉处理中的这些不同机制可能整合在后顶叶区域,而不是更早的枕叶皮层。

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