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知觉负载与跨感觉通道的刺激处理相互作用。

Perceptual load interacts with stimulus processing across sensory modalities.

作者信息

Klemen J, Büchel C, Rose M

机构信息

NeuroImage Nord, Department of Systems Neuroscience, University Medical Centre Hamburg Eppendorf, Martinistr. 52, Hamburg, Germany.

出版信息

Eur J Neurosci. 2009 Jun;29(12):2426-34. doi: 10.1111/j.1460-9568.2009.06774.x. Epub 2009 May 26.

Abstract

According to perceptual load theory, processing of task-irrelevant stimuli is limited by the perceptual load of a parallel attended task if both the task and the irrelevant stimuli are presented to the same sensory modality. However, it remains a matter of debate whether the same principles apply to cross-sensory perceptual load and, more generally, what form cross-sensory attentional modulation in early perceptual areas takes in humans. Here we addressed these questions using functional magnetic resonance imaging. Participants undertook an auditory one-back working memory task of low or high perceptual load, while concurrently viewing task-irrelevant images at one of three object visibility levels. The processing of the visual and auditory stimuli was measured in the lateral occipital cortex (LOC) and auditory cortex (AC), respectively. Cross-sensory interference with sensory processing was observed in both the LOC and AC, in accordance with previous results of unisensory perceptual load studies. The present neuroimaging results therefore warrant the extension of perceptual load theory from a unisensory to a cross-sensory context: a validation of this cross-sensory interference effect through behavioural measures would consolidate the findings.

摘要

根据知觉负载理论,如果任务和无关刺激都呈现给同一感觉通道,那么任务无关刺激的加工会受到并行参与任务的知觉负载的限制。然而,同样的原则是否适用于跨感觉通道的知觉负载,更普遍地说,人类早期知觉区域的跨感觉通道注意调制采取何种形式,仍是一个有争议的问题。在这里,我们使用功能磁共振成像解决了这些问题。参与者进行了低或高知觉负载的听觉1-back工作记忆任务,同时在三种物体可见度水平之一观看任务无关图像。分别在外侧枕叶皮层(LOC)和听觉皮层(AC)测量视觉和听觉刺激的加工情况。与单感觉通道知觉负载研究的先前结果一致,在LOC和AC中均观察到对感觉加工的跨感觉通道干扰。因此,目前的神经影像学结果证明了将知觉负载理论从单感觉通道扩展到跨感觉通道情境的合理性:通过行为测量对这种跨感觉通道干扰效应进行验证将巩固这些发现。

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