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静息态视觉诱发电位反映了全局部加工的功能半球不对称性。

Functional hemispheric asymmetries of global/local processing mirrored by the steady-state visual evoked potential.

机构信息

University of Osnabrück, Institute of Experimental Psychology I, 49069 Osnabrück, Germany.

出版信息

Brain Cogn. 2013 Mar;81(2):161-6. doi: 10.1016/j.bandc.2012.11.005. Epub 2012 Dec 17.

Abstract

While hemispheric differences in global/local processing have been reported by various studies, it is still under dispute at which processing stage they occur. Primarily, it was assumed that these asymmetries originate from an early perceptual stage. Instead, the content-level binding theory (Hübner & Volberg, 2005) suggests that the hemispheres differ at a later stage at which the stimulus information is bound to its respective level. The present study tested this assumption by means of steady-state evoked potentials (SSVEPs). In particular, we presented hierarchical letters flickering at 12Hz while participants categorised the letters at a pre- cued level (global or local). The information at the two levels could be congruent or incongruent with respect to the required response. Since content-binding is only necessary if there is a response conflict, asymmetric hemispheric processing should be observed only for incongruent stimuli. Indeed, our results show that the cue and congruent stimuli elicited equal SSVEP global/local effects in both hemispheres. In contrast, incongruent stimuli elicited lower SSVEP amplitudes for a local than for a global target level at left posterior electrodes, whereas a reversed pattern was seen at right hemispheric electrodes. These findings provide further evidence for a level-specific hemispheric advantage with respect to content-level binding. Moreover, the fact that the SSVEP is sensitive to these processes offers the possibility to separately track global and local processing by presenting both level contents with different frequencies.

摘要

虽然各种研究报告了半球间在全局/局部加工方面的差异,但它们发生在哪个加工阶段仍存在争议。最初,人们假设这些不对称性源自早期的感知阶段。相反,内容层次绑定理论(Hübner & Volberg,2005)认为,半球在刺激信息与其各自层次绑定的后期阶段存在差异。本研究通过稳态诱发电位(SSVEP)检验了这一假设。具体来说,我们在参与者在预提示水平(全局或局部)对字母进行分类的同时呈现以 12Hz 闪烁的分层字母。两个层次的信息可以与所需的反应一致或不一致。由于内容绑定仅在存在反应冲突时才是必要的,因此只有在刺激不一致时才会观察到不对称的半球加工。实际上,我们的结果表明,提示和一致刺激在两个半球中均引起了相等的 SSVEP 全局/局部效应。相比之下,在左后电极处,对于局部目标水平,不一致刺激引起的 SSVEP 振幅比全局目标水平低,而在右半球电极处则出现相反的模式。这些发现为内容层次绑定方面的特定层次半球优势提供了进一步的证据。此外,SSVEP 对这些过程敏感的事实为通过以不同频率呈现两个层次的内容来分别跟踪全局和局部处理提供了可能性。

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