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利用参数化脑图解析半球特异性对视觉空间意象的贡献

Dissecting hemisphere-specific contributions to visual spatial imagery using parametric brain mapping.

机构信息

ECCS Research Unit, University of Luxembourg, Luxembourg; Department of Cognitive Neuroscience, Maastricht University, The Netherlands.

Department of Cognitive Neuroscience, Maastricht University, The Netherlands.

出版信息

Neuroimage. 2014 Jul 1;94:231-238. doi: 10.1016/j.neuroimage.2014.03.006. Epub 2014 Mar 15.

Abstract

In the current study we aimed to empirically test previously proposed accounts of a division of labour between the left and right posterior parietal cortices during visuospatial mental imagery. The representation of mental images in the brain has been a topic of debate for several decades. Although the posterior parietal cortex is involved bilaterally, previous studies have postulated that hemispheric specialisation might result in a division of labour between the left and right parietal cortices. In the current fMRI study, we used an elaborated version of a behaviourally-controlled spatial imagery paradigm, the mental clock task, which involves mental image generation and a subsequent spatial comparison between two angles. By systematically varying the difference between the two angles that are mentally compared, we induced a symbolic distance effect: smaller differences between the two angles result in higher task difficulty. We employed parametrically weighed brain imaging to reveal brain areas showing a graded activation pattern in accordance with the induced distance effect. The parametric difficulty manipulation influenced behavioural data and brain activation patterns in a similar matter. Moreover, since this difficulty manipulation only starts to play a role from the angle comparison phase onwards, it allows for a top-down dissociation between the initial mental image formation, and the subsequent angle comparison phase of the spatial imagery task. Employing parametrically weighed fMRI analysis enabled us to top-down disentangle brain activation related to mental image formation, and activation reflecting spatial angle comparison. The results provide first empirical evidence for the repeatedly proposed division of labour between the left and right posterior parietal cortices during spatial imagery.

摘要

在当前的研究中,我们旨在通过实证检验先前提出的左、右后顶叶皮层在视空间表象任务中的分工假说。几十年来,大脑中表象的形成一直是一个争论的话题。尽管后顶叶皮层双侧都有参与,但先前的研究假设,半球专业化可能导致左、右顶叶皮层之间的分工。在当前的 fMRI 研究中,我们使用了一种经过改进的行为控制空间表象范式——心理时钟任务,该任务涉及表象生成和随后的两个角度之间的空间比较。通过系统地改变两个被心理比较的角度之间的差异,我们诱导了一种符号距离效应:两个角度之间的差异越小,任务难度越高。我们采用参数加权脑成像来揭示与诱导的距离效应一致的大脑区域的激活模式。参数化的难度操作以相似的方式影响行为数据和大脑激活模式。此外,由于这种难度操作仅从角度比较阶段开始起作用,因此可以在空间表象任务的初始表象形成和随后的角度比较阶段之间进行自上而下的分离。采用参数加权 fMRI 分析,我们能够自上而下地分离与表象形成相关的大脑激活,以及反映角度比较的激活。研究结果为空间表象任务中左、右后顶叶皮层之间的分工假说提供了第一个经验证据。

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