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计算偏向导致先天性盲人顶叶皮层对算术加工的招募。

Recruitment of the occipital cortex by arithmetic processing follows computational bias in the congenitally blind.

机构信息

Centre for Mind/Brain Science, University of Trento, Via delle regole 101, 38123, Mattarello, TN, Italy; Institute of Psychology (IPSY) and Institute of Neuroscience (IoNS), Université Catholique de Louvain, Place Cardinal Mercier 10, 1348, Louvain-la-Neuve, Belgium.

Centre de Recherche en Neuropsychologie et Cognition (CERNEC), Université de Montréal, Pavillon Marie-Victorin, 90, rue Vincent d'Indy, Montréal, Québec, H2V 2S9, Canada.

出版信息

Neuroimage. 2019 Feb 1;186:549-556. doi: 10.1016/j.neuroimage.2018.11.034. Epub 2018 Nov 22.

Abstract

Arithmetic reasoning activates the occipital cortex of congenitally blind people (CB). This activation of visual areas may highlight the functional flexibility of occipital regions deprived of their dominant inputs or relate to the intrinsic computational role of specific occipital regions. We contrasted these competing hypotheses by characterizing the brain activity of CB and sighted participants while performing subtraction, multiplication and a control letter task. In both groups, subtraction selectively activated a bilateral dorsal network commonly activated during spatial processing. Multiplication triggered activity in temporal regions thought to participate in memory retrieval. No between-group difference was observed for the multiplication task whereas subtraction induced enhanced activity in the right dorsal occipital cortex of the blind individuals only. As this area overlaps with regions showing selective tuning to auditory spatial processing and exhibits increased functional connectivity with a dorsal "spatial" network, our results suggest that the recruitment of occipital regions during high-level cognition in the blind actually relates to the intrinsic computational role of the activated regions.

摘要

计算推理会激活先天性盲人(CB)的枕叶皮层。这种视觉区域的激活可能突出了枕叶区域的功能灵活性,这些区域失去了主导输入,或者与特定枕叶区域的内在计算作用有关。我们通过对 CB 和视力正常的参与者进行减法、乘法和控制字母任务时的大脑活动进行对比,来验证这些相互竞争的假说。在两组参与者中,减法选择性地激活了一个双侧背侧网络,这个网络在空间处理中经常被激活。乘法在被认为参与记忆检索的颞区引发了活动。在乘法任务中,两组之间没有观察到差异,而减法仅在盲人的右背侧枕叶皮层中诱导出增强的活动。由于这个区域与对听觉空间处理有选择性调谐的区域重叠,并表现出与背侧“空间”网络的功能连接增加,我们的结果表明,盲人在高级认知过程中对枕叶区域的招募实际上与激活区域的内在计算作用有关。

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