Dormal Valérie, Pesenti Mauro
Unité de Neurosciences Cognitives, Université Catholique de Louvain, Louvain-la-Neuve, Belgique.
Hum Brain Mapp. 2009 Aug;30(8):2466-76. doi: 10.1002/hbm.20677.
Numerical and spatial magnitude processing have long been intimately associated, leading to the suggestion that they share a common system of magnitude representation. Although separate investigations on the cerebral areas involved in numerosity and spatial estimation point toward the parietal cortex, the precise anatomical overlap, if any, has not yet been directly established. Here, functional magnetic resonance imaging was used to localize the cerebral network involved in processing both numerosity and length. Blood oxygenation level-dependent signal changes were measured while healthy volunteers were making numerosity comparisons on linear arrays of dots, and length comparisons on discrete linear arrays of dots and continuous rectangles. The results show the bilateral involvement of parietal regions around the intraparietal sulci in explicit and implicit processing of numerosity, and a right lateralized occipitoparietal network activation in length processing; numerosity and length processing both activate the right IPS and the precentral gyrus. By excluding the mandatory intrinsic spatial processing of arrays, we demonstrate that the left IPS is involved in numerosity processing only, whereas the right IPS underlies a common processing mechanism or representation of spatial and numerical magnitude.
数字和空间大小处理长期以来一直紧密相关,这引发了它们共享一个通用大小表示系统的观点。尽管对涉及数字数量和空间估计的脑区进行的单独研究指向顶叶皮层,但精确的解剖学重叠(如果存在的话)尚未直接确定。在这里,功能磁共振成像被用于定位参与处理数字数量和长度的脑网络。在健康志愿者对圆点的线性阵列进行数字数量比较、对离散的圆点线性阵列和连续矩形进行长度比较时,测量了血氧水平依赖信号变化。结果表明,顶内沟周围的顶叶区域双侧参与数字数量的显性和隐性处理,长度处理中枕顶网络激活偏向右侧;数字数量和长度处理均激活右侧顶内沟和中央前回。通过排除阵列必需的内在空间处理,我们证明左侧顶内沟仅参与数字数量处理,而右侧顶内沟是空间和数字大小的共同处理机制或表征的基础。