Department of Neuroscience, Psychology, Pharmacology and Child Health, University of Florence, Florence, Italy; Department of Translational Research and New Technologies in Medicine and Surgery, University of Pisa, Pisa, Italy; Cognitive Neuroimaging Unit, INSERM, CEA DRF/JOLIOT, Université Paris-Saclay, NeuroSpin Center, Gif-sur-Yvette, France.
Fondazione Stella Maris Mediterraneo, Potenza, Italy.
Neuropsychologia. 2022 Feb 10;166:108140. doi: 10.1016/j.neuropsychologia.2021.108140. Epub 2022 Jan 3.
Developmental dyscalculia (DD) is a specific learning disability affecting the development of numerical and arithmetical skills. The origin of DD is typically attributed to the suboptimal functioning of key regions within the dorsal visual stream (parietal cortex) which support numerical cognition. While DD individuals are often impaired in visual numerosity perception, the extent to which they also show a wider range of visual dysfunctions is poorly documented. In the current study we measured sensitivity to global motion (translational and flow), 2D static form (Glass patterns) and 3D structure from motion in adults with DD and control subjects. While sensitivity to global motion was comparable across groups, thresholds for static form and structure from motion were higher in the DD compared to the control group, irrespective of associated reading impairments. Glass pattern sensitivity predicted numerical abilities, and this relation could not be explained by recently reported differences in visual crowding. Since global form sensitivity has often been considered an index of ventral stream function, our findings could indicate a cortical dysfunction extending beyond the dorsal visual stream. Alternatively, they would fit with a role of parietal cortex in form perception under challenging conditions requiring multiple element integration.
发展性计算障碍(DD)是一种特定的学习障碍,影响数值和算术技能的发展。DD 的起源通常归因于支持数值认知的背侧视觉流(顶叶皮层)内关键区域的功能失调。虽然 DD 个体在视觉数量感知方面经常受损,但他们表现出更广泛的视觉功能障碍的程度记录不佳。在当前的研究中,我们测量了具有 DD 和对照组的成年人对全局运动(平移和流动)、2D 静态形式(玻璃图案)和 3D 运动结构的敏感性。虽然两组之间的全局运动敏感性相当,但与阅读障碍无关,DD 组的静态形式和运动结构的阈值高于对照组。玻璃图案敏感性预测了数值能力,并且这种关系不能用最近报道的视觉拥挤差异来解释。由于全局形式敏感性通常被认为是腹侧流功能的指标,因此我们的发现可能表明皮层功能障碍超出了背侧视觉流。或者,它们与顶叶皮层在需要多个元素整合的挑战性条件下进行形式感知的作用相符。