Cognitive Neuroimaging Unit, CEA DRF/JOLIOT, INSERM, Université Paris-Sud, Université Paris-Saclay, NeuroSpin Center, Gif-sur-Yvette, France.
Center for Mind/Brain Sciences, University of Trento, Trento, Italy.
Elife. 2019 Jul 24;8:e45160. doi: 10.7554/eLife.45160.
Humans and other animals base important decisions on estimates of number, and intraparietal cortex is thought to provide a crucial substrate of this ability. However, it remains debated whether an independent neuronal processing mechanism underlies this 'number sense', or whether number is instead judged indirectly on the basis of other quantitative features. We performed high-resolution 7 Tesla fMRI while adult human volunteers attended either to the numerosity or an orthogonal dimension (average item size) of visual dot arrays. Along the dorsal visual stream, numerosity explained a significant amount of variance in activation patterns, above and beyond non-numerical dimensions. Its representation was selectively amplified and progressively enhanced across the hierarchy when task relevant. Our results reveal a sensory extraction mechanism yielding information on numerosity separable from other dimensions already at early visual stages and suggest that later regions along the dorsal stream are most important for explicit manipulation of numerical quantity.
人类和其他动物基于数量估计做出重要决策,而顶内沟被认为是这种能力的关键基础。然而,关于是否存在独立的神经元处理机制来支持这种“数感”,或者是否可以根据其他定量特征间接判断数量,仍然存在争议。我们在成人志愿者观察视觉点数组的数量或正交维度(平均项目大小)时,使用高分辨率 7T fMRI 进行了实验。在背侧视觉流中,数量在激活模式上解释了大量的方差,超出了非数值维度。当任务相关时,其表示形式会被选择性放大,并在整个层次结构中逐渐增强。我们的研究结果揭示了一种感觉提取机制,可以在早期视觉阶段从其他维度中分离出数量信息,并表明沿着背侧流的后期区域对于明确处理数字数量最为重要。