Eger Evelyn, Sterzer Philipp, Russ Michael O, Giraud Anne-Lise, Kleinschmidt Andreas
Cognitive Neurology Unit, Department of Neurology, Johann-Wolfgang-Goethe University, Frankfurt a.M., Germany.
Neuron. 2003 Feb 20;37(4):719-25. doi: 10.1016/s0896-6273(03)00036-9.
The triple-code theory of numerical processing postulates an abstract-semantic "number sense." Neuropsychology points to intraparietal cortex as a potential substrate, but previous functional neuroimaging studies did not dissociate the representation of numerical magnitude from task-driven effects on intraparietal activation. In an event-related fMRI study, we presented numbers, letters, and colors in the visual and auditory modality, asking subjects to respond to target items within each category. In the absence of explicit magnitude processing, numbers compared with letters and colors across modalities activated a bilateral region in the horizontal intraparietal sulcus. This stimulus-driven number-specific intraparietal response supports the idea of a supramodal number representation that is automatically accessed by presentation of numbers and may code magnitude information.
数字处理的三重编码理论假定存在一种抽象语义的“数字感”。神经心理学指出顶内沟是一个潜在的基础,但先前的功能神经影像学研究并未将数字大小的表征与任务驱动对顶内激活的影响区分开来。在一项事件相关功能磁共振成像研究中,我们以视觉和听觉形式呈现数字、字母和颜色,要求受试者对每个类别中的目标项目做出反应。在没有明确大小处理的情况下,跨模态比较数字与字母和颜色激活了水平顶内沟的双侧区域。这种刺激驱动的特定于数字的顶内反应支持了一种超模态数字表征的观点,即通过数字呈现自动访问该表征,并且该表征可能编码大小信息。