Section Neuropsychology, Department of Neurology, University Hospital, RWTH Aachen University, Germany.
Behav Brain Funct. 2010 Nov 20;6:70. doi: 10.1186/1744-9081-6-70.
Recently it was suggested that the carry effect observed in addition involves both categorical and continuous processing characteristics.
In the present study, we aimed at identifying the specific neural correlates associated with processing either categorical or continuous aspects of the carry effect in an fMRI study on multi-digit addition.
In line with our expectations, we observed two distinct parts of the fronto-parietal network subserving numerical cognition to be associated with either one of these two characteristics. On the one hand, the categorical aspect of the carry effect was associated with left-hemispheric language areas and the basal ganglia probably reflecting increased demands on procedural and problem solving processes. Complementarily, the continuous aspect of the carry effect was associated with increased intraparietal activation indicating increasing demands on magnitude processing as well as place-value integration with increasing unit sum.
In summary, the findings suggest representations and processes underlying the carry effect in multi-digit addition to be more complex and interactive than assumed previously.
最近有人提出,进位效应观察到的附加效应既涉及类别处理特征,也涉及连续处理特征。
在本研究中,我们旨在通过对多位加法的 fMRI 研究,确定与处理进位效应的类别或连续方面相关的特定神经相关物。
与我们的预期一致,我们观察到了两个不同的额顶网络部分,这些网络部分为数值认知服务,与这两个特征之一有关。一方面,进位效应的类别方面与左半球的语言区域和基底神经节有关,可能反映了对程序和解决问题过程的需求增加。此外,进位效应的连续方面与顶内激活的增加有关,这表明随着单位和的增加,对数量处理以及位值整合的需求增加。
总之,这些发现表明,在多位加法中,进位效应背后的表示和过程比以前假设的更为复杂和相互作用。