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区分计算的核心和被借用机制:失语症计算的神经影像学。

Differentiating core and co-opted mechanisms in calculation: the neuroimaging of calculation in aphasia.

机构信息

Department of Psychology, University of Sheffield, Western Bank, Sheffield S10 2TP, UK.

出版信息

Brain Cogn. 2013 Aug;82(3):254-64. doi: 10.1016/j.bandc.2013.04.012. Epub 2013 May 29.

DOI:10.1016/j.bandc.2013.04.012
PMID:23727664
Abstract

The role of language in exact calculation is the subject of debate. Some behavioral and functional neuroimaging investigations of healthy participants suggest that calculation requires language resources. However, there are also reports of individuals with severe aphasic language impairment who retain calculation ability. One possibility in resolving these discordant findings is that the neural basis of calculation has undergone significant reorganization in aphasic calculators. Using fMRI, we examined brain activations associated with exact addition and subtraction in two patients with severe agrammatic aphasia and retained calculation ability. Behavior and brain activations during two-digit addition and subtraction were compared to those of a group of 11 healthy, age-matched controls. Behavioral results confirmed that both patients retained calculation ability. Imaging findings revealed individual differences in processing, but also a similar activation pattern across patients and controls in bilateral parietal cortices. Patients differed from controls in small areas of increased activation in peri-lesional regions, a shift from left fronto-temporal activation to the contralateral region, and increased activations in bilateral superior parietal regions. Our results suggest that bilateral parietal cortex represents the core of the calculation network and, while healthy controls may recruit language resources to support calculation, these mechanisms are not mandatory in adult cognition.

摘要

语言在精确计算中的作用是一个有争议的话题。一些针对健康参与者的行为和功能神经影像学研究表明,计算需要语言资源。然而,也有报道称,一些严重失语症语言障碍的个体保留了计算能力。在解决这些不一致的发现时,一种可能性是,失语症计算器的计算神经基础已经经历了显著的重组。我们使用 fMRI 检查了两名严重语法性失语症且保留计算能力的患者进行精确加法和减法运算时的大脑激活情况。将两位患者的两位数加法和减法的行为和大脑激活与 11 名年龄匹配的健康对照组进行了比较。行为结果证实了两名患者都保留了计算能力。成像结果显示了处理方面的个体差异,但患者和对照组之间在双侧顶叶皮层也存在相似的激活模式。与对照组相比,患者在病变周围区域的激活增加较小,左额颞叶激活向对侧区域转移,以及双侧顶叶区域的激活增加。我们的结果表明,双侧顶叶皮层代表了计算网络的核心,尽管健康对照组可能会利用语言资源来支持计算,但这些机制在成人认知中并非必需。

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