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Language in calculation: A core mechanism?

机译:计算语言:核心机制?

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Although there is evidence that exact calculation recruits left hemisphere perisylvian language systems, recent work has shown that exact calculation can be retained despite severe damage to these networks. In this study, we sought to identify a "core" network for calculation and hence to determine the extent to which left hemisphere language areas are part of this network. We examined performance on addition and subtraction problems in two modalities: one using conventional two-digit problems that can be easily encoded into language; the other using novel shape representations. With regard to numerical problems, our results revealed increased left fronto-temporal activity in addition, and increased parietal activity in subtraction, potentially reflecting retrieval of linguistically encoded information during addition. The shape problems elicited activations of occipital, parietal and dorsal temporal regions, reflecting visual reasoning processes. A core activation common to both calculation types involved the superior parietal lobule bilaterally, right temporal sub-gyral area, and left lateralized activations in inferior parietal (BA 40), frontal (BA 6/8/32) and occipital (BA 18) regions. The large bilateral parietal activation could be attributed to visuo-spatial processing in calculation. The inferior parietal region, and particularly the left angular gyrus, was part of the core calculation network. However, given its activation in both shape and number tasks, its role is unlikely to reflect linguistic processing per se. A possibility is that it serves to integrate right hemisphere visuo-spatial and left hemisphere linguistic and executive processing in calculation.
机译:尽管有证据表明,精确计算的新兵离开了半球周缘语言系统,但最近的工作表明,尽管这些网络受到严重破坏,仍可以保留精确的计算。在这项研究中,我们试图确定一个“核心”网络进行计算,从而确定左半球语言区域是该网络一部分的程度。我们以两种方式研究了加减法问题的表现:一种使用可以轻松编码为语言的常规两位数问题;另一种使用可以轻松编码为语言的传统两位数问题。另一个使用新颖的形状表示。关于数值问题,我们的研究结果表明,左额颞叶活动增加了,减法中的顶叶活动增加了,这可能反映了加法过程中语言编码信息的检索。形状问题引起枕,顶和背颞区的激活,反映了视觉推理过程。两种计算类型共有的核心激活涉及双侧上顶小叶,右颞下回区和下顶壁(BA 40),额叶(BA 6/8/32)和枕骨(BA 18)区域的左侧侧向激活。大的双侧顶叶激活可以归因于计算中的视觉空间处理。顶下下方区域,尤其是左角回,是核心计算网络的一部分。但是,鉴于其在形状和数字任务中的激活,其作用不太可能反映语言处理本身。一种可能性是,它可以在计算中整合右半球视觉空间和左半球的语言和执行处理。

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