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Automatic and Intentional Number Processing Both Rely on Intact Right Parietal Cortex: A Combined fMRI and Neuronavigated TMS Study

机译:自动和有意数处理均依赖完整的右顶叶皮层:fMRI和神经导航TMS研究的结合

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摘要

Practice and training usually lead to performance increase in a given task. In addition, a shift from intentional toward more automatic processing mechanisms is often observed. It is currently debated whether automatic and intentional processing is subserved by the same or by different mechanism(s), and whether the same or different regions in the brain are recruited. Previous correlational evidence provided by behavioral, neuroimaging, modeling, and neuropsychological studies addressing this question yielded conflicting results. Here we used transcranial magnetic stimulation (TMS) to compare the causal influence of disrupting either left or right parietal cortex during automatic and intentional numerical processing, as reflected by the size congruity effect and the numerical distance effect, respectively. We found a functional hemispheric asymmetry within parietal cortex with only the TMS-induced right parietal disruption impairing both automatic and intentional numerical processing. In contrast, disrupting the left parietal lobe with TMS, or applying sham stimulation, did not affect performance during automatic or intentional numerical processing. The current results provide causal evidence for the functional relevance of right, but not left, parietal cortex for intentional, and automatic numerical processing, implying that at least within the parietal cortices, automatic, and intentional numerical processing rely on the same underlying hemispheric lateralization.
机译:实践和培训通常会提高给定任务的绩效。另外,经常观察到从有意向更自动的处理机制的转变。当前正在争论自动和有意处理是通过相同还是不同的机制进行服务,以及是否招募大脑中相同或不同的区域。行为,神经影像学,建模和神经心理学研究提供的先前相关证据解决了这个问题,产生了矛盾的结果。在这里,我们使用经颅磁刺激(TMS)来比较自动和有意数值处理过程中破坏左或右顶叶皮层的因果关系,分别反映为大小一致效应和数值距离效应。我们发现顶叶皮层内的功能性半球不对称,仅TMS诱导的右顶叶壁破坏损害了自动和有意的数值处理。相反,用TMS破坏左顶叶或进行假刺激不会影响自动或有意数值处理的性能。目前的结果为右,而非左顶叶皮层的有意和自动数值处理提供了功能相关性的因果证据,这意味着至少在顶叶皮层内,自动和有意的数值处理依赖于相同的基础半球侧向化。

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