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Brain-mechanistic responses to varying difficulty levels of approximate solutions to arithmetic problems

机译:脑机械反应对算术问题的近似解的难度水平

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摘要

Approximate strategies are crucial in daily human life. The studies on the "difficulty effect" seen in approximate complex arithmetic have long been neglected. Here, we aimed to explore the brain mechanisms related to this difficulty effect in the case of complex addition, using event-related potential-based methods. Following previous path-finding studies, we used the inequality paradigm and different split sizes to induce the use of two approximate strategies for different difficulty levels. By comparing dependent variables from the medium- and large-split conditions, we anticipated being able to dissociate the effects of task difficulty based on approximate strategy in electrical components. In the fronto-central region, early P2 (150-250 ms) and an N400-like wave (250-700 ms) were significantly different between different difficulty levels. Differences in P2 correlated with the difficulty of separation of the approximate strategy from the early physical stimulus discrimination process, which is dominant before 200 ms, and differences in the putative N400 correlated with different difficulties of approximate strategy execution. Moreover, this difference may be linked to speech processing. In addition, differences were found in the fronto-central region, which may reflect the regulatory role of this part of the cortex in approximate strategy execution when solving complex arithmetic problems.
机译:近似策略在日常人类生活中至关重要。关于近似复杂算术中的“难度效果”的研究长期以来一直被忽略了。在这里,我们旨在利用与事件相关的基于潜在的方法在复杂添加的情况下探讨与这种难度效果相关的大脑机制。在以前的路径查找研究之后,我们使用不等式范式和不同的分裂尺寸来诱导使用两个近似策略的不同难度级别。通过比较来自媒体和大分裂条件的依赖变量,我们预计能够根据电气组件中的近似策略来解散任务难度的影响。在前中心区域,在不同难度水平之间的早期P2(150-250ms)和N400样波(250-700毫秒)显着差异。 P2的差异与从早期物理刺激歧视过程中分离近似策略的难度相关,这在200毫秒之前占主导地位,并且推定N400的差异与近似战略执行的不同困难相关。此外,这种差异可以与语音处理相关联。此外,在求解复合算术问题时,在前中心区域中发现了差异,这可能反映了在近似策略执行中的这部分皮质的调节作用。

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