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Counteracting Implicit Conflicts by Electrical Inhibition of the Prefrontal Cortex

机译:通过前额叶皮层的电抑制来消除内隐冲突

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摘要

Cognitive conflicts and distractions by task-irrelevant information often counteract effective and goal-directed behaviors. In some cases, conflicting information can even emerge implicitly, without an overt distractor, by the automatic activation of mental representations. For instance, during number processing, magnitude information automatically elicits spatial associations resembling a mental number line. This spatial–numerical association of response codes (SNARC) effect can modulate cognitive-behavioral performance but is also highly flexible and context-dependent, which points toward a critical involvement of working memory functions. Transcranial direct current stimulation to the PFC, in turn, has been effective in modulating working memory-related cognitive performance. In a series of experiments, we here demonstrate that decreasing activity of the left PFC by cathodal transcranial direct current stimulation consistently and specifically eliminates implicit cognitive conflicts based on the SNARC effect, but explicit conflicts based on visuospatial distraction remain unaffected. This dissociation is polarity-specific and appears unrelated to functional magnitude processing as classified by regular numerical distance effects. These data demonstrate a causal involvement of the left PFC in implicit cognitive conflicts based on the automatic activation of spatial–numerical processing. Corroborating the critical interaction of brain stimulation and neurocognitive functions, our findings suggest that distraction from goal-directed behavior by automatic activation of implicit, task-irrelevant information can be blocked by the inhibition of prefrontal activity.
机译:与任务无关的信息引起的认知冲突和干扰通常会抵消有效的和目标导向的行为。在某些情况下,通过自动激活心理表征,甚至可以在没有明显干扰的情况下隐性地出现冲突信息。例如,在数字处理期间,幅度信息会自动引起类似于心理数字线的空间关联。这种响应码的空间数字关联(SNARC)效果可以调节认知行为表现,但它也具有高度的灵活性和上下文相关性,这表明工作记忆功能的关键参与。反过来,经颅直流电对PFC的刺激已有效地调节了与工作记忆有关的认知表现。在一系列实验中,我们在这里证明了通过阴极经颅直流电刺激降低左PFC的活性可以始终如一地并特别消除基于SNARC效应的内隐认知冲突,但是基于视觉空间分散的显性冲突仍然不受影响。这种解离是极性特定的,并且似乎与按常规数值距离效应进行分类的功能量级处理无关。这些数据表明,基于空间-数字处理的自动激活,左PFC因果参与了隐性认知冲突。我们的发现证实了脑刺激与神经认知功能之间的关键相互作用,这表明通过抑制前额叶活动可以阻止隐式的,与任务无关的信息的自动激活而偏离目标定向行为。

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