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Brain Inhibitory Mechanisms Are Involved in the Processing of Sentential Negation, Regardless of Its Content. Evidence From EEG Theta and Beta Rhythms

机译:句子否定处理中涉及大脑抑制机制,无论其内容如何。脑电图Theta和Beta节奏的证据

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摘要

The two-step process account of negation understanding posits an initial representation of the negated events, followed by a representation of the actual state of events. On the other hand, behavioral and neurophysiological studies provided evidence that linguistic negation suppresses or reduces the activation of the negated events, contributing to shift attention to the actual state of events. However, the specific mechanism of this suppression is poorly known. Recently, based on the brain organization principle of neural reuse (), it has been proposed that understanding linguistic negation partially relies upon the neurophysiological mechanisms of response inhibition. Specifically, it was reported that negated action-related sentences modulate EEG signatures of response inhibition (; ). In the current EEG study, we ponder whether the reusing of response inhibition processes by negation is constrained to action-related contents or consists of a more general-purpose mechanism. To this end, we employed the same dual-task paradigm as in our prior study—a Go/NoGo task embedded into a sentence comprehension task—but this time including both action and non-action sentences. The results confirmed that the increase of theta power elicited by NoGo trials was modulated by negative sentences, compared to their affirmative counterparts, and this polarity effect was statistically similar for both action- and non-action-related sentences. Thus, a general-purpose inhibitory control mechanism, rather than one specific for action language, is likely operating in the comprehension of sentential negation to produce the transition between alternative representations.
机译:否定理解的两步过程说明提出了被否定事件的初始表示,然后是事件实际状态的表示。另一方面,行为和神经生理学研究提供的证据表明,语言否定会抑制或减少否定事件的激活,从而有助于将注意力转移到事件的实际状态。但是,这种抑制的具体机制知之甚少。近来,基于神经重用的大脑组织原理,提出了理解语言否定部分地依赖于反应抑制的神经生理机制。具体而言,据报道,与动作相关的否定语句调节了反应抑制的脑电信号特征()。在当前的脑电图研究中,我们思考通过否定来重用响应抑制过程是否限于与动作相关的内容或由更通用的机制组成。为此,我们采用了与先前研究相同的双重任务范例-将Go / NoGo任务嵌入到句子理解任务中-但这次包括动作和非动作句子。结果证实与否定句子相比,NoGo试验引起的theta功率增加受到否定句子的调节,并且与动作和非动作有关的句子在极性上的影响在统计学上相似。因此,一种通用的抑制控制机制,而不是特定于动作语言的机制,可能会在理解句子否定时产生替代表示之间的过渡。

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