Cognitive Sciences, University of Potsdam.
J Cogn Neurosci. 2022 Nov 1;34(12):2297-2310. doi: 10.1162/jocn_a_01918.
The functional significance of the two prominent language-related ERP components N400 and P600 is still under debate. It has recently been suggested that one important dimension along which the two vary is in terms of automaticity versus attentional control, with N400 amplitudes reflecting more automatic and P600 amplitudes reflecting more controlled aspects of sentence comprehension. The availability of executive resources necessary for controlled processes depends on sustained attention, which fluctuates over time. Here, we thus tested whether P600 and N400 amplitudes depend on the level of sustained attention. We reanalyzed EEG and behavioral data from a sentence processing task by Sassenhagen and Bornkessel-Schlesewsky [The P600 as a correlate of ventral attention network reorientation. Cortex, 66, A3-A20, 2015], which included sentences with morphosyntactic and semantic violations. Participants read sentences phrase by phrase and indicated whether a sentence contained any type of anomaly as soon as they had the relevant information. To quantify the varying degrees of sustained attention, we extracted a moving reaction time coefficient of variation over the entire course of the task. We found that the P600 amplitude was significantly larger during periods of low reaction time variability (high sustained attention) than in periods of high reaction time variability (low sustained attention). In contrast, the amplitude of the N400 was not affected by reaction time variability. These results thus suggest that the P600 component is sensitive to sustained attention whereas the N400 component is not, which provides independent evidence for accounts suggesting that P600 amplitudes reflect more controlled and N400 amplitudes reflect more automatic aspects of sentence comprehension.
两个突出的与语言相关的 ERP 成分 N400 和 P600 的功能意义仍存在争议。最近有人提出,这两个成分的一个重要差异维度是自动性与注意力控制,N400 振幅反映更自动的方面,而 P600 振幅反映更受控的句子理解方面。进行受控过程所需的执行资源的可用性取决于持续注意力,而持续注意力会随时间波动。因此,我们在这里测试 P600 和 N400 振幅是否取决于持续注意力的水平。我们通过 Sassenhagen 和 Bornkessel-Schlesewsky [作为腹侧注意网络重新定向相关物的 P600。皮质,66,A3-A20,2015]对句子处理任务的 EEG 和行为数据进行了重新分析,该任务包括形态句法和语义违规的句子。参与者逐字阅读句子,并在获得相关信息后立即指出句子是否包含任何类型的异常。为了量化持续注意力的变化程度,我们在整个任务过程中提取了移动反应时变异性系数。我们发现,在反应时变异性较低(高持续注意力)的时期,P600 振幅明显大于反应时变异性较高(低持续注意力)的时期。相比之下,N400 的振幅不受反应时变异性的影响。这些结果表明,P600 成分对持续注意力敏感,而 N400 成分则不敏感,这为认为 P600 振幅反映句子理解更受控的方面,而 N400 振幅反映更自动的方面的说法提供了独立的证据。