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论证角色敏感性中的任务与时间效应:来自产出、脑电图及计算建模的证据

Task and Timing Effects in Argument Role Sensitivity: Evidence From Production, EEG, and Computational Modeling.

作者信息

Nakamura Masato, Momma Shota, Sakai Hiromu, Phillips Colin

机构信息

Department of Language Science and Technology, Saarland University.

Department of Linguistics, University of Massachusetts, Amherst.

出版信息

Cogn Sci. 2024 Dec;48(12):e70023. doi: 10.1111/cogs.70023.

Abstract

Comprehenders generate expectations about upcoming lexical items in language processing using various types of contextual information. However, a number of studies have shown that argument roles do not impact neural and behavioral prediction measures. Despite these robust findings, some prior studies have suggested that lexical prediction might be sensitive to argument roles in production tasks such as the cloze task or in comprehension tasks when additional time is available for prediction. This study demonstrates that both the task and additional time for prediction independently influence lexical prediction using argument roles, via evidence from closely matched electroencephalogram (EEG) and speeded cloze experiments. In order to investigate the timing effect, our EEG experiment used maximally simple Japanese stimuli such as Bee-nom/acc sting, and it manipulated the time for prediction by changing the temporal interval between the context noun and the target verb without adding any further linguistic content. In order to investigate the task effect, we conducted a speeded cloze study that was matched with our EEG study both in terms of stimuli and the time available for prediction. We found that both the EEG study with additional time for prediction and the speeded cloze study with matched timing showed clear sensitivity to argument roles, while the EEG conditions with less time for prediction replicated the standard pattern of argument role insensitivity. Based on these findings, we propose that lexical prediction is initially insensitive to argument roles but a monitoring mechanism serially inhibits role-inappropriate candidates. This monitoring process operates quickly in production tasks, where it is important to quickly select a single candidate to produce, whereas it may operate more slowly in comprehension tasks, where multiple candidates can be maintained until a continuation is perceived. Computational simulations demonstrate that this mechanism can successfully explain the task and timing effects observed in our experiments.

摘要

在语言处理过程中,理解者会利用各种类型的上下文信息对即将出现的词汇项产生预期。然而,多项研究表明,论元角色不会影响神经和行为预测指标。尽管有这些确凿的发现,但一些先前的研究表明,在诸如完形填空任务等产出任务中,或者在有额外时间进行预测的理解任务中,词汇预测可能对论元角色敏感。本研究通过来自紧密匹配的脑电图(EEG)和快速完形填空实验的证据表明,任务和额外的预测时间都会独立地影响利用论元角色进行的词汇预测。为了研究时间效应,我们的EEG实验使用了极其简单的日语刺激,如“蜜蜂-主格/宾格 蜇”,并通过改变上下文名词和目标动词之间的时间间隔来操纵预测时间,而不添加任何进一步的语言内容。为了研究任务效应,我们进行了一项快速完形填空研究,该研究在刺激和可用于预测的时间方面都与我们的EEG研究相匹配。我们发现,有额外预测时间的EEG研究和时间匹配的快速完形填空研究都对论元角色表现出明显的敏感性,而预测时间较少的EEG条件则重现了对论元角色不敏感的标准模式。基于这些发现,我们提出,词汇预测最初对论元角色不敏感,但一种监测机制会依次抑制角色不适当的候选词。这个监测过程在产出任务中运行迅速,在产出任务中快速选择一个单一的候选词进行产出很重要,而在理解任务中它可能运行得更慢,在理解任务中可以保留多个候选词,直到感知到后续内容。计算模拟表明,这种机制能够成功解释我们实验中观察到的任务和时间效应。

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