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自动/前注意状态下额颞网络对抽象变化的检测:一项事件相关光学信号(EROS)研究。

Frontotemporal network in automatic / pre-attentive detection of abstract change: An event-related optical signal (EROS) study.

机构信息

Department of Psychology, The Chinese University of Hong Kong, Hong Kong, China.

Department of Social and Behavioural Sciences, City University of Hong Kong, Hong Kong, China.

出版信息

Neuropsychologia. 2022 Jan 7;164:108093. doi: 10.1016/j.neuropsychologia.2021.108093. Epub 2021 Nov 23.

Abstract

The human brain constantly monitors the environment for unexpected changes. Under the prediction violation account, the Inferior Frontal Cortex (IFC) is involved in prediction-related processes for deviance detection processes in the Superior Temporal Cortex (STC). Consistent with this account, previous studies revealed an IFC-to-STC-followed-by-IFC mismatch response pattern to physical changes using event-related optical signals (EROS). However, detecting physical changes can be achieved by direct comparison of physical features between stimuli without making predictions, thus direct evidence supporting the prediction nature of the IFC-STC network in pre-attentive change detection was lacking. To address this issue, this study examined the EROS mismatch responses of the IFC-STC network when detecting the violation of an abstract rule. The rule "the higher the frequency of a tone, the stronger the intensity" established by standards was violated by deviants of 12 deviance levels. When deviants were preceded by a short train of standards, early IFC, STC, and late IFC EROS mismatch responses linearly increased with the deviance levels. When deviants were preceded by a longer train of standards, the STC but not the early or late IFC EROS mismatch responses were elicited by all the deviants without modulation by deviance levels. These results demonstrate a functional role of the IFC in the abstract change detection when insufficient rule-conforming information could be extracted from the preceding standards and are consistent with the predictive violation account of pre-attentive change detection.

摘要

人类大脑不断监测环境中是否有意外变化。在预测违反理论中,下额前皮质(IFC)参与了上颞皮质(STC)中偏差检测过程的预测相关过程。先前的研究使用事件相关光学信号(EROS)表明,与该理论一致,IFC 到 STC 再到 IFC 的失配反应模式与物理变化有关。然而,通过直接比较刺激之间的物理特征而无需进行预测,也可以实现物理变化的检测,因此,缺乏支持 IFC-STC 网络在非注意变化检测中具有预测性质的直接证据。为了解决这个问题,本研究在检测违反抽象规则时,考察了 IFC-STC 网络的 EROS 失配反应。标准建立的规则“音调越高,强度越大”被 12 个偏差水平的偏离物违反。当偏离物前面是短的标准串时,早期 IFC、STC 和晚期 IFC 的 EROS 失配反应随着偏差水平线性增加。当偏离物前面是较长的标准串时,STC 而不是早期或晚期 IFC 的 EROS 失配反应会被所有偏离物引发,而不受偏差水平的调节。这些结果表明,IFC 在从前面的标准中提取出的规则一致信息不足的情况下,在抽象变化检测中具有功能作用,与非注意变化检测的预测违反理论一致。

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