Parmentier Fabrice B R, English Michael, Maybery Murray T
Department of Psychology, University of the Balearic Islands, Ctra. De Valldemossa, Km 7.5, Palma de Mallorca, Balearic Islands, Spain.
Balearic Islands Health Research Institute (IdISBa), Palma, Spain.
Psychon Bull Rev. 2024 Dec;31(6):2791-2800. doi: 10.3758/s13423-024-02527-y. Epub 2024 Jun 3.
Research findings indicate that when a task-irrelevant stimulus feature deviates from an otherwise predictable pattern, participants performing a categorization task exhibit slower responses (deviance distraction). This deviance distraction effect reflects the violation of the sensory predictions generated by the cognitive system. In this study, we sought to examine for the first time whether these predictions can be incidentally modulated by the auditory environment. Participants categorized the duration (short vs long) of a colored shape (red square or blue circle) while instructed to disregard the stimulus' visual features and the sound played in the background (two distinct chords played by different instruments). While the two visual stimuli shapes were equiprobable across the task, one was highly likely (p=.882) and the other rare (p=.118) in one auditory context and vice versa in the other context. Our results showed that participants were significantly slower in the duration judgement task whenever the stimulus was unexpected within a given auditory context (context-dependent distraction), and that the reset of their sensory predictions was completed upon the trial following a change of context. We conclude that object features and environmental context are processed in relation to each other and that sensory predictions are produced in relation to the environmental context, evidencing the first demonstration of auditory context-dependent modulation of attention.
研究结果表明,当与任务无关的刺激特征偏离原本可预测的模式时,执行分类任务的参与者会表现出反应变慢(偏差干扰)。这种偏差干扰效应反映了认知系统生成的感官预测被违反。在本研究中,我们首次试图探究这些预测是否会被听觉环境偶然调节。参与者对一个彩色形状(红色正方形或蓝色圆形)的持续时间(短与长)进行分类,同时被指示忽略刺激的视觉特征和背景中播放的声音(由不同乐器演奏的两种不同和弦)。在整个任务中,两种视觉刺激形状出现的概率相同,但在一种听觉环境中,其中一种形状出现的可能性很高(p = 0.882),另一种则很罕见(p = 0.118),而在另一种听觉环境中情况则相反。我们的结果表明,只要刺激在给定的听觉环境中是意外的,参与者在持续时间判断任务中的反应就会显著变慢(上下文相关干扰),并且在上下文发生变化后的试验中,他们的感官预测重置就会完成。我们得出结论,物体特征和环境上下文是相互关联处理的,并且感官预测是相对于环境上下文产生的,这首次证明了听觉上下文对注意力的依赖性调节。