Processing of visual hapaxes in picture naming task: An event-related potential study

IF 2.5 3区 心理学 Q3 NEUROSCIENCES
Vojislav Jovanović , Igor Petrušić , Andrej Savić , Vanja Ković
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引用次数: 0

Abstract

Object recognition and visual categorization are typically swift and seemingly effortless tasks that involve numerous underlying processes. In our investigation, we utilized a picture naming task to explore the processing of rarely encountered objects (visual hapaxes) in comparison to common objects. Our aim was to determine the stage at which these rare objects are classified as unnamable. Contrary to our expectations and in contrast to some prior research on event-related potentials (ERPs) with novel and atypical objects, no differences between conditions were observed in the late time windows corresponding to the P300 or N400 components. However, distinctive patterns between hapaxes and common objects surfaced in three early time windows, corresponding to the posterior N1 and P2 waves, as well as a widespread N2 wave. According to the ERP data, the differentiation between hapaxes and common objects occurs within the first 380 ms of the processing line, involving only limited and indirect top-down influence.

图片命名任务中的视觉单轴处理:事件相关电位研究
物体识别和视觉分类通常是看似不费吹灰之力的快速任务,其中涉及许多基本过程。在我们的研究中,我们利用图片命名任务来探索与常见物体相比,罕见物体(视觉单体)的处理过程。我们的目的是确定这些罕见物体在哪个阶段被归类为不可命名。与我们的预期相反,也与之前一些针对新奇和非典型物体的事件相关电位(ERPs)研究相反,在与 P300 或 N400 成分相对应的晚期时间窗口中,没有观察到不同条件下的差异。然而,在三个早期时间窗口中,与后部 N1 波和 P2 波以及广泛的 N2 波相对应,出现了合轴物体和普通物体之间的独特模式。根据ERP数据,单轴和普通对象之间的区分发生在处理线的前380毫秒内,只涉及有限的自上而下的间接影响。
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来源期刊
CiteScore
5.40
自引率
10.00%
发文量
177
审稿时长
3-8 weeks
期刊介绍: The International Journal of Psychophysiology is the official journal of the International Organization of Psychophysiology, and provides a respected forum for the publication of high quality original contributions on all aspects of psychophysiology. The journal is interdisciplinary and aims to integrate the neurosciences and behavioral sciences. Empirical, theoretical, and review articles are encouraged in the following areas: • Cerebral psychophysiology: including functional brain mapping and neuroimaging with Event-Related Potentials (ERPs), Positron Emission Tomography (PET), Functional Magnetic Resonance Imaging (fMRI) and Electroencephalographic studies. • Autonomic functions: including bilateral electrodermal activity, pupillometry and blood volume changes. • Cardiovascular Psychophysiology:including studies of blood pressure, cardiac functioning and respiration. • Somatic psychophysiology: including muscle activity, eye movements and eye blinks.
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