Investigating the effects of perceptual complexity versus conceptual meaning on the object benefit in visual working memory.

IF 2.5 3区 医学 Q2 BEHAVIORAL SCIENCES
Alyssa M L Thibeault, Bobby Stojanoski, Stephen M Emrich
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引用次数: 0

Abstract

Previous research has demonstrated greater visual working memory (VWM) performance for real-world objects compared with simple features. Greater amplitudes of the contralateral delay activity (CDA)-a sustained event-related potential measured during the delay period of a VWM task-have also been noted for meaningful stimuli, despite being thought of as a neural marker of a fixed working memory capacity. The current study aimed to elucidate the factors underlying improved memory performance for real-world objects by isolating the relative contributions of perceptual complexity (i.e., number of visual features) and conceptual meaning (i.e., availability of semantic, meaningful features). Participants (N = 22) performed a lateralized VWM task to test their memory of intact real-world objects, scrambled real-world objects and colours. The CDA was measured during both encoding and WM retention intervals (600-1000 ms and 1300-1700 ms poststimulus onset, respectively), and behavioural performance was estimated by using d' (memory strength in a two-alternative forced choice task). Behavioural results revealed significantly better performance within-subjects for real-world objects relative to scrambled objects and colours, with no difference between colours and scrambled objects. The amplitude of the CDA was also largest for intact real-world objects, with no difference in magnitude for scrambled objects and colours, during working memory maintenance. However, during memory encoding, both the colours and intact real-world objects had significantly greater amplitudes than scrambled objects and were comparable in magnitude. Overall, findings suggest that conceptual meaning (semantics) supports the memory benefit for real-world objects.

研究知觉复杂性与概念意义对视觉工作记忆中的对象收益的影响。
以往的研究表明,与简单的特征相比,现实世界中的物体具有更强的视觉工作记忆(VWM)能力。尽管对侧延迟活动(CDA)被认为是固定工作记忆能力的神经标记,但在视觉工作记忆任务的延迟期间测量的持续事件相关电位(CDA)振幅也被认为对有意义的刺激更强。本研究旨在通过分离知觉复杂性(即视觉特征的数量)和概念意义(即语义、有意义特征的可用性)的相对贡献,来阐明提高对真实世界物体的记忆能力的基础因素。受试者(22 人)进行了一项侧向 VWM 任务,以测试他们对完整真实世界物体、乱码真实世界物体和颜色的记忆。CDA是在编码和WM保留时间间隔(分别为刺激开始后600-1000毫秒和1300-1700毫秒)内测量的,行为表现则通过d'(两选强迫选择任务中的记忆强度)来估计。行为结果显示,在被试内,真实世界物体的表现明显优于乱码物体和颜色,而颜色和乱码物体之间没有差异。在工作记忆维持过程中,完整的真实世界物体的CDA振幅也最大,乱码物体和颜色的CDA振幅没有差异。然而,在记忆编码期间,颜色和完整的真实世界物体的振幅都明显大于乱码物体,两者的振幅大小相当。总之,研究结果表明,概念意义(语义)支持对真实世界物体的记忆益处。
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来源期刊
CiteScore
5.00
自引率
3.40%
发文量
64
审稿时长
6-12 weeks
期刊介绍: Cognitive, Affective, & Behavioral Neuroscience (CABN) offers theoretical, review, and primary research articles on behavior and brain processes in humans. Coverage includes normal function as well as patients with injuries or processes that influence brain function: neurological disorders, including both healthy and disordered aging; and psychiatric disorders such as schizophrenia and depression. CABN is the leading vehicle for strongly psychologically motivated studies of brain–behavior relationships, through the presentation of papers that integrate psychological theory and the conduct and interpretation of the neuroscientific data. The range of topics includes perception, attention, memory, language, problem solving, reasoning, and decision-making; emotional processes, motivation, reward prediction, and affective states; and individual differences in relevant domains, including personality. Cognitive, Affective, & Behavioral Neuroscience is a publication of the Psychonomic Society.
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