The differential impact of face distractors on visual working memory across encoding and delay stages
Ye, C., Xu, Q., Pan, Z., Nie, Q.-Y., & Liu, Q. (2024). The differential impact of face distractors on visual working memory across encoding and delay stages. Attention Perception and Psychophysics, Early online. https://doi.org/10.3758/s13414-024-02895-6
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Attention Perception and PsychophysicsDate
2024Copyright
© The Author(s) 2024
External distractions often occur when information must be retained in visual working memory (VWM)—a crucial element in cognitive processing and everyday activities. However, the distraction effects can differ if they occur during the encoding rather than the delay stages. Previous research on these effects used simple stimuli (e.g., color and orientation) rather than considering distractions caused by real-world stimuli on VWM. In the present study, participants performed a facial VWM task under different distraction conditions across the encoding and delay stages to elucidate the mechanisms of distraction resistance in the context of complex real-world stimuli. VWM performance was significantly impaired by delay-stage but not encoding-stage distractors (Experiment 1). In addition, the delay distraction effect arose primarily due to the absence of distractor process at the encoding stage rather than the presence of a distractor during the delay stage (Experiment 2). Finally, the impairment in the delay-distraction condition was not due to the abrupt appearance of distractors (Experiment 3). Taken together, these findings indicate that the processing mechanisms previously established for resisting distractions in VWM using simple stimuli can be extended to more complex real-world stimuli, such as faces.
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Springer NatureISSN Search the Publication Forum
1943-3921Keywords
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https://converis.jyu.fi/converis/portal/detail/Publication/220442505
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Research Council of FinlandFunding program(s)
Academy Research Fellow, AoFAdditional information about funding
Open Access funding provided by University of Jyväskylä (JYU). This work was supported by the National Natural Science Foundation of China (Grant 31970989 to Qiang Liu) and Research Council of Finland (former Academy of Finland) Academy Research Fellow project (Grant 355369 to Chaoxiong Ye).License
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