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Unsworth, Nash; Robison, Matthew K.; Miller, Ashley L. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2022
Eight experiments (N = 2,003) assessed the relation between working memory capacity (WMC) and performance on the antisaccade task. Experiments 1-5 and 7 examined individual differences in aspects of goal management processes occurring during the preparatory delay of the antisaccade task. WMC tended to interact with delay interval suggesting that…
Descriptors: Short Term Memory, Attention Control, Eye Movements, Individual Differences
Miller, Ashley L.; Unsworth, Nash – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
In 2 experiments, eye-tracking was used to examine individual differences in attention during encoding and their relation to associative learning. Pupillary responses were used as an indicator of the amount of attention devoted to items, whereas eye fixations provided a means of assessing attentional focus among items within each to-be-remembered…
Descriptors: Eye Movements, Memory, Task Analysis, Recall (Psychology)
Meier, Matt E.; Smeekens, Bridget A.; Silvia, Paul J.; Kwapil, Thomas R.; Kane, Michael J. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2018
The association between working memory capacity (WMC) and the antisaccade task, which requires subjects to move their eyes and attention away from a strong visual cue, supports the claim that WMC is partially an attentional construct (Kane, Bleckley, Conway, & Engle, 2001; Unsworth, Schrock, & Engle, 2004). Specifically, the…
Descriptors: Short Term Memory, Individual Differences, Reaction Time, Cues
Tharp, Ian J.; Pickering, Alan D. – Brain and Cognition, 2011
Individual differences in psychophysiological function have been shown to influence the balance between flexibility and distractibility during attentional set-shifting [e.g., Dreisbach et al. (2005). Dopamine and cognitive control: The influence of spontaneous eyeblink rate and dopamine gene polymorphisms on perseveration and distractibility.…
Descriptors: Individual Differences, Short Term Memory, Cognitive Ability, Eye Movements
Colzato, Lorenza S.; Slagter, Heleen A.; de Rover, Mischa; Hommel, Bernhard – Journal of Cognitive Neuroscience, 2011
The attentional blink (AB)--a deficit in reporting the second of two target stimuli presented in close succession in a rapid sequence of distracters--has been related to processing limitations in working memory. Given that dopamine (DA) plays a crucial role working memory, the present study tested whether individual differences in the size of the…
Descriptors: Genetics, Short Term Memory, Cognitive Processes, Biochemistry
Roebers, Claudia M.; Schmid, Corinne; Roderer, Thomas – Journal of Genetic Psychology, 2010
The authors explored different aspects of encoding strategy use in primary school children by including (a) an encoding strategy task in which children's encoding strategy use was recorded through a remote eye-tracking device and, later, free recall and recognition for target items was assessed; and (b) tasks measuring resistance to interference…
Descriptors: Human Body, Cognitive Processes, Attention Control, Eye Movements
Unsworth, Nash; Schrock, Josef C.; Engle, Randall W. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2004
Performance on antisaccade trials requires the inhibition of a prepotent response (i.e., don't look at the flashing cue) and the generation and execution of a correct saccade in the opposite direction. The authors attempted to further specify the role of working memory (WM) span differences in the antisaccade task. They tested high- and low-span…
Descriptors: Memory, Human Body, Inhibition, Eye Movements