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Pincham, Hannah L.; Szucs, Denes – Cognition, 2012
Subitizing is traditionally described as the rapid, preattentive and automatic enumeration of up to four items. Counting, by contrast, describes the enumeration of larger sets of items and requires slower serial shifts of attention. Although recent research has called into question the preattentive nature of subitizing, whether or not numerosities…
Descriptors: Reaction Time, Attention, Computation, Visual Stimuli
Magnani, Barbara; Pavani, Francesco; Frassinetti, Francesca – Cognition, 2012
The aim of the present study was to explore the spatial organization of auditory time and the effects of the manipulation of spatial attention on such a representation. In two experiments, we asked 28 adults to classify the duration of auditory stimuli as "short" or "long". Stimuli were tones of high or low pitch, delivered left or right of the…
Descriptors: Spatial Ability, Auditory Stimuli, Attention, Experiments
Tamminen, Jakke; Davis, Matthew H.; Merkx, Marjolein; Rastle, Kathleen – Cognition, 2012
Accounts of memory that postulate complementary learning systems (CLS) have become increasingly influential in the field of language learning. These accounts predict that generalisation of newly learnt linguistic information to untrained contexts requires offline memory consolidation. Such generalisation should not be observed immediately after…
Descriptors: Linguistics, Memory, Task Analysis, Language Processing
Aarts, Kristien; De Houwer, Jan; Pourtois, Gilles – Cognition, 2012
The accuracy of simple actions is swiftly determined through specific monitoring brain systems. However, it remains unclear whether this evaluation is accompanied by a rapid and compatible emotional appraisal of the action that allows to mark incorrect actions as negative/bad and conversely correct actions as positive/good. In this study, we used…
Descriptors: Priming, Evidence, Anxiety, Cognitive Processes
Roder, Brigitte; Pagel, Birthe; Heed, Tobias – Cognition, 2013
The integrated use of spatial and temporal information seems to support the separation of two sensory streams. The present study tested whether this facilitation depends on the encoding of sensory stimuli in externally anchored spatial coordinate systems. Fifty-nine children between 5 and 12 years as well as 12 young adults performed a crossmodal…
Descriptors: Spatial Ability, Cognitive Processes, Children, Adults
Brosch, Tobias; Van Bavel, Jay J. – Cognition, 2012
There is extensive evidence that emotional--especially threatening--stimuli rapidly capture attention. These findings are often explained in terms of a hard-wired and relatively inflexible fear module. We propose an alternative, more flexible mechanism, arguing that motivational relevance is the crucial factor driving rapid attentional orienting.…
Descriptors: Evidence, Individual Differences, Cues, Group Membership
Chen, Jenn-Yeu; Li, Cheng-Yi – Cognition, 2011
The process of word form encoding was investigated in primed word naming and word typing with Chinese monosyllabic words. The target words shared or did not share the onset consonants with the prime words. The stimulus onset asynchrony (SOA) was 100 ms or 300 ms. Typing required the participants to enter the phonetic letters of the target word,…
Descriptors: Priming, Syllables, Word Recognition, Chinese
Mossbridge, Julia A.; Grabowecky, Marcia; Suzuki, Satoru – Cognition, 2011
How do the characteristics of sounds influence the allocation of visual-spatial attention? Natural sounds typically change in frequency. Here we demonstrate that the direction of frequency change guides visual-spatial attention more strongly than the average or ending frequency, and provide evidence suggesting that this cross-modal effect may be…
Descriptors: Visual Stimuli, Spatial Ability, Auditory Stimuli, Associative Learning
Atance, Cristina M.; Bernstein, Daniel M.; Meltzoff, Andrew N. – Cognition, 2010
We examined 240 children's (3.5-, 4.5-, and 5.5-year-olds) latency to respond to questions on a battery of false-belief tasks. Response latencies exhibited a significant cross-over interaction as a function of age and response type (correct vs. incorrect). 3.5-year-olds' "in"correct latencies were faster than their correct latencies, whereas the…
Descriptors: Reaction Time, Cognitive Processes, Cognitive Development, Evaluation Methods
Kamienkowski, Juan E.; Pashler, Harold; Dehaene, Stanislas; Sigman, Mariano – Cognition, 2011
Does extensive practice reduce or eliminate central interference in dual-task processing? We explored the reorganization of task architecture with practice by combining interference analysis (delays in dual-task experiment) and random-walk models of decision making (measuring the decision and non-decision contributions to RT). The main delay…
Descriptors: Architecture, Reaction Time, Teacher Collaboration, Attention Control
Cohen, Adam S.; German, Tamsin C. – Cognition, 2010
In a task where participants' overt task was to track the location of an object across a sequence of events, reaction times to unpredictable probes requiring an inference about a social agent's beliefs about the location of that object were obtained. Reaction times to false belief situations were faster than responses about the (false) contents of…
Descriptors: Reaction Time, Beliefs, Child Development, Brain
Chapman, Craig S.; Gallivan, Jason P.; Wood, Daniel K.; Milne, Jennifer L.; Culham, Jody C.; Goodale, Melvyn A. – Cognition, 2010
Decision-making is central to human cognition. Fundamental to every decision is the ability to internally represent the available choices and their relative costs and benefits. The most basic and frequent decisions we make occur as our motor system chooses and executes only those actions that achieve our current goals. Although these interactions…
Descriptors: Cognitive Processes, Probability, Reaction Time, Decision Making
Scherbaum, Stefan; Dshemuchadse, Maja; Fischer, Rico; Goschke, Thomas – Cognition, 2010
To study the process of decision-making under conflict, researchers typically analyze response latency and accuracy. However, these tools provide little evidence regarding how the resolution of conflict unfolds over time. Here, we analyzed the trajectories of mouse movements while participants performed a continuous version of a spatial conflict…
Descriptors: Reaction Time, Conflict, Multiple Regression Analysis, Conflict Resolution
Back, Elisa; Apperly, Ian A. – Cognition, 2010
A recent study by Apperly et al. (2006) found evidence that adults do not automatically infer false beliefs while watching videos that afford such inferences. This method was extended to examine true beliefs, which are sometimes thought to be ascribed by "default" (e.g., Leslie & Thaiss, 1992). Sequences of pictures were presented in which the…
Descriptors: Reaction Time, Personality, Inferences, Cognitive Development
Liddle, Elizabeth B.; Scerif, Gaia; Hollis, Christopher P.; Batty, Martin J.; Groom, Madeleine J.; Liotti, Mario; Liddle, Peter F. – Cognition, 2009
The acquisition of volitional control depends, in part, on developing the ability to countermand a planned action. Many tasks have been used to tap the efficiency of this process, but few studies have investigated how it may be modulated by participants' motivation. Multiple mechanisms may be involved in the deliberate exercise of caution when…
Descriptors: Reaction Time, Models, Motivation, Probability
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