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Bissett, Patrick G.; Logan, Gordon D. – Journal of Experimental Psychology: Human Perception and Performance, 2012
Control adjustments are necessary to balance competing cognitive demands. One task that is well-suited to explore control adjustments is the stop-signal paradigm, in which subjects must balance initiation and inhibition. One common adjustment in the stop-signal paradigm is post-stop-signal slowing. Existing models of sequential adjustments in the…
Descriptors: Inhibition, Probability, Repetition, Self Control
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Bissett, Patrick G.; Logan, Gordon D. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2012
Performance in the stop-signal paradigm involves a balance between going and stopping, and one way that this balance is struck is through shifting priority away from the go task, slowing responses after a stop signal, and improving the probability of inhibition. In 6 experiments, the authors tested whether there is a corresponding shift in…
Descriptors: Inhibition, Probability, Reaction Time, Experimental Psychology
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Bissett, Patrick G.; Logan, Gordon D. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2011
Cognitive control enables flexible interaction with a dynamic environment. In 2 experiments, the authors investigated control adjustments in the stop-signal paradigm, a procedure that requires balancing speed (going) and caution (stopping) in a dual-task environment. Focusing on the slowing of go reaction times after stop signals, the authors…
Descriptors: Reaction Time, Models, Conflict, Inhibition
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Yamaguchi, Motonori; Logan, Gordon D.; Bissett, Patrick G. – Journal of Experimental Psychology: Human Perception and Performance, 2012
Although dual-task interference is ubiquitous in a variety of task domains, stop-signal studies suggest that response inhibition is not subject to such interference. Nevertheless, no study has directly examined stop-signal performance in a dual-task setting. In two experiments, stop-signal performance was examined in a psychological refractory…
Descriptors: Evidence, Reaction Time, Inhibition, Program Effectiveness
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Verbruggen, Frederick; Logan, Gordon D.; Liefooghe, Baptist; Vandierendonck, Andre – Journal of Experimental Psychology: Human Perception and Performance, 2008
Repetition priming and between-trial control adjustments after successful and unsuccessful response inhibition were studied in the stop-signal paradigm. In 5 experiments, the authors demonstrated that response latencies increased after successful inhibition compared with trials that followed no-signal trials. However, this effect was found only…
Descriptors: Inhibition, Responses, Cognitive Processes, Experiments
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Verbruggen, Frederick; Logan, Gordon D. – Journal of Experimental Psychology: General, 2008
In 5 experiments, the authors examined the development of automatic response inhibition in the go/no-go paradigm and a modified version of the stop-signal paradigm. They hypothesized that automatic response inhibition may develop over practice when stimuli are consistently associated with stopping. All 5 experiments consisted of a training phase…
Descriptors: Stimuli, Educational Research, Models, Inhibition
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Verbruggen, Frederick; Logan, Gordon D. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2009
Response inhibition is a hallmark of cognitive control. An executive system inhibits responses by activating a stop goal when a stop signal is presented. The authors asked whether the stop goal could be primed by task-irrelevant information in stop-signal and go/no-go paradigms. In Experiment 1, the task-irrelevant primes "GO," ###, or "STOP" were…
Descriptors: Inhibition, Responses, Cognitive Processes, Experimental Psychology
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Verbruggen, Frederick; Logan, Gordon D. – Journal of Experimental Psychology: Human Perception and Performance, 2008
Cognitive control theories attribute control to executive processes that adjust and control behavior online. Theories of automaticity attribute control to memory retrieval. In the present study, online adjustments and memory retrieval were examined, and their roles in controlling performance in the stop-signal paradigm were elucidated. There was…
Descriptors: Reaction Time, Inhibition, Memory, Cognitive Processes
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Boucher, Leanne; Palmeri, Thomas J.; Logan, Gordon D.; Schall, Jeffrey D. – Psychological Review, 2007
The stop-signal task has been used to study normal cognitive control and clinical dysfunction. Its utility is derived from a race model that accounts for performance and provides an estimate of the time it takes to stop a movement. This model posits a race between go and stop processes with stochastically independent finish times. However,…
Descriptors: Reaction Time, Models, Eye Movements, Inhibition
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Schachar, Russell; Logan, Gordon D.; Robaey, Philippe; Chen, Shirley; Ickowicz, Abel; Barr, Cathy – Journal of Abnormal Child Psychology, 2007
We used variations of the stop signal task to study two components of motor response inhibition--the ability to withhold a strong response tendency (restraint) and the ability to cancel an ongoing action (cancellation)--in children with a diagnosis of attention deficit hyperactivity disorder (ADHD) and in non-ADHD controls of similar age (ages…
Descriptors: Self Control, Inhibition, Attention Deficit Disorders, Control Groups
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Schachar, Russell J.; Chen, Shirley; Logan, Gordon D.; Ornstein, Tisha J.; Crosbie, Jennifer; Ickowicz, Abel; Pakulak, Amber – Journal of Abnormal Child Psychology, 2004
We studied error monitoring in ADHD and control children in a task requiring inhibition of a motor response. The extent of slowing following successful (stopped) and failed (nonstopped) inhibition was compared across groups. We also measured the time required to inhibit a response (stop signal reaction time, SSRT). Compared to controls. ADHD…
Descriptors: Reaction Time, Inhibition, Hyperactivity, Attention Deficit Disorders
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Williams, Benjamin R.; Ponesse, Jonathan S.; Schachar, Russell J.; Logan, Gordon D.; Tannock, Rosemary – Developmental Psychology, 1999
Examined development of inhibitory control using a stop-signal procedure with subjects ages 6 to 81 years. Found that the speed of stopping becomes faster with increasing age throughout childhood, with limited evidence of slowing across adulthood. The go-signal reaction time clearly increased through childhood and slowed markedly through…
Descriptors: Adults, Age Differences, Child Behavior, Child Development