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Lum, Jarrad A. G.; Clark, Gillian M. – Developmental Science, 2022
Procedural memory functioning in developmental language disorder (DLD) has largely been investigated by examining implicit sequence learning by the manual motor system. This study examined whether poor sequence learning in DLD is present in the oculomotor domain. Twenty children with DLD and 20 age-matched typically developing (TD) children were…
Descriptors: Developmental Disabilities, Language Impairments, Sequential Learning, Incidental Learning
Lum, Jarrad A. G. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
This study examined the changes in saccadic amplitude associated with learning a visual sequence. The oculomotor system gradually adjusts saccadic parameters when tracking a visual stimulus, which has a predictable trajectory. In these contexts, the change in saccadic amplitudes leads to predictive fixations. That is, fixations made to a position…
Descriptors: Incidental Learning, Sequential Learning, Reaction Time, Eye Movements
Barth, Marius; Stahl, Christoph; Haider, Hilde – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2019
In implicit sequence learning, a process-dissociation (PD) approach has been proposed to dissociate implicit and explicit learning processes. Applied to the popular generation task, participants perform two different task versions: "inclusion" instructions require generating the transitions that form the learned sequence;…
Descriptors: Incidental Learning, Reaction Time, Association (Psychology), Learning Processes
Katan, Pesia; Kahta, Shani; Sasson, Ayelet; Schiff, Rachel – Annals of Dyslexia, 2017
Graph complexity as measured by topological entropy has been previously shown to affect performance on artificial grammar learning tasks among typically developing children. The aim of this study was to examine the effect of graph complexity on implicit sequential learning among children with developmental dyslexia. Our goal was to determine…
Descriptors: Dyslexia, Grammar, Sequential Learning, Children
Ferdinand, Nicola K.; Kray, Jutta – Developmental Psychology, 2017
This study aimed at investigating the ability to learn regularities across the life span and examine whether this learning process can be supported or hampered by verbalizations. For this purpose, children (aged 8-10 years) and younger (aged 19-30 years) and older (aged 70-80 years) adults took part in a sequence learning experiment. We found that…
Descriptors: Sequential Learning, Verbal Communication, Children, Young Adults
Crawford, Pat; Brazelton, G. Blue; Dalton, Robert; Ewing, Kamahra; Hu, Sihua; Johnson, Amber N. – Journal on Excellence in College Teaching, 2017
Incidental learning is an important, yet often overlooked, aspect of curriculum. This study evaluated 166 course reflections dated 2002-2011 in the Bailey Scholars Program (a self-directed, learner-centered curriculum). The study utilized 21 incidental learning characteristics to code and analyze the course evaluations. The authors propose a new…
Descriptors: Incidental Learning, Qualitative Research, Montessori Method, Student Centered Curriculum
Weiermann, Brigitte; Cock, Josephine; Meier, Beat – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2010
Implicit task sequence learning may be attributed to learning the order of perceptual stimulus features associated with the task sequence, learning a series of automatic task set activations, or learning an integrated sequence that derives from 2 correlated streams of information. In the present study, our purpose was to distinguish among these 3…
Descriptors: Sequential Learning, Incidental Learning, Stimuli, Reaction Time
Stephan, Marianne A.; Meier, Beat; Zaugg, Sabine Weber; Kaelin-Lang, Alain – Brain and Cognition, 2011
It is still unclear, whether patients with Parkinson's disease (PD) are impaired in the incidental learning of different motor sequences in short succession, although such a deficit might greatly impact their daily life. The aim of this study was thus to clarify the relation between disease parameters of PD and incidental motor learning of two…
Descriptors: Diseases, Incidental Learning, Rating Scales, Patients
Gobel, Eric W.; Sanchez, Daniel J.; Reber, Paul J. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2011
The expression of expert motor skills typically involves learning to perform a precisely timed sequence of movements. Research examining incidental sequence learning has relied on a perceptually cued task that gives participants exposure to repeating motor sequences but does not require timing of responses for accuracy. In the 1st experiment, a…
Descriptors: Evidence, Incidental Learning, Sequential Learning, Memory
Runger, Dennis; Frensch, Peter A. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2008
Research on incidental sequence learning typically is concerned with the characteristics of implicit or nonconscious learning. In this article, the authors aim to elucidate the cognitive mechanisms that contribute to the generation of explicit, reportable sequence knowledge. According to the unexpected-event hypothesis (P. A. Frensch, H. Haider,…
Descriptors: Reaction Time, Incidental Learning, Sequential Learning, Learning Processes
Goschke, Thomas; Bolte, Annette – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2007
Through the use of a new serial naming task, the authors investigated implicit learning of repeating sequences of abstract semantic categories. Participants named objects (e.g., table, shirt) appearing in random order. Unbeknownst to them, the semantic categories of the objects (e.g., furniture, clothing) followed a repeating sequence.…
Descriptors: Semantics, Learning Processes, Language Processing, Experiments
Karatekin, Canan; Marcus, David J.; White, Tonya – Journal of Experimental Child Psychology, 2007
The goal of this study was to examine incidental and intentional spatial sequence learning during middle childhood and adolescence. We tested four age groups (8-10 years, 11-13 years, 14-17 years, and young adults [18+ years]) on a serial reaction time task and used manual and oculomotor measures to examine incidental sequence learning.…
Descriptors: Adolescents, Intentional Learning, Incidental Learning, Children