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  1. Self-organization of cognitive performance.Guy C. Van Orden, John G. Holden & Michael T. Turvey - 2003 - Journal of Experimental Psychology: General 132 (3):331.
  • Fluctuations in pre-trial attentional state and their influence on goal neglect.Nash Unsworth & Brittany D. McMillan - 2014 - Consciousness and Cognition 26:90-96.
    Fluctuations in attentional state and their relation to goal neglect were examined in the current study. Participants performed a variant of the Stroop task in which attentional state ratings were given prior to each trial. It was found that pre-trial attentional state ratings predicted subsequent trial performance, such that when participants rated their current attentional state as highly focused on the current task, performance tended to be high compared to when participants reported their current attentional state as being unfocused on (...)
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  • The relationship between fractal dimension and other-race and inversion effects in recognising facial emotions.Takuma Takehara, Fumio Ochiai, Hiroshi Watanabe & Naoto Suzuki - 2013 - Cognition and Emotion 27 (4):577-588.
  • Searching for General Principles in Cognitive Performance: Reply to Commentators.Damian G. Stephen & Guy Van Orden - 2012 - Topics in Cognitive Science 4 (1):94-102.
    The commentators expressed concerns regarding the relevance and value of non-computational non-symbolic explanations of cognitive performance. But what counts as an “explanation” depends on the pre-theoretical assumptions behind the scenes of empirical science regarding the kinds of variables and relationships that are sought out in the first place, and some of the present disagreements stem from incommensurate assumptions. Traditional cognitive science presumes cognition to be a decomposable system of components interacting according to computational rules to generate cognitive performances (i.e., component-dominant (...)
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  • Interactions dominate the dynamics of visual cognition.Damian G. Stephen & Daniel Mirman - 2010 - Cognition 115 (1):154-165.
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  • The Episodic Nature of Experience: A Dynamical Systems Analysis.Sreekumar Vishnu, Dennis Simon & Doxas Isidoros - 2017 - Cognitive Science 41 (5):1377-1393.
    Context is an important construct in many domains of cognition, including learning, memory, and emotion. We used dynamical systems methods to demonstrate the episodic nature of experience by showing a natural separation between the scales over which within-context and between-context relationships operate. To do this, we represented an individual's emails extending over about 5 years in a high-dimensional semantic space and computed the dimensionalities of the subspaces occupied by these emails. Personal discourse has a two-scaled geometry with smaller within-context dimensionalities (...)
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  • Incorporating measurement error in n = 1 psychological autoregressive modeling.Noémi K. Schuurman, Jan H. Houtveen & Ellen L. Hamaker - 2015 - Frontiers in Psychology 6.
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  • Learning From the Body About the Mind.Michael A. Riley, Kevin Shockley & Guy Van Orden - 2012 - Topics in Cognitive Science 4 (1):21-34.
    In some areas of cognitive science we are confronted with ultrafast cognition, exquisite context sensitivity, and scale-free variation in measured cognitive activities. To move forward, we suggest a need to embrace this complexity, equipping cognitive science with tools and concepts used in the study of complex dynamical systems. The science of movement coordination has benefited already from this change, successfully circumventing analogous paradoxes by treating human activities as phenomena of self-organization. Therein, action and cognition are seen to be emergent in (...)
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  • Spectral convergence in tapping and physiological fluctuations: coupling and independence of 1/f noise in the central and autonomic nervous systems.Lillian M. Rigoli, Daniel Holman, Michael J. Spivey & Christopher T. Kello - 2014 - Frontiers in Human Neuroscience 8.
  • A Comparison of Sequential Sampling Models for Two-Choice Reaction Time.Roger Ratcliff & Philip L. Smith - 2004 - Psychological Review 111 (2):333-367.
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  • Word Naming in the L1 and L2: A Dynamic Perspective on Automatization and the Degree of Semantic Involvement in Naming.Rika Plat, Wander Lowie & Kees de Bot - 2018 - Frontiers in Psychology 8.
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  • A Time Series Approach to Random Number Generation: Using Recurrence Quantification Analysis to Capture Executive Behavior.Wouter Oomens, Joseph H. R. Maes, Fred Hasselman & Jos I. M. Egger - 2015 - Frontiers in Human Neuroscience 9.
  • RandseqR: An R Package for Describing Performance on the Random Number Generation Task.Wouter Oomens, Joseph H. R. Maes, Fred Hasselman & Jos I. M. Egger - 2021 - Frontiers in Psychology 12.
    The Random Number Generation task has a long history in neuropsychology as an assessment procedure for executive functioning. In recent years, understanding of human behavior has gradually changed from reflecting a static to a dynamic process and this shift in thinking about behavior gives a new angle to interpret test results. However, this shift also asks for different methods to process random number sequences. The RNG task is suited for applying non-linear methods needed to uncover the underlying dynamics of random (...)
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  • An Anatomically Constrained, Stochastic Model of Eye Movement Control in Reading.Scott A. McDonald, R. H. S. Carpenter & Richard C. Shillcock - 2005 - Psychological Review 112 (4):814-840.
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  • The Pervasiveness of 1/f Scaling in Speech Reflects the Metastable Basis of Cognition.Christopher T. Kello, Gregory G. Anderson, John G. Holden & Guy C. Van Orden - 2008 - Cognitive Science 32 (7):1217-1231.
    Human neural and behavioral activities have been reported to exhibit fractal dynamics known as 1/f noise, which is more aptly named 1/f scaling. Some argue that 1/f scaling is a general and pervasive property of the dynamical substrate from which cognitive functions are formed. Others argue that it is an idiosyncratic property of domain‐specific processes. An experiment was conducted to investigate whether 1/f scaling pervades the intrinsic fluctuations of a spoken word. Ten participants each repeated the word bucket over 1,000 (...)
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  • The Self-Organization of a Spoken Word.John G. Holden & Srinivasan Rajaraman - 2012 - Frontiers in Psychology 3.
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  • Dispersion of response times reveals cognitive dynamics.John G. Holden, Guy C. Van Orden & Michael T. Turvey - 2009 - Psychological Review 116 (2):318-342.
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  • Global Model Analysis of Cognitive Variability.David L. Gilden - 2009 - Cognitive Science 33 (8):1441-1467.
    Residual fluctuations produced in typical experimental methodologies are examined as correlated noises. The effective range of the correlations was assessed by determining whether the decay over look‐back time is better described as a power law or exponential. Both of these decay laws contain free parameters and it is argued that it is not possible to distinguish their models on the basis of simple measures of goodness‐of‐fit. Global analyses that evaluate models on the basis of how well they generalize are conducted. (...)
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  • Empirical Evidence for Extended Cognitive Systems.Luis H. Favela, Mary Jean Amon, Lorena Lobo & Anthony Chemero - 2021 - Cognitive Science 45 (11):e13060.
    Cognitive Science, Volume 45, Issue 11, November 2021.
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  • Disequilibrium in the mind, disharmony in the body.Sidney D'Mello, Rick Dale & Art Graesser - 2012 - Cognition and Emotion 26 (2):362-374.
  • Multifractal Dynamics in the Emergence of Cognitive Structure.James A. Dixon, John G. Holden, Daniel Mirman & Damian G. Stephen - 2012 - Topics in Cognitive Science 4 (1):51-62.
    The complex-systems approach to cognitive science seeks to move beyond the formalism of information exchange and to situate cognition within the broader formalism of energy flow. Changes in cognitive performance exhibit a fractal (i.e., power-law) relationship between size and time scale. These fractal fluctuations reflect the flow of energy at all scales governing cognition. Information transfer, as traditionally understood in the cognitive sciences, may be a subset of this multiscale energy flow. The cognitive system exhibits not just a single power-law (...)
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  • Re‐Presentations of Space in Hollywood Movies: An Event‐Indexing Analysis.James Cutting & Catalina Iricinschi - 2015 - Cognitive Science 39 (2):434-456.
    Popular movies present chunk-like events that promote episodic, serial updating of viewers’ representations of the ongoing narrative. Event-indexing theory would suggest that the beginnings of new scenes trigger these updates, which in turn require more cognitive processing. Typically, a new movie event is signaled by an establishing shot, one providing more background information and a longer look than the average shot. Our analysis of 24 films reconfirms this. More important, we show that, when returning to a previously shown location, the (...)
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  • Behavior Stability and Individual Differences in Pavlovian Extended Conditioning.Gianluca Calcagni, Ernesto Caballero-Garrido & Ricardo Pellón - 2020 - Frontiers in Psychology 11.
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  • An integrated model of choices and response times in absolute identification.Scott D. Brown, A. A. J. Marley, Christopher Donkin & Andrew Heathcote - 2008 - Psychological Review 115 (2):396-425.
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  • The Effect of Context and Individual Differences in Human‐Generated Randomness.Mikołaj Biesaga, Szymon Talaga & Andrzej Nowak - 2021 - Cognitive Science 45 (12):e13072.
    Many psychological studies have shown that human‐generated sequences are hardly ever random in the strict mathematical sense. However, what remains an open question is the degree to which this (in)ability varies between people and is affected by contextual factors. Herein, we investigated this problem. In two studies, we used a modern, robust measure of randomness based on algorithmic information theory to assess human‐generated series. In Study 1 (), in a factorial design with task description as a between‐subjects variable, we tested (...)
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  • Signal detection with criterion noise: Applications to recognition memory.Aaron S. Benjamin, Michael Diaz & Serena Wee - 2009 - Psychological Review 116 (1):84-115.
  • A Minimal Turing Test: Reciprocal Sensorimotor Contingencies for Interaction Detection.Pamela Barone, Manuel G. Bedia & Antoni Gomila - 2020 - Frontiers in Human Neuroscience 14:481235.
    In the classical Turing test, participants are challenged to tell whether they are interacting with another human being or with a machine. The way the interaction takes place is not direct, but a distant conversation through computer screen messages. Basic forms of interaction are face-to-face and embodied, context-dependent and based on the detection of reciprocal sensorimotor contingencies. Our idea is that interaction detection requires the integration of proprioceptive and interoceptive patterns with sensorimotor patterns, within quite short time lapses, so that (...)
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  • An integrated model of cognitive control in task switching.Erik M. Altmann & Wayne D. Gray - 2008 - Psychological Review 115 (3):602-639.
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  • Radical embodied cognitive neuroscience: Addressing “grand challenges” of the mind sciences.Luis H. Favela - 2014 - Frontiers in Human Neuroscience 8:01-10.
    It is becoming ever more accepted that investigations of mind span the brain, body, and environment. To broaden the scope of what is relevant in such investigations is to increase the amount of data scientists must reckon with. Thus, a major challenge facing scientists who study the mind is how to make big data intelligible both within and between fields. One way to face this challenge is to structure the data within a framework and to make it intelligible by means (...)
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  • Restless minds, wandering brains.Cees van Leeuwen & Dirk Ja Smit - 2012 - In Shimon Edelman, Tomer Fekete & Neta Zach (eds.), Being in Time: Dynamical Models of Phenomenal Experience. John Benjamins. pp. 121.
  • Voluntary behavior in cognitive and motor tasks.Heidi Kloos & Guy Van Orden - 2010 - Mind and Matter 8 (1):19-43.
    Many previous treatments of voluntary behavior have viewed intentions as causes of behavior. This has resulted in several dilemmas, including a dilemma concerning the origin of intentions. The present article circumvents traditional dilemmas by treating intentions as constraints that restrict degrees of freedom for behavior. Constraints self-organize as temporary dynamic structures that span the mind-body divide. This treatment of intentions and voluntary behavior yields a theory of intentionality that is consistent with existing findings and supported by current research.
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