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  1. Interaction-Dominant Causation in Mind and Brain, and Its Implication for Questions of Generalization and Replication.Sebastian Wallot & Damian G. Kelty-Stephen - 2018 - Minds and Machines 28 (2):353-374.
    The dominant assumption about the causal architecture of the mind is, that it is composed of a stable set of components that contribute independently to relevant observables that are employed to measure cognitive activity. This view has been called component-dominant dynamics. An alternative has been proposed, according to which the different components are not independent, but fundamentally interdependent, and are not stable basic properties of the mind, but rather an emergent feature of the mind given a particular task context. This (...)
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  • Abstract Concepts Require Concrete Models: Why Cognitive Scientists Have Not Yet Embraced Nonlinearly Coupled, Dynamical, Self-Organized Critical, Synergistic, Scale-Free, Exquisitely Context-Sensitive, Interaction-Dominant, Multifractal, Interdependent Brain-Body-Niche Systems.Eric-Jan Wagenmakers, Han L. J. van der Maas & Simon Farrell - 2012 - Topics in Cognitive Science 4 (1):87-93.
    After more than 15 years of study, the 1/f noise or complex-systems approach to cognitive science has delivered promises of progress, colorful verbiage, and statistical analyses of phenomena whose relevance for cognition remains unclear. What the complex-systems approach has arguably failed to deliver are concrete insights about how people perceive, think, decide, and act. Without formal models that implement the proposed abstract concepts, the complex-systems approach to cognitive science runs the danger of becoming a philosophical exercise in futility. The complex-systems (...)
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  • Broad scaling region in a spatial ecological system.Manojit Roy, Mercedes Pascual & Alain Franc - 2003 - Complexity 8 (5):19-27.
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  • Modeling multiscale patterns: active matter, minimal models, and explanatory autonomy.Collin Rice - 2022 - Synthese 200 (6):1-35.
    Both ecologists and statistical physicists use a variety of highly idealized models to study active matter and self-organizing critical phenomena. In this paper, I show how universality classes play a crucial role in justifying the application of highly idealized ‘minimal’ models to explain and understand the critical behaviors of active matter systems across a wide range of scales and scientific fields. Appealing to universality enables us to see why the same minimal models can be used to explain and understand behaviors (...)
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  • Task‐performing dynamics in irregular, biomimetic networks.Susanna M. Messinger, Keith A. Mott & David Peak - 2007 - Complexity 12 (6):14-21.
  • The Over-Extended Mind? Pink Noise and the Ethics of Interaction-Dominant Systems.Darian Meacham & Miguel Prado Casanova - 2018 - NanoEthics 12 (3):269-281.
    There is a growing recognition within cognitive enhancement and neuroethics debates of the need for greater emphasis on cognitive artefacts. This paper aims to contribute to this broadening and expansion of the cognitive-enhancement and neuroethics debates by focusing on a particular form of relation or coupling between humans and cognitive artefacts: interaction-dominance. We argue that interaction-dominance as an emergent property of some human-cognitive artefact relations has important implications for understanding the attribution and distribution of causal and other forms of responsibility (...)
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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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  • Consistent concepts of self-organization and self-assembly.Julianne D. Halley & David A. Winkler - 2008 - Complexity 14 (2):10-17.
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  • 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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  • The entropic brain: a theory of conscious states informed by neuroimaging research with psychedelic drugs.Robin L. Carhart-Harris, Robert Leech, Peter J. Hellyer, Murray Shanahan, Amanda Feilding, Enzo Tagliazucchi, Dante R. Chialvo & David Nutt - 2014 - Frontiers in Human Neuroscience 8.
  • Evolution in complex systems.Paul E. Anderson, Henrik Jeldtoft Jensen, L. P. Oliveira & Paolo Sibani - 2004 - Complexity 10 (1):49-56.
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  • The Mismatch of Intrinsic Fluctuations and the Static Assumptions of Linear Statistics.Mary Jean Amon & John G. Holden - 2019 - Review of Philosophy and Psychology 12 (1):149-173.
    The social and cognitive science replication crisis is partly due to the limitations of commonly used statistical tools. Inferential statistics require that unsystematic measurement variation is independent of system history, and weak relative to systematic or causal sources of variation. However, contemporary systems research underscores the dynamic, adaptive nature of social, cognitive, and behavioral systems. Variation in human activity includes the influences of intrinsic dynamics intertwined with changing contextual circumstances. Conventional inferential techniques presume milder forms of variability, such as unsystematic (...)
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  • Toward scale‐free like behavior under increasing cognitive load.Mario Altamura, Brita Elvevåg, Gaetano Campi, Michela De Salvia, Daniele Marasco, Alessandro Ricci & Antonello Bellomo - 2013 - Complexity 18 (1):38-43.
  • Attentional state: From automatic detection to willful focused concentration.Andrew And Alexander Fingelkurts - 2015 - In G. Marchetti, G. Benedetti & A. Alharbi (eds.), Attantion and Meaning. The Attentional Basis of Meaning. Nova Science Publishers. pp. 133-150.
    Despite the fact that attention is a core property of all perceptual and cognitive operations, our understanding of its neurophysiological mechanisms is far from complete. There are many theoretical models that try to fill this gap in knowledge, though practically all of them concentrate only on either involuntary (bottom-up) or voluntarily (top-down) aspect of attention. At the same time, both aspects of attention are rather integrated in the living brain. In this chapter we attempt to conceptualise both aspects of attentional (...)
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  • The Inert vs. the Living State of Matter: Extended Criticality, Time Geometry, Anti-Entropy - An Overview.Giuseppe Longo & Maël Montévil - 2012 - Frontiers in Physiology 3:39.
    The physical singularity of life phenomena is analyzed by means of comparison with the driving concepts of theories of the inert. We outline conceptual analogies, transferals of methodologies and theoretical instruments between physics and biology, in addition to indicating significant differences and sometimes logical dualities. In order to make biological phenomenalities intelligible, we introduce theoretical extensions to certain physical theories. In this synthetic paper, we summarize and propose a unified conceptual framework for the main conclusions drawn from work spanning a (...)
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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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  • Consciousness as a phenomenon in the operational architectonics of brain organization: Criticality and self-organization considerations.Andrew A. Fingelkurts, Alexander A. Fingelkurts & Carlos F. H. Neves - 2013 - Chaos, Solitons and Fractals 55:13-31.
    In this paper we aim to show that phenomenal consciousness is realized by a particular level of brain operational organization and that understanding human consciousness requires a description of the laws of the immediately underlying neural collective phenomena, the nested hierarchy of electromagnetic fields of brain activity – operational architectonics. We argue that the subjective mental reality and the objective neurobiological reality, although seemingly worlds apart, are intimately connected along a unified metastable continuum and are both guided by the universal (...)
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  • Models and Simulations in the Historical Emergence of the Science of Complexity.Franck Varenne - 2009 - In Ma Aziz-Alaoui & C. Bertelle (eds.), From System Complexity to Emergent Properties. Springer. pp. 3--21.
    As brightly shown by Mainzer [24], the science of complexity has many distinct origins in many disciplines. Those various origins has led to “an interdisciplinary methodology to explain the emergence of certain macroscopic phenomena via the nonlinear interactions of microscopic elements” (ibid.). This paper suggests that the parallel and strong expansion of modeling and simulation - especially after the Second World War and the subsequent development of computers - is a rationale which also can be counted as an explanation of (...)
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  • Does A Veridical Libertarian Experience Require Quantum Indeterminacy?Jessica Rae Green - unknown
    I argue that the question of whether or not all of our choices are determined by the past and the laws of physics requires answering the question of whether or not quantum mechanisms could have a functional role in the parts of our brain that are identical to conscious experience. I take a physicalist position on the mind-body problem as opposed to a dualist position. I present Mark Balaguer's theory of how a libertarian experience might be veridical. I suggest additions (...)
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  • Consciousness and agency: The importance of self-organized action.E. Gonzalez, M. Broens & Pim Haselager - 2004 - Networks 3:103-13.
    Abstract. Following the tracks of Ryle and based upon the theory of complex systems, we shall develop a characterization of action-based consciousness as an embodied, embedded, selforganized process in which action and dispositions occupy a special place. From this perspective, consciousness is not a unique prerogative of humans, but it is spread all around, throughout the evolution of life. We argue that artificial systems such as robots currently lack the genuine embodied embeddedness that allows the type of self-organization that is (...)
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  • 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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  • Topodynamics of metastable brains.Arturo Tozzi, James F. Peters, Andrew A. Fingelkurts, Alexander A. Fingelkurts & Pedro C. Marijuán - 2017 - Physics of Life Reviews 21:1-20.
    The brain displays both the anatomical features of a vast amount of interconnected topological mappings as well as the functional features of a nonlinear, metastable system at the edge of chaos, equipped with a phase space where mental random walks tend towards lower energetic basins. Nevertheless, with the exception of some advanced neuro-anatomic descriptions and present-day connectomic research, very few studies have been addressing the topological path of a brain embedded or embodied in its external and internal environment. Herein, by (...)
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