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Self-organized criticality

Scientific American 264 (1):46–53 (1991)

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  1. A Day in the Life of a Meme.Liane Gabora - 1996 - Philosophica 57 (1):53-90.
    Like the information patterns that evolve through. biological processes, mental representations or memes evolve through adaptive exploration and transformation of an information space through variation, selection, and transmission. However since memes do not contain instructions for their replication our brains do it for them, strategically, guided by a fitness landscape that reflects both internal drives and a worldview that forms through meme assimilation. This paper presents a tentative model for how an individual becomes a meme evolving agent via the emergence (...)
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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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  • Unification and Convergence in Archaeological Explanation: The Agricultural “Wave-of-Advance” and the Origins of Indo-European Languages.Alison Wylie - 1996 - Southern Journal of Philosophy 34 (S1):1-30.
    Given the diversity of explanatory practices that is typical of the sciences a healthy pluralism would seem to be desirable where theories of explanation are concerned. Nevertheless, I argue that explanations are only unifying in Kitcher's unificationist sense if they are backed by the kind of understanding of underlying mechanisms, dispositions, constitutions, and dependencies that is central to a causalist account of explanation. This case can be made through analysis of Kitcher's account of the conditions under which apparent improvements in (...)
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  • The re-emergence of emergence, and the causal role of synergy in emergent evolution.Peter A. Corning - 2012 - Synthese 185 (2):295-317.
    Despite its current popularity, “emergence” is a concept with a venerable history and an elusive, ambiguous standing in contemporary evolutionary theory. This paper briefly recounts the history of the term and details some of its current usages. Not only are there radically varying interpretations about how to define emergence but “reductionist” and “holistic” theorists hold very different views about the issue of causation. However, these two seemingly polar positions are not irreconcilable. Reductionism, or detailed analysis of the parts and their (...)
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  • What, if anything, is an evolutionary novelty?Massimo Pigliucci - 2008 - Philosophy of Science 75 (5):887-898.
    The idea of phenotypic novelty appears throughout the evolutionary literature. Novelties have been defined so broadly as to make the term meaningless and so narrowly as to apply only to a limited number of spectacular structures. Here I examine some of the available definitions of phenotypic novelty and argue that the modern synthesis is ill equipped at explaining novelties. I then discuss three frameworks that may help biologists get a better insight of how novelties arise during evolution but warn that (...)
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  • Towards a field theory of behaviour.Koenraad Kortmulder - 1994 - Acta Biotheoretica 42 (4):281-293.
    Classical ethology, with its emphasis on separability of parts, has largely failed to do justice to the wholeness of the individual animal, to the integrity of group behaviour and to the continuity between observable behaviour and consciousness. Field theory has potentialities to do better, as illustrated in this paper with reference to morphogenetic and behavioural fields. A behavioural domain is delineated — playlike behaviour — where field theory is particularly relevant. It is shown that the concept of symmetry can suggest (...)
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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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  • Philosophy of Science, Network Theory, and Conceptual Change: Paradigm Shifts as Information Cascades.Patrick Grim, Joshua Kavner, Lloyd Shatkin & Manjari Trivedi - forthcoming - In Euel Elliot & L. Douglas Kiel (eds.), Complex Systems in the Social and Behavioral Sciences: Theory, Method, and Application. University of Michigan Press.
    Philosophers have long tried to understand scientific change in terms of a dynamics of revision within ‘theoretical frameworks,’ ‘disciplinary matrices,’ ‘scientific paradigms’ or ‘conceptual schemes.’ No-one, however, has made clear precisely how one might model such a conceptual scheme, nor what form change dynamics within such a structure could be expected to take. In this paper we take some first steps in applying network theory to the issue, modeling conceptual schemes as simple networks and the dynamics of change as cascades (...)
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  • Resonance and radical embodiment.Vicente Raja - 2020 - Synthese 199 (Suppl 1):113-141.
    One big challenge faced by cognitive science is the development of a unified theory that integrates disparate scales of analysis of cognitive phenomena. In this paper, I offer a unified framework that provides a way to integrate neural and behavioral scales of analysis of cognitive phenomena—typically addressed by neuroscience and experimental psychology, respectively. The framework is based on the concept of resonance originated in ecological psychology and aims to be the foundation for a unified theory for radical embodiment; that is, (...)
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  • Inter-Trial Correlations in Predictive-Saccade Endpoints: Fractal Scaling Reflects Differential Control along Task-Relevant and Orthogonal Directions.Pamela Federighi, Aaron L. Wong & Mark Shelhamer - 2017 - Frontiers in Human Neuroscience 11.
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  • Vasculoid: A Personal Nanomedical Appliance to Replace Human Blood.Robert A. Freitas Jr & Christopher J. Phoenix - 2002 - Journal of Evolution and Technology 11 (1).
    The vasculoid is a single; complex; multisegmented nanotechnological medical robotic system capable of duplicating all essential thermal and biochemical transport functions of the blood; including circulation of respiratory gases; glucose; hormones; cytokines; waste products; and cellular components. This nanorobotic system; a very aggressive and physiologically intrusive macroscale nanomedical device comprised of ~500 trillion stored or active individual nanorobots; weighs ~2 kg and consumes from 30-200 watts of power in the basic human model; depending on activity level. The vasculoid system conforms (...)
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  • Review of Minds, Causes, and Mechanisms. [REVIEW]Guy Rohrbaugh - 2003 - Philosophical Psychology 16.
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  • Categorization for Faces and Tools—Two Classes of Objects Shaped by Different Experience—Differs in Processing Timing, Brain Areas Involved, and Repetition Effects.Vladimir Kozunov, Anastasia Nikolaeva & Tatiana A. Stroganova - 2018 - Frontiers in Human Neuroscience 11.
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  • Three Generations of Complexity Theories: Nuances and ambiguities.Michel Alhadeff-Jones - 2008 - Educational Philosophy and Theory 40 (1):66-82.
    The contemporary use of the term ‘complexity’ frequently indicates that it is considered a unified concept. This may lead to a neglect of the range of different theories that deal with the implications related to the notion of complexity. This paper, integrating both the English and the Latin traditions of research associated with this notion, suggests a more nuanced use of the term, thereby avoiding simplification of the concept to some of its dominant expressions only. The paper further explores the (...)
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  • Cognitive emissions of 1/f noise.David L. Gilden - 2001 - Psychological Review 108 (1):33-56.
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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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  • Against Smallism And Localism.Guilherme Sanches de Oliveira & Anthony Chemero - 2015 - Studies in Logic, Grammar and Rhetoric 41 (1):9-23.
    The question whether cognition ever extends beyond the head is widely considered to be an empirical issue. And yet, all the evidence amassed in recent years has not sufficed to settle the debate. In this paper we suggest that this is because the debate is not really an empirical one, but rather a matter of definition. Traditional cognitive science can be identified as wedded to the ideals of “smallism” and “localism”. We criticize these ideals and articulate a case in favor (...)
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  • Dangerous Habits: Examining the Philosophical Baggage of Biological Research.Massimo Pigliucci - 2003 - Dissertation, The University of Tennessee
    Science is about conceptualizing the natural world in a way that can be understood by human beings while at the same time reflecting as much as possible what we can empirically infer about how the world actually is. Among the crucial tools that allow scientists to formulate hypotheses and to contribute to a progressive understanding of nature are the use of imagery and metaphors, on the one hand, and the ability to assume certain starting points on which to build new (...)
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  • Artificial Abduction: A Cumulative Evolutionary Process.Artemis Moroni, Jônatas Manzolli & Fernando J. Von Zuben - 2005 - Semiotica 2005 (153 - 1/4):343-362.
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  • The ethics of biological control: Understanding the moral implications of our most powerful ecological technology.Jeffrey A. Lockwood - 1996 - Agriculture and Human Values 13 (1):2-19.
    A system of environmental ethics recently developed by Lawrence Johnson may be used to analyze the moral implications of biological control. According to this system, entities are morally relevant when they possess well-being interests (i.e., functions or processes that can be better or worse in so far as the entity is concerned). In this formulation of ethical analysis, species and ecosystems are morally relevant because they are not simply aggregates of individuals, so their processes, properties, and well-being interests are not (...)
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  • ‘It just doesn't seem to fit’. Environmental illness, corporeal chaos and the body as a complex system.Fiona J. Coyle - 2009 - Journal of Evaluation in Clinical Practice 15 (4):770-775.
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  • Niveaux d'organisation, changements de niveaux, finalité.Francis Bailly - 1991 - Philosophica 47.
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  • Unification and Convergence in Archaeological Explanation: The Agricultural “Wave‐of‐Advance” and the Origins of Indo‐European Languages.Alison Wylie - 1996 - Southern Journal of Philosophy 34 (S1):1-30.
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  • Aspects of Complexity in Life and Science.Claus Emmeche - 1997 - Philosophica 59 (1).
    A short review of complexity research from the perspective of history and philosophy of biology is presented. Complexity and its emergence has scientific and metaphysical meanings. From its beginning, biology was a science of complex systems, but with the advent of electronic computing and the possibility of simulating mathematical models of complicated systems, new intuitions of complexity emerged, together with attempts to devise quantitative measures of complexity. But can we quantify the complex?
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  • The fundamentals of vegetation change - complexity rules.M. Anand - 2000 - Acta Biotheoretica 48 (1):1-14.
    Long-term vegetation dynamics based on paleo-pollen data display transient behaviour, often alternating in phase between predominant determinism and predominant 'turbulence', when viewed as a trajectory in a multivariate phase space. Given this, the metaphor of vegetation dynamics as a 'flowing stream', first introduced by Cooper in his classic 1926 paper entitled "The fundamentals of vegetation change", is re-examined and revealed to be not only useful, but strikingly realistic. Vegetation dynamic theory is reviewed and classic theories are found to reflect reality (...)
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