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Auto-organización y autopoiesis

Diccionario Interdisciplinar Austral (2017)

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  1. Organisms, Machines, and Thunderstorms: A History of Self-Organization (I).Evelyn Fox Keller - 2008 - Historical Studies in the Natural Sciences 38 (1):45-75.
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  • Organisms, Machines, and Thunderstorms: A History of Self-Organization (II).Evelyn Fox Keller - 2009 - Historical Studies in the Natural Sciences 39 (1):1-31.
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  • Organisms or biological individuals? Combining physiological and evolutionary individuality.Thomas Pradeu - 2016 - Biology and Philosophy 31 (6):797-817.
    The definition of biological individuality is one of the most discussed topics in philosophy of biology, but current debate has focused almost exclusively on evolution-based accounts. Moreover, several participants in this debate consider the notions of a biological individual and an organism as equivalent. In this paper, I show that the debates would be considerably enriched and clarified if philosophers took into account two elements. First, physiological fields are crucial for the understanding of biological individuality. Second, the category of biological (...)
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  • Principles of Self-Organization: Transactions of the University of Illinois Symposium.H. Von Foerster & G. W. Zopf Jr, (eds.) - 1962 - Pergamon Press.
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  • The Wisdom of the Body: Rev. and Enl. Ed. [Illustr.].Walter Bradford Cannon - 1939 - Peter Smith.
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  • (2 other versions)The Phenomenon of Life: Toward a Philosophical Biology.Hans Jonas - 1966 - Les Etudes Philosophiques 22 (3):340-340.
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  • Investigations.Stuart A. Kauffman - 2000 - Oxford University Press.
    A fascinating exploration of the very essence of life itself sheds new light on the order and evolution in complex life systems and defines and explains autonomous agents and work within the contexts of thermodynamics and information theory, setting the stage for a dramatic technological revolution. 50,000 first printing.
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  • The Origins of Order: Self Organization and Selection in Evolution.Stuart A. Kauffman - 1993 - Oxford University Press.
    Stuart Kauffman here presents a brilliant new paradigm for evolutionary biology, one that extends the basic concepts of Darwinian evolution to accommodate recent findings and perspectives from the fields of biology, physics, chemistry and mathematics. The book drives to the heart of the exciting debate on the origins of life and maintenance of order in complex biological systems. It focuses on the concept of self-organization: the spontaneous emergence of order widely observed throughout nature. Kauffman here argues that self-organization plays an (...)
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  • Life Itself: A Comprehensive Inquiry Into the Nature, Origin, and Fabrication of Life.Robert Rosen - 2005 - Complexity in Ecological Systems.
    What is life? For four centuries, it has been believed that the only possible scientific approach to this question proceeds from the Cartesian metaphor -- organism as machine. Therefore, organisms are to be studied and characterized the same way "machines" are; the same way any inorganic system is. Robert Rosen argues that such a view is neither necessary nor sufficient to answer the question. He asserts that life is not a specialization of mechanism, but rather a sweeping generalization of it. (...)
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  • (1 other version)Dialektik der Natur.Friedrich Engels - 1951 - Berlin,: Dietz Verlag.
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  • Principles of Biological Autonomy.Francisco J. Varela - 1979 - North-Holland.
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  • What makes biological organisation teleological?Matteo Mossio & Leonardo Bich - 2017 - Synthese 194 (4):1089-1114.
    This paper argues that biological organisation can be legitimately conceived of as an intrinsically teleological causal regime. The core of the argument consists in establishing a connection between organisation and teleology through the concept of self-determination: biological organisation determines itself in the sense that the effects of its activity contribute to determine its own conditions of existence. We suggest that not any kind of circular regime realises self-determination, which should be specifically understood as self-constraint: in biological systems, in particular, self-constraint (...)
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  • A critique of cybernetics.Hans Jonas - 1953 - Social Research: An International Quarterly.
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  • The living system: determinism stratified.Paul A. Weiss - 1969 - In Arthur Koestler & John Raymond Smythies (eds.), Beyond reductionism: new perspectives in the life sciences. London,: Hutchinson. pp. 3--55.
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  • Organismo y organización en la biología teórica¿ Vuelta al organicismo.Arantza Etxeberria & Jon Umerez - 2006 - Ludus Vitalis 14 (26):3-38.
    ABSTRACT. This paper contemplates Organicism and its relation with molecular and evolutionary biology. We explore whether twentieth-first century biology is returning to positions held at the beginning of the twentieth century and then abandoned. The guiding line is a history of theoretical biology in which we distinguish three periods: 1. The 20s-30s, and the Theoretical Biology Club (Needham, Woodger, and Waddington, among others); 2. An intermediate period in the 60s-70s, in which, in spite of the eclosion of the molecular and (...)
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  • Biological Autonomy: A Philosophical and Theoretical Enquiry.Alvaro Moreno & Matteo Mossio - 2015 - Dordrecht: Springer. Edited by Matteo Mossio.
    Since Darwin, Biology has been framed on the idea of evolution by natural selection, which has profoundly influenced the scientific and philosophical comprehension of biological phenomena and of our place in Nature. This book argues that contemporary biology should progress towards and revolve around an even more fundamental idea, that of autonomy. Biological autonomy describes living organisms as organised systems, which are able to self-produce and self-maintain as integrated entities, to establish their own goals and norms, and to promote the (...)
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  • Natural sources of normativity.Wayne Christensen - 2012 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 43 (1):104-112.
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  • The Impact of the Paradigm of Complexity On the Foundational Frameworks of Biology and Cognitive Science.Alvaro Moreno - unknown
    According to the traditional nomological-deductive methodology of physics and chemistry [Hempel and Oppenheim, 1948], explaining a phenomenon means subsuming it under a law. Logic becomes then the glue of explanation and laws the primary explainers. Thus, the scientific study of a system would consist in the development of a logically sound model of it, once the relevant observables (state variables) are identified and the general laws governing their change (expressed as differential equations, state transition rules, maximization/minimization principles,. . . ) (...)
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  • Complex emergence and the living organization: an epistemological framework for biology.Leonardo Bich - 2012 - Synthese 185 (2):215-232.
    In this article an epistemological framework is proposed in order to integrate the emergentist thought with systemic studies on biological autonomy, which are focused on the role of organization. Particular attention will be paid to the role of the observer’s activity, especially: (a) the different operations he performs in order to identify the pertinent elements at each descriptive level, and (b) the relationships between the different models he builds from them. According to the approach sustained here, organization will be considered (...)
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  • An organizational account of biological functions.Matteo Mossio, Cristian Saborido & Alvaro Moreno - 2009 - British Journal for the Philosophy of Science 60 (4):813-841.
    In this paper, we develop an organizational account that defines biological functions as causal relations subject to closure in living systems, interpreted as the most typical example of organizationally closed and differentiated self-maintaining systems. We argue that this account adequately grounds the teleological and normative dimensions of functions in the current organization of a system, insofar as it provides an explanation for the existence of the function bearer and, at the same time, identifies in a non-arbitrary way the norms that (...)
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  • (2 other versions)The phenomenon of life: toward a philosophical biology.Hans Jonas - 1966 - Evanston, Ill.: Northwestern University Press.
    A classic of phenomenology and existentialism and arguably Jonas's greatest work, The Phenomenon of Life sets forth a systematic and comprehensive philosophy -- ...
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  • Life after Kant: Natural purposes and the autopoietic foundations of biological individuality. [REVIEW]Andreas Weber & Francisco J. Varela - 2002 - Phenomenology and the Cognitive Sciences 1 (2):97-125.
    This paper proposes a basic revision of the understanding of teleology in biological sciences. Since Kant, it has become customary to view purposiveness in organisms as a bias added by the observer; the recent notion of teleonomy expresses well this as-if character of natural purposes. In recent developments in science, however, notions such as self-organization (or complex systems) and the autopoiesis viewpoint, have displaced emergence and circular self-production as central features of life. Contrary to an often superficial reading, Kant gives (...)
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  • The Embodied Mind: Cognitive Science and Human Experience.Francisco J. Varela, Evan Thompson & Eleanor Rosch - 1991 - MIT Press.
    The Embodied Mind provides a unique, sophisticated treatment of the spontaneous and reflective dimension of human experience.
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  • Active matter, then and now.Evelyn Fox Keller - 2016 - History and Philosophy of the Life Sciences 38 (3):11.
    Historically, living was divided from dead, inert matter by its autonomous activity. Today, a number of materials not themselves alive are characterized as having inherent activity, and this activity has become the subject of a hot new field of physics, “Active Matter”, or “Soft matter become alive.” For active matter scientists, the relation of physics to biology is guaranteed in one direction by the assertion that the cell is a material, and hence its study can be considered a branch of (...)
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  • Systems, Autopoietic.Leonardo Bich & Arantza Etxeberria - 2013 - In Dubitzsky, Wolkenhauer, Cho & Yokota (eds.), Encyclopedia of Systems Biology. Springer. pp. 2110-2113.
    Definition The authors’ definition of the autopoietic system has evolved through the years. One of them states that an autopoietic system is organized (defined as a unity) as a network of processes of production (transformation and destruction) of components that produces the components which: (1) through their interactions and transformations regenerate and realize the network of processes (relations) that produced them; and (2) constitute it (the machine) as a concrete unity in the space in which they exist by specifying the (...)
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  • (2 other versions)The Phenomenon of life. Toward a philosophical biology.Hans Jonas & Lawrence Vogel - 1966 - Revue Philosophique de la France Et de l'Etranger 191 (3):387-388.
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  • Autopoiesis, Autonomy and Organizational Biology: Critical Remarks on “Life After Ashby”.Leonardo Bich & Argyris Arnellos - 2012 - Cybernetics and Human Knowing 19 (4):75-103.
    In this paper we criticize the “Ashbyan interpretation” (Froese & Stewart, 2010) of autopoietic theory by showing that Ashby’s framework and the autopoietic one are based on distinct, often incompatible, assumptions and that they aim at addressing different issues. We also suggest that in order to better understand autopoiesis and its implications, a different and wider set of theoretical contributions, developed previously or at the time autopoiesis was formulated, needs to be taken into consideration: among the others, the works of (...)
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  • Introduction À l'Étude de la Médecine Expérimentale.Claude Bernard - 1865 - Librairie Joseph Gilbert.
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  • La nouvelle alliance: métamorphose de la science.Ilya Prigogine & Isabelle Stengers - 1979 - Editions Gallimard.
    La science classique s'est trouvée associée à un désenchantement du monde. C'est la leçon que Jacques Monod entendait tirer des progrès de la biologie : "L'ancienne alliance est rompue. L'homme sait enfin qu'il est seul dans l'immensité indifférente de l'Univers d'où il a émergé par hasard." Notre science n'est plus ce savoir classique, nous pouvons déchiffrer le récit d'une "nouvelle alliance". Loin de l'exclure du monde qu'elle décrit, la science retrouve comme un problème l'appartenance de l'homme à ce monde. Les (...)
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  • (1 other version)The Spandrels of San Marco and the Panglossian Paradigm: A Critique of the Adaptationist Programme.S. J. Gould & R. C. Lewontin - 1994 - In Elliott Sober (ed.), Conceptual Issues in Evolutionary Biology. The Mit Press. Bradford Books. pp. 73-90.
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  • Systems Biology: at last an integrative wet and dry Biology.Frank J. Bruggeman - 2007 - Biological Theory 2 (2):183-188.
    The progress of the molecular biosciences has been so enormous that a discipline studying how cellular functioning emerges out of the behaviors of their molecular constituents has become reality. Systems biology studies cells as spatiotemporal networks of interacting molecules using an integrative approach of theory , experimental biology , and quantitative network-wide analytical measurement . Its aim is to understand how molecules jointly bring about life. Systems biology is rapidly discovering principles governing the functioning of molecular networks and methods to (...)
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  • The Process Dynamics of Normative Function.Wayne David Christensen & Mark H. Bickhard - 2002 - The Monist 85 (1):3-28.
    Outlines the etiological theory of normative functionality. Analysis of the autonomous system; Function of systems-oriented approaches; Specifications of system identity.
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  • Is weak emergence just in the mind?Mark A. Bedau - 2008 - Minds and Machines 18 (4):443-459.
    Weak emergence is the view that a system’s macro properties can be explained by its micro properties but only in an especially complicated way. This paper explains a version of weak emergence based on the notion of explanatory incompressibility and “crawling the causal web.” Then it examines three reasons why weak emergence might be thought to be just in the mind. The first reason is based on contrasting mere epistemological emergence with a form of ontological emergence that involves irreducible downward (...)
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  • Mechanism and biological explanation.Francisco Varela & Humberto Maturana - 1972 - Philosophy of Science 39 (3):378-382.
    Machines and Biology have been, since antiquity, closely related. From the zoological figures present in astronomical simulacra, through renaissance mechanical imitations of animals, through Decartes' wind pipe nerves, to present day discussions on the computer and the brain, runs a continuous thread. In fact, the very name of mechanism for an attitude of inquiry throughout the history of Biology reveals this at a philosophical level. More often than not, mechanism is mentioned in opposition to vitalism, as an assertion of the (...)
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  • Behavior, purpose and teleology.Arturo Rosenblueth, Norbert Wiener & Julian Bigelow - 1943 - Philosophy of Science 10 (1):18-24.
    This essay has two goals. The first is to define the behavioristic study of natural events and to classify behavior. The second is to stress the importance of the concept of purpose.Given any object, relatively abstracted from its surroundings for study, the behavioristic approach consists in the examination of the output of the object and of the relations of this output to the input. By output is meant any change produced in the surroundings by the object. By input, conversely, is (...)
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  • How properties emerge.Paul Humphreys - 1997 - Philosophy of Science 64 (1):1-17.
    A framework for representing a specific kind of emergent property instance is given. A solution to a generalized version of the exclusion argument is then provided and it is shown that upwards and downwards causation is unproblematical for that kind of emergence. One real example of this kind of emergence is briefly described and the suggestion made that emergence may be more common than current opinions allow.
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  • Ontology, matter and emergence.Michel Bitbol - 2007 - Phenomenology and the Cognitive Sciences 6 (3):293-307.
    “Ontological emergence” of inherent high-level properties with causal powers is witnessed nowhere. A non-substantialist conception of emergence works much better. It allows downward causation, provided our concept of causality is transformed accordingly.
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  • Il concetto di “ milieu intérieur”: ruolo e implicazioni teoriche in un approccio sistemico allo studio del vivente.Leonardo Bich - 2012 - In Cianci Eloisa (ed.), Quaderni del CERCO. Epistemologie in Dialogo? Contesti e costruzioni di conoscenze. Guaraldi. pp. 179-210.
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  • La nouvelle alliance, Métamorphoses de la science.I. Prigogine & I. Stengers - 1980 - Revue Philosophique de la France Et de l'Etranger 170 (4):485-488.
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  • Georges Canguilhem - La Connaissance de la Vie.Georges Canguilhem - 1965 - Librarie Philosophique J. Vrin.
    La vie est formation de formes, la connaissance est analyse des matieres informees. Les sept etudes reunies par Canguilhem dans ce volume temoignent de cette inspiration commune: l'idee d'une irreductibilite de la vie a une serie d'analyses ou de divisions des formes vitales. La specificite du vivant engage au contraire une vision de l'objet biologique qui depasse la comprehension mecaniste des phenomenes physiques. Concue comme un approfondissement de divers enjeux conceptuels en philosophie et en histoire des sciences, La connaissance de (...)
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  • Auto-organisation, autonomie et identité.Alvaro Moreno - 2004 - Revue Internationale de Philosophie 2 (2):135-150.
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  • The Basic Ideas of Biology.C. H. Waddington - 1968 - Biological Theory 3 (3):238-253.
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  • Dialektik der Natur.Friedrich Engels - 1934 - Philosophy of Science 1 (1):122-123.
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  • (2 other versions)The phenomenon of life, toward a philosophical biology.Hans Jonas - 1966 - Revue Philosophique de la France Et de l'Etranger 160:494-494.
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  • Leçons Sur les Phénomènes de la Vie Communs aux Animaux Et aux Végétaux.Claude Bernard - 1966 - Vrin.
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