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  1. Two concepts of constraint: Adaptationism and the challenge from developmental biology.Ron Amundson - 1994 - Philosophy of Science 61 (4):556-578.
    The so-called "adaptationism" of mainstream evolutionary biology has been criticized from a variety of sources. One, which has received relatively little philosophical attention, is developmental biology. Developmental constraints are said to be neglected by adaptationists. This paper explores the divergent methodological and explanatory interests that separate mainstream evolutionary biology from its embryological and developmental critics. It will focus on the concept of constraint itself; even this central concept is understood differently by the two sides of the dispute.
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  • (1 other version)From a logical point of view.Willard Van Orman Quine - 1953 - Cambridge,: Harvard University Press.
    Several of these essays have been printed whole in journals; others are in varying degrees new. Two main themes run through them. One is the problem of meaning, particularly as involved in the notion of an analytic statement. The other is the notion of ontological, commitment, particularly as involved in the problem of universals.
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  • The Dialectical Biologist.Philip Kitcher, Richard Levins & Richard Lewontin - 1989 - Philosophical Review 98 (2):262.
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  • Dynamics in Action: Intentional Behavior as a Complex System. [REVIEW]Muhammad Ali Khalidi & Alicia Juarrero - 2001 - Philosophical Review 110 (3):469.
    Action theory has given rise to some perplexing puzzles in the past half century. The most prominent one can be summarized as follows: What distinguishes intentional from unintentional acts? Thanks to the ingenuity of philosophers and their thought experiments, we know better than to assume that the difference lies in the mere presence of an intention, or in its causal efficacy in generating the action. The intention might be present and may also cause the intended behavior, yet the behavior may (...)
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  • The triple helix: gene, organism, and environment.Richard C. Lewontin - 2000 - Cambridge, Mass.: Harvard University Press. Edited by Richard C. Lewontin.
    One of our most brilliant evolutionary biologists, Richard Lewontin has also been a leading critic of those--scientists and non-scientists alike--who would misuse the science to which he has contributed so much. In The Triple Helix, Lewontin the scientist and Lewontin the critic come together to provide a concise, accessible account of what his work has taught him about biology and about its relevance to human affairs. In the process, he exposes some of the common and troubling misconceptions that misdirect and (...)
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  • (5 other versions)Critique of judgment.Immanuel Kant - 1790 - New York: Barnes & Noble. Edited by J. H. Bernard.
    Kant's attempt to establish the principles behind the faculty of judgment remains one of the most important works on human reason.
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  • Complexity: life at the edge of chaos.Roger Lewin - 1993 - New York: Maxwell Macmillan International.
    "Put together one of the world's best science writers with one of the universe's most fascinating subjects and you are bound to produce a wonderful book.... The subject of complexity is vital and controversial. This book is important and beautifully done."--Stephen Jay Gould "[Complexity] is that curious mix of complication and organization that we find throughout the natural and human worlds: the workings of a cell, the structure of the brain, the behavior of the stock market, the shifts of political (...)
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  • Evolution as entropy: toward a unified theory of biology.D. R. Brooks - 1988 - Chicago: University of Chicago Press. Edited by E. O. Wiley.
    "By combining recent advances in the physical sciences with some of the novel ideas, techniques, and data of modern biology, this book attempts to achieve a new and different kind of evolutionary synthesis. I found it to be challenging, fascinating, infuriating, and provocative, but certainly not dull."--James H, Brown, University of New Mexico "This book is unquestionably mandatory reading not only for every living biologist but for generations of biologists to come."--Jack P. Hailman, Animal Behaviour , review of the first (...)
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  • Order out of chaos: man's new dialogue with nature.I. Prigogine - 1984 - Boulder, CO: Random House. Edited by Isabelle Stengers & I. Prigogine.
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  • At Home in the Universe: The Search for Laws of Self-organization and Complexity.Stuart Kauffman & Stuart A. Kauffman - 1995 - Oxford University Press USA.
    At Home in the Universe presents and extends the intellectual core ofKauffman's earlier book The Origins of Order (OUP 1993) for any intelligentgeneral reader can understand and appreciate. The reader is very effectivelyinvited into Kauffman's vision and thought processes, in one of the moreexhilarating and important books of popular science.
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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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  • Complexification: Explaining a Paradoxical World Through the Science of Surprise.John L. Casti - 1994 - New York: Harper Collins.
    A renowned mathematician shows how the "science of surprise" can help explain some of the most inexplicable phenomena in science, nature, the arts, the economy, and more.
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  • Principles of Biological Autonomy.Francisco J. Varela - 1979 - North-Holland.
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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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  • Complexly organised dynamical systems.John D. Collier & Clifford A. Hooker - 1999 - Open Systems and Information Dynamics 6 (3):241–302.
    Both natural and engineered systems are fundamentally dynamical in nature: their defining properties are causal, and their functional capacities are causally grounded. Among dynamical systems, an interesting and important sub-class are those that are autonomous, anticipative and adaptive (AAA). Living systems, intelligent systems, sophisticated robots and social systems belong to this class, and the use of these terms has recently spread rapidly through the scientific literature. Central to understanding these dynamical systems is their complicated organisation and their consequent capacities for (...)
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  • Autonomy in anticipatory systems: Significance for functionality, intentionality and meaning.John Collier - unknown
    Abstract Many anticipatory systems cannot in themselves act meaningfully or represent intentionally. This stems largely from the derivative nature of their functionality. All current artificial control systems, and many living systems such as organs and cellular parts of organisms derive any intentionality they might have from their designers or possessors. Derivative functionality requires reference to some external autonomously functional system, and derivative intentionality similarly requires reference to an external autonomous intentional system. The importance of autonomy can be summed up in (...)
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  • Competing models of stability in complex, evolving systems: Kauffman vs. Simon.Tadeusz Wieslaw Zawidzki - 1998 - Biology and Philosophy 13 (4):541-554.
    I criticize Herbert Simon 's argument for the claim that complex natural systems must constitute decomposable, mereological or functional hierarchies. The argument depends on certain assumptions about the requirements for the successful evolution of complex systems, most importantly, the existence of stable, intermediate stages in evolution. Simon offers an abstract model of any process that succeeds in meeting these requirements. This model necessarily involves construction through a decomposable hierarchy, and thus suggests that any complex, natural, i.e., evolved, system is constituted (...)
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  • Genic representation: Reconciling content and causal complexity.M. Wheeler & A. Clark - 1999 - British Journal for the Philosophy of Science 50 (1):103-135.
    Some recent cognitive-scientific research suggests that a considerable amount of intelligent action is generated not by the systematic activity of internal representations, but by complex interactions involving neural, bodily, and environmental factors. Following an analysis of this threat to representational explanation, we pursue an analogy between the role of genes in the production of biological form and the role of neural states in the production of behaviour, in order to develop a notion of genic representation. In both cases an appeal (...)
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  • Should environmentalists be organicists?Bryan G. Norton - 1993 - Topoi 12 (1):21-30.
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  • Functional complexity in organisms: Parts as proxies. [REVIEW]Daniel W. McShea - 2000 - Biology and Philosophy 15 (5):641-668.
    The functional complexity, or the number of functions, of organisms hasfigured prominently in certain theoretical and empirical work inevolutionary biology. Large-scale trends in functional complexity andcorrelations between functional complexity and other variables, such assize, have been proposed. However, the notion of number of functions hasalso been operationally intractable, in that no method has been developedfor counting functions in an organism in a systematic and reliable way.Thus, studies have had to rely on the largely unsupported assumption thatnumber of functions can be (...)
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  • Global idealism/local materialism.Koichiro Matsuno & Stanley N. Salthe - 1995 - Biology and Philosophy 10 (3):309-337.
    We are concerned with two modes of describing the dynamics of natural systems. Global descriptions require simultaneous global coordination of all dynamical operations. Global dynamics, including mechanics, remain invariant in the absence of external perturbation. But, failing impossible global coordination, dynamical operations could actually become coordinated only locally. In local records, as in global ones, the law of the excluded middle would be strictly observed, but without global coordination it could only be fullfilled sequentially by passing causative factors forward onto (...)
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  • A clash of paradigms or the sound of one hand clapping.David L. Hull - 1998 - Biology and Philosophy 13 (4):587-595.
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  • (1 other version)Developmental systems and evolutionary explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • (1 other version)Developmental Systems and Evolutionary Explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • (1 other version)Emergence or Reduction?: Essays on the Prospects of Nonreductive Physicalism.Ansgar Beckermann, Hans Flohr & Jaegwon Kim (eds.) - 1992 - New York: Walter de Gruyter.
    No detailed description available for "Emergence or Reduction?".
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  • Cycles of Contingency: Developmental Systems and Evolution.Susan Oyama, Paul Griffiths & Russell D. Gray (eds.) - 2001 - MIT Press.
    The nature/nurture debate is not dead. Dichotomous views of development still underlie many fundamental debates in the biological and social sciences. Developmental systems theory offers a new conceptual framework with which to resolve such debates. DST views ontogeny as contingent cycles of interaction among a varied set of developmental resources, no one of which controls the process. These factors include DNA, cellular and organismic structure, and social and ecological interactions. DST has excited interest from a wide range of researchers, from (...)
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  • Entre le cristal et la fumée: essai sur l'organisation du vivant.Henri Atlan - 1979 - Paris: Éditions du Seuil.
    La vie n'a pas fini de nous surprendre. Réduite à des interactions moléculaires mais étendue à des lois d'organisation inattendues, elle est aujourd'hui observée dans des systèmes vivants dont la logique interpelle et renouvelle la pensée rationnelle. Qu'est-ce que l'organisé? L'auto-organisé? Pourquoi et comment percevons-nous des ordres dans la nature, d'où viennent les significations que nous leur attribuons? Notre psychisme, nos sociétés, objets de sciences au statut toujours aussi mal assuré, nous font penser l'organisation comme une création ininterrompue de nouveau, (...)
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  • The Major Transitions in Evolution.John Maynard Smith & Eörs Szathmáry - 1996 - Journal of the History of Biology 29 (1):151-152.
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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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  • 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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  • The Triple Helix: Gene, Organism, and Environment.Richard Lewontin - 2000 - Journal of the History of Biology 33 (3):611-612.
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  • Climbing Mount Improbable.Richard Dawkins - 1999 - Environmental Values 8 (1):114-116.
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  • Complexity in Evolution: a Skeptical Assesment.Daniel W. Mcshea - 1997 - Philosophica 59 (1).
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  • The Architecture of Complexity.Herbert A. Simon - 1962 - Proceedings of the American Philosophical Society 106.
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  • Experimental Epistemology: Background and Future.Francisco Varela - unknown - Eidos: The Canadian Graduate Journal of Philosophy 5.
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  • Cybernetics.N. Wiener - 1952 - Scientia 46 (87):234.
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  • Organisers and Genes.C. H. Waddington - 1941 - Philosophy of Science 8 (3):463-463.
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  • Psychic closure: A prerequisite for the recognition of the sign-function?Gertrudis van de Vijver - 1999 - Semiotica 127 (1-4):613-630.
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  • Development and Evolution: Complexity and Change in Biology.Stanley N. Salthe - 1993 - MIT Press.
    Development and Evolution surveys and illuminates the key themes of rapidly changing fields and areas of controversy that the redefining the theory and philosophy of biology. It continues Stanley Salthe's investigation of evolutionary theory, begun in his influential book Evolving Hierarchical Systems, while negating the implicit philosophical mechanisms of much of that work. Here Salthe attempts to reinitiate a theory of biology from the perspective of development rather than from that of evolution, recognizing the applicability of general systems thinking to (...)
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  • Epigenetic Inheritance and Evolution: The Lamarckian Dimension.Eva Jablonka & Marion J. Lamb - 1995 - Oxford University Press UK.
    '...a challenging and useful book, both because it provokes a careful scrutiny of one's own basic ideas regarding evolutionary theory, and because it cuts across so many biological disciplines.' -The Quarterly Review of Biology 'In my view, this work exemplifies Theoretical Biology at its best...here is rampant speculation that is consistently based on cautious reasoning from the available data. Even more refreshing is the absence of sloganeering, grandstanding, and 'isms'.' -Biology and Philosophy 'Epigenetics is fundamental to understanding both development and (...)
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  • Entropy and Nonsense: A Review of Daniel R. Brooks and E. O. Wiley, "Evolution as Entropy". [REVIEW]Harold Morowitz - 1986 - Biology and Philosophy 1 (4):473.
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  • Refiguring Life: Metaphors of Twentieth-Century Biology.Evelyn Fox Keller - 1996 - Journal of the History of Biology 29 (2):312-313.
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  • Bucking the system. Review of Foundations of complex-system theories in economics, evolutionary biology, and statistical physics, by Auyang SY (1998, Cambridge University Press, New York).S. Y. Auyang - 2000 - Metascience 9 (1):39-44.
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  • Epistemic Implications of two biological Concepts.Srdjan Lelas - 1986 - Philosophica 37 (1):127-150.
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  • Bucking the system.Evelyn Fox Keller, Jeremy C. Ahouse, Michael Redhead, David Colander & Stephen H. Kellert - 2000 - Metascience 9 (1):39-72.
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  • Emergence.John H. Holland - 1997 - Philosophica 59 (1).
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  • Darwinism and Developmental Systems.Paul E. Griffiths & Russell D. Gray - 2001 - In Susan Oyama, Paul Griffiths & Russell D. Gray (eds.), Cycles of Contingency: Developmental Systems and Evolution. MIT Press. pp. 195-218.
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  • Darwinism Evolving. System Dynamics and the Genealogy of Natural Selection.David J. Depew, Bruce H. Weber & Ernst Mayr - 1996 - History and Philosophy of the Life Sciences 18 (1):135.
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  • Technology and Complexity.Subrata Dasgup-ta - 1997 - Philosophica 59 (1).
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  • Supervenience and Reduction in Biological Hierarchies.John Collier - 1988 - Canadian Journal of Philosophy, Supplementary Volume 14:209-234.
    Supervenience is a relationship which has been used recently to explain the physical determination of biological phenomena despite resistance to reduction. Supervenience, however, is plagued by ambiguities which weaken its explanatory value and obscure some interesting aspects of reduction in biology. Although I suspect that similar considerations affect the use of supervenience in ethics and the philosophy of mind, I don’t intend anything I have to say here to apply outside of the physical and biological cases I consider.The main point (...)
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