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Punctuated Equilibria: An Alternative to Phyletic Gradualism

In Thomas J. M. Schopf (ed.), Models in Paleobiology. Freeman Cooper. pp. 82-115 (1972)

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  1. Die Wurzeln der Idiographischen Paläontologie: Karl Alfred von Zittels Praxis und sein Begriff des FossilsThe Roots of Idiographic Paleontology: Karl Alfred von Zittel’s Methodology and Conception of the Fossil Record.Marco Tamborini - 2015 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 23 (3-4):117-142.
    This paper examines Karl Alfred von Zittel’s practice in order to uncover the roots of so-called idiographic paleontology. The great American paleontologist Stephen Jay Gould (1941–2002) defined the discipline of idiographic paleontology as illustration and description of the morphological features of extinct species. However, this approach does not investigate macroevolutionary patterns and processes. On the contrary, the paleobiological revolution of the 1970s implemented an epistemic methodology that illustrates macrovelutionary patterns and laws by combining idiographic data with a nomothetic form of (...)
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  • The Search for a Macroevolutionary Theory in German Paleontology.Wolf-Ernst Reif - 1986 - Journal of the History of Biology 19 (1):79-130.
    Six schools of thought can be detected in the development of evolutionary theory in German paleontology between 1859 and World War II. Most paleontologists were hardly affected in their research by Darwin's Origin of Species. The traditionalists accepted evolution within lower taxa but not for organisms in general. They also rejected Darwin's theory of selection. The early Darwinians accepted Darwin's theory of transmutation and theory of selection as axioms and applied them fruitfully to the fossil record, thereby laying the foundation (...)
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  • ‘On the Different Ways of ‘‘Doing Theory’’ in Biology‘.Massimo Pigliucci - 2013 - Biological Theory 7 (4): 287-297.
    ‘‘Theoretical biology’’ is a surprisingly heter- ogeneous field, partly because it encompasses ‘‘doing the- ory’’ across disciplines as diverse as molecular biology, systematics, ecology, and evolutionary biology. Moreover, it is done in a stunning variety of different ways, using anything from formal analytical models to computer sim- ulations, from graphic representations to verbal arguments. In this essay I survey a number of aspects of what it means to do theoretical biology, and how they compare with the allegedly much more restricted (...)
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  • Neanderthals in Plato's Cave - A Tribute to Lucian Blaga.André Poenaru - unknown
    Following Michael S. Jones’ call for articles showing the contemporary value of the great 20th century Romanian philosopher Lucian Blaga in various spheres of expertise, I have immediately thought of George F. Steiner’s recently published book, Neanderthals in Plato’s Cave. The evolutionary model forwarded by Steiner draws heavily on philosophical insights provided by Blaga and, although the volume was written for a scientifically-minded public, the author has adopted, updated and expanded some of Blaga’s anthropological perspectives. In our e-mail correspondence, Steiner (...)
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  • A conceptual taxonomy of adaptation in evolutionary biology.Emanuele Serrelli & Francesca Micol Rossi - manuscript
    The concept of adaptation is employed in many fields such as biology, psychology, cognitive sciences, robotics, social sciences, even literacy and art,1 and its meaning varies quite evidently according to the particular research context in which it is applied. We expect to find a particularly rich catalogue of meanings within evolutionary biology, where adaptation has held a particularly central role since Darwin’s The Origin of Species (1859) throughout important epistemological shifts and scientific findings that enriched and diversified the concept. Accordingly, (...)
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  • From Developmental Constraint to Evolvability: How Concepts Figure in Explanation and Disciplinary Identity.Ingo Brigandt - 2015 - In Alan C. Love (ed.), Conceptual Change in Biology: Scientific and Philosophical Perspectives on Evolution and Development. Berlin: Springer Verlag, Boston Studies in the Philosophy of Science. pp. 305-325.
    The concept of developmental constraint was at the heart of developmental approaches to evolution of the 1980s. While this idea was widely used to criticize neo-Darwinian evolutionary theory, critique does not yield an alternative framework that offers evolutionary explanations. In current Evo-devo the concept of constraint is of minor importance, whereas notions as evolvability are at the center of attention. The latter clearly defines an explanatory agenda for evolutionary research, so that one could view the historical shift from ‘developmental constraint’ (...)
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  • Conceptual change and evolutionary developmental biology.A. C. Love - 2015 - In Alan C. Love (ed.), Conceptual Change in Biology: Scientific and Philosophical Perspectives on Evolution and Development. Berlin: Springer Verlag, Boston Studies in the Philosophy of Science. pp. 1-54.
    The 1981 Dahlem conference was a catalyst for contemporary evolutionary developmental biology (Evo-devo). This introductory chapter rehearses some of the details of the history surrounding the original conference and its associated edited volume, explicates the philosophical problem of conceptual change that provided the rationale for a workshop devoted to evaluating the epistemic revisions and transformations that occurred in the interim, explores conceptual change with respect to the concept of evolutionary novelty, and highlights some of the themes and patterns in the (...)
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  • Evo-Devo as a Trading Zone.Rasmus Grønfeldt Winther - 2015 - In Alan C. Love (ed.), Conceptual Change in Biology: Scientific and Philosophical Perspectives on Evolution and Development. Berlin: Springer Verlag, Boston Studies in the Philosophy of Science.
    Evo-Devo exhibits a plurality of scientific “cultures” of practice and theory. When are the cultures acting—individually or collectively—in ways that actually move research forward, empirically, theoretically, and ethically? When do they become imperialistic, in the sense of excluding and subordinating other cultures? This chapter identifies six cultures – three /styles/ (mathematical modeling, mechanism, and history) and three /paradigms/ (adaptationism, structuralism, and cladism). The key assumptions standing behind, under, or within each of these cultures are explored. Characterizing the internal structure of (...)
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  • Pattern similarity in biological, linguistic, and sociocultural evolution.Nathalie Gontier - 2018 - In In Cuskley, C., Flaherty, M., Little, H., McCrohon, L., Ravignani, A. & Verhoef, T. (Eds.): The Evolution of Language: Proceedings of the 12th International Conference (EVOLANGXII).
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  • Population thinking vs. essentialism in biology and evolutionary economics.George Liagouras - 2017 - In Evolutionary Political Economy in Action. A Cyprus Symposium, Routledge. London & New York: pp. 36-53.
    The standard perception of the dichotomy between population thinking and essentialism (typological thinking) in evolutionary economics descends from the golden age of the neo-Darwinian Synthesis. Over the last few decades the received view on population thinking has been seriously challenged in biology and its philosophy. First, the strong version of population thinking that banishes essentialism witnessed important tensions stemming from the ontological status of species. These tensions have been amplified by the demise of positivism and the rise of a new (...)
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  • When does the intentional stance work?Daniel C. Dennett - 1985 - Behavioral and Brain Sciences 8 (4):763-766.
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  • Consequence contingencies and provenance partitions.Juan D. Delius - 1984 - Behavioral and Brain Sciences 7 (4):685-685.
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  • A comparison of two models of scientific progress.Rogier De Langhe - 2014 - Studies in History and Philosophy of Science Part A 46:94-99.
    Does science progress toward some goal or merely away from primitive beginnings? Two agent-based models are built to explain how possibly both kinds of progressive scientific change can result from the interactions of individuals exploring an epistemic landscape. These models are shown to result in qualitatively different predictions about what the resulting system of science should be like.
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  • Baldwin’s Remarkable Effect.John DeJager - 2016 - Biological Theory 11 (4):207-219.
    The “Baldwin effect” occurs when natural selection supplements adaptive phenotypic changes acquired during an organism’s lifetime. This effect, first described in 1896, is now usually considered to be rare and insignificant, and is not part of the explanatory repertoire of most evolutionary scientists. Arguments against it are examined here and found to be inadequate, either because they misunderstand the effect, or confuse it with Lamarckism, or fail to perceive it even while describing it. The article proposes examples showing that the (...)
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  • Replicators, consequences, and displacement activities.Richard Dawkins - 1984 - Behavioral and Brain Sciences 7 (4):486-487.
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  • The Essence of Scientific Theories.David L. Hull - 2006 - Biological Theory 1 (1):17-19.
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  • Alternative formulations of multilevel selection.John Damuth & I. Lorraine Heisler - 1988 - Biology and Philosophy 3 (4):407-430.
    Hierarchical expansions of the theory of natural selection exist in two distinct bodies of thought in evolutionary biology, the group selection and the species selection traditions. Both traditions share the point of view that the principles of natural selection apply at levels of biological organization above the level of the individual organism. This leads them both to considermultilevel selection situations, where selection is occurring simultaneously at more than one level. Impeding unification of the theoretical approaches of the multilevel selection traditions (...)
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  • Skinner, selection, and self-control.Bo Dahlbom - 1984 - Behavioral and Brain Sciences 7 (4):484-486.
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  • Dennett on cognitive ethology: A broader view.Bo Dahlbom - 1985 - Behavioral and Brain Sciences 8 (4):760-762.
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  • Reports from the high table: Sepkoski and Ruse : The paleobiological revolution: essays on the growth of modern paleontology, University of Chicago Press, 2009.Adrian Currie - 2012 - Biology and Philosophy 27 (1):149-158.
    David Sepkoski and Michael Ruse’s edited collection The Peolobiological Revolution covers the changes in paleontological science in the last half-century. The collection should be of interest to philosophers of science (particularly those interested in non-reductive unity) as well as historians. I give an overview of the content and major themes of the volume and draw some lessons for the philosophy of science along the way. In particular, I argue that the history of paleontology demands a new approach to philosophical delineation (...)
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  • Narratives, mechanisms and progress in historical science.Adrian Mitchell Currie - 2014 - Synthese 191 (6):1-21.
    Geologists, Paleontologists and other historical scientists are frequently concerned with narrative explanations targeting single cases. I show that two distinct explanatory strategies are employed in narratives, simple and complex. A simple narrative has minimal causal detail and is embedded in a regularity, whereas a complex narrative is more detailed and not embedded. The distinction is illustrated through two case studies: the ‘snowball earth’ explanation of Neoproterozoic glaciation and recent attempts to explain gigantism in Sauropods. This distinction is revelatory of historical (...)
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  • Newton on Islandworld: Ontic-Driven Explanations of Scientific Method.Adrian Currie & Kirsten Walsh - 2018 - Perspectives on Science 26 (1):119-156.
    . Philosophers and scientists often cite ontic factors when explaining the methods and success of scientific inquiry. That is, the adoption of a method or approach is explained in reference to the kind of system in which the scientist is interested: these are explanations of why scientists do what they do, that appeal to properties of their target systems. We present a framework for understanding such “Opticks to his Principia. Newton’s optical work is largely experiment-driven, while the Principia is primarily (...)
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  • C. S. Peirce, G. W. F. Hegel, and Stuart Kauffman's complexity theory: A response.Joyce M. Cuff - 2007 - Zygon 42 (1):249-256.
    Abstract.Stuart Kauffman's work on complexity and self‐organization echoes ideas found in writings of C. S. Peirce and G. W. F. Hegel. Included in these common threads are the understanding of science as historical narrative, the recognition of emergence as a phenomenon associated with complex systems, and the appreciation of agency as an emergent property that serves as both a creative and determining force in evolution.
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  • Reconsidering cultural selection theory.G. K. D. Crozier - 2008 - British Journal for the Philosophy of Science 59 (3):455-479.
    This paper examines conceptual issues that arise in applications of Darwinian natural selection to cultural systems. I argue that many criticisms of cultural selectionist models have been based on an over-detailed reading of the analogy between biological and cultural units of selection. I identify five of the most powerful objections to cultural selection theory and argue that none cuts to its heart. Some objections are based on mistaken assumptions about the simplicity of the mechanisms of biological heredity. Other objections are (...)
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  • Rethinking categories and life.Peter A. Corning - 1981 - Behavioral and Brain Sciences 4 (2):286-288.
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  • On the evolution of language and generativity.Michael C. Corballis - 1992 - Cognition 44 (3):197-226.
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  • Operant conditioning and natural selection.Andrew M. Colman - 1984 - Behavioral and Brain Sciences 7 (4):684-685.
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  • “How nationality influences Opinion”: Darwinism and palaeontology in France.Claudine Cohen - 2017 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 66:8-17.
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  • The critique of intelligent design: Epicurus, Marx, Darwin, and Freud and the materialist defense of science. [REVIEW]Brett Clark, John Bellamy Foster & Richard York - 2007 - Theory and Society 36 (6):515-546.
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  • Leapfrog over the brain.Patricia Smith Churchland - 1987 - Behavioral and Brain Sciences 10 (1):73-74.
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  • Squeezing through the Now-or-Never bottleneck: Reconnecting language processing, acquisition, change, and structure.Nick Chater & Morten H. Christiansen - 2016 - Behavioral and Brain Sciences 39:e91.
    If human language must be squeezed through a narrow cognitive bottleneck, what are the implications for language processing, acquisition, change, and structure? In our target article, we suggested that the implications are far-reaching and form the basis of an integrated account of many apparently unconnected aspects of language and language processing, as well as suggesting revision of many existing theoretical accounts. With some exceptions, commentators were generally supportive both of the existence of the bottleneck and its potential implications. Many commentators (...)
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  • What good is five percent of a language competence?A. Charles Catania - 1990 - Behavioral and Brain Sciences 13 (4):729-731.
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  • The Developmental Gene Hypothesis for Punctuated Equilibrium: Combined Roles of Developmental Regulatory Genes and Transposable Elements.Emily L. Casanova & Miriam K. Konkel - 2020 - Bioessays 42 (2):1900173.
    Theories of the genetics underlying punctuated equilibrium (PE) have been vague to date. Here the developmental gene hypothesis is proposed, which states that: 1) developmental regulatory (DevReg) genes are responsible for the orchestration of metazoan morphogenesis and their extreme conservation and mutation intolerance generates the equilibrium or stasis present throughout much of the fossil record and 2) the accumulation of regulatory elements and recombination within these same genes—often derived from transposable elements—drives punctuated bursts of morphological divergence and speciation across metazoa. (...)
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  • Species are, at the same time, kinds and individuals: a causal argument based on an empirical approach to species identity.Elena Casetta & Davide Vecchi - 2019 - Synthese 198 (Suppl 12):3007-3025.
    After having reconstructed a minimal biological characterisation of species, we endorse an “empirical approach” based on the idea that it is the peculiar evolutionary history of the species at issue—its peculiar origination process, its peculiar metapopulation structure and the peculiar mixture and strength of homeostatic processes vis à vis heterostatic ones—that determines species’ identity at a time and through time. We then explore the consequences of the acceptance of the empirical approach in settling the individuals versus kinds dispute. In particular, (...)
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  • Are Species Social Objects? Some Notes.Elena Casetta - 2014 - Rivista di Estetica 57:173-183.
    Although biological species might seem paradigmatic natural objects, several objections can be advanced against their independence from taxonomic activities and from scientific and social practices in general. Darwin himself, in the second chapter of the Origin, claimed to be looking «at the term species as one arbitrarily given, for the sake of convenience, to a set of individuals closely resembling each other». In this contribution, I sketch the sticking points of the issue whether species are natural or social objects in (...)
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  • La objetividad del azar en la evolución de las especies.Luis Rolleri Carbajal - 2017 - Endoxa 39:243.
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  • Sobre la génesis, estructura y recepción de El origen de las especies.Gustavo Caponi - 2009 - Scientiae Studia 7 (3):403-424.
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  • Putting together the pieces: evolutionary mechanisms at work within genomes.Lynn Helena Caporale - 2009 - Bioessays 31 (7):700-702.
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  • Pick your poison: Historicism, essentialism, and emergentism in the definition of species.Arthur L. Caplan - 1981 - Behavioral and Brain Sciences 4 (2):285-286.
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  • Behaviorism and natural selection.C. B. G. Campbell - 1984 - Behavioral and Brain Sciences 7 (4):484-484.
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  • Ethology and operant psychology.Gordon M. Burghardt - 1984 - Behavioral and Brain Sciences 7 (4):683-684.
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  • Biopopulations, not biospecies, are individuals and evolve.Mario Bunge - 1981 - Behavioral and Brain Sciences 4 (2):284-285.
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  • Adaptation and self-organization in primate societies.Bernard Thierry - 1997 - Diogenes 45 (180):39-71.
    The primary method by which science endeavors to order the world is the analytic approach, consistent with Cartesian principles of dividing the problem in as many sections as required for an optimal solution, and progressing from the simplest to the most complex reasoning. When the interactions among the various elements of the system being studied are minimal, such a procedure indeed makes it possible to formulate laws that describe chains of causality. However, when the variables are interdependent and linked by (...)
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  • Linguistic function and linguistic evolution.George A. Broadwell - 1990 - Behavioral and Brain Sciences 13 (4):728-729.
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  • Cost–benefit models and the evolution of behavior.Jerram L. Brown - 1984 - Behavioral and Brain Sciences 7 (4):682-682.
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  • Explanation and the language of thought.David Braddon-Mitchell & J. Fitzpatrick - 1990 - Synthese 83 (1):3-29.
    In this paper we argue that the insistence by Fodor et. al. that the Language of Thought hypothesis must be true rests on mistakes about the kinds of explanations that must be provided of cognitive phenomena. After examining the canonical arguments for the LOT, we identify a weak version of the LOT hypothesis which we think accounts for some of the intuitions that there must be a LOT. We then consider what kinds of explanation cognitive phenomena require, and conclude that (...)
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  • Stances and Epistemology: Values, Pragmatics, and Rationality.Sandy Boucher - 2018 - Metaphilosophy 49 (4):521-547.
    Van Fraassen has argued that many philosophical positions should be understood as stances rather than factual beliefs. In this paper I discuss the vexed question of whether and how such stances can be rationally justified. Until this question has been satisfactorily answered, the otherwise promising stance approach cannot be considered a viable metaphilosophical option. One can find hints, and the beginnings of an answer to this question, in van Fraassen’s (and others’) writings, but no general, fully clear and convincing account (...)
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  • Handbook of Evolutionary Thinking in the Sciences.Thomas Heams, Philippe Huneman, Guillaume Lecointre & Marc Silberstein (eds.) - 2015 - Springer.
    The Darwinian theory of evolution is itself evolving and this book presents the details of the core of modern Darwinism and its latest developmental directions. The authors present current scientific work addressing theoretical problems and challenges in four sections, beginning with the concepts of evolution theory, its processes of variation, heredity, selection, adaptation and function, and its patterns of character, species, descent and life. The second part of this book scrutinizes Darwinism in the philosophy of science and its usefulness in (...)
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  • B. F. Skinner: A dissident view.Kenneth E. Boulding - 1984 - Behavioral and Brain Sciences 7 (4):483-484.
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  • An Empiricist Conception of the Relation Between Metaphysics and Science.Sandy C. Boucher - 2018 - Philosophia 47 (5):1355-1378.
    It is widely acknowledged that metaphysical assumptions, commitments and presuppositions play an important role in science. Yet according to the empiricist there is no place for metaphysics as traditionally understood in the scientific enterprise. In this paper I aim to take a first step towards reconciling these seemingly irreconcilable claims. In the first part of the paper I outline a conception of metaphysics and its relation to science that should be congenial to empiricists, motivated by van Fraassen’s work on ‘stances’. (...)
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