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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. Species as individuals: Logical, biological, and philosophical problems.Michael Ruse - 1981 - Behavioral and Brain Sciences 4 (2):299-300.
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  • Phenotype-first hypotheses, spandrels and early metazoan evolution.Joshua Rust - 2022 - History and Philosophy of the Life Sciences 44 (4):1-23.
    Against the neo-Darwinian assumption that genetic factors are the principal source of variation upon which natural selection operates, a phenotype-first hypothesis strikes us as revolutionary because development would seem to constitute an independent source of variability. Richard Watson and his co-authors have argued that developmental memory constitutes one such variety of phenotypic variability. While this version of the phenotype-first hypothesis is especially well-suited for the late metazoan context, where animals have a sufficient history of selection from which to draw, appeals (...)
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  • Is Darwinism past its “sell-by” date? The Origin of Species at 150.Michael Ruse - 2011 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (1):5-11.
    Many people worry that the theory of evolution that Charles Darwin gave in his Origin of Species is now dated and no longer part of modern science. This essay challenges this claim, arguing that the central core of the Origin is as vital today as it ever was, although naturally the science keeps moving on. Darwin provided the foundation not the finished product.
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  • Charles Darwin’s O n the Origin of Species.Michael Ruse - 2007 - Topoi 26 (1):159-165.
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  • Typologies: Obstacles and opportunities in scientific change.Alexander Rosenberg - 1981 - Behavioral and Brain Sciences 4 (2):298-299.
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  • Is there really “juggling,” “artifice,” and “trickery” in Genes, Mind, and Culture?Alexander Rosenberg - 1987 - Behavioral and Brain Sciences 10 (1):80-82.
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  • Fitness, reinforcement, underlying mechanisms.Alexander Rosenberg - 1984 - Behavioral and Brain Sciences 7 (4):495-496.
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  • How developmental is evolutionary developmental biology?Jason Scott Robert - 2002 - Biology and Philosophy 17 (5):591-611.
    Evolutionary developmental biology (evo-devo) offers both an account of developmental processes and also new integrative frameworks for analyzing interactions between development and evolution. Biologists and philosophers are keen on evo-devo in part because it appears to offer a comfort zone between, on the one hand, what some take to be the relative inability of mainstream evolutionary biology to integrate a developmental perspective; and, on the other hand, what some take to be more intractable syntheses of development and evolution. In this (...)
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  • Structuralism, functionalism, and the four Aristotelian causes.Olivier Rieppel - 1990 - Journal of the History of Biology 23 (2):291-320.
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  • Louis agassiz (1807–1873) and the reality of natural groups.Olivier Rieppel - 1988 - Biology and Philosophy 3 (1):29-47.
    The philosophy of pattern cladism has been variously explained by reference to the work of Louis Agassiz. The present study analyzes Agassiz's attempt to combine an empirical approach to the study of nature with an idealistic philosophy. From this emerges the problem of empiricism and of the isomorphy between the order of nature and human thinking. The analysis of the writings of Louis Agassiz serves as the basis for discussion of the reality of natural groups as postulated by pattern cladists.
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  • Arbitrariness no argument against adaption.Mark Ridley - 1990 - Behavioral and Brain Sciences 13 (4):756-756.
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  • The concept of continuous creation part I: History and contemporary use.Fabien Revol - 2020 - Zygon 55 (1):229-250.
    The concept of continuous creation is now widely used in the context of reflections on the dialogue between science and religion. The first part of this research work seeks to understand its meaning through a twofold elaboration: (1) the historical setting of the three philosophical trends in which this concept was developed: scholastic (conservation), Cartesian (conservation through repetition of the creative act at each instant), and dynamic (interpreting the emergence of radical and contingent novelty in nature as a sign of (...)
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  • Laws and development.David Resnik - 1997 - Synthese 112 (1):37-51.
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  • The multitemporality of life: an analysis from Philosophy of Biology.Constanza Rendón, Nahuel Pallitto & Guillermo Folguera - 2016 - Manuscrito 39 (3):121-147.
    ABSTRACT Although the issue of temporality has mainly been studied from Physics, this topic also exhibits diverse interesting aspects that could be addressed from a biological perspective. One possible way of approaching this subject is to examine the kinds of temporalities involved in biological processes. In that vein, the aim of this article is to analyze developmental and evolutionary processes' temporality in different biological fields of study, including a novel area which attempts to integrate the research of those processes. To (...)
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  • Extended Evolutionary Synthesis: Neither Synthesis Nor Extension.Claudio Ricardo Martins dos Reis & Leonardo Augusto Luvison Araújo - 2020 - Biological Theory 15 (2):57-60.
    The extended evolutionary synthesis intends to offer a new framework for understanding evolution based mainly on empirical and theoretical findings of current studies, including heredity and evolutionary developmental biology. In this essay, we present and develop the following objections about the terminology associated with the EES literature: despite using the term "extension," EES protagonists claim new evolutionary processes, reformulate conceptual networks, and modify central assumptions of the evolutionary synthesis. Therefore, the difference between ES and EES should not be described in (...)
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  • The demise of mental representations.Edward S. Reed - 1981 - Behavioral and Brain Sciences 4 (2):297-298.
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  • The dynamics of evolution.Ronald Rainger - 1995 - Biology and Philosophy 10 (1):109-121.
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  • Diversity of Grammars and Their Diverging Evolutionary and Processing Paths: Evidence From Functional MRI Study of Serbian.Ljiljana Progovac, Natalia Rakhlin, William Angell, Ryan Liddane, Lingfei Tang & Noa Ofen - 2018 - Frontiers in Psychology 9.
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  • Contingency-governed science.Robert R. Provine - 1984 - Behavioral and Brain Sciences 7 (4):494-495.
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  • On the coevolution of language and social competence.David Premack - 1990 - Behavioral and Brain Sciences 13 (4):754-756.
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  • Rising out of the ashes.H. C. Plotkin - 1987 - Behavioral and Brain Sciences 10 (1):79-80.
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  • Linear and circular causal sequences.H. C. Plotkin & F. J. Odling-Smee - 1984 - Behavioral and Brain Sciences 7 (4):493-494.
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  • Levels of Consciousness.Wojciech Pisula - 2016 - Open Journal of Philosophy 6 (1):51-58.
    Consciousness attracts the attention of researchers representing various disciplines. Hence, there is a demand for a theoretical tool that could integrate data and theoretical concepts originating from distinct fields. The paper proposes to use the framework of the theory of integrative levels. The development and the definitions of the concept of levels are briefly discussed. The final part of the paper presents a proposal for incorporating the levels of consciousness into the framework of the integrative levels theory.
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  • Natural language and natural selection.Steven Pinker & Paul Bloom - 1990 - Behavioral and Brain Sciences 13 (4):707-27.
    Many people have argued that the evolution of the human language faculty cannot be explained by Darwinian natural selection. Chomsky and Gould have suggested that language may have evolved as the by-product of selection for other abilities or as a consequence of as-yet unknown laws of growth and form. Others have argued that a biological specialization for grammar is incompatible with every tenet of Darwinian theory – that it shows no genetic variation, could not exist in any intermediate forms, confers (...)
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  • Issues in the evolution of the human language faculty.Steven Pinker & Paul Bloom - 1990 - Behavioral and Brain Sciences 13 (4):765-784.
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  • Sewall Wright’s adaptive landscapes: 1932 vs. 1988.Massimo Pigliucci - 2008 - Biology and Philosophy 23 (5):591-603.
    Sewall Wright introduced the metaphor of evolution on “adaptive landscapes” in a pair of papers published in 1931 and 1932. The metaphor has been one of the most influential in modern evolutionary biology, although recent theoretical advancements show that it is deeply flawed and may have actually created research questions that are not, in fact, fecund. In this paper I examine in detail what Wright actually said in the 1932 paper, as well as what he thought of the matter at (...)
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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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  • Evolution, selection, and cognition: From learning to parameter setting in biology and in the study of language.Massimo Piattelli-Palmarini - 1989 - Cognition 31 (1):1-44.
    Most biologists and some cognitive scientists have independently reached the conclusion that there is no such thing as learning in the traditional “instructive‘ sense. This is, admittedly, a somewhat extreme thesis, but I defend it herein the light of data and theories jointly extracted from biology, especially from evolutionary theory and immunology, and from modern generative grammar. I also point out that the general demise of learning is uncontroversial in the biological sciences, while a similar consensus has not yet been (...)
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  • Ever since language and learning: afterthoughts on the Piaget-Chomsky debate.Massimo Piattelli-Palmarini - 1994 - Cognition 50 (1-3):315-346.
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  • An ideological battle over modals and quantifiers.Massimo Piattelli-Palmarini - 1990 - Behavioral and Brain Sciences 13 (4):752-754.
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  • Complexity and adaptation.David Pesetsky & Ned Block - 1990 - Behavioral and Brain Sciences 13 (4):750-752.
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  • Three conceptions of explaining how possibly—and one reductive account.Johannes Persson - 2009 - In Henk W. de Regt (ed.), Epsa Philosophy of Science: Amsterdam 2009. Springer. pp. 275--286.
    Philosophers of science have often favoured reductive approaches to how-possibly explanation. This article identifies three alternative conceptions making how-possibly explanation an interesting phenomenon in its own right. The first variety approaches “how possibly X?” by showing that X is not epistemically impossible. This can sometimes be achieved by removing misunderstandings concerning the implications of one’s current belief system but involves characteristically a modification of this belief system so that acceptance of X does not result in contradiction. The second variety offers (...)
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  • CSR, Sustainability and the Meaning of Global Reporting for Latin American Corporations.Luis A. Perez-Batres, Van V. Miller & Michael J. Pisani - 2010 - Journal of Business Ethics 91 (2):193-209.
    We seek to add to the Corporate Social Responsibility (CSR) and Sustainable Development (SD) literature through the empirical study of Latin American firm membership in the United Nations Global Compact (GC) and Global Report Initiative (GRI). Within an institutional-based framework, we explore through three filters – commercial, state-signaling, and distinguished peers – the impact of normative and mimetic pressures associated with GC/gri membership. Our sample includes 207 public firms from six Latin American countries (Argentina, Brazil, Chile, Colombia, Mexico, and Peru). (...)
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  • The three faces of ecological fitness.Kent A. Peacock - 2011 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (1):99-105.
    This paper argues that fitness is most usefully understood as those properties of organisms that are explanatory of survival in the broadest sense, not merely descriptive of reproductive success. Borrowing from Rosenberg and Bouchard , fitness in this sense is ecological in that it is defined by the interactions between organisms and environments. There are three sorts of ecological fitness: the well-documented ability to compete, the ability to cooperate , and a third sense of fitness that has received insufficient attention (...)
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  • Experiments, Simulations, and Epistemic Privilege.Emily C. Parke - 2014 - Philosophy of Science 81 (4):516-536.
    Experiments are commonly thought to have epistemic privilege over simulations. Two ideas underpin this belief: first, experiments generate greater inferential power than simulations, and second, simulations cannot surprise us the way experiments can. In this article I argue that neither of these claims is true of experiments versus simulations in general. We should give up the common practice of resting in-principle judgments about the epistemic value of cases of scientific inquiry on whether we classify those cases as experiments or simulations, (...)
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  • Pattern and process in the evolution of learning.Mauricio R. Papini - 2002 - Psychological Review 109 (1):186-201.
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  • Taxonomy is older than thinking: Epigenetic decisions.Andrew Packard - 1981 - Behavioral and Brain Sciences 4 (2):296-297.
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  • The emergence of homo loquens and the laws of physics.Carlos P. Otero - 1990 - Behavioral and Brain Sciences 13 (4):747-750.
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  • Systematicity is necessary but not sufficient: on the problem of facsimile science.Naomi Oreskes - 2019 - Synthese 196 (3):881-905.
    Paul Hoyningen-Huene argues that what makes scientific knowledge special is its systematic character, and that this can be used to solve the demarcation problem. He labels this STDC: “Systematicity Theory’s Demarcation Criterion.” This paper argues that STDC fails, because there are areas of intellectual activity that are highly systematic, but that the great majority of scientists and historians and philosophers of science do not accept as scientific. These include homepathy, creationism, and climate change denial. I designate these activities “facsimile sciences” (...)
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  • The cognitive skill of theory articulation: A neglected aspect of science education?Stellan Ohlsson - 1992 - Science & Education 1 (2):181-192.
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  • Emergence, Story, and the Challenge of Positive Scenarios.Jay Ogilvy - 2014 - World Futures 70 (1):52-87.
    (2014). Emergence, Story, and the Challenge of Positive Scenarios. World Futures: Vol. 70, Strategy, Story, and Emergence: Essays on Scenario Planning, pp. 52-87.
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  • Units “of” selection: The end of “of”?F. J. Odling-Smee & H. C. Plotkin - 1981 - Behavioral and Brain Sciences 4 (2):295-296.
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  • O que é função? Debates na filosofia da biologia contemporânea.Nei Freitas Nunes-Neto & Charbel Niño El-Hani - 2009 - Scientiae Studia 7 (3):353-401.
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  • Scale Relativity and Fractal Space-Time: Theory and Applications. [REVIEW]Laurent Nottale - 2010 - Foundations of Science 15 (2):101-152.
    In the first part of this contribution, we review the development of the theory of scale relativity and its geometric framework constructed in terms of a fractal and nondifferentiable continuous space-time. This theory leads (i) to a generalization of possible physically relevant fractal laws, written as partial differential equation acting in the space of scales, and (ii) to a new geometric foundation of quantum mechanics and gauge field theories and their possible generalisations. In the second part, we discuss some examples (...)
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  • The genome might as well store the entire language in the environment.Anat Ninio - 1990 - Behavioral and Brain Sciences 13 (4):746-747.
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  • Natural selection and the autonomy of syntax.Frederick J. Newmeyer - 1990 - Behavioral and Brain Sciences 13 (4):745-746.
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  • Disambiguated Indexical Pointing as a Tipping Point for the Explosive Emergence of Language Among Human Ancestors.Donald M. Morrison - 2020 - Biological Theory 15 (4):196-211.
    Drawing on convergent work in a broad range of disciplines, this article uses the tipping point paradigm to frame a new account of how early human ancestors may have first broken free from, as Bickerton calls it, the “prison of animal communication.” Under building pressure for an enhanced signaling system capable of supporting joint attentional-intentional activities, a cultural tradition of disambiguated indexical pointing, combined with increasingly sophisticated mindreading circuitry and prosocial tendencies, may have sparked the first in the series of (...)
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  • Botánica y Evolución.Margarita Moreno - 2002 - Arbor 172 (677):59-99.
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  • Positive heuristics in evolutionary biology.Richard E. Michod - 1981 - British Journal for the Philosophy of Science 32 (1):1-36.
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  • Biological Species: Natural Kinds, Individuals, or What?Ruse Michael - 1987 - British Journal for the Philosophy of Science 38 (2):225-242.
    What are biological species? Aristotelians and Lockeans agree that they are natural kinds; but, evolutionary theory shows that neither traditional philosophical approach is truly adequate. Recently, Michael Ghiselin and David Hull have argued that species are individuals. This claim is shown to be against the spirit of much modern biology. It is concluded that species are natural kinds of a sort, and that any 'objectivity' they possess comes from their being at the focus of a consilience of inductions.
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