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  1. The formal Darwinism project: editors' introduction.Samir Okasha & Cedric Paternotte - 2014 - Biology and Philosophy 29 (2):153-154.
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  • The formal darwinism project in outline.Alan Grafen - 2014 - Biology and Philosophy 29 (2):155-174.
    The broader context for the formal darwinism project established by two of the commentators, in terms of reconciling the Modern Synthesis with Darwinian arguments over design and in terms of links to other types of selection and design, is discussed and welcomed. Some overselling of the project is admitted, in particular of whether it claims to consider all organic design. One important fundamental question raised in two commentaries is flagged but not answered of whether design is rightly represented by an (...)
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  • Methodology in Biological Game Theory.Simon M. Huttegger & Kevin J. S. Zollman - 2013 - British Journal for the Philosophy of Science 64 (3):637-658.
    Game theory has a prominent role in evolutionary biology, in particular in the ecological study of various phenomena ranging from conflict behaviour to altruism to signalling and beyond. The two central methodological tools in biological game theory are the concepts of Nash equilibrium and evolutionarily stable strategy. While both were inspired by a dynamic conception of evolution, these concepts are essentially static—they only show that a population is uninvadable, but not that a population is likely to evolve. In this article, (...)
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  • Three Kinds of Idealization.Michael Weisberg - 2007 - Journal of Philosophy 104 (12):639-659.
    Philosophers of science increasingly recognize the importance of idealization: the intentional introduction of distortion into scientific theories. Yet this recognition has not yielded consensus about the nature of idealization. e literature of the past thirty years contains disparate characterizations and justifications, but little evidence of convergence towards a common position.
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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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  • Consumers Need Information: supplementing teleosemantics with an input condition.Nicholas Shea - 2007 - Philosophy and Phenomenological Research 75 (2):404-435.
    The success of a piece of behaviour is often explained by its being caused by a true representation (similarly, failure falsity). In some simple organisms, success is just survival and reproduction. Scientists explain why a piece of behaviour helped the organism to survive and reproduce by adverting to the behaviour’s having been caused by a true representation. That usage should, if possible, be vindicated by an adequate naturalistic theory of content. Teleosemantics cannot do so, when it is applied to simple (...)
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  • Probability, explanation, and information.Peter Railton - 1981 - Synthese 48 (2):233 - 256.
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  • The teleological notion of 'function'.Karen Neander - 1991 - Australasian Journal of Philosophy 69 (4):454 – 468.
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  • Functions as Selected Effects: The Conceptual Analyst’s Defense.Karen Neander - 1991 - Philosophy of Science 58 (2):168-184.
    In this paper I defend an etiological theory of biological functions (according to which the proper function of a trait is the effect for which it was selected by natural selection) against three objections which have been influential. I argue, contrary to Millikan, that it is wrong to base our defense of the theory on a rejection of conceptual analysis, for conceptual analysis does have an important role in philosophy of science. I also argue that biology requires a normative notion (...)
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  • Evolution and the explanation of meaning.Simon M. Huttegger - 2007 - Philosophy of Science 74 (1):1-27.
    Signaling games provide basic insights into some fundamental questions concerning the explanation of meaning. They can be analyzed in terms of rational choice theory and in terms of evolutionary game theory. It is argued that an evolutionary approach provides better explanations for the emergence of simple communication systems. To substantiate these arguments, I will look at models similar to those of Skyrms (2000) and Komarova and Niyogi (2004) and study their dynamical properties. My results will lend partial support to the (...)
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  • Functional analysis and proper functions.Paul E. Griffiths - 1993 - British Journal for the Philosophy of Science 44 (3):409-422.
    The etiological approach to ‘proper functions’ in biology can be strengthened by relating it to Robert Cummins' general treatment of function ascription. The proper functions of a biological trait are the functions it is assigned in a Cummins-style functional explanation of the fitness of ancestors. These functions figure in selective explanations of the trait. It is also argued that some recent etiological theories include inaccurate accounts of selective explanation in biology. Finally, a generalization of the notion of selective explanation allows (...)
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  • A modern history theory of functions.Peter Godfrey-Smith - 1994 - Noûs 28 (3):344-362.
    Biological functions are dispositions or effects a trait has which explain the recent maintenance of the trait under natural selection. This is the "modern history" approach to functions. The approach is historical because to ascribe a function is to make a claim about the past, but the relevant past is the recent past; modern history rather than ancient.
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  • In defense of proper functions.Ruth Millikan - 1989 - Philosophy of Science 56 (June):288-302.
    I defend the historical definition of "function" originally given in my Language, Thought and Other Biological Categories (1984a). The definition was not offered in the spirit of conceptual analysis but is more akin to a theoretical definition of "function". A major theme is that nonhistorical analyses of "function" fail to deal adequately with items that are not capable of performing their functions.
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  • Does proper function come in degrees?John Matthewson - 2020 - Biology and Philosophy 35 (4):1-18.
    Natural selection comes in degrees. Some biological traits are subjected to stronger selective force than others, selection on particular traits waxes and wanes over time, and some groups can only undergo an attenuated kind of selective process. This has downstream consequences for any notions that are standardly treated as binary but depend on natural selection. For instance, the proper function of a biological structure can be defined as what caused that structure to be retained by natural selection in the past. (...)
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  • What Biological Functions Are and Why They Matter.Justin Garson - 2019 - New York: Cambridge University Press.
    The biological functions debate is a perennial topic in the philosophy of science. In the first full-length account of the nature and importance of biological functions for many years, Justin Garson presents an innovative new theory, the 'generalized selected effects theory of function', which seamlessly integrates evolutionary and developmental perspectives on biological functions. He develops the implications of the theory for contemporary debates in the philosophy of mind, the philosophy of medicine and psychiatry, the philosophy of biology, and biology itself, (...)
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  • A Mark of the Mental: A Defence of Informational Teleosemantics.Karen Neander - 2017 - Cambridge, USA: MIT Press.
    Drawing on insights from causal theories of reference, teleosemantics, and state space semantics, a theory of naturalized mental representation. In A Mark of the Mental, Karen Neander considers the representational power of mental states—described by the cognitive scientist Zenon Pylyshyn as the “second hardest puzzle” of philosophy of mind. The puzzle at the heart of the book is sometimes called “the problem of mental content,” “Brentano's problem,” or “the problem of intentionality.” Its motivating mystery is how neurobiological states can have (...)
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  • Neither Logical Empiricism nor Vitalism, but Organicism: What the Philosophy of Biology Was.Daniel J. Nicholson & Richard Gawne - 2015 - History and Philosophy of the Life Sciences 37 (4):345-381.
    Philosophy of biology is often said to have emerged in the last third of the twentieth century. Prior to this time, it has been alleged that the only authors who engaged philosophically with the life sciences were either logical empiricists who sought to impose the explanatory ideals of the physical sciences onto biology, or vitalists who invoked mystical agencies in an attempt to ward off the threat of physicochemical reduction. These schools paid little attention to actual biological science, and as (...)
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  • Biological Criteria of Disease: Four Ways of Going Wrong.John Matthewson & Paul Edmund Griffiths - 2017 - Journal of Medicine and Philosophy 1 (4).
    We defend a view of the distinction between the normal and the pathological according to which that distinction has an objective, biological component. We accept that there is a normative component to the concept of disease, especially as applied to human beings. Nevertheless, an organism cannot be in a pathological state unless something has gone wrong for that organism from a purely biological point of view. Biology, we argue, recognises two sources of biological normativity, which jointly generate four “ways of (...)
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  • Language, Thought, and Other Biological Categories.Ruth Garrett Millikan - 1984 - Behaviorism 14 (1):51-56.
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  • Cost, expenditure and vulnerability.David Kalkman, Carl Brusse & Justin P. Bruner - 2017 - Biology and Philosophy 32 (3):357-375.
    The handicap principle stipulates that signal reliability can be maintained if signals are costly to produce. Yet empirical biologists are typically unable to directly measure evolutionary costs, and instead appeal to expenditure as a sensible proxy. However the link between expenditure and cost is not always as straightforward as proponents of HP assume. We consider signaling interactions where whether the expenditure associated with signaling is converted into an evolutionary cost is in some sense dependent on the behavior of the intended (...)
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  • A Critical Overview of Biological Functions.Justin Garson - 2016 - Dordrecht: Springer.
    This book is a critical survey of and guidebook to the literature on biological functions. It ties in with current debates and developments, and at the same time, it looks back on the state of discourse in naturalized teleology prior to the 1970s. It also presents three significant new proposals. First, it describes the generalized selected effects theory, which is one version of the selected effects theory, maintaining that the function of a trait consists in the activity that led to (...)
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  • Signals that make a Difference.Brett Calcott, Paul E. Griffiths & Arnaud Pocheville - 2017 - British Journal for the Philosophy of Science:axx022.
    Recent work by Brian Skyrms offers a very general way to think about how information flows and evolves in biological networks — from the way monkeys in a troop communicate, to the way cells in a body coordinate their actions. A central feature of his account is a way to formally measure the quantity of information contained in the signals in these networks. In this paper, we argue there is a tension between how Skyrms talks of signalling networks and his (...)
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  • Natural Selection and the Maximization of Fitness.Jonathan Birch - 2015 - Biological Reviews 91 (3):712-727.
    The notion that natural selection is a process of fitness maximization gets a bad press in population genetics, yet in other areas of biology the view that organisms behave as if attempting to maximize their fitness remains widespread. Here I critically appraise the prospects for reconciliation. I first distinguish four varieties of fitness maximization. I then examine two recent developments that may appear to vindicate at least one of these varieties. The first is the ‘new’ interpretation of Fisher's fundamental theorem (...)
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  • (1 other version)Candide ou l'optimisme (french). Voltaire - unknown
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  • (6 other versions)Convention: A Philosophical Study.David K. Lewis - 1971 - Philosophy and Rhetoric 4 (2):137-138.
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  • Madness: A Philosophical Exploration.Justin Garson - 2022 - New York, NY: Oxford University Press.
    Since the time of Hippocrates, madness has typically been viewed through the lens of disease, dysfunction, and defect. In 'Madness', philosopher of science Justin Garson presents a radically different paradigm for conceiving of madness and the forms that it takes. In this paradigm, which he calls madness-as-strategy, madness is neither a disease nor a defect, but a designed feature, like the heart or lungs.
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  • Responsiveness and Robustness in the David Lewis Signaling Game.Carl Brusse & Justin Bruner - 2017 - Philosophy of Science 84 (5):1068-1079.
    We consider modifications to the standard David Lewis signaling game and relax a number of unrealistic implicit assumptions that are often built into the framework. In particular, we motivate and explore various asymmetries that exist between the sender and receiver roles. We find that endowing receivers with a more realistic set of responses significantly decreases the likelihood of signaling, while allowing for unequal selection pressure often has the opposite effect. We argue that the results of this article can also help (...)
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  • Signals That Make a Difference.Brett Calcott, Arnaud Pocheville & Paul Griffiths - 2020 - British Journal for the Philosophy of Science 71 (1):233-258.
    Recent work by Brian Skyrms offers a very general way to think about how information flows and evolves in biological networks—from the way monkeys in a troop communicate to the way cells in a body coordinate their actions. A central feature of his account is a way to formally measure the quantity of information contained in the signals in these networks. In this article, we argue there is a tension between how Skyrms talks of signalling networks and his formal measure (...)
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