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  1. Individualist and multi-level perspectives on selection in structured populations.Benjamin Kerr & Peter Godfrey-Smith - 2002 - Biology and Philosophy 17 (4):477-517.
    Recent years have seen a renewed debate over the importance of groupselection, especially as it relates to the evolution of altruism. Onefeature of this debate has been disagreement over which kinds ofprocesses should be described in terms of selection at multiple levels,within and between groups. Adapting some earlier discussions, we presenta mathematical framework that can be used to explore the exactrelationships between evolutionary models that do, and those that donot, explicitly recognize biological groups as fitness-bearing entities.We show a fundamental set (...)
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  • Why Genic and Multilevel Selection Theories Are Here to Stay.C. Kenneth Waters - 2005 - Philosophy of Science 72 (2):311-333.
    I clarify the difference between pluralist and monist interpretations of levels of selection disputes. Lloyd has challenged my claim that a plurality of models correctly accounts for situations such as maintenance of the sickle-cell trait, and I revisit this example to show that competing theories don’t disagree about the existence of ‘high-level’ or ‘lowlevel’ causes; rather, they parse these causes differently. Applying Woodward’s theory of causation, I analyze Sober’s distinction between ‘selection of’ versus ‘selection for’. My analysis shows that this (...)
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  • The Dimensions of Selection.Peter Godfrey-Smith & Richard Lewontin - 1993 - Philosophy of Science 60 (3):373-395.
    Proponents of genic selectionism have claimed that evolutionary processes normally viewed as selection on individuals can be "represented" as selection on alleles. This paper discusses the relationship between mathematical questions about the formal requirements upon state spaces necessary for the representation of different types of evolutionary processes and causal questions about the units of selection in such processes.
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  • The Principle of Drift.Robert N. Brandon - 2006 - Journal of Philosophy 103 (7):319-335.
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  • The Levels of Selection.Robert N. Brandon - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:315 - 323.
    In this paper Wimsatt's analysis of units of selection is taken as defining the units of selection question. A definition of levels of selection is offered and it is shown that the levels of selection question is quite different from the units of selection question. Some of the relations between units and levels are briefly explored. It is argued that the levels of selection question is the question relevant to explanatory concerns, and it is suggested that it is the question (...)
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  • Why the Gene will not return.Elisabeth A. Lloyd - 2005 - Philosophy of Science 72 (2):287-310.
    I argue that four of the fundamental claims of those calling themselves `genic pluralists'Philip Kitcher, Kim Sterelny, and Ken Watersare defective. First, they claim that once genic selectionism is recognized, the units of selection problems will be dissolved. Second, Sterelny and Kitcher claim that there are no targets of selection. Third, Sterelny, Kitcher, and Waters claim that they have a concept of genic causation that allows them to give independent genic causal accounts of all selection processes. I argue that each (...)
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  • Pluralism, entwinement, and the levels of selection.Robert A. Wilson - 2003 - Philosophy of Science 70 (3):531-552.
    This paper distinguishes and critiques several forms of pluralism about the levels of selection, and introduces a novel way of thinking about the biological properties and processes typically conceptualized in terms of distinct levels. In particular, "levels" should be thought of as being entwined or fused. Since the pluralism discussed is held by divergent theorists, the argument has implications for many positions in the debate over the units of selection. And since the key points on which the paper turns apply (...)
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  • The trials of life: Natural selection and random drift.Denis M. Walsh, Andre Ariew & Tim Lewens - 2002 - Philosophy of Science 69 (3):452-473.
    We distinguish dynamical and statistical interpretations of evolutionary theory. We argue that only the statistical interpretation preserves the presumed relation between natural selection and drift. On these grounds we claim that the dynamical conception of evolutionary theory as a theory of forces is mistaken. Selection and drift are not forces. Nor do selection and drift explanations appeal to the (sub-population-level) causes of population level change. Instead they explain by appeal to the statistical structure of populations. We briefly discuss the implications (...)
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  • Artifact, cause and genic selection.Elliott Sober & Richard C. Lewontin - 1982 - Philosophy of Science 49 (2):157-180.
    Several evolutionary biologists have used a parsimony argument to argue that the single gene is the unit of selection. Since all evolution by natural selection can be represented in terms of selection coefficients attaching to single genes, it is, they say, "more parsimonious" to think that all selection is selection for or against single genes. We examine the limitations of this genic point of view, and then relate our criticisms to a broader view of the role of causal concepts and (...)
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  • The principle of drift: Biology's first law.Robert N. Brandon - 2006 - Journal of Philosophy 103 (7):319-335.
    Drift is to evolution as inertia is to Newtonian mechanics. Both are the "natural" or default states of the systems to which they apply. Both are governed by zero-force laws. The zero-force law in biology is stated here for the first time.
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  • The difference between selection and drift: A reply to Millstein. [REVIEW]Robert N. Brandon - 2005 - Biology and Philosophy 20 (1):153-170.
    Millstein [Bio. Philos. 17 (2002) 33] correctly identies a serious problem with the view that natural selection and random drift are not conceptually distinct. She offers a solution to this problem purely in terms of differences between the processes of selection and drift. I show that this solution does not work, that it leaves the vast majority of real biological cases uncategorized. However, I do think there is a solution to the problem she raises, and I offer it here. My (...)
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  • Tempered realism about the force of selection.C. Kenneth Waters - 1991 - Philosophy of Science 58 (4):553-573.
    Darwinians are realists about the force of selection, but there has been surprisingly little discussion about what form this realism should take. Arguments about the units of selection in general and genic selectionism in particular reveal two realist assumptions: (1) for any selection process, there is a uniquely correct identification of the operative selective forces and the level at which each impinges; and (2) selective forces must satisfy the Pareto-style requirement of probabilistic causation. I argue that both assumptions are false; (...)
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  • (1 other version)The Return of the Gene.Kim Sterelny & Philip Kitcher - 1988 - Journal of Philosophy 85 (7):339.
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  • The Structure and Confirmation of Evolutionary Theory.Elisabeth A. Lloyd - 1992 - Noûs 26 (1):132-133.
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  • The Selfish Gene. [REVIEW]Gunther S. Stent & Richard Dawkins - 1977 - Hastings Center Report 7 (6):33.
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  • (3 other versions)Précis of Unto Others.David Sloan Wilson & Elliott Sober - 2002 - Philosophy and Phenomenological Research 65 (3):681-684.
    It is a challenge to explain how evolutionary altruism can evolve by the process of natural selection, since altruists in a group will be less fit than the selfish individuals in the same group who receive benefits but do not make donations of their own. Darwin proposed a theory of group selection to solve this puzzle. Very simply, even though altruists are less fit than selfish individuals within any single group, groups of altruists are more fit than groups of selfish (...)
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  • The nature of robustness in development.H. F. Nijhout - 2002 - Bioessays 24 (6):553-563.
    A trait is robust to a genetic or environmental variable if its variation is weakly correlated with variation in that variable. The source of robustness lies in the fact that the developmental processes that give rise to complex traits are nonlinear. A consequence of this nonlinearity is that not all genes are equally correlated with the trait whose ontogeny they control. Here we explore how developmental mechanisms determine and alter the correlation structure between genes and the traits that they control. (...)
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