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  1. Causes That Make a Difference.C. Kenneth Waters - 2007 - Journal of Philosophy 104 (11):551-579.
    Biologists studying complex causal systems typically identify some factors as causes and treat other factors as background conditions. For example, when geneticists explain biological phenomena, they often foreground genes and relegate the cellular milieu to the background. But factors in the milieu are as causally necessary as genes for the production of phenotypic traits, even traits at the molecular level such as amino acid sequences. Gene-centered biology has been criticized on the grounds that because there is parity among causes, the (...)
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  • Developmental Systems and Evolutionary Explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • Sex and Death: An Introduction to Philosophy of Biology. [REVIEW]Mohan Matthen - 2002 - Philosophical Books 43 (1):78-80.
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  • Causal Selection versus Causal Parity in Biology: Relevant Counterfactuals and Biologically Normal Interventions.Marcel Weber - forthcoming - In Waters C. Kenneth & Woodward James (eds.), Philosophical Perspectives on Causal Reasoning in Biology. Minnesota Studies in Philosophy of Science. Vol. XXI. University of Minnesota Press.
    Causal selection is the task of picking out, from a field of known causally relevant factors, some factors as elements of an explanation. The Causal Parity Thesis in the philosophy of biology challenges the usual ways of making such selections among different causes operating in a developing organism. The main target of this thesis is usually gene centrism, the doctrine that genes play some special role in ontogeny, which is often described in terms of information-bearing or programming. This paper is (...)
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  • Multi‐track dispositions.Barbara Vetter - 2013 - Philosophical Quarterly 63 (251):330-352.
    It is a familiar point that many ordinary dispositions are multi-track, that is, not fully and adequately characterisable by a single conditional. In this paper, I argue that both the extent and the implications of this point have been severely underestimated. First, I provide new arguments to show that every disposition whose stimulus condition is a determinable quantity must be infinitely multi-track. Secondly, I argue that this result should incline us to move away from the standard assumption that dispositions are (...)
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  • A Mathematical Theory of Communication.Claude Elwood Shannon - 1948 - Bell System Technical Journal 27 (April 1924):379–423.
    The mathematical theory of communication.
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  • A Theory of Conditionals.Robert Stalnaker - 1968 - In Nicholas Rescher (ed.), Studies in Logical Theory. Oxford,: Blackwell. pp. 98-112.
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  • Causation in biology: Stability, specificity, and the choice of levels of explanation.James Woodward - 2010 - Biology and Philosophy 25 (3):287-318.
    This paper attempts to elucidate three characteristics of causal relationships that are important in biological contexts. Stability has to do with whether a causal relationship continues to hold under changes in background conditions. Proportionality has to do with whether changes in the state of the cause “line up” in the right way with changes in the state of the effect and with whether the cause and effect are characterized in a way that contains irrelevant detail. Specificity is connected both to (...)
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  • Counterfactuals.David K. Lewis - 1973 - Malden, Mass.: Blackwell.
    Counterfactuals is David Lewis' forceful presentation of and sustained argument for a particular view about propositions which express contrary to fact conditionals, including his famous defense of realism about possible worlds and his theory of laws of nature.
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  • Truth and truthmakers.D. M. Armstrong - 2004 - New York: Cambridge University Press.
    Truths are determined not by what we believe, but by the way the world is. Or so realists about truth believe. Philosophers call such theories correspondence theories of truth. Truthmaking theory, which now has many adherents among contemporary philosophers, is the most recent development of a realist theory of truth, and in this book D. M. Armstrong offers the first full-length study of this theory. He examines its applications to different sorts of truth, including contingent truths, modal truths, truths about (...)
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  • On linking dispositions and conditionals.David Manley & Ryan Wasserman - 2008 - Mind 117 (465):59-84.
    Analyses of dispositional ascriptions in terms of conditional statements famously confront the problems of finks and masks. We argue that conditional analyses of dispositions, even those tailored to avoid finks and masks, face five further problems. These are the problems of: (i) Achilles' heels, (ii) accidental closeness, (iii) comparatives, (iv) explaining context sensitivity, and (v) absent stimulus conditions. We conclude by offering a proposal that avoids all seven of these problems.
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  • The extended replicator.Kim Sterelny, Kelly C. Smith & Michael Dickison - 1996 - Biology and Philosophy 11 (3):377-403.
    This paper evaluates and criticises the developmental systems conception of evolution and develops instead an extension of the gene's eye conception of evolution. We argue (i) Dawkin's attempt to segregate developmental and evolutionary issues about genes is unsatisfactory. On plausible views of development it is arbitrary to single out genes as the units of selection. (ii) The genotype does not carry information about the phenotype in any way that distinguishes the role of the genes in development from that other factors. (...)
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  • Genetic information as instructional content.Ulrich E. Stegmann - 2005 - Philosophy of Science 72 (3):425-443.
    The concept of genetic information is controversial because it attributes semantic properties to what seem to be ordinary biochemical entities. I argue that nucleic acids contain information in a semantic sense, but only about a limited range of effects. In contrast to other recent proposals, however, I analyze genetic information not in terms of a naturalized account of biological functions, but instead in terms of the way in which molecules determine their products during processes known as template-directed syntheses. I argue (...)
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  • What’s in a Cause?: The Pragmatic Dimensions of Genetic Explanations. [REVIEW]Lisa Gannett - 1999 - Biology and Philosophy 14 (3):349-373.
    The paper argues for a pragmatic account of genetic explanation. This is to say that when a disease or other trait is termed genetic, the reasons for singling out genes as causes over other, also necessary, genetic and nongenetic conditions are not wholly theoretical but include pragmatic dimensions. Whether the explanation is the presence of a trait in an individual or differences in a trait among individuals, genetic explanations are context-dependent in three ways: they are relative to a causal background (...)
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  • The concept of information in biology.John Maynard Smith - 2000 - Philosophy of Science 67 (2):177-194.
    The use of informational terms is widespread in molecular and developmental biology. The usage dates back to Weismann. In both protein synthesis and in later development, genes are symbols, in that there is no necessary connection between their form (sequence) and their effects. The sequence of a gene has been determined, by past natural selection, because of the effects it produces. In biology, the use of informational terms implies intentionality, in that both the form of the signal, and the response (...)
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  • Representation in the genome and in other inheritance systems.Nicholas Shea - 2007 - Biology and Philosophy 22 (3):313-331.
    There is ongoing controversy as to whether the genome is a representing system. Although it is widely recognised that DNA carries information, both correlating with and coding for various outcomes, neither of these implies that the genome has semantic properties like correctness or satisfaction conditions, In the Scope of Logic, Methodology, and the Philosophy of Sciences, Vol. II. Kluwer, Dordrecht, pp. 387–400). Here a modified version of teleosemantics is applied to the genome to show that it does indeed have semantic (...)
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  • Causal democracy and causal contributions in developmental systems theory.Susan Oyama - 2000 - Philosophy of Science 67 (3):347.
    In reworking a variety of biological concepts, Developmental Systems Theory (DST) has made frequent use of parity of reasoning. We have done this to show, for instance, that factors that have similar sorts of impact on a developing organism tend nevertheless to be invested with quite different causal importance. We have made similar arguments about evolutionary processes. Together, these analyses have allowed DST not only to cut through some age-old muddles about the nature of development, but also to effect a (...)
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  • Causation as influence.David Lewis - 2000 - Journal of Philosophy 97 (4):182-197.
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  • What is the developmentalist challenge?Paul E. Griffiths & Robin D. Knight - 1998 - Philosophy of Science 65 (2):253-258.
    Kenneth C. Schaffner's paper is an important contribution to the literature on behavioral genetics and on genetics in general. Schaffner has a long record of injecting real molecular biology into philosophical discussions of genetics. His treatments of the reduction of Mendelian to molecular genetics first drew philosophical attention to the problems of detail that have fuelled both anti-reductionism and more sophisticated models of theory reduction. An injection of molecular detail into discussions of genetics is particularly necessary at the present time, (...)
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  • Developmental systems and evolutionary explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • Counterfactuals.David Lewis - 1973 - Tijdschrift Voor Filosofie 36 (3):602-605.
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  • Counterfactuals.David Lewis - 1973 - Philosophy of Science 42 (3):341-344.
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  • Varieties of parity.Ulrich E. Stegmann - 2012 - Biology and Philosophy 27 (6):903-918.
    A central idea of developmental systems theory is ‘parity’ or ‘symmetry’ between genes and non-genetic factors of development. The precise content of this idea remains controversial, with different authors stressing different aspects and little explicit comparisons among the various interpretations. Here I characterise and assess several influential versions of parity.
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  • Causal Control and Genetic Causation.Ulrich Stegmann - 2012 - Noûs 48 (3):450-465.
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  • Getting Causes From Powers.Stephen Mumford & Rani Lill Anjum - 2011 - Oxford, GB: Oxford University Press. Edited by Rani Lill Anjum.
    Causation is everywhere in the world: it features in every science and technology. But how much do we understand it? Mumford and Anjum develop a new theory of causation based on an ontology of real powers or dispositions. They provide the first detailed outline of a thoroughly dispositional approach, and explore its surprising features.
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  • Powerful Qualities, Not Pure Powers.Jonathan D. Jacobs - 2011 - The Monist 94 (1):81-102.
    I explore two accounts of properties within a dispositional essentialist (or causal powers) framework, the pure powers view and the powerful qualities view. I first attempt to clarify precisely what the pure powers view is, and then raise objections to it. I then present the powerful qualities view and, in order to avoid a common misconception, offer a restatement of it that I shall call the truthmaker view. I end by briefly defending the truthmaker view against objections.
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  • On the theoretical role of "genetic coding".Peter Godfrey-Smith - 2000 - Philosophy of Science 67 (1):26-44.
    The role played by the concept of genetic coding in biology is discussed. I argue that this concept makes a real contribution to solving a specific problem in cell biology. But attempts to make the idea of genetic coding do theoretical work elsewhere in biology, and in philosophy of biology, are probably mistaken. In particular, the concept of genetic coding should not be used (as it often is) to express a distinction between the traits of whole organisms that are coded (...)
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  • Laws in nature.Stephen Mumford - 2004 - New York: Routledge.
    This book outlines a major new theory of natural laws. The book begins with the question of whether there are any genuinely law-like phenomena in nature. The discussion addresses questions currently being debated by metaphysicians such as whether the laws of nature are necessary or contingent and whether a property can be identified independently of its causal role.
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  • Genes, behavior, and developmental emergentism: One process, indivisible?Kenneth F. Schaffner - 1998 - Philosophy of Science 65 (2):209-252.
    The question of the influence of genes on behavior raises difficult philosophical and social issues. In this paper I delineate what I call the Developmentalist Challenge (DC) to assertions of genetic influence on behavior, and then examine the DC through an indepth analysis of the behavioral genetics of the nematode, C. elegans, with some briefer references to work on Drosophila. I argue that eight "rules" relating genes and behavior through environmentally-influenced and tangled neural nets capture the results of developmental and (...)
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  • The Mind in Nature.C. B. Martin - 2007 - Oxford, GB: Oxford University Press.
    What are the most fundamental features of the world? Do minds stand outside the natural order? Is a unified picture of mental and physical reality possible? The Mind in Nature provides a staunchly realist account of the world as a unified system incorporating both the mental and the physical.
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  • The Mind in Nature * By C. B. MARTIN. [REVIEW]C. Martin - 2009 - Analysis 69 (2):386-388.
    The Mind in Nature has two central aims. First, that of defending a ‘basic ontology’. Second, having advanced a plausible ontological framework, to appeal to it to cast light on the status of intentionality and the nature of consciousness, paying particular attention to the question of what distinguishes conscious systems from those that are vegetative.Central to Martin's basic ontology is his acceptance of a realist conception of dispositionality. Contrary to the view of David Lewis and others, talk about a thing's (...)
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  • Dispositions unmasked.Jan Hauska - 2009 - Theoria 75 (4):304-335.
    The problem of masking is widely regarded as a grave threat to the conditional analysis of dispositions. Unlike the difficulty arising in connection with finkish situations, the problem does not involve the (dis)appearance of a disposition upon the arrival of its activating conditions. Consequently, some promising responses to the finkish cases, in particular David Lewis's reformed analysis, are ill-equipped to deal with masks. I contend that the difficulty posed by masks can be surmounted by supplementing the counterfactual at the heart (...)
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  • Dispositions Unmasked.Jan Hauska - unknown
    The problem of masking is widely regarded as a grave threat to the conditional analysis of dispositions. Unlike the difficulty arising in connection with finkish situations, the problem does not involve the (dis)appearance of a disposition upon the arrival of its activating conditions. Consequently, some promising responses to the finkish cases, in particular David Lewis's reformed analysis, are ill‐equipped to deal with masks. I contend that the difficulty posed by masks can be surmounted by supplementing the counterfactual at the heart (...)
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  • Background.[author unknown] - 2004 - The Chesterton Review 30 (3-4):411-413.
    I was born in Philadelphia, in 1928. I stayed there until I went through undergraduate school at the University of Pennsylvania, then went on to Harvard for a couple of a years in a research fellowship, and graduate school. When I was done with that, went over to MIT, and I've been in Boston ever since, around Boston since about..
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  • Traits, Genes, and Coding.Michael Wheeler - 1998 - In Michael Ruse (ed.), Philosophy of biology. Amherst, N.Y.: Prometheus Books. pp. 369--401.
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