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  1. (1 other version)Explaining Causal Selection with Explanatory Causal Economy: Biology and Beyond.Laura R. Franklin-Hall - 2015 - In P.-A. Braillard & C. Malaterre (eds.), Explanation in Biology: An Enquiry into the Diversity of Explanatory Patterns in the Life Sciences. Springer. pp. 413-438.
    Among the factors necessary for the occurrence of some event, which of these are selectively highlighted in its explanation and labeled as causes — and which are explanatorily omitted, or relegated to the status of background conditions? Following J. S. Mill, most have thought that only a pragmatic answer to this question was possible. In this paper I suggest we understand this ‘causal selection problem’ in causal-explanatory terms, and propose that explanatory trade-offs between abstraction and stability can provide a principled (...)
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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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  • Genes, Causation and Intentionality.Marcel Weber - 2005 - History and Philosophy of the Life Sciences 27 (3/4):399-411.
    I want to exhibit the deeper metaphysical reasons why some common ways of describing the causal role of genes in development and evolution are problematic. Specifically, I show why using the concept of information in an intentional sense in genetics is inappropriate, even given a naturalistic account of intentionality. Furthermore, I argue that descriptions that use notions such as programming, directing or orchestrating are problematic not for empirical reasons, but because they are not strictly causal. They are intentional. By contrast, (...)
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  • Causes and Conditions.J. L. Mackie - 1965 - American Philosophical Quarterly 2 (4):245 - 264.
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  • (1 other version)Genetic determinism and the innate-acquired distinction.Maria Kronfeldner - 2009 - Medicine Studies 1 (2):167-181.
    This article illustrates in which sense genetic determinism is still part of the contemporary interactionist consensus in medicine. Three dimensions of this consensus are discussed: kinds of causes, a continuum of traits ranging from monogenetic diseases to car accidents, and different kinds of determination due to different norms of reaction. On this basis, this article explicates in which sense the interactionist consensus presupposes the innate?acquired distinction. After a descriptive Part 1, Part 2 reviews why the innate?acquired distinction is under attack (...)
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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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  • Essays on ethics, religion and society.J. S. Mill - 1981 - In John Stuart Mill (ed.), The collected works of John Stuart Mill. Indianapolis, Ind.: Liberty Fund.
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  • The difference between cause and condition.Alex Broadbent - 2008 - Proceedings of the Aristotelian Society 108 (1pt3):355-364.
    Commonly we distinguish the strike of a match, as a cause of the match lighting, from the presence of oxygen, as a mere condition. In this paper I propose an account of this phenomenon, which I call causal selection. I suggest some reasons for taking causal selection seriously, and indicate some shortcomings of the popular contrastive approach. Chief among these is the lack of an account of contrast choice. I propose that contrast choice is often just the counterfactual scenario in (...)
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  • The metaphysics of causation.Jonathan N. D. Schaffer - 2008 - Stanford Encyclopedia of Philosophy.
    Questions about the metaphysics of causation may be usefully divided as follows. First, there are questions about the nature of the causal relata, including (1.1) whether they are in spacetime immanence), (1.2) how fine grained they are individuation), and (1.3) how many there are adicity). Second, there are questions about the metaphysics of the causal relation, including (2.1) what is the difference between causally related and causally unrelated sequences connection), (2.2) what is the difference between sequences related as cause to (...)
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  • Causation in the law.Antony Honoré - 2008 - Stanford Encyclopedia of Philosophy.
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  • How Biological Technology Should Inform the Causal Selection Debate.Janella Baxter - 2019 - Philosophy, Theory, and Practice in Biology 11.
    Waters’s (2007) actual difference making and Weber’s (2013, 2017) biological normality approaches to causal selection have received many criticisms, some of which miss their target. Disagreement about whether Waters’s and Weber’s views succeed in providing criteria that uniquely singles out the gene as explanatorily significant in biology has led philosophers to overlook a prior problem. Before one can address whether Waters’s and Weber’s views successfully account for the explanatory significance of genes, one must ask whether either view satisfactorily meets the (...)
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  • (1 other version)Dealing with the changeable and blurry edges of living things: a modified version of property-cluster kinds.María J. Ferreira Ruiz & Jon Umerez - 2018 - European Journal for Philosophy of Science 8 (3):493-518.
    Despite many attempts to achieve an adequate definition of living systems by means of a set of necessary and sufficient conditions, the opinion that such an enterprise is inexorably destined to fail is increasingly gaining support. However, we believe options do not just come down to either having faith in a future success or endorsing skepticism. In this paper, we aim to redirect the discussion of the problem by shifting the focus of attention from strict definitions towards a philosophical framework (...)
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  • The Dialectical Biologist.Philip Kitcher, Richard Levins & Richard Lewontin - 1989 - Philosophical Review 98 (2):262.
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  • 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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  • Causal Control: A Rationale for Causal Selection.Lauren N. Ross - 2015
    Causal selection has to do with the distinction we make between background conditions and “the” true cause or causes of some outcome of interest. A longstanding consensus in philosophy views causal selection as lacking any objective rationale and as guided, instead, by arbitrary, pragmatic, and non-scientific considerations. I argue against this position in the context of causal selection for disease traits. In this domain, causes are selected on the basis of the type of causal control they exhibit over a disease (...)
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  • (1 other version)Genetic Determinism and the Innate-Acquired Distinction in Medicine.Maria E. Kronfeldner - 2009 - Medicine Studies (2):167-181.
    This article illustrates in which sense genetic determinism is still part of the contemporary interactionist consensus in medicine. Three dimensions of this consensus are discussed: kinds of causes, a continuum of traits ranging from monogenetic diseases to car accidents, and different kinds of determination due to different norms of reaction. On this basis, this article explicates in which sense the interactionist consensus presupposes the innate?acquired distinction. After a descriptive Part 1, Part 2 reviews why the innate?acquired distinction is under attack (...)
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  • Powers: A Study in Metaphysics.George Molnar - 2003 - New York: Oxford University Press. Edited by Stephen Mumford.
    George Molnar came to see that the solution to a number of the problems of contemporary philosophy lay in the development of an alternative to Hume's metaphysics. This alternative would have real causal powers at its centre. Molnar set about developing a thorough account of powers that might persuade those who remained, perhaps unknowingly, in the grip of Humean assumptions. He succeeded in producing something both highly focused and at the same time wide-ranging. He showed both that the notion of (...)
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  • (1 other version)Dealing with the changeable and blurry edges of living things: a modified version of property-cluster kinds.Jon Umerez & María J. Ferreira Ruiz - 2018 - European Journal for Philosophy of Science 8 (3):493-518.
    Despite many attempts to achieve an adequate definition of living systems by means of a set of necessary and sufficient conditions, the opinion that such an enterprise is inexorably destined to fail is increasingly gaining support. However, we believe options do not just come down to either having faith in a future success or endorsing skepticism. In this paper, we aim to redirect the discussion of the problem by shifting the focus of attention from strict definitions towards a philosophical framework (...)
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  • (1 other version)Powers: A Study in Metaphysics.George Molnar & Stephen Mumford - 2006 - Philosophy and Phenomenological Research 72 (2):485-487.
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  • Cycles of Contingency: Developmental Systems and Evolution.Susan Oyama, Paul Griffiths & Russell D. Gray (eds.) - 2001 - MIT Press.
    The nature/nurture debate is not dead. Dichotomous views of development still underlie many fundamental debates in the biological and social sciences. Developmental systems theory offers a new conceptual framework with which to resolve such debates. DST views ontogeny as contingent cycles of interaction among a varied set of developmental resources, no one of which controls the process. These factors include DNA, cellular and organismic structure, and social and ecological interactions. DST has excited interest from a wide range of researchers, from (...)
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  • Comparing apples with oranges.Robert Northcott - 2005 - Analysis 65 (1):12-18.
    Comparisons of causal efficacy are ubiquitous in the practice of science and indeed everyday life. I focus on just one aspect of this task – one to my knowledge nowhere yet addressed satisfactorily – namely, comparing the efficacies of two causes that work in apparently incommensurable ways. Contrary to common opinion I argue that, to be comparable, it is neither necessary nor sufficient that two causes also be commensurable.
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  • The Organism as the Subject and Object of Evolution.Richard C. Lewontin - 1983 - Scientia 77 (18):65.
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  • Not in Our Genes: Biology, Ideology and Human Nature.Steven Rose, Richard Charles Lewontin & Leon J. Kamin - 1984 - Pantheon.
    Three eminent scientists analyze the scientific, social, and political roots of biological determinism.
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  • The triple helix: gene, organism, and environment.Richard C. Lewontin - 2000 - Cambridge: Harvard University Press. Edited by Richard C. Lewontin.
    One of our most brilliant evolutionary biologists, Richard Lewontin has also been a leading critic of those--scientists and non-scientists alike--who would misuse the science to which he has contributed so much. In The Triple Helix, Lewontin the scientist and Lewontin the critic come together to provide a concise, accessible account of what his work has taught him about biology and about its relevance to human affairs. In the process, he exposes some of the common and troubling misconceptions that misdirect and (...)
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  • (1 other version)Developmental systems and evolutionary explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • On the nature and the observability of the causal relation.Curt J. Ducasse - 1926 - Journal of Philosophy 23 (3):57-68.
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  • (1 other version)7 The Fearless Vampire Conservator: Philip Kitcher, Genetic Determinism, and the Informational Gene.Paul E. Griffiths - 2006 - In Eva M. Neumann-Held, Christoph Rehmann-Sutter, Barbara Herrnstein Smith & E. Roy Weintraub (eds.), Genes in Development: Re-reading the Molecular Paradigm. Duke University Press. pp. 175-198.
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  • (1 other version)Developmental Systems and Evolutionary Explanation.P. E. Griffiths & R. D. Gray - 1994 - Journal of Philosophy 91 (6):277-304.
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  • Degrees of Causation.Matthew Braham & Martin van Hees - 2009 - Erkenntnis 71 (3):323 - 344.
    The primary aim of this paper is to analyze the concept of degrees of causal contribution for actual events and examine the way in which it can be formally defined. This should go some way to filling out a gap in the legal and philosophical literature on causation. By adopting the conception of a cause as a necessary element of a sufficient set (the so-called NESS test) we show that the concept of degrees of causation can be given clear and (...)
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  • Degrees of Causation.Matthew Braham & Martin Hees - 2009 - Erkenntnis 71 (3):323-344.
    The primary aim of this paper is to analyze the concept of degrees of causal contribution for actual events and examine the way in which it can be formally defined. This should go some way to filling out a gap in the legal and philosophical literature on causation. By adopting the conception of a cause as a necessary element of a sufficient set (the so-called NESS test) we show that the concept of degrees of causation can be given clear and (...)
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  • Behaving: What's Genetic, What's Not, and Why Should We Care?Kenneth F. Schaffner - 2016 - New York, US: Oxford University Press USA.
    Behaving presents an overview of the recent history and methodology of behavioral genetics and psychiatric genetics, informed by a philosophical perspective. Kenneth F. Schaffner addresses a wide range of issues, including genetic reductionism and determinism, "free will," and quantitative and molecular genetics. The latter covers newer genome-wide association studies that have produced a paradigm shift in the subject, and generated the problem of "missing heritability." Schaffner also presents cases involving pro and con arguments for genetic testing for IQ and for (...)
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  • The Triple Helix: Gene, Organism, and Environment.Richard Lewontin - 2000 - Journal of the History of Biology 33 (3):611-612.
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  • The analysis of variance and the analysis of causes.Richard C. Lewontin - 1974 - American Journal of Human Genetics 26 (3):400-11.
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  • The Elements : Properties.George Molnar - 2003 - In Powers: A Study in Metaphysics. New York: Oxford University Press.
    This chapter gives a broad description of the nature of properties and explains the foundations of metaphysics. It provides general statements about properties and how they describe parts of a metaphysical environment. These properties are used to develop the theory of causal powers. The chapter also attempts to address the ‘rights’ and ‘wrongs’ of nominalism and realism, including selective realism and its properties. The chapter also introduces conceptual distinctions such as derivative-basic, first-order-higher-order, simple-complex, essential-necessary-accidental, extrinsic-intrinsic, and transferable-non-transferrable. Secondary definitions are (...)
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