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  1. An ideal disorder? Autism as a psychiatric kind.Daniel A. Weiskopf - 2017 - Philosophical Explorations 20 (2):175-190.
    In recent decades, attempts to explain autism have been frustrated by the heterogeneous nature of its behavioral symptoms and the underlying genetic, neural, and cognitive mechanisms that produce them. This has led some to propose eliminating the category altogether. The eliminativist inference relies on a conception of psychiatric categories as kinds defined by their underlying mechanistic structure. I review the evidence for eliminativism and propose an alternative model of the family of autisms. On this account, autism is a network category (...)
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  • The Population Ecology Programme in Organisation Studies: Problems Caused by Unwarranted Theory Transfer.Markus Scholz & Thomas A. C. Reydon - 2008 - Philosophy of Management 6 (3):39-51.
    Economics and social sciences in general have a long tradition of using theories, models, concepts, and so forth borrowed from the natural sciences to describe and explain the properties and behaviours of economic and social entities. However, unwarranted application of theoretical elements from the natural sciences in the economic/social domain can have adverse consequences for organisations, their employees and society in general. Focusing on biology and organisation studies, we discuss the general problems that may arise when theoretical elements from natural (...)
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  • Taxa hold little information about organisms: Some inferential problems in biological systematics.Thomas A. C. Reydon - 2019 - History and Philosophy of the Life Sciences 41 (4):40.
    The taxa that appear in biological classifications are commonly seen as representing information about the traits of their member organisms. This paper examines in what way taxa feature in the storage and retrieval of such information. I will argue that taxa do not actually store much information about the traits of their member organisms. Rather, I want to suggest, taxa should be understood as functioning to localize organisms in the genealogical network of life on Earth. Taxa store information about where (...)
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  • Taxa hold little information about organisms: Some inferential problems in biological systematics.Thomas A. C. Reydon - 2019 - History and Philosophy of the Life Sciences 41 (4):40.
    The taxa that appear in biological classifications are commonly seen as representing information about the traits of their member organisms. This paper examines in what way taxa feature in the storage and retrieval of such information. I will argue that taxa do not actually store much information about the traits of their member organisms. Rather, I want to suggest, taxa should be understood as functioning to localize organisms in the genealogical network of life on Earth. Taxa store information about where (...)
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  • On radical solutions in the philosophy of biology: What does “individuals thinking” actually solve?Thomas A. C. Reydon - 2019 - Synthese 198 (4):3389-3411.
    The philosophy of biology is witnessing an increasing enthusiasm for what can be called “individuals thinking”. Individuals thinking is a perspective on the metaphysics of biological entities according to which conceiving of them as individuals rather than kinds enables us to expose ongoing metaphysical debates as focusing on the wrong question, and to achieve better accounts of the metaphysics of biological entities. In this paper, I examine two cases of individuals thinking, the claim that species are individuals and the claim (...)
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  • How to fix kind membership: A problem for hpc theory and a solution.Thomas A. C. Reydon - 2009 - Philosophy of Science 76 (5):724-736.
    Natural kinds are often contrasted with other kinds of scientific kinds, especially functional kinds, because of a presumed categorical difference in explanatory value: supposedly, natural kinds can ground explanations, while other kinds of kinds cannot. I argue against this view of natural kinds by examining a particular type of explanation—mechanistic explanation—and showing that functional kinds do the same work there as traditionally recognized natural kinds are supposed to do in “standard” scientific explanations. Breaking down this categorical distinction between traditional natural (...)
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  • Gene names as proper names of individuals: An assessment.Thomas A. C. Reydon - 2009 - British Journal for the Philosophy of Science 60 (2):409-432.
    According to a recent suggestion, the names of gene taxa should be conceived of as referring to individuals with concrete genes as their parts, just as the names of biological species are often understood as denoting individuals with organisms as their parts. Although prima facie this suggestion might advance the debate on gene concepts in a similar way as the species-are-individuals thesis advanced the debate on species concepts, I argue that the principal arguments in support of the gene-individuality thesis are (...)
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  • Classifying Life, Reconstructing History and Teaching Diversity: Philosophical Issues in the Teaching of Biological Systematics and Biodiversity.Thomas A. C. Reydon - 2013 - Science & Education 22 (2):189-220.
  • Natural Kinds in Philosophy and in the Life Sciences: Scholastic Twilight or New Dawn? [REVIEW]Miles MacLeod & Thomas A. C. Reydon - 2013 - Biological Theory 7 (2):89-99.
    This article, which is intended both as a position paper in the philosophical debate on natural kinds and as the guest editorial to this thematic issue, takes up the challenge posed by Ian Hacking in his paper, “Natural Kinds: Rosy Dawn, Scholastic Twilight.” Whereas a straightforward interpretation of that paper suggests that according to Hacking the concept of natural kinds should be abandoned, both in the philosophy of science and in philosophy more generally, we suggest that an alternative and less (...)
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  • Limitations of Natural Kind Talk in the Life Sciences: Homology and Other Cases. [REVIEW]Miles MacLeod - 2013 - Biological Theory 7 (2):109-120.
    The aim of this article is to detail some reservations against the beliefs, claims, or presuppositions that current essentialist natural kind concepts (including homeostatic property cluster kinds) model grouping practices in the life sciences accurately and generally. Such concepts fit reasoning into particular preconceived epistemic and semantic patterns. The ability of these patterns to fit scientific practice is often argued in support of homeostatic property cluster accounts, yet there are reasons to think that in the life sciences kind concepts exhibit (...)
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  • Complexity begets crosscutting, dooms hierarchy.Joyce C. Havstad - 2021 - Synthese 198 (8):7665-7696.
    There is a perennial philosophical dream of a certain natural order for the natural kinds. The name of this dream is ‘the hierarchy requirement’. According to this postulate, proper natural kinds form a taxonomy which is both unique and traditional. Here I demonstrate that complex scientific objects exist: objects which generate different systems of scientific classification, produce myriad legitimate alternatives amongst the nonetheless still natural kinds, and make the hierarchical dream impossible to realize, except at absurdly great cost. Philosophical hopes (...)
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  • Scientific kinds.Marc Ereshefsky & Thomas A. C. Reydon - 2015 - Philosophical Studies 172 (4):969-986.
    Richard Boyd’s Homeostatic Property Cluster Theory is becoming the received view of natural kinds in the philosophy of science. However, a problem with HPC Theory is that it neglects many kinds highlighted by scientific classifications while at the same time endorsing kinds rejected by science. In other words, there is a mismatch between HPC kinds and the kinds of science. An adequate account of natural kinds should accurately track the classifications of successful science. We offer an alternative account of natural (...)
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  • The Systemist Emergentist View of Mahner and Bunge on ‘Species as Individuals’: What Use for Science and Education?Pierre Deleporte - 2012 - Science & Education 21 (10):1535-1544.
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  • Special Issue: Philosophical Considerations in the Teaching of Biology. Part II, Evolution, Development and Genetics.Kostas Kampourakis (ed.) - 2013 - Springer (Science & Education).
  • Engineering differences between natural, social, and artificial kinds.Eric T. Kerr - 2013 - In Maarten Franssen, Peter Kroes, Pieter Vermaas & Thomas A. C. Reydon (eds.), Artefact Kinds: Ontology and the Human-made World. Synthese Library.
    My starting point is that discussions in philosophy about the ontology of technical artifacts ought to be informed by classificatory practices in engineering. Hence, the heuristic value of the natural-artificial distinction in engineering counts against arguments which favour abandoning the distinction in metaphysics. In this chapter, I present the philosophical equipment needed to analyse classificatory practices and then present a case study of engineering practice using these theoretical tools. More in particular, I make use of the Collectivist Account of Technical (...)
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  • Why It Is Time To Move Beyond Nagelian Reduction.Marie I. Kaiser - 2012 - In D. Dieks, W. J. Gonzalez, S. Hartmann, M. Stöltzner & M. Weber (eds.), Probabilities, Laws, and Structures. The Philosophy of Science in a European Perspective. Heidelberg, GER: Springer. pp. 255-272.
    In this paper I argue that it is finally time to move beyond the Nagelian framework and to break new ground in thinking about epistemic reduction in biology. I will do so, not by simply repeating all the old objections that have been raised against Ernest Nagel’s classical model of theory reduction. Rather, I grant that a proponent of Nagel’s approach can handle several of these problems but that, nevertheless, Nagel’s general way of thinking about epistemic reduction in terms of (...)
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