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  1. Genomic Programs as Mechanism Schemas: A Non-Reductionist Interpretation.Tudor M. Baetu - 2012 - British Journal for the Philosophy of Science 63 (3):649-671.
    In this article, I argue that genomic programs are not substitutes for multi-causal molecular mechanistic explanations of inheritance, but abstract representations of the same sort as mechanism schemas already described in the philosophical literature. On this account, the program analogy is not reductionistic and does not ignore or underestimate the active contribution of epigenetic elements to phenotypes and development. Rather, genomic program representations specifically highlight the genomic determinants of inheritance and their organizational features at work in the wider context of (...)
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  • Genes after the human genome project.Tudor M. Baetu - 2012 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 43 (1):191-201.
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  • A Defense of Syntax-Based Gene Concepts in Postgenomics: Genes as Modular Subroutines in the Master Genomic Program.Tudor M. Baetu - 2011 - Philosophy of Science 78 (5):712-723.
    The purpose of this article is to update and defend syntax-based gene concepts. I show how syntax-based concepts can and have been extended to accommodate complex cases of processing and gene expression regulation. In response to difficult cases and causal parity objections, I argue that a syntax-based approach fleshes out a deflationary concept defining genes as genomic sequences and organizational features of the genome contributing to a phenotype. These organizational features are an important part of accepted molecular explanations, provide the (...)
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  • Experimental philosophy of biology: notes from the field.Karola Stotz - 2009 - Studies in History and Philosophy of Science Part A 40 (2):233-237.
    I use a recent ‘experimental philosophy’ study of the concept of the gene conducted by myself and collaborators to discuss the broader epistemological framework within which that research was conducted, and to reflect on the relationship between science, history and philosophy of science, and society.Keywords: Experimental philosophy; Biohumanities; Representing Genes Project; Gene concept; Science criticism; Conceptual ecology.
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  • Sequence Matters: Genomic Research and the Gene Concept.Laura Perini - 2011 - Philosophy of Science 78 (5):752-762.
    Analysis of two key ways of characterizing genes—as causes of phenotypic effects and as genomic DNA sequences—has yielded widespread pessimism that they can be united in a coherent gene concept. This raises important questions about the epistemology of genomic research: If analysis of a genome sequence cannot yield information about genes defined both in terms of their products and their DNA sequence, then what could we learn from it? I investigate basic tools of genomic analysis, argue that they do not (...)
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  • Experimental Philosophy of Economics.Michiru Nagatsu - 2013 - Economics and Philosophy 29 (2):263-76.
    This article is a prelude to an experimental study of the preference concept in economics. I argue that a new empirical approach called experimental philosophy of science is a promising approach to advance the philosophy of economics. In particular, I discuss two debates in the field, the neuroeconomics controversy and the commonsensible realism debate, and suggest how experimental and survey techniques can generate data that will inform these debates. Some of the likely objections from philosophers and economists are addressed, and (...)
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  • Moralizing biology: The appeal and limits of the new compassionate view of nature.Maurizio Meloni - 2013 - History of the Human Sciences 26 (3):82-106.
    In recent years, a proliferation of books about empathy, cooperation and pro-social behaviours has significantly influenced the discourse of the life-sciences and reversed consolidated views of nature as a place only for competition and aggression. In this article I describe the recent contribution of three disciplines – moral psychology, primatology and the neuroscience of morality – to the present transformation of biology and evolution into direct sources of moral phenomena, a process here named the ‘moralization of biology’. I conclude by (...)
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  • Moralizing biology: The appeal and limits of the new compassionate view of nature.Maurizio Meloni - 2013 - History of the Human Sciences 26 (3):82-106.
    In recent years, a proliferation of books about empathy, cooperation and pro-social behaviours (Brooks, 2011a) has significantly influenced the discourse of the life-sciences and reversed consolidated views of nature as a place only for competition and aggression. In this article I describe the recent contribution of three disciplines – moral psychology (Jonathan Haidt), primatology (Frans de Waal) and the neuroscience of morality – to the present transformation of biology and evolution into direct sources of moral phenomena, a process here named (...)
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  • Análisis de la teoría genética a la luz de la estructura de las revoluciones científicas.Pedro Martínez-Gómez, Ana Cuevas-Badallo & María Cerezo - 2015 - Revista de Humanidades de Valparaíso 6:29-48.
    The Post-genomic Era includes features both from a methodological and epistemic point of view and from an ontological perspective. Firstly, it incorporates new methods of high-throughput sequencing of DNA and RNA, and the development of complete genomes that allow a precise reference of the molecular results obtained. In addition, from an ontological perspective, the centre of gravity of the molecular processes is placed on the expression of genes, and the way in which such expression is regulated; these features turn the (...)
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  • Dementia Entanglements in a Postgenomic Era.Margaret Lock - 2011 - Science, Technology, and Human Values 36 (5):685-703.
    As genetic tests become cheaper and more readily available, pressure is increasing to routinely test individuals for susceptibility genes for complex common disorders. Using Alzheimer’s disease as an illustrative example, it is shown how population databases of AD cases on which individual risk estimates are based are faulty due to confusion about the AD phenotype. Furthermore, the APOEe4 genotype associated with increased risk of AD is neither necessary nor sufficient to cause AD. The article concludes with ethnographic findings that result (...)
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  • Philosophical analyses of scientific concepts: A critical appraisal.Daniel Mark Kraemer - 2018 - Philosophy Compass 13 (9):e12513.
    Philosophical analyses of scientific concepts are legion. However, this literature is replete with methodological errors that have largely gone unnoticed. Five distinct projects are conflated which has led to faulty inferences, ambiguities, and mischaracterizations. There has also been some recent enthusiasm for approaches that attempt to rectify problematic scientific concepts but the motivations for these approaches are questionable. I am hopeful that by bringing these various issues to light that it will lead practitioners to be more explicit about their aims (...)
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  • With ‘Genes’ Like That, Who Needs an Environment? Postgenomics’s Argument for the ‘Ontogeny of Information’.Karola Stotz - 2006 - Philosophy of Science 73 (5):905-917.
    The linear sequence specification of a gene product is not provided by the target DNA sequence alone but by the mechanisms of gene expressions. The main actors of these mechanisms, proteins and functional RNAs, relay environmental information to the genome with important consequences to sequence selection and processing. This `postgenomic' reality has implications for our understandings of development not as predetermined by genes but as an epigenetic process. Critics of genetic determinism have long argued that the activity of `genes' and (...)
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  • Genes in the postgenomic era.Paul E. Griffiths & Karola Stotz - 2006 - Theoretical Medicine and Bioethics 27 (6):499-521.
    We outline three very different concepts of the gene—instrumental, nominal, and postgenomic. The instrumental gene has a critical role in the construction and interpretation of experiments in which the relationship between genotype and phenotype is explored via hybridization between organisms or directly between nucleic acid molecules. It also plays an important theoretical role in the foundations of disciplines such as quantitative genetics and population genetics. The nominal gene is a critical practical tool, allowing stable communication between bioscientists in a wide (...)
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  • Experimental philosophy of science.Paul E. Griffiths & Karola Stotz - 2008 - Philosophy Compass 3 (3):507–521.
    Experimental philosophy of science gathers empirical data on how key scientific concepts are understood by particular scientific communities. In this paper we briefly describe two recent studies in experimental philosophy of biology, one investigating the concept of the gene, the other the concept of innateness. The use of experimental methods reveals facts about these concepts that would not be accessible using the traditional method of intuitions about possible cases. It also contributes to the study of conceptual change in science, which (...)
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  • Biohumanities: Rethinking the relationship between biosciences, philosophy and history of science, and society.Karola Stotz & Paul E. Griffiths - 2007 - Quarterly Review of Biology 83 (1):37--45.
    We argue that philosophical and historical research can constitute a ‘Biohumanities’ which deepens our understanding of biology itself; engages in constructive 'science criticism'; helps formulate new 'visions of biology'; and facilitates 'critical science communication'. We illustrate these ideas with two recent 'experimental philosophy' studies of the concept of the gene and of the concept of innateness conducted by ourselves and collaborators.
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  • 2001 and all that: A tale of a third science.Karola Stotz - unknown
    The paper describes the change from molecular genetics to postgenomic biology. It focuses on phenomena in the regulation of gene expression that provide a break with the central dogma, according to which sequence specificity for a gene product must be template derived. In its place we find what is called here ‘constitutive molecular epigenesis’. Its three classes of phenomena, which I call sequence ‘activation’, ‘selection’ and ‘creation’, are exemplified by processes such as transcriptional activation, alternative cis- and trans-splicing, and RNA (...)
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