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  1. Biochemical Kinds and the Unity of Science.Francesca Bellazzi - 2023 - Dissertation, University of Bristol
    The present thesis explores some metaphysical issues concerning biochemical kinds and the relations between chemical and biological properties and phenomena. The main result of this thesis is that there is something sui generis about biochemical kinds. This result is motivated by two theoretical steps. The first is characterising biochemical functions as weakly emergent from the chemical structure [Chapter 3, Chapter 6]. The second is via an account for which biochemical kinds are natural categories [Chapter 4, Chapter 7]. The thesis comprises (...)
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  • Psa 2018.Philsci-Archive -Preprint Volume- - unknown
    These preprints were automatically compiled into a PDF from the collection of papers deposited in PhilSci-Archive in conjunction with the PSA 2018.
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  • The Selfish Gene Revisited: Reconciliation of Williams-Dawkins and Conventional Definitions.Donald R. Forsdyke - 2010 - Biological Theory 5 (3):246-255.
    Sightings of the revolutionary comet that appeared in the skies of evolutionary biology in 1976—the selfish gene—date back to the 19th and early 20th centuries. It became generally recognized that genes were located on chromosomes and compete with each other in a manner consistent with the later appellation “selfish.” Chromosomes were seen as disruptable by the apparently random “cut and paste” process known as recombination. However, each gene was only a small part of its chromosome. On a statistical basis a (...)
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  • The Selfish Gene Revisited: Reconciliation of Williams-Dawkins and Conventional Definitions.Donald R. Forsdyke - 2010 - Biological Theory 5 (3):246-255.
    Sightings of the revolutionary comet that appeared in the skies of evolutionary biology in 1976—the selfish gene—date back to the 19th and early 20th centuries. It became generally recognized that genes were located on chromosomes and compete with each other in a manner consistent with the later appellation “selfish.” Chromosomes were seen as disruptable by the apparently random “cut and paste” process known as recombination. However, each gene was only a small part of its chromosome. On a statistical basis a (...)
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  • Philosophy, Drama and Literature.Rick Benitez - 2011 - In Graham Robert Oppy, Nick Trakakis, Lynda Burns, Steven Gardner & Fiona Leigh (eds.), A companion to philosophy in Australia & New Zealand. Clayton, Victoria, Australia: Monash University Publishing. pp. 371-372.
    Philosophy and Literature is an internationally renowned refereed journal founded by Denis Dutton at the University of Canterbury, Christchurch. It is now published by the Johns Hopkins University Press. Since its inception in 1976, Philosophy and Literature has been concerned with the relation between literary and philosophical studies, publishing articles on the philosophical interpretation of literature as well as the literary treatment of philosophy. Philosophy and Literature has sometimes been regarded as iconoclastic, in the sense that it repudiates academic pretensions, (...)
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  • Contemporary Concepts of Time in Western Science and Philosophy.Peter J. Riggs - 2015 - In Jebb A. McGrath & M. A. (ed.), Long History, Deep Time. ANU Press. pp. 47-66.
    The perplexing nature of time has been more contemplated, speculated, written, and debated about over the ages than virtually any other subject, with the possible exception of religion. Yet time seems more elusive than the vast majority of other metaphysical concepts. Time remains mysterious, for we lack an understanding of time at a basic physical level. Concepts of time in theories of modern physics and time as found in contemporary western analytic philosophy are discussed.
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  • Has there been Conceptual Progress in The Science of Emotion?Peter Zachar - 2010 - Emotion Review 2 (4):381-382.
    Izard’s claim that the term emotion works well as an adjective is closer to B. F. Skinner’s position than is acknowledged. Based on Izard’s survey of scientists, I argue that the lack of consensus on emotion as a unitary construct could be considered to represent the dissolution of emotions. Given that something similar has happened in biology with the dissolution of the unitary gene construct, this development in psychology may not be as problematic as it initially sounds.
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  • What’s wrong with evolutionary biology?John J. Welch - 2017 - Biology and Philosophy 32 (2):263-279.
    There have been periodic claims that evolutionary biology needs urgent reform, and this article tries to account for the volume and persistence of this discontent. It is argued that a few inescapable properties of the field make it prone to criticisms of predictable kinds, whether or not the criticisms have any merit. For example, the variety of living things and the complexity of evolution make it easy to generate data that seem revolutionary, and lead to disappointment with existing explanatory frameworks. (...)
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  • DNA codes and information: Formal structures and relational causes.Richard V. Sternberg - 2008 - Acta Biotheoretica 56 (3):205-232.
    Recently the terms “codes” and “information” as used in the context of molecular biology have been the subject of much discussion. Here I propose that a variety of structural realism can assist us in rethinking the concepts of DNA codes and information apart from semantic criteria. Using the genetic code as a theoretical backdrop, a necessary distinction is made between codes qua symbolic representations and information qua structure that accords with data. Structural attractors are also shown to be entailed by (...)
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  • Epistemic Authority, Philosophical Explication, and the Bio-Statistical Theory of Disease.Somogy Varga - 2020 - Erkenntnis 85 (4):937-956.
    Christopher Boorse’s Health care ethics: an introduction, Temple University Press, Philadelphia, pp 359–393, 1987; in Humber, Almeder, Totowa What is disease?, Humana Press, New York City, pp 1–134, 1997; J Med Philos, 39:683–724, 2014) Bio-Statistical Theory comprehends diseases in terms of departures from natural norms, which involve an objectively describable deviation from the proper physiological or psychological functioning of parts of the human organism. I argue that while recent revisions and additional considerations shield the BST from a number of issues (...)
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  • Genes, genomes, and developmental process.Jebediah Taylor, Staci Meredith Weiss & Peter J. Marshall - 2023 - Behavioral and Brain Sciences 46:e204.
    The view advanced by Madole & Harden falls back on the dogma of a gene as a DNA sequence that codes for a fixed product with an invariant function regardless of temporal and spatial contexts. This outdated perspective entrenches the metaphor of genes as static units of information and glosses over developmental complexities.
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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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  • Nature’s Dark Domain: An Argument for a Naturalized Phenomenology.David Roden - 2013 - Royal Institute of Philosophy Supplement 72:169-88.
    Phenomenology is based on a doctrine of evidence that accords a crucial role to the human capacity to conceptualise or ‘intuit’ features of their experience. However, there are grounds for holding that some experiential entities to which phenomenologists are committed must be intuition-transcendent or ‘dark’. Examples of dark phenomenology include the very fine-grained perceptual discriminations which Thomas Metzinger calls ‘Raffman Qualia’ and, crucially, the structure of temporal awareness. It can be argued, on this basis, that phenomenology is in much the (...)
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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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  • Why Non-Directiveness is Insufficient: Ethics of Genetic Decision Making and a Model of Agency. [REVIEW]Christoph Rehmann-Sutter - 2009 - Medicine Studies 1 (2):113-129.
    There is no consensus about the ethical ideal of genetic counselling and decision making. This paper reviews and discusses some of the most prominent ethical arguments that have been brought forward against the non-directiveness principle (NDP), which has been the ethical gold standard for a long time. These arguments can be classed in four categories: (i) NDP can be against the best interests of the individuals concerned; (ii) NDP has ideological elements that do not adequately represent the counselling ethos; (iii) (...)
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  • Circadian clocks signal future states of affairs.Brant Pridmore - 2022 - Biology and Philosophy 37 (6):1-24.
    On receiver-based teleosemantic theories of representation, the chemical states of the circadian clocks in animal, plant and cyanobacterial cells constitute signals of future states of affairs, often the rising and setting of the sun. This signalling is much more rigid than sophisticated representational systems like human language, but it is not simple on all dimensions. In most organisms the clock regulates many different circadian rhythms. The process of entrainment ensures that the mapping between chemical states of the clock and the (...)
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  • Toolbox murders: putting genes in their epigenetic and ecological contexts: P. Griffiths and K. Stotz: Genetics and philosophy: an introduction. [REVIEW]Thomas Pradeu - 2016 - Biology and Philosophy 31 (1):125-142.
    Griffiths and Stotz’s Genetics and Philosophy: An Introduction offers a very good overview of scientific and philosophical issues raised by present-day genetics. Examining, in particular, the questions of how a “gene” should be defined and what a gene does from a causal point of view, the authors explore the different domains of the life sciences in which genetics has come to play a decisive role, from Mendelian genetics to molecular genetics, behavioural genetics, and evolution. In this review, I highlight what (...)
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  • Human Nature and Respect for the Evolutionarily Given: a Comment on Lewens.Russell Powell - 2012 - Philosophy and Technology 25 (4):485-493.
    Any serious ethical discussion of the enhancement of human nature must begin with a reasonably accurate picture of the causal-historical structure of the living world. In this Comment, I show that even biologically sophisticated ethical discussions of the biomedical enhancement of species and speciel natures are susceptible to the kind of essentialistic thinking that Lewens cautions against. Furthermore, I argue that the same evolutionary and developmental considerations that compel Lewens to reject more plausible conceptions of human nature pose equally serious (...)
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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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  • Espousing interactions and Fielding reactions: Addressing laypeople's beliefs about genetic determinism.David S. Moore - 2008 - Philosophical Psychology 21 (3):331 – 348.
    Although biologists and philosophers of science generally agree that genes cannot determine the forms of biological and psychological traits, students, journalists, politicians, and other members of the general public nonetheless continue to embrace genetic determinism. This article identifies some of the concerns typically raised by individuals when they first encounter the systems perspective that biologists and philosophers of science now favor over genetic determinism, and uses arguments informed by that perspective to address those concerns. No definitive statements can yet be (...)
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  • Disciplinary Fields in the Life Sciences: Evolving Divides and Anchor Concepts.Alessandro Minelli - 2020 - Philosophies 5 (4):34.
    Recent and ongoing debates in biology and in the philosophy of biology reveal widespread dissatisfaction with the current definitions or circumscriptions, which are often vague or controversial, of key concepts such as the gene, individual, species, and homology, and even of whole disciplinary fields within the life sciences. To some extent, the long growing awareness of these conceptual issues and the contrasting views defended in their regard can be construed as a symptom of the need to revisit traditional unchallenged partitions (...)
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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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  • The Evolutionary Gene and the Extended Evolutionary Synthesis.Qiaoying Lu & Pierrick Bourrat - 2017 - British Journal for the Philosophy of Science 69 (3):775-800.
    Advocates of an ‘extended evolutionary synthesis’ have claimed that standard evolutionary theory fails to accommodate epigenetic inheritance. The opponents of the extended synthesis argue that the evidence for epigenetic inheritance causing adaptive evolution in nature is insufficient. We suggest that the ambiguity surrounding the conception of the gene represents a background semantic issue in the debate. Starting from Haig’s gene-selectionist framework and Griffiths and Neumann-Held’s notion of the evolutionary gene, we define senses of ‘gene’, ‘environment’, and ‘phenotype’ in a way (...)
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  • Integrating Philosophy of Science into Research on Ethical, Legal and Social Issues in the Life Sciences.Simon Lohse, Martin S. Wasmer & Thomas A. C. Reydon - 2020 - Perspectives on Science 28 (6):700-736.
    This paper argues that research on normative issues in the life sciences will benefit from a tighter integration of philosophy of science. We examine research on ethical, legal and social issues in the life sciences (“ELSI”) and discuss three illustrative examples of normative issues that arise in different areas of the life sciences. These examples show that important normative questions are highly dependent on epistemic issues which so far have not been addressed sufficiently in ELSI, RRI and related areas of (...)
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  • Transposon dynamics and the epigenetic switch hypothesis.Stefan Linquist & Brady Fullerton - 2021 - Theoretical Medicine and Bioethics 42 (3):137-154.
    The recent explosion of interest in epigenetics is often portrayed as the dawning of a scientific revolution that promises to transform biomedical science along with developmental and evolutionary biology. Much of this enthusiasm surrounds what we call the epigenetic switch hypothesis, which regards certain examples of epigenetic inheritance as an adaptive organismal response to environmental change. This interpretation overlooks an alternative explanation in terms of coevolutionary dynamics between parasitic transposons and the host genome. This raises a question about whether epigenetics (...)
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  • Elusive vehicles of genetic representation.Riin Kõiv - 2020 - Biology and Philosophy 35 (1):1-24.
    The teleosemantic theory of representational content is held by some philosophers to imply that genes carry semantic information about whole-organism phenotypes. In this paper, I argue that this position is not supported by empirical findings. I focus on one of the most elaborate defenses of this position: Shea’s view that genes represent whole-organism phenotypes. I distinguish between two ways of individuating genes in contemporary biological science as possible vehicles of representational content—as molecular genes and as difference-maker genes. I show that (...)
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  • Did you just say what I think you said? Talking about genes, identity and information.Adam Henschke - 2010 - Identity in the Information Society 3 (3):435-456.
    Genetic information is becoming increasingly used in modern life, extending beyond medicine to familial history, forensics and more. Following this expansion of use, the effect of genetic information on people’s identity and ultimately people’s quality of life is being explored in a host of different disciplines. While a multidisciplinary approach is commendable and necessary, there is the potential for the multidisciplinarity to produce conceptual misconnection. That is, while experts in one field may understand their use of a term like ‘gene’, (...)
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  • The Protein‐Coding Human Genome: Annotating High‐Hanging Fruits.Klas Hatje, Stefanie Mühlhausen, Dominic Simm & Martin Kollmar - 2019 - Bioessays 41 (11):1900066.
    The major transcript variants of human protein‐coding genes are annotated to a certain degree of accuracy combining manual curation, transcript data, and proteomics evidence. However, there is considerable disagreement on the annotation of about 2000 genes—they can be protein‐coding, noncoding, or pseudogenes—and on the annotation of most of the predicted alternative transcripts. Pure transcriptome mapping approaches seem to be limited in discriminating functional expression from noise. These limitations have partially been overcome by dedicated algorithms to detect alternative spliced micro‐exons and (...)
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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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  • What is a gene?—Revisited.Raphael Falk - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (4):396-406.
  • What is a gene?—Revisited.Raphael Falk - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (4):396-406.
    The dialectic discourse of the ‘gene’ as the unit of heredity deduced from the phenotype, whether an intervening variable or a hypothetical construct, appeared to be settled with the presentation of the molecular model of DNA: the gene was reduced to a sequence of DNA that is transcribed into RNA that is translated into a polypeptide; the polypeptides may fold into proteins that are involved in cellular metabolism and structure, and hence function. This path turned out to be more bewildering (...)
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  • Is the creation of artificial life morally significant?Thomas Douglas, Russell Powell & Julian Savulescu - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4b):688-696.
    In 2010, the Venter lab announced that it had created the first bacterium with an entirely synthetic genome. This was reported to be the first instance of ‘artificial life,’ and in the ethical and policy discussions that followed it was widely assumed that the creation of artificial life is in itself morally significant. We cast doubt on this assumption. First we offer an account of the creation of artificial life that distinguishes this from the derivation of organisms from existing life (...)
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  • A plea for an experimental philosophy of medicine.Andreas De Block & Kristien Hens - 2021 - Theoretical Medicine and Bioethics 42 (3):81-89.
  • Revising, Correcting, and Transferring Genes.Bryan Cwik - 2020 - American Journal of Bioethics 20 (8):7-18.
    The distinction between germline and somatic gene editing is fundamental to the ethics of human gene editing. Multiple conferences of scientists, ethicists, and policymakers, and multiple professional bodies, have called for moratoria on germline gene editing, and editing of human germline cells is considered to be an ethical “red line” that either never should be crossed, or should only be crossed with great caution and care. However, as research on germline gene editing has progressed, it has become clear that not (...)
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  • What are genes “for” or where are traits “from”? What is the question?Anne V. Buchanan, Samuel Sholtis, Joan Richtsmeier & Kenneth M. Weiss - 2009 - Bioessays 31 (2):198-208.
    For at least a century it has been known that multiple factors play a role in the development of complex traits, and yet the notion that there are genes “for” such traits, which traces back to Mendel, is still widespread. In this paper, we illustrate how the Mendelian model has tacitly encouraged the idea that we can explain complexity by reducing it to enumerable genes. By this approach many genes associated with simple as well as complex traits have been identified. (...)
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  • Unifying heritability in evolutionary theory.Pierrick Bourrat - 2022 - Studies in History and Philosophy of Science Part A 91 (C):201-210.
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  • Why genes are like lemons.F. Boem, E. Ratti, M. Andreoletti & G. Boniolo - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 57 (June):88-95.
    In the last few years, the lack of a unitary notion of gene across biological sciences has troubled the philosophy of biology community. However, the debate on this concept has remained largely historical or focused on particular cases presented by the scientific empirical advancements. Moreover, in the literature there are no explicit and reasonable arguments about why a philosophical clarification of the concept of gene is needed. In our paper, we claim that a philosophical clarification of the concept of gene (...)
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  • The emergence of the postgenomic gene.Francesca Bellazzi - 2022 - European Journal for Philosophy of Science 12 (1):1-21.
    The identity and the existence of genes has been challenged by postgenomic discoveries. Specifically, the consideration of molecular and cellular phenomena in which genes are embedded has proved relevant for their understanding. In response to these challenges, I will argue that the complexity of genetic phenomena supports the weak emergence of genes from the DNA. In Section 2, I will expose what genes are taken to be in the postgenomic world. In Section 3, I will present the relevant account of (...)
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  • 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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  • EvoDevo: An Ongoing Revolution?Salvatore Ivan Amato - 2020 - Philosophies 5 (4):35.
    Since its appearance, Evolutionary Developmental Biology (EvoDevo) has been called an emerging research program, a new paradigm, a new interdisciplinary field, or even a revolution. Behind these formulas, there is the awareness that something is changing in biology. EvoDevo is characterized by a variety of accounts and by an expanding theoretical framework. From an epistemological point of view, what is the relationship between EvoDevo and previous biological tradition? Is EvoDevo the carrier of a new message about how to conceive evolution (...)
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  • Rethinking the problem of cognition.Mikio Akagi - 2018 - Synthese 195 (8):3547-3570.
    The present century has seen renewed interest in characterizing cognition, the object of inquiry of the cognitive sciences. In this paper, I describe the problem of cognition—the absence of a positive characterization of cognition despite a felt need for one. It is widely recognized that the problem is motivated by decades of controversy among cognitive scientists over foundational questions, such as whether non-neural parts of the body or environment can realize cognitive processes, or whether plants and microbes have cognitive processes. (...)
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  • International Handbook of Research in History, Philosophy and Science Teaching.Michael R. Matthews (ed.) - 2014 - Springer.
    This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is, informed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the (...)
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  • Gene.Hans-Jörg Rheinberger - 2008 - Stanford Encyclopedia of Philosophy.
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  • Population genetics.Samir Okasha - unknown - Stanford Encyclopedia of Philosophy.
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  • What is an organism? An immunological answer.Thomas Pradeu - 2010 - History and Philosophy of the Life Sciences 32 (2-3):247-267.
    The question “What is an organism?”, formerly considered as essential in biology, has now been increasingly replaced by a larger question, “What is a biological individual?”. On the grounds that i) individuation is theory-dependent, and ii) physiology does not offer a theory, biologists and philosophers of biology have claimed that it is the theory of evolution by natural selection which tells us what counts as a biological individual. Here I show that one physiological field, immunology, offers a theory, which makes (...)
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  • Idealist Origins: 1920s and Before.Martin Davies & Stein Helgeby - 2014 - In Graham Oppy & Nick Trakakis (eds.), History of Philosophy in Australia and New Zealand. Dordrecht, Netherlands: Springer. pp. 15-54.
    This paper explores early Australasian philosophy in some detail. Two approaches have dominated Western philosophy in Australia: idealism and materialism. Idealism was prevalent between the 1880s and the 1930s, but dissipated thereafter. Idealism in Australia often reflected Kantian themes, but it also reflected the revival of interest in Hegel through the work of ‘absolute idealists’ such as T. H. Green, F. H. Bradley, and Henry Jones. A number of the early New Zealand philosophers were also educated in the idealist tradition (...)
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  • Cognition in Practice: Conceptual Development and Disagreement in Cognitive Science.Mikio Akagi - 2016 - Dissertation, University of Pittsburgh
    Cognitive science has been beset for thirty years by foundational disputes about the nature and extension of cognition—e.g. whether cognition is necessarily representational, whether cognitive processes extend outside the brain or body, and whether plants or microbes have them. Whereas previous philosophical work aimed to settle these disputes, I aim to understand what conception of cognition scientists could share given that they disagree so fundamentally. To this end, I develop a number of variations on traditional conceptual explication, and defend a (...)
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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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