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  1. Lives of the Cell.J. Andrew Mendelsohn - 2003 - Journal of the History of Biology 36 (1):1-37.
    What is the relation between things and theories, the material world and its scientific representations? This is a staple philosophical problem that rarely counts as historically legitimate or fruitful. In the following dialogue, the interlocutors do not argue for or against realism. Instead, they explore changing relations between theories and things, between contested objects of knowledge and less contested, more everyday things. Widely seen as the life sciences' first general theory, the cell theory underwent dramatic changes during the nineteenth century. (...)
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  • Foundations of Human and Animal Sensory Awareness: Descartes and Willis.Deborah Brown & Brian Key - 2023 - In Andrea Strazzoni & Marco Sgarbi (eds.), Reading Descartes. Consciousness, Body, and Reasoning. Florence: Firenze University Press. pp. 81-99.
    In arguing against the likelihood of consciousness in non-human animals, Descartes advances a slippery slope argument that if thought were attributed to any one animal, it would have to be attributed to all, which is absurd. This paper examines the foundations of Thomas Willis’ comparative neuroanatomy against the background of Descartes’ slippery slope argument against animal consciousness. Inspired by Gassendi’s ideas about the corporeal soul, Thomas Willis distinguished between neural circuitry responsible for reflex behaviour and that responsible for cognitively or (...)
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  • The animal model of human disease as a core concept of medical research: Historical cases, failures, and some epistemological considerations.Volker Roelcke - 2022 - Science in Context 35 (2):173-197.
    ArgumentThis article uses four historical case studies to address epistemological issues related to the animal model of human diseases and its use in medical research on human diseases. The knowledge derived from animal models is widely assumed to be highly valid and predictive of reactions by human organisms. In this contribution, I use three significant historical cases of failure (ca. 1890, 1960, 2006), and a closer look at the emergence of the concept around 1860/70, to elucidate core assumptions related to (...)
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  • The Intervening Touch of Mentality.Gordon L. Miller - 2021 - Process Studies 50 (2):155-200.
    Prey-catching behavior (PCB) in frogs and toads has been the focus of intense neuroethological research from the mid-twentieth century to the present and epitomizes some major themes in science and philosophy during this period. It reflects the movement from simple reflexology to more complex views of instinctive behavior, but it also displays a neural reductionism that denies subjectivity and individual agency The present article engages contemporary PCB research but provides a philosophically more promising picture of it based on Whitehead's nonreductionist (...)
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  • Early Modern Experimentation on Live Animals.Domenico Bertoloni Meli - 2013 - Journal of the History of Biology 46 (2):199-226.
    Starting from the works by Aselli on the milky veins and Harvey on the motion of the heart and the circulation of the blood, the practice of vivisection witnessed a resurgence in the early modern period. I discuss some of the most notable cases in the century spanning from Aselli’s work to the investigations of fluid pressure in plants and animals by Stephen Hales. Key figures in my study include Johannes Walaeus, Jean Pecquet, Marcello Malpighi, Reinier de Graaf, Richard Lower, (...)
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  • Before There Were Standards: The Role of Test Animals in the Production of Empirical Generality in Physiology. [REVIEW]Cheryl A. Logan - 2002 - Journal of the History of Biology 35 (2):329-363.
    After 1900, the selective breeding of a few standard animals for research in the life sciences changed the way science was done. Among the pervasive changes was a transformation in scientists' assumptions about relationship between diversity and generality. Examination of the contents of two prominent physiology journals between 1885 and 1900, reveals that scientists used a diverse array of organisms in empirical research. Experimental physiologists gave many reasons for the choice of test animals, some practical and others truly comparative. But, (...)
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  • Geoffroy's Giraffe: The Hagiography of a Charismatic Mammal. [REVIEW]Olivier Lagueux - 2003 - Journal of the History of Biology 36 (2):225 - 247.
    In 1826, the Pasha of Egypt offered to the King Charles X an unusual present: a living giraffe. While offering remarkable animals was a common practice among monarchs, the choice of a giraffe was somewhat extraordinary since it was the first representative of its kind to set foot in France. The Royal Menagerie of the Paris Muséum national d'histoire naturelle was asked to oversee the transportation of this precious mammal and Étienne Geoffroy Saint-Hilaire, one of its professors, was sent to (...)
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  • Technology in scientific practice: how H. J. Muller used the fruit fly to investigate the X-ray machine.Svit Komel - 2023 - History and Philosophy of the Life Sciences 45 (2):1-34.
    Since the practice turn, the role technologies play in the production of scientific knowledge has become a prominent topic in science studies. Much existing scholarship, however, either limits technology to merely mechanical instrumentation or uses the term for a wide variety of items. This article argues that technologies in scientific practice can be understood as a result of past scientific knowledge becoming sedimented in materials, like model organisms, synthetic reagents or mechanical instruments, through the routine use of these materials in (...)
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  • ‘Extreme’ organisms and the problem of generalization: interpreting the Krogh principle.Sara Green, Michael R. Dietrich, Sabina Leonelli & Rachel A. Ankeny - 2018 - History and Philosophy of the Life Sciences 40 (4):65.
    Many biologists appeal to the so-called Krogh principle when justifying their choice of experimental organisms. The principle states that “for a large number of problems there will be some animal of choice, or a few such animals, on which it can be most conveniently studied”. Despite its popularity, the principle is often critiqued for implying unwarranted generalizations from optimal models. We argue that the Krogh principle should be interpreted in relation to the historical and scientific contexts in which it has (...)
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  • The varied lives of organisms: variation in the historiography of the biological sciences.Gerald L. Geison & Manfred D. Laubichler - 2001 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 32 (1):1-29.
    This paper emphasizes the crucial role of variation, at several different levels, for a detailed historical understanding of the development of the biomedical sciences. Going beyond valuable recent studies that focus on model organisms, experimental systems and instruments, we argue that all of these categories can be accommodated within our approach, which pays special attention to organismal and cultural variation. Our empirical examples are drawn in particular from recent historical studies of nineteenth- and early twentieth-century genetics and physiology. Based on (...)
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  • The varied lives of organisms: variation in the historiography of the biological sciences.Gerald L. Geison & Manfred D. Laubichler - 2001 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 32 (1):1-29.
  • De l'animal expérimental au modèle en recherche biomédicale.Gabriel Gachelin - 2008 - Revue Philosophique de la France Et de l'Etranger 133 (3):319-326.
    Depuis le début de l’expérimentation en biologie, les animaux sont utilisés pour étudier des phénomènes inabordables chez l’homme. Le développement, depuis 1985, de procédures d’inactivation chez la souris de gènes suspects d’un rôle en pathologie humaine a produit des souris dites « modèles de maladies humaines » avec l’implicite d’une identité des processus physiopathologiques entre homme et souris. Le passage du modèle pour au modèle de est discuté dans cet article ainsi que le retour nécessaire à une forme d’expérimentation sur (...)
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  • The diversity of experimental organisms in biomedical research may be influenced by biomedical funding.B. R. Erick Peirson, Heather Kropp, Julia Damerow & Manfred D. Laubichler - 2017 - Bioessays 39 (5):1600258.
    Contrary to concerns of some critics, we present evidence that biomedical research is not dominated by a small handful of model organisms. An exhaustive analysis of research literature suggests that the diversity of experimental organisms in biomedical research has increased substantially since 1975. There has been a longstanding worry that organism‐centric funding policies can lead to biases in experimental organism choice, and thus negatively impact the direction of research and the interpretation of results. Critics have argued that a focus on (...)
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  • `What Blood Told Dr Cohn': World War II, Plasma Fractionation, and the Growth of Human Blood Research.Angela N. H. Creager - 1999 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 30 (3):377-405.
  • `What Blood Told Dr Cohn': World War II, Plasma Fractionation, and the Growth of Human Blood Research.Angela N. H. Creager - 1999 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 30 (3):377-405.
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  • Model Organisms Unbound.Angela N. H. Creager - 2022 - Journal of the History of Biology 55 (1):21-28.
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  • Os mártires de Bernard: a sensibilidade do animal experimental como dilema ético do darwinismo na Inglaterra vitoriana.André Luis de Lima Carvalho & Ricardo Waizbort - 2012 - Scientiae Studia 10 (2):355-400.
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  • Animated Bodies in Immunological Practices: Craftsmanship, Embodied Knowledge, Emotions and Attitudes Toward Animals.Daniel Bischur - 2011 - Human Studies 34 (4):407-429.
    Taking up the body turn in sociology, this paper discusses scientific practices as embodied action from the perspective of Husserl’s phenomenological theory of the “Body”. Based on ethnographic data on a biology laboratory it will discuss the importance of the scientist’s Body for the performance of scientific activities. Successful researchers have to be skilled workers using their embodied knowledge for the process of tinkering towards the material transformation of their objects for data production. The researcher’s body then is an instrument (...)
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  • What’s so special about model organisms?Rachel A. Ankeny & Sabina Leonelli - 2011 - Studies in History and Philosophy of Science Part A 42 (2):313-323.
    This paper aims to identify the key characteristics of model organisms that make them a specific type of model within the contemporary life sciences: in particular, we argue that the term “model organism” does not apply to all organisms used for the purposes of experimental research. We explore the differences between experimental and model organisms in terms of their material and epistemic features, and argue that it is essential to distinguish between their representational scope and representational target. We also examine (...)
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  • Making Organisms Model Human Behavior: Situated Models in North-American Alcohol Research, since 1950.Rachel A. Ankeny, Sabina Leonelli, Nicole C. Nelson & Edmund Ramsden - 2014 - Science in Context 27 (3):485-509.
    ArgumentWe examine the criteria used to validate the use of nonhuman organisms in North-American alcohol addiction research from the 1950s to the present day. We argue that this field, where the similarities between behaviors in humans and non-humans are particularly difficult to assess, has addressed questions of model validity by transforming the situatedness of non-human organisms into an experimental tool. We demonstrate that model validity does not hinge on the standardization of one type of organism in isolation, as often the (...)
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  • Model Organisms as Models: Understanding the 'Lingua Franca' of the Human Genome Project.Rachel A. Ankeny - 2001 - Philosophy of Science 68 (S3):S251-S261.
    Through an examination of the actual research strategies and assumptions underlying the Human Genome Project, it is argued that the epistemic basis of the initial model organism programs is not best understood as reasoning via causal analog models. In order to answer a series of questions about what is being modeled and what claims about the models are warranted, a descriptive epistemological method is employed that uses historical techniques to develop detailed accounts which, in turn, help to reveal forms of (...)
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  • Models in medicine.Michael Wilde & Jon Williamson - 2016 - In Miriam Solomon, Jeremy R. Simon & Harold Kincaid (eds.), The Routledge Companion to Philosophy of Medicine. Routledge.