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  1. Animal Bodies in the Production of Scientific Knowledge: Modelling Medicine.Lynda Birke - 2012 - Body and Society 18 (3-4):156-178.
    What role do nonhuman animals play in the construction of medical knowledge? Animal researchers typically claim that their use has been essential to progress – but just how have animals fitted into the development of biomedicine? In this article, I trace how nonhuman animals, and their body parts, have become incorporated into laboratory processes and places. They have long been designed to fit into scientific procedures – now increasingly so through genetic design. Animals and procedures are closely connected – animals (...)
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  • The uses of trauma in experiment: Traumatic stress and the history of experimental neurosis, c. 1925–1975.Ulrich Koch - 2019 - Science in Context 32 (3):327-351.
    ArgumentThe article retraces the shifting conceptualizations of psychological trauma in experimental psychopathological research in the middle decades of the twentieth century in the United States. Among researchers studying so-called experimental neuroses in animal laboratories, trauma was an often-invoked category used to denote the clash of conflicting forces believed to lead to neurotic suffering. Experimental psychologists, however, soon grew skeptical of the traumatogenic model and ultimately came to reject neurosis as a disease entity. Both theoretical differences and practical circumstances, such as (...)
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  • Füttern und gefüttert werden. Versorgungskreisläufe und Nahrungsregimes im Königlich Preußischen Institut für experimentelle Therapie, ca. 1900 bis 1910.Axel C. Hüntelmann - 2012 - Berichte Zur Wissenschaftsgeschichte 35 (4):300-321.
    Feeding and Being Fed. Supply Cycles and Nutrition Regimes at the Royal Prussian Institute for Experimental Therapy, 1900 to 1910. The article explores the everyday life and especially the feeding practices in the laboratories of the Institute for Experimental Therapy and the Georg Speyer House in Frankfurt, Germany, in the decade after 1900. The text focuses on the experimental animals and their entangled relationship to humans in the two institutes where life‐scientists tested the therapeutic effect of chemicals and dyestuffs on (...)
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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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  • Patterns of Infection and Patterns of Evolution: How a Malaria Parasite Brought “Monkeys and Man” Closer Together in the 1960s.Rachel Mason Dentinger - 2016 - Journal of the History of Biology 49 (2):359-395.
    In 1960, American parasitologist Don Eyles was unexpectedly infected with a malariaparasite isolated from a macaque. He and his supervisor, G. Robert Coatney of the National Institutes of Health, had started this series of experiments with the assumption that humans were not susceptible to “monkey malaria.” The revelation that a mosquito carrying a macaque parasite could infect a human raised a whole range of public health and biological questions. This paper follows Coatney’s team of parasitologists and their subjects: from the (...)
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  • “You've Got to Work on This Axon”: J. Z. Young and Squid Giant Axon Preparations in 20th‐Century Neurobiology.Kathryn Maxson Jones - 2022 - Berichte Zur Wissenschaftsgeschichte 45 (3):317-331.
    Berichte zur Wissenschaftsgeschichte, Volume 45, Issue 3, Page 317-331, September 2022.
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  • The depths of the sea: Karl S. Matlin, Jane Maienschein and Rachel A. Ankeny (Eds): Why study biology by the sea? Chicago: University of Chicago Press, 2020, X + 355 pp, $45.00 PB.Fabio De Sio - 2020 - Metascience 30 (1):145-148.
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  • The Dynamics of Wertbestimmung.Axel C. Hüntelmann - 2008 - Science in Context 21 (2):229-252.
    ArgumentThe procedure ofWertbestimmungplayed a vital role in the implementation of serum therapy and the standardization of mass-produced pharmaceuticals. In fin-de-siècle Germany, a legal framework was put in place to guarantee serum quality and safety and to minimize any associated public health risks. Because the sera were biological remedies, it was difficult to produce them in uniform quality and the procedure ofWertbestimmung, i.e. determining the potency of the serum based on an objective and comparable value, was extremely complex. Various agents such (...)
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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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  • Mouse avatars of human cancers: the temporality of translation in precision oncology.Sara Green, Mie S. Dam & Mette N. Svendsen - 2021 - History and Philosophy of the Life Sciences 43 (1):1-22.
    Patient-derived xenografts are currently promoted as new translational models in precision oncology. PDXs are immunodeficient mice with human tumors that are used as surrogate models to represent specific types of cancer. By accounting for the genetic heterogeneity of cancer tumors, PDXs are hoped to provide more clinically relevant results in preclinical research. Further, in the function of so-called “mouse avatars”, PDXs are hoped to allow for patient-specific drug testing in real-time. This paper examines the circulation of knowledge and bodily material (...)
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  • “Skilled Care” and the Making of Good Science.Tone Druglitrø - 2018 - Science, Technology, and Human Values 43 (4):649-670.
    This article investigates the construction of laboratory animal science as a version of “good science.” In the 1950s, a transnational community of scientists initiated large-scale standardization of animals for biomedicine, which included the standardization of care of laboratory animals as well as the development of guidelines and regulations on laboratory animal use. The article traces these developments and investigates how the standardization work took part in enacting laboratory animals as compound objects of care—and laboratory animal science as being an intrinsically (...)
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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 comparative biology of human nature.Jason Scott Robert - 2008 - Philosophical Psychology 21 (3):425 – 436.
    Model organismism—the over-reliance on model organisms without sufficient attention to the adequacy of the models—continues to hobble our understanding of human brains and behaviors. I outline the problem of model organismism in contemporary biology and biomedicine, and discuss the virtues of a genuinely comparative biology for understanding ourselves, our evolutionary history, and our place in nature.
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  • Translational neonatology research: transformative encounters across species and disciplines.Mie S. Dam, Per T. Sangild & Mette N. Svendsen - 2018 - History and Philosophy of the Life Sciences 40 (1):21.
    This paper explores the laborious and intimate work of turning bodies of research animals into models of human patients. Based on ethnographic research in the interdisciplinary Danish research centre NEOMUNE, we investigate collaboration across species and disciplines, in research aiming at improving survival for preterm infants. NEOMUNE experimental studies on piglets evolved as a platform on which both basic and clinical scientists exercised professional authority. Guided by the field of multi-species research, we explore the social and material agency of research (...)
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  • Model-as-replica, model-as-instrument: Representational power and contextual versatility in animal models.Bican Polat - 2021 - Studies in History and Philosophy of Science Part A 89 (C):19-30.
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  • The right tool and the right place for the job: the importance of the field in experimental neurophysiology, 1880–1945.Samantha K. Muka - 2016 - History and Philosophy of the Life Sciences 38 (3).
    This paper seeks to contribute to understandings of practice and place in the history of early American neurophysiology by exploring research with jellyfish at marine stations. Jellyfish became a particularly important research tool to experimental physiologists studying neurological subjects at the turn of the twentieth century. But their enthusiasm for the potential of this organism was constrained by its delicacy in captivity. The discovery of hardier species made experimentation at the shore possible and resulted in two epicenters of neurophysiological research (...)
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  • Normal development and experimental embryology: Edmund Beecher Wilson and Amphioxus.James W. E. Lowe - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 57:44-59.
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