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  1. `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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  • The Contract Research Organization and the Commercialization of Scientific Research.Philip Mirowski & Robert Van Horn - 2005 - Social Studies of Science 35 (4):503-48.
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  • The management of science: The experience of Warren Weaver and the Rockefeller Foundation programme in molecular biology. [REVIEW]Robert E. Kohler - 1976 - Minerva 14 (3):279-306.
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  • Scientific Discovery and Scientific Reputation: The Reception of Peyton Rous' Discovery of the Chicken Sarcoma Virus. [REVIEW]Eva Becsei-Kilborn - 2008 - Journal of the History of Biology 43 (1):111 - 157.
    This article concerns itself with the reception of Rous' 1911 discovery of what later came to be known as the Rous Sarcoma Virus (RSV). Rous made his discovery at the Rockefeller Institute for Medical Research which had been primarily established to conduct research into infectious diseases. Rous' chance discovery of a chicken tumor led him to a series of conjectures about cancer causation and about whether cancer could have an extrinsic cause. Rous' finding was received with some scepticism by the (...)
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  • The Politics of Cancer.Daryl E. Chubin - 1978 - Theory and Society 6 (1):55.
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  • “Applied Science”: A Phrase in Search of a Meaning.Robert Bud - 2012 - Isis 103 (3):537-545.
    ABSTRACT The term “applied science,” as it came to be popularly used in the 1870s, was a hybrid of three earlier concepts. The phrase “applied science” itself had been coined by Samuel Taylor Coleridge in 1817, translating the German Kantian term “angewandte Wissenschaft.” It was popularized through the Encyclopaedia Metropolitana, which was structured on principles inherited from Coleridge and edited by men with sympathetic views. Their concept of empirical as opposed to a priori science was hybridized with an earlier English (...)
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  • (1 other version)The Politics of Life Itself.Nikolas Rose - 2001 - Theory, Culture and Society 18 (6):1-30.
    This article explores contemporary biopolitics in the light of Michel Foucault's oft quoted suggestion that contemporary politics calls `life itself' into question. It suggests that recent developments in the life sciences, biomedicine and biotechnology can usefully be analysed along three dimensions. The first concerns logics of control - for contemporary biopolitics is risk politics. The second concerns the regime of truth in the life sciences - for contemporary biopolitics is molecular politics. The third concerns technologies of the self - for (...)
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  • 'Howard Temin: Rebel of Evidence and Reason.Daniel J. Kevles - 2008 - In Oren Harman & Michael Dietrich (eds.), Rebels, Mavericks, and Heretics in Biology. Yale University Press. pp. 248.
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  • The politics of cancer.Daryl E. Chubin & Kenneth E. Studer - 1978 - Theory and Society 6 (1):55-74.
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  • Rockefeller strategies for scientific medicine: molecular machines, viruses and vaccines.Jean-Paul Gaudillière - 2000 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 31 (3):491-509.
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  • The National Science Foundation and the Debate over Postwar Research Policy, 1942-1945: A Political Interpretation of Science--The Endless Frontier. [REVIEW]Daniel Kevles - 1977 - Isis 68 (1):5-26.
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  • From Microsomes to Ribosomes: "Strategies" of "Representation". [REVIEW]Hans-Jörg Rheinberger - 1995 - Journal of the History of Biology 28 (1):49 - 89.
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  • Historiography of Biomedicine: “Bio,” “Medicine,” and In Between.Ilana Löwy - 2011 - Isis 102 (1):116-122.
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  • ‘Wanted—standard guinea pigs’: standardisation and the experimental animal market in Britain ca. 1919–1947.Robert G. W. Kirk - 2008 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 39 (3):280-291.
    In 1942 a coalition of twenty scientific societies formed the Conference on the Supply of Experimental Animals in an attempt to pressure the Medical Research Council to accept responsibility for the provision of standardised experimental animals in Britain. The practice of animal experimentation was subject to State regulation under the Cruelty to Animals Act of 1876, but no provision existed for the provision of animals for experimental use. Consequently, day-to-day laboratory work was reliant on a commercial small animal market which (...)
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  • Le cancer entre infection et hérédité : gènes, virus et souris au National Cancer Institute.Jean-Paul Gaudilliere - 1994 - Revue d'Histoire des Sciences 47 (1):57-90.
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  • Science and Government in the United States since 1945.Nathan Reingold - 1994 - History of Science 32 (4):361-386.
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  • When viruses were not in style: Parallels in the histories of chicken sarcoma viruses and bacteriophages.Neeraja Sankaran - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 48:189-199.
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  • History of Virus Research in the Twentieth Century: The Problem of Conceptual Continuity.Ton van Helvoort - 1994 - History of Science 32 (2):185-235.
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  • A Brave New Animal for a Brave New World: The British Laboratory Animals Bureau and the Constitution of International Standards of Laboratory Animal Production and Use, circa 1947–1968.Robert Kirk - 2010 - Isis 101 (1):62-94.
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  • The Experimenter's Museum: GenBank, Natural History, and the Moral Economies of Biomedicine.Bruno J. Strasser - 2011 - Isis 102 (1):60-96.
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  • A dispute over scientific credibility: The struggle for an independent institute for cancer research in pre-World War II Berlin.Ton van Helvoort - 2000 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 31 (2):315-354.
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  • Renato Dulbecco and the new animal virology: Medicine, methods, and molecules.Daniel J. Kevles - 1993 - Journal of the History of Biology 26 (3):409-442.
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  • Scientific Discovery and Scientific Reputation: The Reception of Peyton Rous’ Discovery of the Chicken Sarcoma Virus.Eva Becsei-Kilborn - 2010 - Journal of the History of Biology 43 (1):111-157.
    This article concerns itself with the reception of Rous’ 1911 discovery of what later came to be known as the Rous Sarcoma Virus. Rous made his discovery at the Rockefeller Institute for Medical Research which had been primarily established to conduct research into infectious diseases. Rous’ chance discovery of a chicken tumor led him to a series of conjectures about cancer causation and about whether cancer could have an extrinsic cause. Rous’ finding was received with some scepticism by the scientific (...)
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  • Ludwik Gross, Sarah Stewart, and the 1950s discoveries of Gross murine leukemia virus and polyoma virus.Gregory J. Morgan - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 48:200-209.
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  • From the Regulatory Vision of Cancer to the Oncogene Paradigm, 1975–1985.Michel Morange - 1997 - Journal of the History of Biology 30 (1):1 - 29.
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  • Pure Science with a Practical Aim: The Meanings of Fundamental Research in Britain, circa 1916–1950.Sabine Clark - 2010 - Isis 101 (2):285-311.
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  • Experimental Systems and Clinical Practices: Tumor Immunology and Cancer Immunotherapy, 1895-1980. [REVIEW]Ilana Löwy - 1994 - Journal of the History of Biology 27 (3):403 - 435.
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  • A policy for the advancement of science: The Rockefeller Foundation, 1924–29. [REVIEW]Robert E. Kohler - 1978 - Minerva 16 (4):480-515.
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  • Of `Small Men', Big Science and Bigger Business: The Second World War and Biomedical Research in the United States. [REVIEW]Nicolas Rasmussen - 2002 - Minerva 40 (2):115-146.
    The Second World War is commonly said to have ushered in theera of `big science' in the United States. However, at least inpractically-oriented biomedical research, the American governmentadopted modes of sponsorship that were commonplace between scientistsand industry before the war. Furthermore, many life scientistsleading wartime projects were already familiar with industrialcollaboration. This essay argues that the new federal regimes introduced in the late 1940s and 1950s were more important than wartime experience in shaping the character of biomedical `big science' in (...)
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  • Le cancer entre infection et hérédité: gènes, virus et souris au National Cancer Institute (1937-1977).Jean Paul Gaudilliere - 1994 - Revue d'Histoire des Sciences 47 (1):57-90.
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