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  1. Documenting genomics: Applying archival theory to preserving the records of the Human Genome Project.Jennifer Shaw - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 55:61-69.
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  • Disciplinary baptisms: A comparison of the naming stories of genetics, molecular biology, genomics and systems biology.Alexander Powell, Maureen A. O'Malley, Staffan Mueller-Wille, Jane Calvert & John Dupré - 2007 - History and Philosophy of the Life Sciences 29 (1):5-32.
    Understanding how scientific activities use naming stories to achieve disciplinary status is important not only for insight into the past, but for evaluating current claims that new disciplines are emerging. In order to gain a historical understanding of how new disciplines develop in relation to these baptismal narratives, we compare two recently formed disciplines, systems biology and genomics, with two earlier related life sciences, genetics and molecular biology. These four disciplines span the twentieth century, a period in which the processes (...)
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  • The human autonomous karyotype and the origins of prenatal testing: Children, pregnant women and early Down's syndrome cytogenetics, Madrid 1962–1975.María Jesús Santesmases - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 47:142-153.
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  • Contesting consent: the challenge to compulsory neonatal screening for PKU.Diane Paul - 1998 - Perspectives in Biology and Medicine 42 (2):207-219.
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  • Is Cystic Fibrosis Genetic Medicine’s Canary?Susan Lindee & Rebecca Mueller - 2011 - Perspectives in Biology and Medicine 54 (3):316-331.
    Poorly understood, linked in complex ways to ideas about race and European identity, and the focus today of an ethically vexed and rapidly expanding testing industry, cystic fibrosis is a relatively common life-threatening genetic disorder in the United States, the United Kingdom, and the European Union. Many genetic diseases are invisible to the general public, but CF is a high-profile genetic disease, often characterized as a “white” disease though it occurs in many populations. Over the last five years it has (...)
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  • ‘A Dispassionate and Objective Effort:’ Negotiating the First Study on the Biological Effects of Atomic Radiation.Jacob Darwin Hamblin - 2007 - Journal of the History of Biology 40 (1):147-177.
    The National Academy of Science's 1956 study on the Biological Effects of Atomic Radiation was designed to provide an objective analysis to assess conflicting statements by leading geneticists and by officials in the Atomic Energy Commission. Largely because of its status as a detached, non-governmental evaluation by eminent scientists, no studies have had a broader impact on the development of biological thinking in regard to nuclear policies. This paper demonstrates that despite the first BEAR study's reputation as an objective and (...)
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  • The proactive historian: Methodological opportunities presented by the new archives documenting genomics.Miguel García-Sancho - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 55 (C):70-82.
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  • A New Insight into Sanger’s Development of Sequencing: From Proteins to DNA, 1943–1977.Miguel García-Sancho - 2010 - Journal of the History of Biology 43 (2):265-323.
    Fred Sanger, the inventor of the first protein, RNA and DNA sequencing methods, has traditionally been seen as a technical scientist, engaged in laboratory bench work and not interested at all in intellectual debates in biology. In his autobiography and commentaries by fellow researchers, he is portrayed as having a trajectory exclusively dependent on technological progress. The scarce historical scholarship on Sanger partially challenges these accounts by highlighting the importance of professional contacts, institutional and disciplinary moves in his career, spanning (...)
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  • The future historian: Reflections on the archives of contemporary sciences.Soraya de Chadarevian - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 55:54-60.
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  • Chromosome surveys of human populations: Between epidemiology and anthropology.Soraya de Chadarevian - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 47:87-96.
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  • Weighing the risks: Stalemate in the classical/balance controversy.John Beatty - 1987 - Journal of the History of Biology 20 (3):289-319.
    The classical/balance controversy continued along these lines throughout the first half of the sixties. Then, at about the same time that the classical position lost its leading advocate, the balance position received striking new support from Harry Harris, and independently from Dobzhansky's former student Lewontin, and Lewontin's research partner, Jack Hubby.80 These developments served more to reorient the controversy than to end it — and the resulting “neoclassical”/balance controversy is different enough to be grist for another mill.Social policy considerations no (...)
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  • History in the Gene: Negotiations Between Molecular and Organismal Anthropology.Marianne Sommer - 2008 - Journal of the History of Biology 41 (3):473-528.
    In the advertising discourse of human genetic database projects, of genetic ancestry tracing companies, and in popular books on anthropological genetics, what I refer to as the anthropological gene and genome appear as documents of human history, by far surpassing the written record and oral history in scope and accuracy as archives of our past. How did macromolecules become "documents of human evolutionary history"? Historically, molecular anthropology, a term introduced by Emile Zuckerkandl in 1962 to characterize the study of primate (...)
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  • Prenatal diagnosis and the transformation of the epistemic space of human heredity.Ilana Löwy - 2012 - History and Philosophy of the Life Sciences 35 (1):99-104.
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