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  1. (1 other version)Radium, biophysics, and radiobiology: tracing the history of radiobiology in twentieth-century China.Christine Yi Lai Luk - 2017 - History and Philosophy of the Life Sciences 40 (1):2.
    Radiobiology assesses the biological hazards of exposure to radioactive substances and nuclear radiation. This article explores the history of radiobiology in twentieth-century China by examining the overlapping of radium research and biophysics, from roughly the 1920s Nationalist period to the 1960s Communist period; from the foreign purchase of radium by the Rockefeller Foundation’s China Medical Board during the Republican era, to the institutional establishment of radiobiology as a subset of biophysics in the People’s Republic. Western historiography of radiobiology highlights the (...)
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  • Prekäre Stoffe: Radiumökonomie, Risikoepisteme und die Etablierung der Radioindikatortechnik in der Zeit des Nationalsozialismus.Alexander von Schwerin - 2009 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 17 (1):5-33.
    Precarious Matters. The Radium Economy, Episteme of Risk and the Emergence of Tracer Technique in National SocialismFollowing the traces of radioactive material is – as scholars have recently shown – a valuable historical approach in order to evaluate the material ’factor’ of science in action. Even though the origins of materials like radium and artificial isotopes are quite different, their circulation is interconnected. A material pathway can be drawn from the radium industry to the scientific rise of artificial isotopes as (...)
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  • Connecting to the Living History of Radiation Exposure.Jacob Hamblin & Linda M. Richards - 2021 - Journal of the History of Biology 54 (1):1-6.
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  • Phosphorus-32 in the Phage Group: radioisotopes as historical tracers of molecular biology.Angela N. H. Creager - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (1):29-42.
    The recent historiography of molecular biology features key technologies, instruments and materials, which offer a different view of the field and its turning points than preceding intellectual and institutional histories. Radioisotopes, in this vein, became essential tools in postwar life science research, including molecular biology, and are here analyzed through their use in experiments on bacteriophage. Isotopes were especially well suited for studying the dynamics of chemical transformation over time, through metabolic pathways or life cycles. Scientists labeled phage with phosphorus-32 (...)
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  • (1 other version)Radium, biophysics, and radiobiology: tracing the history of radiobiology in twentieth-century China.Christine Yi Lai Luk - 2018 - History and Philosophy of the Life Sciences 40 (1):1-23.
    Radiobiology assesses the biological hazards of exposure to radioactive substances and nuclear radiation. This article explores the history of radiobiology in twentieth-century China by examining the overlapping of radium research and biophysics, from roughly the 1920s Nationalist period to the 1960s Communist period; from the foreign purchase of radium by the Rockefeller Foundation’s China Medical Board during the Republican era, to the institutional establishment of radiobiology as a subset of biophysics in the People’s Republic. Western historiography of radiobiology highlights the (...)
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  • Ray Wu as Fifth Business: Deconstructing collective memory in the history of DNA sequencing.Lisa A. Onaga - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 46 (1):1-14.
    The concept of ‘Fifth Business’ is used to analyze a minority standpoint and bring serious attention to the role of scientists who play a galvanizing role in a science but for multiple reasons appear less prominently in more common recounts of any particular development. Biochemist Ray Wu published a DNA sequencing experiment in March 1970 using DNA polymerase catalysis and specific nucleotide labeling, both of which are foundational to general sequencing methods today. The scant mention of Wu’s work from textbooks, (...)
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  • Humanising and dehumanising pigs in genomic and transplantation research.James W. E. Lowe - 2022 - History and Philosophy of the Life Sciences 44 (4):1-27.
    Biologists who work on the pig (_Sus scrofa_) take advantage of its similarity to humans by constructing the inferential and material means to traffic data, information and knowledge across the species barrier. Their research has been funded due to its perceived value for agriculture and medicine. Improving selective breeding practices, for instance, has been a driver of genomics research. The pig is also an animal model for biomedical research and practice, and is proposed as a source of organs for cross-species (...)
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  • “A Cold Spring Harbor in Europe.” EURATOM, UNESCO and the Foundation of EMBO.Francesco Cassata - 2015 - Journal of the History of Biology 48 (4):539-573.
    This article explores the problem of the foundation of the European Molecular Biology Organization, by reconstructing a broader institutional framework, which includes other international actors – EURATOM, UNESCO and the International Laboratory of Genetics and Biophysics in Naples – and a relevant, but still neglected figure, the Italian geneticist Adriano Buzzati-Traverso. The article considers the tension between centralized and federal models of organization in the field of life sciences not just as an EMBO internal controversy, but rather as a structural (...)
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  • Wild Laboratories of Climate Change: Plants, Phenology, and Global Warming, 1955–1980.R. Ashton Macfarlane - 2021 - Journal of the History of Biology 54 (2):311-340.
    Phenologists track the seasonal behavior of plants and animals in response to climatic change. During the second half of the twentieth century, phenologists developed a large-scale project to monitor the flowering time of the common lilac across the United States. By the 1960s, this approach offered a potential plant-based indicator of anthropogenic climate change, a biological signal amidst the emerging narrative of increasing levels of atmospheric carbon dioxide. As a tangible representation of changes in climate—warmer temperatures lead to earlier blooming—phenology (...)
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