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  1. Strategies in the interfield discovery of the mechanism of protein synthesis.Lindley Darden & Carl Craver - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (1):1-28.
    In the 1950s and 1960s, an interfield interaction between molecular biologists and biochemists integrated important discoveries about the mechanism of protein synthesis. This extended discovery episode reveals two general reasoning strategies for eliminating gaps in descriptions of the productive continuity of mechanisms: schema instantiation and forward chaining/backtracking. Schema instantiation involves filling roles in an overall framework for the mechanism. Forward chaining and backtracking eliminate gaps using knowledge about types of entities and their activities. Attention to mechanisms highlights salient features of (...)
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  • Of the Helmholtz Club, South-Californian seedbed for visual and cognitive neuroscience, and its patron Francis Crick.Christine Aicardi - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 45 (1):1-11.
    Taking up the view that semi-institutional gatherings such as clubs, societies, research schools, have been instrumental in creating sheltered spaces from which many a 20th-century project-driven interdisciplinary research programme could develop and become established within the institutions of science, the paper explores the history of one such gathering from its inception in the early 1980s into the 2000s, the Helmholtz Club, which brought together scientists from such various research fields as neuroanatomy, neurophysiology, psychophysics, computer science and engineering, who all had (...)
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  • Small RNA research and the scientific repertoire: a tale about biochemistry and genetics, crops and worms, development and disease.Sophie Juliane Veigl - 2021 - History and Philosophy of the Life Sciences 43 (1):1-25.
    The discovery of RNA interference in 1998 has made a lasting impact on biological research. Identifying the regulatory role of small RNAs changed the modes of molecular biological inquiry as well as biologists' understanding of genetic regulation. This article examines the early years of small RNA biology's success story. I query which factors had to come together so that small RNA research came into life in the blink of an eye. I primarily look at scientific repertoires as facilitators of rapid (...)
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  • Peace Propaganda and Biomedical Experimentation: Influential Uses of Radioisotopes in Endocrinology and Molecular Genetics in Spain.María Jesús Santesmases - 2006 - Journal of the History of Biology 39 (4):765-794.
    A political discourse of peace marked the distribution and use of radioisotopes in biomedical research and in medical diagnosis and therapy in the post-World War II period. This occurred during the era of expansion and strengthening of the United States' influence on the promotion of sciences and technologies in Europe as a collaborative effort, initially encouraged by the policies and budgetary distribution of the Marshall Plan. This article follows the importation of radioisotopes by two Spanish research groups, one in experimental (...)
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  • Peace Propaganda and Biomedical Experimentation: Influential Uses of Radioisotopes in Endocrinology and Molecular Genetics in Spain (1947-1971). [REVIEW]María Jesús Santesmases - 2006 - Journal of the History of Biology 39 (4):765 - 794.
    A political discourse of peace marked the distribution and use of radioisotopes in biomedical research and in medical diagnosis and therapy in the post-World War II period. This occurred during the era of expansion and strengthening of the United States' influence on the promotion of sciences and technologies in Europe as a collaborative effort, initially encouraged by the policies and budgetary distribution of the Marshall Plan. This article follows the importation of radioisotopes by two Spanish research groups, one in experimental (...)
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  • National politics and international trends: EMBO and the making of molecular biology in Spain.María Jesús Santesmases - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (3):473-487.
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  • An RNA Phage Lab: MS2 in Walter Fiers’ Laboratory of Molecular Biology in Ghent, from Genetic Code to Gene and Genome, 1963–1976. [REVIEW]Jérôme Pierrel - 2012 - Journal of the History of Biology 45 (1):109 - 138.
    The importance of viruses as model organisms is well-established in molecular biology and Max Delbrück's phage group set standards in the DNA phage field. In this paper, I argue that RNA phages, discovered in the 1960s, were also instrumental in the making of molecular biology. As part of experimental systems, RNA phages stood for messenger RNA (mRNA), genes and genome. RNA was thought to mediate information transfers between DNA and proteins. Furthermore, RNA was more manageable at the bench than DNA (...)
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  • An RNA Phage Lab: MS2 in Walter Fiers’ Laboratory of Molecular Biology in Ghent, from Genetic Code to Gene and Genome, 1963–1976. [REVIEW]Jérôme Pierrel - 2012 - Journal of the History of Biology 45 (1):109-138.
    The importance of viruses as model organisms is well-established in molecular biology and Max Delbrück’s phage group set standards in the DNA phage field. In this paper, I argue that RNA phages, discovered in the 1960s, were also instrumental in the making of molecular biology. As part of experimental systems, RNA phages stood for messenger RNA, genes and genome. RNA was thought to mediate information transfers between DNA and proteins. Furthermore, RNA was more manageable at the bench than DNA due (...)
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  • National politics and international trends: EMBO and the making of molecular biology in Spain (1960–1975).María Jesús Santesmases - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (3):473-487.
    From the mid-1960s onwards, a set of Spanish molecular biology research groups emerged in Spain. The factors contributing to this included: the return of a group of molecular biologists from their postdoctoral period abroad, the negotiations for the return of Spanish-born Nobel prize winner Severo Ochoa from New York, the negotiations for Spanish membership in the European Conference of Molecular Biology, and national policy towards university reform. As a result, the early molecular biologists’ research groups began to be recognised as (...)
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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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  • William McElroy, the McCollum–Pratt Institute, and the Transformation of Biology at Johns Hopkins, 1945–1960.Tulley Long - 2009 - Journal of the History of Biology 42 (4):765-809.
    In 1948, a dynamic junior member of the Johns Hopkins Biology Department, William McElroy, became the first director of the McCollum—Pratt Institute for the Investigation of Micronutrient Elements. The Institute was founded at the university to further studies into the practicalities of animal nutrition. Ultimately, however, the Institute reflected McElroy's vision that all biological problems, including nutrition, could be best investigated through basic biochemical and enzymes studies. The Institute quickly became a hub of biochemical research over the following decade, producing (...)
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  • William McElroy, the McCollum–Pratt Institute, and the Transformation of Biology at Johns Hopkins, 1945–1960.Tulley Long - 2009 - Journal of the History of Biology 42 (4):765 - 809.
    In 1948, a dynamic junior member of the Johns Hopkins Biology Department, William McElroy, became the first director of the McCollum—Pratt Institute for the Investigation of Micronutrient Elements. The Institute was founded at the university to further studies into the practicalities of animal nutrition. Ultimately, however, the Institute reflected McElroy's vision that all biological problems, including nutrition, could be best investigated through basic biochemical and enzymes studies. The Institute quickly became a hub of biochemical research over the following decade, producing (...)
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  • Paris–New York roundtrip: transatlantic crossings and the reconstruction of the biological sciences in post-war France.Jean-Paul Gaudillière - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (3):389-417.
    During the first years of the post-war era, many French scientists travelled in the United States. As they looked for a reference to be used in rebuilding their own scientific landscape, their diaries say as much about the rise of the American biomedical complex as they do about their perception of research in the country. In order to illustrate how the French biologists adopted, competed with, or challenged the American model and how transatlantic exchanges played a critical role in the (...)
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  • Paris–New York roundtrip: transatlantic crossings and the reconstruction of the biological sciences in post-war France.Jean-Paul Gaudillière - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (3):389-417.
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  • Not just “a clever way to detect whether DNA really made RNA”1: The invention of DNA–RNA hybridization and its outcome1Judson. [REVIEW]Susie Fisher - 2015 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 53:40-52.
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