Results for 'radiobiology'

18 found
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  1.  26
    Radiobiology in the Atomic Age: Changing Research Practices and Policies in Comparative Perspective. [REVIEW]Angela N. H. Creager & María Jesús Santesmases - 2006 - Journal of the History of Biology 39 (4):637 - 647.
    This essay introduces a special collection of papers by Angela Creager, Soraya de Chadarevian, Karen Rader, Jean-Paul Gaudillière, and María Jesús Santesmases on the theme "Radiobiology in the Atomic Age.".
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  2. Radiobiological Hormesis, Methodological Value Judgments, and Metascience.Kristin Shrader-Frechette - 2000 - Perspectives on Science 8 (4):367-379.
    Scientists are divided on the status of hypothesis H that low doses of ionizing radiation (under 20 rads) cause hormetic (or non-harmful) effects. Military and industrial scientist s tend to accept H, while medical and environmental scientists tend to reject it. Proponents of the strong programme claim this debate shows that uncertain science can be clari ed only by greater attention to the social values in uencing it. While they are in part correct, this paper argues that methodological analyses (not (...)
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  3.  77
    Radiobiology and gray science: Flaws in landmark new radiation protections.Kristin Shrader-Frechette - 2005 - Science and Engineering Ethics 11 (2):167-169.
    The International Commission on Radiological Protection — whose regularly updated recommendations are routinely adopted as law throughout the globe — recently issued the first-ever ICRP protections for the environment. These draft 2005 proposals are significant both because they offer the commission’s first radiation protections for any non-human parts of the planet and because they will influence both the quality of radiation risk assessment and environmental protection, as well as the global costs of nuclear-weapons cleanup, reactor decommissioning and radioactive waste management. (...)
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  4.  15
    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 (...)
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  5.  5
    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 (...)
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  6.  18
    Using A Thought Experiment To Clarify A Radiobiological Controversy.Kristan Shrader-Frechete - 2001 - Synthese 128 (3):319-342.
    Are philosophers of science limited to conducting autopsies on dead scientific theories, or might they also help resolve contemporary methodological disputes in science? This essay (1) gives an overview of thought experiments, especially in mathematics; (2) outlines three major positions on the current dose-response controversy for ionizing radiation; and (3) sketches an original mathematical thought experiment that might help resolve the low-dose radiation conflict. This thought experiment relies on the assumptions that radiation "hits'' are Poisson distributed and that background conditions (...)
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  7.  37
    Using a thought experiment to clarify a radiobiological controversy.Kristan Shrader-Frechete - 2001 - Synthese 128 (3):319 - 342.
    Are philosophers of science limited to conducting autopsies on dead scientific theories, or might they also help resolve contemporary methodological disputes in science? This essay (1) gives an overview of thought experiments, especially in mathematics; (2) outlines three major positions on the current dose-response controversy for ionizing radiation; and (3) sketches an original mathematical thought experiment that might help resolve the low-dose radiation conflict. This thought experiment relies on the assumptions that radiation "hits'' are Poisson distributed and that background conditions (...)
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  8.  19
    Models in panther biology and radiobiology: Philosophy of science as scientific citizenship.Kristin Shrader-Frechette - 2004 - Philosophy Today 48 (5):96-108.
  9.  3
    Models in Panther Biology and Radiobiology.Kristin Shrader-Frechette - 2004 - Philosophy Today 48 (Supplement):96-108.
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  10.  49
    Alexander Hollaender’s Postwar Vision for Biology: Oak Ridge and Beyond. [REVIEW]Karen A. Rader - 2006 - Journal of the History of Biology 39 (4):685 - 706.
    Experimental radiobiology represented a long-standing priority for the U.S. Atomic Energy Commission (AEC), but organizational issues initially impeded the laboratory progress of this government-funded work: who would direct such interdisciplinary investigations and how? And should the AEC support basic research or only mission-oriented projects? Alexander Hollaender's vision for biology in the post-war world guided AEC initiatives at Oak Ridge, where he created and presided over the Division of Biology for nearly two decades (1947-1966). Hollaender's scheme, at once entrepreneurial and (...)
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  11.  16
    Alexander Hollaender’s Postwar Vision for Biology: Oak Ridge and Beyond.Karen A. Rader - 2006 - Journal of the History of Biology 39 (4):685-706.
    Experimental radiobiology represented a long-standing priority for the U.S. Atomic Energy Commission, but organizational issues initially impeded the laboratory progress of this government-funded work: who would direct such interdisciplinary investigations and how? And should the AEC support basic research or only mission-oriented projects? Alexander Hollaender's vision for biology in the post-war world guided AEC initiatives at Oak Ridge, where he created and presided over the Division of Biology for nearly two decades. Hollaender's scheme, at once entrepreneurial and system-oriented, made (...)
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  12.  8
    Let Chromosomes Speak: The Cytogenetics Project at the Atomic Bomb Casualty Commission.Sumiko Hatakeyama - 2021 - Journal of the History of Biology 54 (1):107-126.
    Hibakusha are “witnesses” of the atomic bombings, not just in a standard sense but also in the instrumental sense. For medical and scientific experts, hibakusha are biological resources of unparalleled scientific value. Over the past seventy years, the hibakusha bodies have narrated what it means to be exposed to radiation. In this paper, I explore studies at the Atomic Bomb Casualty Commission that examined hibakusha bodies as sites where risk could be read. I focus on a period from the mid-1950s (...)
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  13.  61
    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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  14.  73
    Introduction and Institutionalization of Genetics in Mexico Ana Barahona, Susana Pinar and Francisco J. Ayala.Ana Barahona, Susana Pinar & Francisco J. Ayala - 2005 - Journal of the History of Biology 38 (2):273-299.
    We explore the distinctive characteristics of Mexico's society, politics and history that impacted the establishment of genetics in Mexico, as a new disciplinary field that began in the early 20th century and was consolidated and institutionalized in the second half. We identify about three stages in the institutionalization of genetics in Mexico. The first stage can be characterized by Edmundo Taboada, who was the leader of a research program initiated during the Cárdenas government (1934-1940), which was primarily directed towards improving (...)
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  15.  29
    Mice and the Reactor: The “Genetics Experiment” in 1950s Britain. [REVIEW]Soraya de Chadarevian - 2006 - Journal of the History of Biology 39 (4):707-735.
    The postwar investments by several governments into the development of atomic energy for military and peaceful uses fuelled the fears not only of the exposure to acute doses of radiation as could be expected from nuclear accidents or atomic warfare but also of the long-term effects of low-dose exposure to radiation. Following similar studies pursued under the aegis of the Manhattan Project in the United States, the “genetics experiment” discussed by scientists and government officials in Britain soon after the war, (...)
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  16.  12
    Radiation Risk in Cold War Mexico: Local and Global Networks.Ana Barahona - 2022 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 30 (2):245-270.
    After WWII, global concerns about the uses of nuclear energy and radiation sources in agriculture, medicine, and industry brought about calls for radiation protection. At the beginning of the 1960s radiation protection involved the identification and measurement of all sources of radiation to which a population was exposed, and the evaluation and assessment of populations in terms of the biological hazard their exposure posed. Mexico was not an exception to this international trend. This paper goes back to the origins of (...)
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  17.  22
    Normal Pathways: Controlling Isotopes and Building Biomedical Research in Postwar France. [REVIEW]Jean-Paul Gaudillière - 2006 - Journal of the History of Biology 39 (4):737 - 764.
    During the late 1940s and 1950s, radioisotopes became important resources for biological and medical research. This article explores the strategies used by French researchers to get access to this material, either from the local Atomic Energy Commission (CEA) or from suppliers in the United States or United Kingdom. It focuses on two aspects of this process: the transatlantic circulation of both isotopes and associated instrumentation; the regulation of use and access by the administrative bodies governing research in France. Analyzing the (...)
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  18.  14
    The role of DNA double strand breaks in lonizing radiation‐induced killing of eukaryotic cells.George Lliakis - 1991 - Bioessays 13 (12):641-648.
    A widely accepted assumption in radiobiology is that ionizing radiation kills cells by inducing forms of damage in DNA structures that lead to the formation of lethal chromosome aberrations. One goal of radiation biology research is the identification of these forms of DNA damage, the characterization of the mechanisms involved in their repair and the elucidation of the processes involved in their transformation to chromosome damage, In recent years, evidence has accumulated implicating DNA double stranded breaks as lesions relevant (...)
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