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  1. A World in One Dimension: Linus Pauling, Francis Crick and the Central Dogma of Molecular Biology.Bruno J. Strasser - 2006 - History and Philosophy of the Life Sciences 28 (4):491 - 512.
    In 1957, Francis Crick outlined a startling vision of life in which the great diversity of forms and shapes of macromolecules was encoded in the one-dimensional sequence of nucleic acids. This paper situates Crick's new vision in the debates of the 1950s about protein synthesis and gene action. After exploring the reception of Crick's ideas, it shows how they differed radically from a different model of protein synthesis which enjoyed wide currency in that decade. In this alternative model, advocated by (...)
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  • Secrets of life, secrets of death: essays on language, gender, and science.Evelyn Fox Keller - 1992 - New York: Routledge.
    The essays included here represent Fox Keller's attempts to integrate the insights of feminist theory with those of her contemporaries in the history and philosophy of science.
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  • Letters to the Editor.[author unknown] - 1982 - Proceedings and Addresses of the American Philosophical Association 56 (2):269-269.
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  • Letters to the Editor.[author unknown] - 1979 - Proceedings and Addresses of the American Philosophical Association 52 (6):865-870.
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  • Sequences, conformation, information: Biochemists and molecular biologists in the 1950s. [REVIEW]Soraya De Chadarevian - 1996 - Journal of the History of Biology 29 (3):361-386.
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  • Book Reviews. [REVIEW][author unknown] - 2003 - Journal of the History of Biology 36 (1):197-224.
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  • Germs in Space.Audra J. Wolfe - 2002 - Isis 93 (2):183-205.
    Under the leadership of Joshua Lederberg, some American biologists and chemists proposed exobiology as the most legitimate program for space research. These scientists used the fear of contamination—of earth and other planets—as a central argument for funding “nonpolitical,” “scientifically valid” experiments in extraterrestrial life detection. Exobiology's resemblance to popular science fiction narratives presented a significant challenge to its advocates' scientific authority. Its most practical applications, moreover, bore an unseemly resemblance to the United States Army's research on biological weapons. At the (...)
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  • Germs in Space.Audra J. Wolfe - 2002 - Isis 93 (2):183-205.
    Under the leadership of Joshua Lederberg, some American biologists and chemists proposed exobiology as the most legitimate program for space research. These scientists used the fear of contamination—of earth and other planets—as a central argument for funding “nonpolitical,” “scientifically valid” experiments in extraterrestrial life detection. Exobiology's resemblance to popular science fiction narratives presented a significant challenge to its advocates' scientific authority. Its most practical applications, moreover, bore an unseemly resemblance to the United States Army's research on biological weapons. At the (...)
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  • The Rhetoric of Informational Molecules: Authority and Promises in the Early Study of Molecular Evolution.Edna Suárez Díaz - 2007 - Science in Context 20 (4):649-677.
    ArgumentThis paper explores the connection between the epistemic and the “political” dimensions of the metaphor of information during the early days of the study of Molecular Evolution. While preserving some of the meanings already documented in the history of molecular biology, the metaphor acquired a new, powerful use as a substitute for “history.” A rhetorical analysis of Emilé Zuckerkandl's paper, “Molecules as Documents of Evolutionary History,” highlights the ways in which epistemic claims on the validity and superiority of molecular evidence (...)
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  • Molecular evolution: concepts and the origin of disciplines.Edna Suárez-Díaz - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (1):43-53.
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  • Creating a Cosmic Discipline: The Crystallization and Consolidation of Exobiology, 1957–1973. [REVIEW]James E. Strick - 2004 - Journal of the History of Biology 37 (1):131 - 180.
    The new discipline of exobiology formed from the intertwining of origin of life research with the search for life or its building blocks on other planets, from 1957-1973. The field was inherently highly interdisciplinary, yet it coalesced very quickly and was responsible in its first twenty years for numerous important contributions to twentieth century life science and planetary sciences such as climatology, the study of mass extinctions, etc. NASA played a very important role in catalyzing the rapid consolidation of exobiology, (...)
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  • Creating a Cosmic Discipline: The Crystallization and Consolidation of Exobiology, 1957–1973.James E. Strick - 2004 - Journal of the History of Biology 37 (1):131-180.
    The new discipline of exobiology formed from the intertwining of origin of life research with the search for life or its building blocks on other planets, from 1957-1973. The field was inherently highly interdisciplinary, yet it coalesced very quickly and was responsible in its first twenty years for numerous important contributions to twentieth century life science and planetary sciences such as climatology, the study of mass extinctions, etc. NASA played a very important role in catalyzing the rapid consolidation of exobiology, (...)
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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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  • Working Knowledges Before and After circa 1800.John V. Pickstone - 2007 - Isis 98 (3):489-516.
    ABSTRACT Historians of science, inasmuch as they are concerned with knowledges and practices rather than institutions, have tended of late to focus on case studies of common processes such as experiment and publication. In so doing, they tend to treat science as a single category, with various local instantiations. Or, alternatively, they relate cases to their specific local contexts. In neither approach do the cases or their contexts build easily into broader histories, reconstructing changing knowledge practices across time and space. (...)
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  • Ways of knowing: towards a historical sociology of science, technology and medicine.John V. Pickstone - 1993 - British Journal for the History of Science 26 (4):433-458.
    Among the many groups of scholars whose work now illuminates science, technology and medicine (STM), historians, it seems to me, have a key responsibility not just to elucidate change but to establish and explain variety. One of the big pictures we need is a model of the varieties of STM over time; one which does not presume the timeless existence of disciplines, or the distinctions between science, technology and medicine; a model which is both synchronic and diachronic, and both cognitive (...)
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  • Emile Zuckerkandl, Linus Pauling, and the Molecular Evolutionary Clock, 1959–1965.Gregory J. Morgan - 1998 - Journal of the History of Biology 31 (2):155 - 178.
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  • 1The introduction of computers into systematic research in the United States during the 1960s.Joel B. Hagen - 2001 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 32 (2):291-314.
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  • Naturalists, Molecular Biologists, and the Challenges of Molecular Evolution.Joel B. Hagen - 1999 - Journal of the History of Biology 32 (2):321 - 341.
    Biologists and historians often present natural history and molecular biology as distinct, perhaps conflicting, fields in biological research. Such accounts, although supported by abundant evidence, overlook important areas of overlap between these areas. Focusing upon examples drawn particularly from systematics and molecular evolution, I argue that naturalists and molecular biologists often share questions, methods, and forms of explanation. Acknowledging these interdisciplinary efforts provides a more balanced account of the development of biology during the post-World War II era.
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  • Book Reviews. [REVIEW]Paul L. Farber - 2001 - Journal of the History of Biology 34 (2):395-421.
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  • History, objectivity, and the construction of molecular phylogenies.Edna Suárez-Díaz & Victor H. Anaya-Muñoz - 2008 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 39 (4):451-468.
    Despite the promises made by molecular evolutionists since the early 1960s that phylogenies would be readily reconstructed using molecular data, the construction of molecular phylogenies has both retained many methodological problems of the past and brought up new ones of considerable epistemic relevance. The field is driven not only by changes in knowledge about the processes of molecular evolution, but also by an ever-present methodological anxiety manifested in the constant search for an increased objectivity—or in its converse, the avoidance of (...)
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  • Robert E. Kohler, Landscapes and Labscapes: Exploring the Lab-Field Border in Biology. [REVIEW]Robert E. Kohler - 2003 - Journal of the History of Biology 36 (3):599-629.
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  • Molecular evolution: concepts and the origin of disciplines.Edna Suárez-Díaz - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (1):43-53.
    This paper focuses on the consolidation of Molecular Evolution, a field originating in the 1960s at the interface of molecular biology, biochemistry, evolutionary biology, biophysics and studies on the origin of life and exobiology. The claim is made that Molecular Evolution became a discipline by integrating different sorts of scientific traditions: experimental, theoretical and comparative. The author critically incorporates Timothy Lenoir’s treatment of disciplines , as well as ideas developed by Stephen Toulmin on the same subject. On their account disciplines (...)
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  • The origins of the neutral theory of molecular evolution.Michael R. Dietrich - 1994 - Journal of the History of Biology 27 (1):21-59.
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  • Paradox and Persuasion: Negotiating the Place of Molecular Evolution within Evolutionary Biology. [REVIEW]Michael R. Dietrich - 1998 - Journal of the History of Biology 31 (1):85 - 111.
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  • Little Science, Big Science.Derek John de Solla Price - 1963
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  • Biology in the Nineteenth Century: Problems of Form, Function, and Transformation.William Coleman & Garland Allen - 1977 - Journal of the History of Biology 15 (1):157-158.
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  • The Molecular Vision of Life: Caltech, the Rockefeller Foundation, and the Rise of the New Biology.Lily E. Kay - 1996 - Journal of the History of Biology 29 (3):477-479.
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  • A Guinea Pig's History of Biology.Jim Endersby - 2009 - Journal of the History of Biology 42 (1):197-198.
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  • Designs for Life: Molecular Biology after World War II.Soraya de Chadarevian - 2003 - Journal of the History of Biology 36 (3):579-589.
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  • Secrets of Life, Secrets of Death: Essays on Language, Gender and Science.Evelyn Fox Keller - 1994 - The Personalist Forum 10 (1):47-49.
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  • Life Sciences in the Twentieth Century.Garland Allen - 1976 - Journal of the History of Biology 9 (2):323-323.
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  • Cultures of Natural History.N. Jardine, J. A. Secord & E. C. Spary - 1997 - Journal of the History of Biology 30 (2):306-309.
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  • The Century of the Gene.Evelyn Fox Keller - 2001 - Journal of the History of Biology 34 (3):613-615.
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  • Refiguring Life: Metaphors of Twentieth-Century Biology.Evelyn Fox Keller - 1996 - Journal of the History of Biology 29 (2):312-313.
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  • Picture Control: The Electron Microscope and the Transformation of Biology in America. 1940-1960.Nicholas Rasmussen - 1999 - Journal of the History of Biology 32 (3):566-568.
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  • A History of Molecular Biology.Michel Morange & Matthew Cobb - 1999 - Journal of the History of Biology 32 (3):568-570.
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  • Laboratory Technology and Biological Knowledge: The Tiselius Electrophoresis Apparatus, 1930-1945.Lily E. Kay - 1988 - History and Philosophy of the Life Sciences 10 (1):51 - 72.
    Between the 1930s and 1950s, life science had evolved into a sophisticated and expensive scientific enterprise. Under the influence of the Rockefeller Foundation's program of molecular biology, vital processes, especially the properties of proteins, were increasingly probed through systematic applications of tools from the physical sciences. This trend altered the nature of biological knowledge, the organization of research, and patterns of funding for the life sciences, transforming laboratory research into 'big science' — a team activity centered around massive apparatus. The (...)
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  • 'Molecules and Monkeys': George Gaylord Simpson and the Challenge of Molecular Evolution.Jay Aronson - 2002 - History and Philosophy of the Life Sciences 24 (3/4):441 - 465.
    In this paper, I analyze George Gaylord Simpson's response to the molecularization of evolutionary biology from his unique perspective as a paleontologist. I do so by exploring his views on early attempts to reconstruct phylogenetic relationships among primates using molecular data. Particular attention is paid to Simpson's role in the evolutionary synthesis of the 1930s and 1940s, as well as his concerns about the rise of molecular biology as a powerful discipline and world-view in the 1960s. I argue that Simpson's (...)
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