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  1. Layered history: Styles of reasoning as stratified conditions of possibility.James Elwick - 2012 - Studies in History and Philosophy of Science Part A 43 (4):619-627.
    This paper depicts Ian Hacking’s ‘styles of reasoning’ as conditions of possibility. After distinguishing between possibilities and causes, it articulates the implicit stratigraphical metaphor used to describe the relationship between different conditions of possibility, with ‘lower’ layers being necessary for ‘higher’ ones. It notes the use of this stratigraphical metaphor in the work of multiple scholars in history and in science studies. The paper suggests three ways in which this model can be useful: clarifying the definition and use of ‘context’ (...)
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  • Amateurs and Professionals in One County: Biology and Natural History in Late Victorian Yorkshire. [REVIEW]Samuel J. M. M. Alberti - 2001 - Journal of the History of Biology 34 (1):115 - 147.
    My goals in this paper are twofold: to outline the refashioning of amateur and professional roles in life science in late Victorian Yorkshire, and to provide a revised historiography of the relationship between amateurs and professionals in this era. Some historical treatments of this relationship assume that amateurs were demoralized by the advances of laboratory science, and so ceased to contribute and were left behind by the autonomous "new biology." Despite this view, I show that many amateurs played a vital (...)
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  • How Seeing Became Knowing: The Role of the Electron Microscope in Shaping the Modern Definition of Viruses.Ton van Helvoort & Neeraja Sankaran - 2018 - Journal of the History of Biology 52 (1):125-160.
    This paper examines the vital role played by electron microscopy toward the modern definition of viruses, as formulated in the late 1950s. Before the 1930s viruses could neither be visualized by available technologies nor grown in artificial media. As such they were usually identified by their ability to cause diseases in their hosts and defined in such negative terms as “ultramicroscopic” or invisible infectious agents that could not be cultivated outside living cells. The invention of the electron microscope, with magnification (...)
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  • The Long and Winding Road of Molecular Data in Phylogenetic Analysis.Edna Suárez-Díaz - 2014 - Journal of the History of Biology 47 (3):443-478.
    The use of molecules and reactions as evidence, markers and/or traits for evolutionary processes has a history more than a century long. Molecules have been used in studies of intra-specific variation and studies of similarity among species that do not necessarily result in the analysis of phylogenetic relations. Promoters of the use of molecular data have sustained the need for quantification as the main argument to make use of them. Moreover, quantification has allowed intensive statistical analysis, as a condition and (...)
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  • Science, Scientific Management, and the Transformation of Medicine in Britainc. 1870–1950.Steve Sturdy & Roger Cooter - 1998 - History of Science 36 (4):421-466.
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  • The comparative and the exemplary: revisiting the early history of molecular biology.Bruno J. Strasser & Soraya de Chadarevian - 2011 - History of Science 49 (3):317.
  • Collecting, Comparing, and Computing Sequences: The Making of Margaret O. Dayhoff’s Atlas of Protein Sequence and Structure, 1954–1965. [REVIEW]Bruno J. Strasser - 2010 - Journal of the History of Biology 43 (4):623 - 660.
    Collecting, comparing, and computing molecular sequences are among the most prevalent practices in contemporary biological research. They represent a specific way of producing knowledge. This paper explores the historical development of these practices, focusing on the work of Margaret O. Dayhoff, Richard V. Eck, and Robert S. Ledley, who produced the first computer-based collection of protein sequences, published in book format in 1965 as the Atlas of Protein Sequence and Structure. While these practices are generally associated with the rise of (...)
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  • Collecting, Comparing, and Computing Sequences: The Making of Margaret O. Dayhoff’s Atlas of Protein Sequence and Structure, 1954–1965.Bruno J. Strasser - 2010 - Journal of the History of Biology 43 (4):623-660.
    Collecting, comparing, and computing molecular sequences are among the most prevalent practices in contemporary biological research. They represent a specific way of producing knowledge. This paper explores the historical development of these practices, focusing on the work of Margaret O. Dayhoff, Richard V. Eck, and Robert S. Ledley, who produced the first computer-based collection of protein sequences, published in book format in 1965 as the Atlas of Protein Sequence and Structure. While these practices are generally associated with the rise of (...)
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  • Life, death and galvanism.Charlotte Sleigh - 1998 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 29 (2):219-248.
  • Life, death and galvanism.Charlotte Sleigh - 1998 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 29 (2):219-248.
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  • Distance and defamiliarisation: Translation as philosophical method.Claudia W. Ruitenberg - 2009 - Journal of Philosophy of Education 43 (3):421-435.
    In this article I posit translation as philosophical operation that disrupts commonsense meaning and understanding. By defamiliarising language, translation can arrest thinking about a text in a way that assumes the language is understood. In recent work I have grappled with the phrase 'ways of knowing', which, for linguistic and conceptual reasons, confuses discussions about epistemological diversity. I here expand this inquiry by considering languages in which more than one equivalent exists for the English verb 'to know'. French, for example, (...)
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  • Distance and Defamiliarisation: Translation as Philosophical Method.Claudia W. Ruitenberg - 2009 - Journal of Philosophy of Education 43 (3):421-435.
    In this article I posit translation as philosophical operation that disrupts commonsense meaning and understanding. By defamiliarising language, translation can arrest thinking about a text in a way that assumes the language is understood. In recent work I have grappled with the phrase ‘ways of knowing’, which, for linguistic and conceptual reasons, confuses discussions about epistemological diversity. I here expand this inquiry by considering languages in which more than one equivalent exists for the English verb ‘to know’. French, for example, (...)
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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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  • Museological Science? The Place of the Analytical/Comparative in Nineteenth-century Science, Technology and Medicine.John V. Pickstone - 1994 - History of Science 32 (2):111-138.
  • How might we map the cultural fields of science? Politics and organisms in restoration France.John V. Pickstone - 1999 - History of Science 37 (117):347-364.
  • Concepts of power: natural philosophy and the uses of machines in mid-eighteenth-century London.Alan Q. Morton - 1995 - British Journal for the History of Science 28 (1):63-78.
    How may scientific research contribute effectively to industrial development? This question has been debated for many years. However, a recent development in this discussion has come from a number of eminent scientists and others who have become concerned with what has become known as the public understanding of science. According to them, a greater understanding of science by members of the public would result in a higher value being placed on scientific research, which, eventually, would result in both increased social (...)
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  • Chemische Laboratorien: Funktion und Disposition.Christoph Meinel - 2000 - Berichte Zur Wissenschaftsgeschichte 23 (3):287-302.
    In this essay laboratories are dealt with as symbolic spaces that structure social relationships and ways of knowledge in chemistry. The spatial vicissitudes of the nineteenth‐century research laboratory reflect, and at the same time direct, the way chemical knowledge is being produced, transmitted, and perceived.
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  • Töne sehen? Zur Visualisierung Akustischer Phänomene in der Herzdiagnostik.Michael Martin & Heiner Fangerau - 2011 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 19 (3):299-327.
    During the nineteenth century physiologists and clinicians developed several graphical recording systems for the mechanical registration of heart sounds. However, none of these replaced traditional methods of auscultation. The paper describes criticism of the aural sense as one of the driving forces behind the development of phonocardiography and analyses its variants from a technological and clinical perspective. Against the background of the physiological “method of curves,” the parameters that prevented the implementation of phonocardiography against overwhelming odds are highlighted. Contemporaries denied (...)
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  • Estilos y estratos para el estudio de controversias científicas.Olga Varela Machado & Juliana Gutiérrez Valderrama - 2022 - Ideas Y Valores 71:113-137.
    En el artículo planteamos una categoría para el estudio de controversias científicas, controversias sobre estilos, y proponemos una herramienta de análisis para dar cuenta de ellas. Para ello, hacemos uso de la noción de estilo de razonamiento de Ian Hacking y la metáfora de una historia por estratos. Mostraremos que las controversias sobre estilos tienen la particularidad de persistir en el tiempo, evolucionar e involucrar discusiones y debates en múltiples niveles. Para ilustrar nuestra propuesta, presentamos la controversia cuántica como un (...)
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  • Clocks to Computers: A Machine-Based “Big Picture” of the History of Modern Science.Frans van Lunteren - 2016 - Isis 107 (4):762-776.
    Over the last few decades there have been several calls for a “big picture” of the history of science. There is a general need for a concise overview of the rise of modern science, with a clear structure allowing for a rough division into periods. This essay proposes such a scheme, one that is both elementary and comprehensive. It focuses on four machines, which can be seen to have mediated between science and society during successive periods of time: the clock, (...)
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  • A Paper Machine of Clinical Research in the Early Twentieth Century.Volker Hess - 2018 - Isis 109 (3):473-493.
    This article introduces Turing’s idea of a “paper machine” to identify and understand one important mode of clinical research in the modern hospital, how that research worked, and how office technology and industrialized labor shaped and helped drive it. The unusually rich archives of Berlin psychiatry allow detailed reconstruction of the making of the new diagnostic category “hyperkinetic syndrome” in the 1920s. From the generating of data to the processing of information to the visualizing of the nature and course of (...)
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  • Medicine and the Management of Modern Warfare.Mark Harrison - 1996 - History of Science 34 (4):379-410.
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  • An Atttractive Therapy: Animal Magnetism in Eighteenth-Century England.Patricia Fara - 1995 - History of Science 33 (2):127-177.
  • Styles of Reasoning in Early to Mid-Victorian Life Research: Analysis: Synthesis and Palaetiology. [REVIEW]James Elwick - 2006 - Journal of the History of Biology 40 (1):35 - 69.
    To better understand the work of pre-Darwinian British life researchers in their own right, this paper discusses two different styles of reasoning. On the one hand there was analysis:synthesis, where an organism was disintegrated into its constituent parts and then reintegrated into a whole; on the other hand there was palaetiology, the historicist depiction of the progressive specialization of an organism. This paper shows how each style allowed for development, but showed it as moving in opposite directions. In analysis:synthesis, development (...)
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  • Styles of Reasoning in Early to mid-Victorian Life Research: Analysis:Synthesis and Palaetiology.James Elwick - 2007 - Journal of the History of Biology 40 (1):35-69.
    To better understand the work of pre-Darwinian British life researchers in their own right, this paper discusses two different styles of reasoning. On the one hand there was analysis:synthesis, where an organism was disintegrated into its constituent parts and then reintegrated into a whole; on the other hand there was palaetiology, the historicist depiction of the progressive specialization of an organism. This paper shows how each style allowed for development, but showed it as moving in opposite directions. In analysis:synthesis, development (...)
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  • Expertise, Regulatory Science and the Evaluation of Technology and Risk: Introduction to the Special Issue.David Demortain - 2017 - Minerva 55 (2):139-159.
    Regulating technologies, innovations and risks is an activity that, as much as scientific research needs proofs and evidence. It is the site of development of a distinct kind of science, regulatory science. This special issue addresses the question of the standards of knowledge governing how we test, assess and monitor technologies and their effects. This topic is relevant and timely in the light of problematics of regulation of innovation, regulatory failure and capture. Given the enormous decisions and stakes regulatory science (...)
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