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  1. (1 other version)Oxytocin: Vom Geburts- zum Sozialhormon.Xenia Steinbach & Sabine Maasen - 2018 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 26 (1):1-30.
    ZusammenfassungIn massenmedialen Darstellungen wird das Hormon Oxytocin gegenwärtig als biochemische Basis von Sozialität und wirkmächtiger neuropharmakologischer Lösungsansatz für die (Wieder‑)Herstellung der gesellschaftlichen Kohäsion verhandelt. Mit Blick auf die ursprüngliche Bedeutung des Hormons als „Körperhormon“ zu Beginn des 20. Jahrhunderts soll im vorliegenden Artikel die außergewöhnliche Karriere von Oxytocin vom Regulator des Geburtsvorgangs hin zum Regulator der Gesellschaft nachgezeichnet werden. Woraus bezieht eine solch voraussetzungsvolle Behauptung ihre Intelligibilität und Akzeptabilität? Unsere Analyse des wissenschaftlichen Diskurses um Oxytocin (1906–1990), des massenmedialen Diskurses seit (...)
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  • Reflex theory, cautionary tale: misleading simplicity in early neuroscience.M. Chirimuuta - 2021 - Synthese 199 (5-6):12731-12751.
    This paper takes an integrated history and philosophy of science approach to the topic of "simplicity out of complexity". The reflex theory was a framework within early twentieth century psychology and neuroscience which aimed to decompose complex behaviours and neural responses into simple reflexes. It was controversial in its time, and did not live up to its own theoretical and empirical ambitions. Examination of this episode poses important questions about the limitations of simplifying strategies, and the relationship between simplification and (...)
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  • From primal scenes to synthetic cells.Hub Zwart - 2019 - eLife 8.
    Synthetic cells spark intriguing questions about the nature of life. Projects such as BaSyC (‘Building a Synthetic Cell’) aim to build an entity that mimics how living cells work from basic components. But what kind of entity would a synthetic cell really be? I assess this question from a philosophical perspective, and show how early fictional narratives of artificial life – such as the laboratory scene in Goethe’s Faust – can help us to understand the challenges faced by synthetic biology (...)
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  • Genomics and self-knowledge. Implications for societal research and debate.Hub Zwart - 2007 - New Genetics and Society 26 (2):181-202.
    When the Human Genome Project (HGP) was launched, our genome was presented as our ‘blueprint’, a metaphor reflecting a genetic deterministic epistemology. Eventually, however, the HGP undermined rather than strengthened the understanding of genomes as blueprints and of genes as ultimate causal units. A symbolical turning point was the discovery that the human genome only contains 22,500 genes. Initially, this was seen as a narcissistic offence. Gradually, however, it strengthened the shift from traditional genetics and biotechnology (i.e., gene-oriented approaches) to (...)
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  • Psychoanalysis of technoscience: symbolisation and imagination.Hub Zwart - 2019 - Berlin / Münster / Zürich: LIT.
    This volume aims to develop a philosophical diagnostic of the present, focussing on contemporary technoscience. psychoanalysis submits contemporary technoscientific discourse to a symptomatic reading, analysing it with evenly-poised attention and from an oblique perspective. Psychoanalysis is not primarily interested in protons, genes or galaxies, but rather in the ways in which they are disclosed and discussed, focussing on the symptomatic terms, the metaphors and paradoxes at work in technoscientific discourse. This monograph presents a psychoanalytical assessment of technoscience. The first four (...)
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  • (1 other version)An inferential and dynamic approach to modeling and understanding in biology.Rodrigo Lopez-Orellana, Juan Redmond & David Cortés-García - 2019 - Humanities Journal of Valparaiso 14:315-334.
    This paper aims to propose an inferential and dynamic approach to understanding with models in biology. Understanding plays a central role in the practice of modeling. From its links with the other two central elements of scientific research, experimentation, and explanation, we show its epistemic relevance to the case of explanation in biology. Furthermore, by including the notion of understanding, we propose a non-referentialist perspective on scientific models, which is determined by their use.
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  • The uses of trauma in experiment: Traumatic stress and the history of experimental neurosis, c. 1925–1975.Ulrich Koch - 2019 - Science in Context 32 (3):327-351.
    ArgumentThe article retraces the shifting conceptualizations of psychological trauma in experimental psychopathological research in the middle decades of the twentieth century in the United States. Among researchers studying so-called experimental neuroses in animal laboratories, trauma was an often-invoked category used to denote the clash of conflicting forces believed to lead to neurotic suffering. Experimental psychologists, however, soon grew skeptical of the traumatogenic model and ultimately came to reject neurosis as a disease entity. Both theoretical differences and practical circumstances, such as (...)
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  • Psychological Mechanisms.Ulrich Koch & Kelso Cratsley - 2020 - In V. Zeigler-Hill & T. Shackelford (eds.), Encyclopedia of Personality and Individual Differences. pp. 4145-4154.
    In the most inclusive sense, psychological mechanisms offer a type of causal explanation of mental states and behavior, often with reference to underlying processes, systems, activities, or entities. By postulating and investigating such mechanisms, researchers have sought explanations of a wide range of psychological phenomena. However, the concept has been deployed in dramatically different ways, with very different meanings, depending upon the particular school or tradition of psychology (and specific research program therein). In fact, usage has been so diverse as (...)
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  • This is the synthetic biology that is. [REVIEW]Daniel Liu - 2017 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 63:89-93.
    Review of: Sophia Roosth, Synthetic: How Life Got Made (University of Chicago Press, 2017); and Andrew S. Balmer, Katie Bulpin, and Susan Molyneux-Hodgson, Synthetic Biology: A Sociology of Changing Practices (Palgrave Macmillan, 2016).
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  • The new holism: P4 systems medicine and the medicalization of health and life itself.Henrik Vogt, Bjørn Hofmann & Linn Getz - 2016 - Medicine, Health Care and Philosophy 19 (2):307-323.
    The emerging concept of systems medicine (or ‘P4 medicine’—predictive, preventive, personalized and participatory) is at the vanguard of the post-genomic movement towards ‘precision medicine’. It is the medical application of systems biology, the biological study of wholes. Of particular interest, P4 systems medicine is currently promised as a revolutionary new biomedical approach that is holistic rather than reductionist. This article analyzes its concept of holism, both with regard to methods and conceptualization of health and disease. Rather than representing a medical (...)
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  • (1 other version)Medical prediction, prevention and justice: some remarks on the ethical dimensions of a biomedical ideal.Norbert W. Paul - 2010 - Ethik in der Medizin 22 (3):191-205.
    Das Ideal einer vorhersagenden Medizin in Kombination mit wirkungsvollen, kausalen Strategien der Prävention auf molekularer Ebene ist noch immer weit davon entfernt, klinische Realität zu werden. Es ist jedoch schon heute festzustellen, dass zwischen Medizin und Gesellschaft verhandelte Konzepte von Gesundheit in immer stärkerem Maße auf zukünftige Gesundheit ausgerichtet sind, mithin einen immer präventiveren Charakter aufweisen. Der vorliegende Beitrag untersucht die Frage, ob neue Konzepte einer prädiktiv-präventiven Medizin – insbesondere Public Health Genetics bzw. Public Health Genomics – das Kriterium der (...)
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  • Essay Review: Improving Americans. [REVIEW]Ronald Rainger - 2001 - Journal of the History of Biology 34 (3):557-564.
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  • Can artificial parthenogenesis sidestep ethical pitfalls in human therapeutic cloning? An historical perspective.H. Fangerau - 2005 - Journal of Medical Ethics 31 (12):733-735.
    The aim of regenerative medicine is to reconstruct tissue that has been lost or pathologically altered. Therapeutic cloning seems to offer a method of achieving this aim; however, the ethical debate surrounding human therapeutic cloning is highly controversial. Artificial parthenogenesis—obtaining embryos from unfertilised eggs—seems to offer a way to sidestep these ethical pitfalls. Jacques Loeb , the founding father of artificial parthogenesis, faced negative public opinion when he published his research in 1899. His research, the public’s response to his findings, (...)
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  • How the Body Became Integrated: Cybernetics in the History of the Brain Death Debate.Paul Scherz - 2022 - Journal of Medicine and Philosophy 47 (3):387-406.
    Although the term integration is central to the definition of brain death, there is little agreement on what it means. Through a genealogical analysis, this essay argues that there have been two primary ways of understanding integration in regard to organismal wholeness. One stems from neuroscience, focusing on the role of the brain in responding to external stimuli, which was taken up in phenomenological accounts of life. A second, arising out of cybernetics, focuses on the brain’s role in homeostasis. Recent (...)
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  • Goltz against cerebral localization: Methodology and experimental practices.J. P. Gamboa - 2020 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 84:101304.
    In the late 19th century, physiologists such as David Ferrier, Eduard Hitzig, and Hermann Munk argued that cerebral brain functions are localized in discrete structures. By the early 20th century, this became the dominant position. However, another prominent physiologist, Friedrich Goltz, rejected theories of cerebral localization and argued against these physiologists until his death in 1902. I argue in this paper that previous historical accounts have failed to comprehend why Goltz rejected cerebral localization. I show that Goltz adhered to a (...)
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  • Medicalization and overdiagnosis: different but alike.Bjørn Hofmann - 2016 - Medicine, Health Care and Philosophy 19 (2):253-264.
    Medicalization is frequently defined as a process by which some non-medical aspects of human life become to be considered as medical problems. Overdiagnosis, on the other hand, is most often defined as diagnosing a biomedical condition that in the absence of testing would not cause symptoms or death in the person’s lifetime. Medicalization and overdiagnosis are related concepts as both expand the extension of the concept of disease. They are both often used normatively to critique unwarranted or contested expansion of (...)
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  • Last Judgment: The Visionary Biology of J. B. S. Haldane. [REVIEW]Mark B. Adams - 2000 - Journal of the History of Biology 33 (3):457 - 491.
    This paper seeks to reinterpret the life and work of J. B. S. Haldane by focusing on an illuminating but largely ignored essay he published in 1927, "The Last Judgment" -- the sequel to his better known work, "Daedalus" (1924). This astonishing essay expresses a vision of the human future over the next 40,000,000 years, one that revises and updates Wellsian futurism with the long range implications of the "new biology" for human destiny. That vision served as a kind of (...)
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  • From Haeckelian Monist to Anti-Haeckelian Vitalist: The Transformation of the Icelandic Naturalist Thorvaldur Thoroddsen (1855-1921). [REVIEW]Steindór J. Erlingsson - 2002 - Journal of the History of Biology 35 (3):443 - 470.
    Iceland has not been known as a contributor to the history of science. This small nation in the North-Atlantic has only in recent decades made its mark on international science. But the Icelandic naturalist Thorvaldur Thoroddsen (1855-1921) is an exception to this generalisation, for he was well known at the turn of the 20th century in Europe and America for his research on the geography and geology of Iceland. Though Thoroddsen's contribution to these sciences is of great interest there is (...)
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  • Introduction: Remembering Phil. [REVIEW]Sharon Kingsland - 2009 - Journal of the History of Biology 42 (2):205 - 214.
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  • Chemistry and the Engineering of Life Around 1900: Research and Reflections by Jacques Loeb.Ute Deichmann - 2009 - Biological Theory 4 (4):323-332.
    Dissatisfied with the descriptive and speculative methods of evolutionary biology of his time, the physiologist Jacques Loeb , best known for his “engineering” approach to biology, reflected on the possibilities of artificially creating life in the laboratory. With the objective of experimentally tackling one of the crucial questions of organic evolution, i.e., the origin of life from inanimate matter, he rejected claims made by contemporary scientists of having produced artificial life through osmotic growth processes in inorganic salt solutions. According to (...)
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  • How Machines Make History, and how Historians (And Others) Help Them to Do So.Thomas J. Misa - 1988 - Science, Technology, and Human Values 13 (3-4):308-331.
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  • ‘Ghastly marionettes’ and the political metaphysics of cognitive liberalism: Anti-behaviourism, language, and the origins of totalitarianism.Danielle Judith Zola Carr - 2020 - History of the Human Sciences 33 (1):147-174.
    While behaviourist psychology had proven its worth to the US military during the Second World War, the 1950s saw behaviourism increasingly associated with a Cold War discourse of ‘totalitarianism’. This article considers the argument made in Hannah Arendt’s The Origins of Totalitarianism on totalitarianism as a form of behaviourist control. By connecting Arendt’s Cold War anti-behaviourism both to its discursive antecedents in a Progressive-era critique of industrial labour, and to contemporaneous attacks on behaviourism, this paper aims to answer two interlocking (...)
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  • Creating life and the media: translations and echoes.Manuel Porcar & Juli Peretó - 2018 - Life Sciences, Society and Policy 14 (1):1-14.
    Synthetic biology is the engineering view on biotechnology that ultimately aims at fulfilling the quest of building an artificial cell. From the very first attempts of synthesizing life, this subject has made an impact on the media through, very often, misleading headlines and news. We review here the historical journalistic approach on synthetic biology and related disciplines, from the early twentieth century to the lastest achievements on designing protocells or genome reduction. However, it would be very naive to consider the (...)
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  • “The awe in which biologists hold physicists”: Frits Went’s first phytotron at Caltech, and an experimental definition of the biological environment.David P. D. Munns - 2014 - History and Philosophy of the Life Sciences 36 (2):209-231.
    After Darwin, experimental biology sought to unravel organisms. By the early twentieth century, organisms were broadly conceived as the product of their heredity and their environment. Much historical work has explored the scientific attack on the genotype, particularly through the new science of genetics. This article explores the tandem efforts to assert experimental control over the environment in which plants grew and developed. The case described here concerns the creation of the first phytotron at Caltech by botanist and plant physiologist (...)
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  • From Utopia to Science: Challenges of Personalised Genomics Information for Health Management and Health Enhancement. [REVIEW]Hub Zwart - 2009 - Medicine Studies 1 (2):155-166.
    From 1900 onwards, scientists and novelists have explored the contours of a future society based on the use of “anthropotechnologies” (techniques applicable to human beings for the purpose of performance enhancement ranging from training and education to genome-based biotechnologies). Gradually but steadily, the technologies involved migrated from (science) fiction into scholarly publications, and from “utopia” (or “dystopia”) into science. Building on seminal ideas borrowed from Nietzsche, Peter Sloterdijk has outlined the challenges inherent in this development. Since time immemorial, and at (...)
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  • (1 other version)Medizinische Prädiktion, Prävention und Gerechtigkeit: Anmerkungen zu ethischen Dimensionen eines biomedizinischen Ideals. [REVIEW]Norbert W. Paul - 2010 - Ethik in der Medizin 22 (3):191-205.
    Das Ideal einer vorhersagenden Medizin in Kombination mit wirkungsvollen, kausalen Strategien der Prävention auf molekularer Ebene ist noch immer weit davon entfernt, klinische Realität zu werden. Es ist jedoch schon heute festzustellen, dass zwischen Medizin und Gesellschaft verhandelte Konzepte von Gesundheit in immer stärkerem Maße auf zukünftige Gesundheit ausgerichtet sind, mithin einen immer präventiveren Charakter aufweisen. Der vorliegende Beitrag untersucht die Frage, ob neue Konzepte einer prädiktiv-präventiven Medizin – insbesondere Public Health Genetics bzw. Public Health Genomics – das Kriterium der (...)
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  • Cancer, Conflict, and the Development of Nuclear Transplantation Techniques.Nathan Crowe - 2014 - Journal of the History of Biology 47 (1):63-105.
    The technique of nuclear transplantation – popularly known as cloning – has been integrated into several different histories of twentieth century biology. Historians and science scholars have situated nuclear transplantation within narratives of scientific practice, biotechnology, bioethics, biomedicine, and changing views of life. However, nuclear transplantation has never been the focus of analysis. In this article, I examine the development of nuclear transplantation techniques, focusing on the people, motivations, and institutions associated with the first successful nuclear transfer in metazoans in (...)
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  • The Bee Battles: Karl von Frisch, Adrian Wenner and the Honey Bee Dance Language Controversy. [REVIEW]Tania Munz - 2005 - Journal of the History of Biology 38 (3):535 - 570.
    In 1967, American biologist Adrian Wenner (1928-) launched an extensive challenge to Karl von Frisch's (1886-1982) theory that bees communicate to each other the direction and distance of food sources by a symbolic dance language. Wenner and various collaborators argued that bees locate foods solely by odors. Although the dispute had largely run its course by 1973 -- von Frisch was awarded a Nobel Prize, while Wenner withdrew from active bee research -- it offers us a rare window into mid-twentieth (...)
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  • Playing God in Frankenstein’s Footsteps: Synthetic Biology and the Meaning of Life. [REVIEW]Henk van den Belt - 2009 - NanoEthics 3 (3):257-268.
    The emergent new science of synthetic biology is challenging entrenched distinctions between, amongst others, life and non-life, the natural and the artificial, the evolved and the designed, and even the material and the informational. Whenever such culturally sanctioned boundaries are breached, researchers are inevitably accused of playing God or treading in Frankenstein’s footsteps. Bioethicists, theologians and editors of scientific journals feel obliged to provide an authoritative answer to the ambiguous question of the ‘meaning’ of life, both as a scientific definition (...)
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  • Translating at Work: Genetically Modified Mouse Models and Molecularization in the Environmental Health Sciences.Sara Shostak - 2007 - Science, Technology, and Human Values 32 (3):315-338.
    This paper examines processes of translation through which molecular genetic technologies and practices are incorporated into environmental health research and regulation. Specifically, it considers how scientists, risk assessors, and regulators have used genetically modified mouse models to translate across scientific disciplines, articulate emergent molecular forms, standards, and practices with the extant? gold standard,? and establish roles for molecular knowledge in risk assessment and regulation. Noting variation both within and between regulatory agencies in responses to data from these models, the article (...)
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  • How mechanisms explain interfield cooperation: biological–chemical study of plant growth hormones in Utrecht and Pasadena, 1930–1938.Caterina Schürch - 2017 - History and Philosophy of the Life Sciences 39 (3):16.
    This article examines to what extent a particular case of cross-disciplinary research in the 1930s was structured by mechanistic reasoning. For this purpose, it identifies the interfield theories that allowed biologists and chemists to use each other’s techniques and findings, and that provided the basis for the experiments performed to identify plant growth hormones and to learn more about their role in the mechanism of plant growth. In 1930, chemists and biologists in Utrecht and Pasadena began to cooperatively study plant (...)
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  • Socially Constructing Pacific Salmon.Rik Scarce - 1997 - Society and Animals 5 (2):117-135.
    What does "nature" mean? This general question, central to the social construction of nature, is addressed here by examining one of nature's particulars, Pacific salmon, and by looking at how one group of people, salmon biologists, imbue the fish with meaning. Based upon historical, comparative, and qualitative data, it appears that nature is socially constructed through both cognitive and physical processes. "Salmon"- and indirectly nature - emerges not as a monolithic, timeless, certain entity, but rather as one that is manipulable, (...)
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  • The gene-editing of super-ego.Bjørn Hofmann - 2018 - Medicine, Health Care and Philosophy 21 (3):295-302.
    New emerging biotechnologies, such as gene editing, vastly extend our ability to alter the human being. This comes together with strong aspirations to improve humans not only physically, but also mentally, morally, and socially. These conjoined ambitions aggregate to what can be labelled “the gene editing of super-ego.” This article investigates a general way used to argue for new biotechnologies, such as gene-editing: if it is safe and efficacious to implement technology X for the purpose of a common good Y, (...)
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  • Beyond Nature and Culture: A Note on Medicine in the Age of Molecular Biology.Hans-Jörg Rheinberger - 1995 - Science in Context 8 (1):249-263.
    The ArgumentThe paper is divided into the two parts. In the first, I examine the relations among molecular biology, gene technology, and medicine as some aspect of the consequences of these relations with respect to the human genome project of the consequences of these relations with respect to the human genome project. I argue that the prevailing momentum of early molecular biology resided in argue that the prevailing momentum of relay molecular biology resided in crating the technical means for an (...)
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  • A Man of His Time: Thorstein Veblen and the University of Chicago Darwinists. [REVIEW]Emilie J. Raymer - 2013 - Journal of the History of Biology 46 (4):669-698.
    The Darwinian economic theory that Thorstein Veblen proposed and refined while he served as a professor of Political Economy at the University of Chicago from 1891 to 1906 should be assessed in the context of the community of Darwinian scientists and social scientists with whom Veblen worked and lived at Chicago. It is important to identify Veblen as a member of this broad community of Darwinian-inclined philosophers, physiologists, geologists, astronomers, and biologists at Chicago because Veblen’s involvement with this circle suggests (...)
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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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  • The organism strikes back: Chlorella algae and their impact on photosynthesis research, 1920s–1960s.Kärin Nickelsen - 2017 - History and Philosophy of the Life Sciences 39 (2).
    Historians and philosophers of twentieth-century life sciences have demonstrated that the choice of experimental organism can profoundly influence research fields, in ways that sometimes undermined the scientists’ original intentions. The present paper aims to enrich and broaden the scope of this literature by analysing the career of unicellular green algae of the genus Chlorella. They were introduced for the study of photosynthesis in 1919 by the German cell physiologist Otto H. Warburg, and they became the favourite research objects in this (...)
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  • Physicochemical Biology and Knowledge Transfer: The Study of the Mechanism of Photosynthesis Between the Two World Wars.Kärin Nickelsen - 2022 - Journal of the History of Biology 55 (2):349-377.
    In the first decades of the twentieth century, the process of photosynthesis was still a mystery: Plant scientists were able to measure what entered and left a plant, but little was known about the intermediate biochemical and biophysical processes that took place. This state of affairs started to change between the two world wars, when a number of young scientists in Europe and the United States, all of whom identified with the methods and goals of physicochemical biology, selected photosynthesis as (...)
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  • Historical and Philosophical Foundations of Synthetic Biology.Michel Morange - 2009 - Biological Theory 4 (4):311-313.
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  • New perspectives in the history of twentieth-century life sciences: historical, historiographical and epistemological themes.Robert Meunier & Kärin Nickelsen - 2018 - History and Philosophy of the Life Sciences 40 (1):19.
    The history of twentieth-century life sciences is not exactly a new topic. However, in view of the increasingly rapid development of the life sciences themselves over the past decades, some of the well-established narratives are worth revisiting. Taking stock of where we stand on these issues was the aim of a conference in 2015, entitled “Perspectives for the History of Life Sciences”. The papers in this topical collection are based on work presented and discussed at and around this meeting. Just (...)
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  • (1 other version)Oxytocin: Vom Geburts- zum Sozialhormon: Zur hormonellen Regierbarkeit von Soziabilität aka Gesellschaft.Sabine Maasen & Xenia Steinbach - 2018 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 26 (1):1-30.
    ZusammenfassungIn massenmedialen Darstellungen wird das Hormon Oxytocin gegenwärtig als biochemische Basis von Sozialität und wirkmächtiger neuropharmakologischer Lösungsansatz für die (Wieder‑)Herstellung der gesellschaftlichen Kohäsion verhandelt. Mit Blick auf die ursprüngliche Bedeutung des Hormons als „Körperhormon“ zu Beginn des 20. Jahrhunderts soll im vorliegenden Artikel die außergewöhnliche Karriere von Oxytocin vom Regulator des Geburtsvorgangs hin zum Regulator der Gesellschaft nachgezeichnet werden. Woraus bezieht eine solch voraussetzungsvolle Behauptung ihre Intelligibilität und Akzeptabilität? Unsere Analyse des wissenschaftlichen Diskurses um Oxytocin (1906–1990), des massenmedialen Diskurses seit (...)
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  • International Culture Collections and the Value of Microbial Life: Johanna Westerdijk’s Fungi and Ernst Georg Pringsheim’s Algae.Charles A. Kollmer - 2022 - Journal of the History of Biology 55 (1):59-87.
    Around the turn of the twentieth century, microbiologists in Western Europe and North America began to organize centralized collections of microbial cultures. Collectors published lists of the strains they cultured, offering to send duplicates to colleagues near and far. This essay explores the history of microbial culture collections through two cases: Johanna Westerdijk’s collection of phytopathogenic fungi in the Netherlands and Ernst Georg Pringsheim’s collection of single-celled algae at the German University in Prague. Historians of science have tended to look (...)
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  • A Humanistic Science: Charles Judson Herrick and the Struggle for Psychobiology at the University of Chicago.Sharon E. Kingsland - 1993 - Perspectives on Science 1 (3):445-477.
    This article examines the study of mind and behavior at the University of Chicago through the career of Charles Judson Herrick, neuroanatomist and psychobiologist. Herrick’s views on human nature, education, and social control are discussed in the context of the progressive evolutionism pervading the university in the early twentieth century. The religious background of Herrick’s work is important to understanding the service ethos that permeated his science, which was also the basis of his interest in pragmatism and of his opposition (...)
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  • Knowing As Making, Making As Knowing: The Many Lives of Synthetic Biology.Evelyn Fox Keller - 2009 - Biological Theory 4 (4):333-339.
    The ways in which the various activities of synthetic biology connect to those of conventional biology display both a multiplicity and variety that reflect the multiplicity and variety of meanings for which the term synthetic biology has been invoked, today as in the past. Central to this variety, as well as to the connection itself, is the complex relationship between knowing and making that has prevailed in the life sciences. That relationship is the focus of this article. More specifically, my (...)
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  • Genome Editing Animals and the Promise of Control in a (Post-) Anthropocentric World.Rosine Kelz - 2020 - Body and Society 26 (1):3-25.
    Gene editing tools are ‘revolutionizing’ microbiological research. Much of the public debate focuses on the possibility of human germ line applications. The use of genome editing to alter non-human animals, however, will have more immediate impacts on our daily lives. Genome edited animals are used for basic biological and biomedical research and could soon play a role in the livestock industry and ecosystem management. Genome editing thus provides an occasion to rethink societal narratives about the relationships between humans and other (...)
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  • Classification conundrums: categorizing chimeras and enacting species preservation. [REVIEW]Carrie Friese - 2010 - Theory and Society 39 (2):145-172.
    Sociologists have challenged the discipline to account for and incorporate biological factors in their analyses. Heeding this call, this article asks how chimeras, a particularly puzzling biological organism, are being officially classified in the interrelated sites of endangered species preservation and the zoo. Based on a qualitative study of endeavors to clone endangered animals, I contend that biology alone cannot determine the classification of these interspecies organisms. Rather, categorizing chimeras requires metaphoric, schematic references to more familiar entities. Here culture and (...)
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  • ReGenesis: Leben als Laborartefakt.Gabriele Gramelsberger - 2020 - Deutsche Zeitschrift für Philosophie 68 (5):750-767.
    Inspired by the success of synthesising organic substances by Friedrich Wöhler in 1828, the vision of creating life in the laboratory synthetically has become increasingly accessible for today’s synthetic biology and synthetic genomics, respectively. The engineering of biology – a contemporary version of the liaison of technology and organic form – creates cellular machines, biobricks, biomolecular ‘borgs’, and entire synthetic genomes of artificial organisms. Besides major ethical concerns, the shift in scientific epistemology is of interest. Unlike classical analytical science, synthetic (...)
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  • Woodger, positivism, and the evolutionary synthesis.Joe Cain - 2000 - Biology and Philosophy 15 (4):535-551.
    In Unifying Biology, Smocovitis offers a series of claimsregarding the relationship between key actors in the synthesisperiod of evolutionary studies and positivism, especially claimsentailing Joseph Henry Woodger and the Unity of Science Movement.This commentary examines Woodger''s possible relevance to key synthesis actors and challenges Smocovitis'' arguments for theexplanatory relevance of logical positivism, and positivism moregenerally, to synthesis history. Under scrutiny, these arguments areshort on evidence and subject to substantial conceptual confusion.Though plausible, Smocovitis'' minimal interpretation – that somegeneralised form of Comtean (...)
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  • National Styles? Jacques Loeb's Analysis of German and American Science Around 1900 in his Correspondence with Ernst Mach.Heiner Fangerau & Irmgard Müller - 2005 - Centaurus 47 (3):207-225.
    In modern discourse about the history of science, it seems to be widely accepted that at the end of the nineteenth century, Germany was one of the leading countries in the production of science. In the past, historians of science tried to trace back a specific ‘German style’ of science that—in combination with other factors—determined this German dominance around 1900, especially in the life sciences. Considering the theoretical concept of ‘national styles’, it has to be kept in mind that around (...)
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  • A visit to Biotopia: genre, genetics and gardening in the early twentieth century.Jim Endersby - 2018 - British Journal for the History of Science 51 (3):423-455.
    The early decades of the twentieth century were marked by widespread optimism about biology and its ability to improve the world. A major catalyst for this enthusiasm was new theories about inheritance and evolution (particularly Hugo de Vries's mutation theory and Mendel's newly rediscovered ideas). In Britain and the USA particularly, an astonishingly diverse variety of writers (from elite scientists to journalists and writers of fiction) took up the task of interpreting these new biological ideas, using a wide range of (...)
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