Results for ' Technoscientific Practices'

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  1.  21
    Responsibility without Moralism in Technoscientific Design Practice.Jaap Jelsma & Tsjalling Swierstra - 2006 - Science, Technology, and Human Values 31 (3):309-332.
    While engineering ethics usually addresses the responsibility of engineers in rare cases of whistle blowing, the authors broach the question to what extent engineers can be held responsible in normal practice. For this purpose, they define the conditions under which individuals can be imputable as they prevail in ethics and common sense. From outcomes of science and technology studies research, the authors conclude that these conditions are seldom met in modern technoscientific research practice. By examining such practice in a (...)
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  2.  29
    Displacing Epistemology: Being in the Midst of Technoscientific Practice. [REVIEW]Robert C. Scharff - 2011 - Foundations of Science 16 (2-3):227-243.
    Interest the Erklären–Verstehen debate is usually interpreted as primarily epistemological. By raising the possibility that there are fundamentally different methods for fundamentally different types of science, the debate puts into play all the standard issues—that is, issues concerning scientific explanation and justification, the unity and diversity of scientific disciplines, the reality of their subject matter, the accessibility of various subject matters to research, and so on. In this paper, however, I do not focus on any of these specific issues. I (...)
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  3.  47
    Biomedicine as Culture: Instrumental Practices, Technoscientific Knowledge, and New Modes of Life.Regula Valérie Burri & Joseph Dumit (eds.) - 2007 - Routledge.
    This volume offers interdisciplinary perspectives on contemporary biomedicine as a cultural practice.
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  4.  21
    Technoscience Rent: Toward a Theory of Rentiership for Technoscientific Capitalism.Kean Birch - 2020 - Science, Technology, and Human Values 45 (1):3-33.
    Contemporary, technoscientific capitalism is characterized by the configuration of a range of “things” as assets or capitalized property. Accumulation strategies have changed as a result of this assetization process. Rather than entrepreneurial strategies based on commodity production, technoscientific capitalism is increasingly underpinned by rentiership or the appropriation of value through ownership and control rights, monopoly conditions, and regulatory or market devices and practices. While rentiership is often presented as a negative phenomenon in both neoclassical and Marxist political (...)
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  5.  18
    Performing the Technoscientific Body: RealVideo Surgery and the Anatomy Theater.Eugene Thacker - 1999 - Body and Society 5 (2-3):317-336.
    This article is an investigation into the ways in which anatomico-medical bodies are produced through means of public mediation and spectacle technologies. The examples of `RealVideo surgery' (surgical operations broadcast live over the Web) and the early modern anatomy theaters, provide two instances where `the body' enframed by science is mediated via technology. Referencing the genealogical work of Michel Foucault, and through an analysis of the anatomy theaters and RealVideo surgery, this article attempts to show how such institutionally framed and (...)
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  6. Practicing Dialectics of Technoscience during the Anthropocene.Hub Zwart - 2022 - Foundations of Science 27 (1):1-20.
    This paper develops a dialectical methodology for assessing technoscience during the Anthropocene. How to practice Hegelian dialectics of technoscience today? First of all, dialectics is developed here in close interaction with contemporary technoscientific research endeavours, which are addressed from a position of proximity and from an ‘oblique’ perspective. Contrary to empirical research, the focus is on how basic concepts of life, nature and technology are acted out in practice. Notably, this paper zooms in on a synthetic cell project called (...)
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  7.  18
    Technoscientific Angst. [REVIEW]Gregg M. Horowitz - 1999 - Social Theory and Practice 25 (1):168-171.
  8.  12
    Practicing Dialectics of Technoscience during the Anthropocene.Hub Zwart - 2021 - Foundations of Science 27 (1):205-224.
    This paper develops a dialectical methodology for assessing technoscience during the Anthropocene. How to practice Hegelian dialectics of technoscience today? First of all, dialectics is developed here in close interaction with contemporary technoscientific research endeavours, which are addressed from a position of proximity and from an ‘oblique’ perspective. Contrary to empirical research, the focus is on how basic concepts of life, nature and technology are acted out in practice. Notably, this paper zooms in on a synthetic cell project called (...)
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  9.  9
    [Book review] technoscientific angst, ethics+ responsibility. [REVIEW]Raphael Sassower - 1999 - Social Theory and Practice 25 (1):168-171.
  10.  23
    Correction to: Transdisciplinarity Without Method: On Being Interdisciplinary in a Technoscientific World.Robert C. Scharff & David A. Stone - 2022 - Human Studies 45 (1):27-27.
    Questions about what experts need to know to facilitate their collaboration in interdisciplinary situations are usually answered with proposals concerning the technical methods, epistemic ground rules, and explanatory theories that one applies “across” disciplines, just as such methods, rules, and theories are applied “within” a discipline. However, phenomenology offers something better. Instead of following the traditional route of looking for general conditions that apply to collaborative practice, phenomenology turns to what actually happens in collaborative experience and shows that success is (...)
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  11.  12
    Correction to: Transdisciplinarity Without Method: On Being Interdisciplinary in a Technoscientific World.Robert C. Scharff & David A. Stone - 2022 - Human Studies 45 (1):1-25.
    Questions about what experts need to know to facilitate their collaboration in interdisciplinary situations are usually answered with proposals concerning the technical methods, epistemic ground rules, and explanatory theories that one applies “across” disciplines, just as such methods, rules, and theories are applied “within” a discipline. However, phenomenology offers something better. Instead of following the traditional route of looking for general conditions that apply to collaborative practice, phenomenology turns to what actually happens in collaborative experience and shows that success is (...)
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  12.  8
    Investigating Emerging Biomedical Practices: Zones of Awkward Engagement on Different Scales.Stefan Beck, Jörg Niewöhner & Michalis Kontopodis - 2011 - Science, Technology, and Human Values 36 (5):599-615.
    This special issue of Science, Technology, & Human Values critically explores a new stage in which the life sciences and biomedical practices have entered. This new stage is marked by postgenomic developments and an increased interest of life sciences in the everyday lives of people outside laboratories and clinical settings. Furthermore, particular attention is given to many chronic and degenerative disorders such as cardiovascular disease, Alzheimer’s disease, or developmental disorders. These developments coincide—or have become entangled—with a new set of (...)
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  13.  10
    Situated Ethics in Development: STS Insights for a Pragmatic Approach to Development Policy and Practice.Carmen Bain, Lauren Trepanier, Caitlin Grady & Elizabeth Ransom - 2023 - Science, Technology, and Human Values 48 (1):190-211.
    Technology has played a central role in development programming since the inception of development assistance. Recent development organizations, like the Bill and Melinda Gates Foundation, believe technological innovation can improve development outcomes. Development ethics, a field of study focused on the ethical questions posed by development policies and practices, has yet to fully appreciate the ethical dimensions of the science and technology. Addressing this important research and policy gap, we contend that science and technology studies (STS) offers important insights (...)
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  14. Medicine as practice and culture: The analysis of border regimes and the necessity of a hermeneutics of physical bodies.Gesa Lindemann - 2007 - In Regula Valérie Burri & Joseph Dumit (eds.), Biomedicine as Culture: Instrumental Practices, Technoscientific Knowledge, and New Modes of Life. Routledge. pp. 6--47.
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  15. Three Challenges for the Cosmopolitan Governance of Technoscience.Matthew Sample - manuscript
    Promising new solutions or risking unprecedented harms, science and its technological affordances are increasingly portrayed as matters of global concern, requiring in-kind responses. In a wide range of recent discourses and global initiatives, from the International Summits on Human Gene Editing to the Intergovernmental Panel on Climate Change, experts and policymakers routinely invoke cosmopolitan aims. The common rhetoric of a shared human future or of one humanity, however, does not always correspond to practice. Global inequality and a lack of accountability (...)
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  16.  52
    Thinking Through the Prism of Life.Hans Ruin - 2013 - Foundations of Science 18 (2):387-392.
    The article provides an overview of the argument in Robert Scharff’s paper “Displacing epistemology: Being in the midst of technoscientific practice” (Scharff 2011), focusing on his central objective, to articulate a hidden ground of the current controversies in the philosophy of science and technology studies, between objectivism and constructivism, through a deeper confrontation with Heidegger’s legacy. The commentary addresses two aspects of Scharffs argument that deserve to be developed further, namely how it both criticizes and cultivates itself an ideal (...)
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  17.  29
    When is a phenomenologist being hermeneutical?Robert C. Scharff - 2020 - AI and Society:1-15.
    Many philosophers of science and technology who see themselves as coming “after” Husserl also claim that their phenomenology is hermeneutical. Yet they neither practice the same sort of phenomenology, nor do they all have the same understanding of hermeneutics. Moreover, their differences often seem to be more a function of different pre-selected substantive commitments—say, to take a “material” turn or to be resolutely “empirical”—than the product of any serious effort to clarify what it is be hermeneutical. In this essay, after (...)
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  18. Ethnographic invention: Probing the capacity of laboratory decisions. [REVIEW]Erik Fisher - 2007 - NanoEthics 1 (2):155-165.
    In an attempt to shape the development of nanotechnologies, ethics policy programs promote engagement in the hope of broadening the scope of considerations that scientists and engineers take into account. While enhancing the reflexivity of scientists theoretically implies changes in technoscientific practice, few empirical studies demonstrate such effects. To investigate the real-time effects on engineering research practices, a laboratory engagement study was undertaken to specify the interplay of technical and social considerations during the normal course of research. The (...)
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  19.  28
    When is a phenomenologist being hermeneutical?Robert C. Scharff - 2023 - AI and Society 38 (6):2279-2293.
    Many philosophers of science and technology who see themselves as coming “after” Husserl also claim that their phenomenology is hermeneutical. Yet they neither practice the same sort of phenomenology, nor do they all have the same understanding of hermeneutics. Moreover, their differences often seem to be more a function of different pre-selected substantive commitments—say, to take a “material” turn or to be resolutely “empirical”—than the product of any serious effort to clarify what it is be hermeneutical. In this essay, after (...)
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  20. Mannigfaltige techno-naturen: Von epistemischen modellsystemen und situierten maschinen.Jutta Weber - 2006 - Philosophia Naturalis 43 (1):111-141.
    A multitude of techno-natures emerge through discourses and practices of the new technosciences. While some philosophers and science studies scholars argue that model organisms and artefacts are getting more and more disembodied and decontextualised in the laboratory, I want to show how ontic dimensions of model organisms and artefacts are made invisible as well as visible in different practices of technosciences like Artificial Life and robotics.This analysis opens up possibilities for an understanding of how ontic dimensions of non-human (...)
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  21.  40
    Empirical Technoscience Studies in a Comtean World: Too Much Concreteness? [REVIEW]Robert C. Scharff - 2012 - Philosophy and Technology 25 (2):153-177.
    Abstract No one doubts the radically transformative power of contemporary technologies and technoscientific practices over the material dimensions of our experience. Yet with the coming of all the exciting changes and the promise of ever better material conditions, what kinds of lives are we implicitly being encouraged to live? One would think that current philosophical studies of technology would make this a central question, and indeed, a few have done so. But many do not. Following the lead of (...)
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  22.  40
    Scientific Objectivity and Postphenomenological Perception.Finn Olesen - 2012 - Foundations of Science 17 (4):357-362.
    Don Ihde’s paper “Stretching the in-between: Embodiment and beyond” appears to me as a stimulating, topical text with a number of important arguments about human embodiment as a dynamic and epistemically relevant dimension to scientific knowledge production. But, indirectly, the text also raises some basic questions about how to describe the (current) scope of technoscientific knowledge, and the potentials of postphenomenology to deal with this complicated, multi-stable issue.
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  23.  6
    Engineering Heterogeneous Accounts: The Case of Submarine Thermal Reactor Mark-I.Scott Frickel - 1996 - Science, Technology and Human Values 21 (1):28-53.
    Within science and technology studies, few approaches have generated more contention—or more misunderstanding—than the "actor-network" analyses of Callon, Latour, and Law. Although many have taken critical issue with this approach, few studies have engaged the strengths and weaknesses of actor-network theory on its own terms. This article presents two arguments that constitute a critical engagement across actor-network terrain. First, the author suggests that the confusion surrounding actor-network accounts lies partially in the ambiguous role played by "social context" and argues for (...)
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  24.  4
    Do Electrons Have Politics? Constructing User Identities in Swedish Electricity.Jane Summerton - 2004 - Science, Technology, and Human Values 29 (4):486-511.
    Electricity systems in many parts of Europe and the United States are currently undergoing transformations that have potentially profound implications for managerial practice and the politics of user identities within these systems. After more than a century of “universal service” that provided technical goods and services to all users on essentially equal terms, utility managers are now constructing and exploiting heterogeneity and difference among users. This article explores local managerial practices within Swedish electricity in the mid-1990s, where managers promoted (...)
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  25. Risk and safety in the operating theater: An ethnographic study of socio-technical practices.Cornelius Schubert - 2007 - In Regula Valérie Burri & Joseph Dumit (eds.), Biomedicine as Culture: Instrumental Practices, Technoscientific Knowledge, and New Modes of Life. Routledge. pp. 6--123.
     
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  26.  37
    Reflections on the historical, epistemological, and social meaning of technoscience.Maria Caramez Carlotto - 2012 - Scientiae Studia 10 (SPE):129-139.
    Technoscientific research, a kind of scientific research conducted within the decontextualized approach (DA), uses advanced technology to produce instruments, experimental objects, and new objects and structures, that enable us to gain knowledge of states of affairs of novel domains, especially knowledge about new possibilities of what we can do and make, with the horizons of practical, industrial, medical or military innovation, and economic growth and competition, never far removed from view. The legitimacy of technoscientific innovations can be appraised (...)
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  27.  41
    Reflections on science and technoscience.Hugh Lacey - 2012 - Scientiae Studia 10 (SPE):103-128.
    Technoscientific research, a kind of scientific research conducted within the decontextualized approach (DA), uses advanced technology to produce instruments, experimental objects, and new objects and structures, that enable us to gain knowledge of states of affairs of novel domains, especially knowledge about new possibilities of what we can do and make, with the horizons of practical, industrial, medical or military innovation, and economic growth and competition, never far removed from view. The legitimacy of technoscientific innovations can be appraised (...)
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  28.  28
    Get ready for technoscience: the constant burden of evaluation and domination.Pablo Rubén Mariconda - 2012 - Scientiae Studia 10 (SPE):151-162.
    Technoscientific research, a kind of scientific research conducted within the decontextualized approach (DA), uses advanced technology to produce instruments, experimental objects, and new objects and structures, that enable us to gain knowledge of states of affairs of novel domains, especially knowledge about new possibilities of what we can do and make, with the horizons of practical, industrial, medical or military innovation, and economic growth and competition, never far removed from view. The legitimacy of technoscientific innovations can be appraised (...)
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  29.  82
    A militant rationality: epistemic values, scientific ethos, and methodological pluralism in epidemiology.Kelly Ichitani Koide - 2012 - Scientiae Studia 10 (SPE):141-150.
    Technoscientific research, a kind of scientific research conducted within the decontextualized approach (DA), uses advanced technology to produce instruments, experimental objects, and new objects and structures, that enable us to gain knowledge of states of affairs of novel domains, especially knowledge about new possibilities of what we can do and make, with the horizons of practical, industrial, medical or military innovation, and economic growth and competition, never far removed from view. The legitimacy of technoscientific innovations can be appraised (...)
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  30.  11
    The humanness of artificial non-normative personalities.Kevin B. Clark - 2017 - Behavioral and Brain Sciences 40:e259.
    Technoscientific ambitions for perfecting human-like machines, by advancing state-of-the-art neuromorphic architectures and cognitive computing, may end in ironic regret without pondering the humanness of fallible artificial non-normative personalities. Self-organizing artificial personalities individualize machine performance and identity through fuzzy conscientiousness, emotionality, extraversion/introversion, and other traits, rendering insights into technology-assisted human evolution, robot ethology/pedagogy, and best practices against unwanted autonomous machine behavior.
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  31.  9
    Whose Body Is It? Technolegal Materialization of Victims’ Bodies and Remains after the World Trade Center Terrorist Attacks.Victor Toom - 2016 - Science, Technology, and Human Values 41 (4):686-708.
    This article empirically analyzes how victims’ remains were recovered, identified, repatriated, and retained after the World Trade Center terrorist attacks of September 11, 2001. It does so by asking the question whose body is it. This question brings to the fore issues related to personhood and ownership: how are anonymous and unrecognizable bodily remains given back an identity; and who has ownership of or custody over identified and unidentified human remains? It is in this respect that the article engages with (...)
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  32.  15
    The Circulation of Morphological Knowledge: Understanding “Form” across Disciplines in the Twentieth and Twenty-First Centuries.Marco Tamborini - 2022 - Isis 113 (4):747-766.
    This essay pushes the history of a scientific discipline, morphology, toward a broader philosophically informed and cross-disciplinarily engaged history of knowledge. It shows that by looking at how knowledge and practices circulated between scientific disciplines (such as biology) and technoscientific ones (like architecture and design) we can better understand how (morphological) knowledge was produced. By doing so, the analysis contributes to the study of the mechanisms of knowledge exchange between the organic and the technical worlds and, more broadly, (...)
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  33.  19
    Testing Reflexive Practitioner Dialogues: Capacities for Socio-technical Integration in Meditation Research.Mareike Smolka & Erik Fisher - 2024 - NanoEthics 18 (1):1-26.
    To put frameworks of Responsible Innovation and Responsible Research and Innovation (R(R)I) into practice, engagement methods have been developed to study and enhance technoscientific experts’ capacities to reflexively address value considerations in their work. These methods commonly rely on engagement between technoscientific experts and social scholars, which makes them vulnerable to structural barriers to interdisciplinary collaboration. To circumvent these barriers, we adapt Socio-Technical Integration Research (STIR) for broader use within technoscientific communities. We call this adaptation: reflexive practitioner (...)
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  34.  44
    Lab Work Goes Social, and Vice Versa: Strategising Public Engagement Processes: Commentary on: “What Happens in the Lab Does Not Stay in the Lab: Applying Midstream Modulation to Enhance Critical Reflection in the Laboratory”.Brian Wynne - 2011 - Science and Engineering Ethics 17 (4):791-800.
    Midstream modulation is a form of public engagement with science which benefits from strategic application of science and technology studies (STS) insights accumulated over nearly 20 years. These have been developed from STS researchers’ involvement in practical engagement processes and research with scientists, science funders, policy and other public stakeholders. The strategic aim of this specific method, to develop what is termed second-order reflexivity amongst scientist-technologists, builds upon and advances earlier more general STS work. However this method is focused and (...)
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  35.  21
    The Biopolitical Embodiment of Work in the Era of Human Enhancement.Nicolas Le Dévédec - 2020 - Body and Society 26 (1):55-81.
    Human enhancement or the use of technoscientific and biomedical advances to improve human performance is a social phenomenon that has become increasingly significant in Western societies over the last 15 years or so, notably in the workplace. By focusing on the non-medical use of psychostimulants, and from a perspective that is both critical and exploratory, this article aims to show that human enhancement practices prefigure new forms of embodiment and interiorization of work that are contributing to a significant (...)
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  36.  7
    Searching for a Public in Controversies over Carbon Dioxide Removal: An Issue Mapping Study on BECCS and Afforestation.Jason Chilvers, Tim Rayner & Laurie Waller - 2023 - Science, Technology, and Human Values 48 (1):34-67.
    The roles digital media-technologies play in raising public issues relating to emerging technologies and their potential for engaging publics with science and policy assessments is a lively field of inquiry in Science and Technology Studies (STS). This paper presents an analysis of controversies over proposals for the large-scale removal of atmospheric carbon dioxide (CDR). The study combines a digital method (web-querying) with document analysis to map debates about two CDR approaches: bioenergy with carbon capture and storage (BECCS) and afforestation. In (...)
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  37. From Einstein's Physics to Neurophilosophy: On the notions of space, time and field as cognoscitive conditions under Kantian-Husserlian approach in the General Relativity Theory.Ruth Castillo - forthcoming - Bitácora-E.
    The current technoscientific progress has led to a sectorization in the philosophy of science. Today the philosophy of science isn't is informal interested in studying old problems about the general characteristics of scientific practice. The interest of the philosopher of science is the study of concepts, problems and riddles of particular disciplines. Then, within this progress of philosophy of science, neuroscientific research stands out, because it invades issues traditionally addressed by the humanities, such as the nature of consciousness, action, (...)
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  38. Iconoclasm and Imagination: Gaston Bachelard’s Philosophy of Technoscience.Hub Zwart - 2020 - Human Studies 43 (1):61-87.
    Gaston Bachelard occupies a unique position in the history of European thinking. As a philosopher of science, he developed a profound interest in genres of the imagination, notably poetry and novels. While emphatically acknowledging the strength, precision and reliability of scientific knowledge compared to every-day experience, he saw literary phantasies as important supplementary sources of insight. Although he significantly influenced authors such as Lacan, Althusser, Foucault and others, while some of his key concepts are still widely used, his oeuvre tends (...)
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  39. Scientific iconoclasm and active imagination: synthetic cells as techo-schientific mandalas.Hub Zwart - 2018 - Life Sciences, Society and Policy 14 (1):1-17.
    Metaphors allow us to come to terms with abstract and complex information, by comparing it to something which is structured, familiar and concrete. Although modern science is “iconoclastic”, as Gaston Bachelard phrases it, scientists are at the same time prolific producers of metaphoric images themselves. Synthetic biology is an outstanding example of a technoscientific discourse replete with metaphors, including textual metaphors such as the “Morse code” of life, the “barcode” of life and the “book” of life. This paper focuses (...)
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  40.  18
    Continental Philosophy of Technoscience.Hub Zwart - 2021 - Springer Verlag.
    The key objective of this volume is to allow philosophy students and early-stage researchers to become practicing philosophers in technoscientific settings. Zwart focuses on the methodological issue of how to practice continental philosophy of technoscience today. This text draws upon continental authors such as Hegel, Engels, Heidegger, Bachelard and Lacan in developing a coherent message around the technicity of science or rather, “technoscience”. Within technoscience, the focus will be on recent developments in life sciences research, such as genomics, post-genomics, (...)
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  41.  51
    Entanglement of Imaging and Imagining of Nanotechnology.Martin Ruivenkamp & Arie Rip - 2011 - NanoEthics 5 (2):185-193.
    Images, ranging from visualizations of the nanoscale to future visions, abound within and beyond the world of nanotechnology. Rather than the contrast between imaging , i.e. creating images that are understood as offering a view on what is out there, and imagining , i.e. creating images offering impressions of how the nanoscale could look like and images presenting visions of worlds that might be realized, it is the entanglement between imaging and imagining which is the key to understanding what images (...)
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  42.  11
    Brave New World.Olga B. Koshovets & Igor E. Frolov - 2020 - Epistemology and Philosophy of Science 57 (1):20-31.
    The article focuses on the crucial changes that science as an established social institution and an epistemological enterprise is undergoing, the key one is the loss of its monopoly on the production of socially useful knowledge and gradual transformation into something new, which, due to institutional and cultural reasons, we continue to call ‘science’. We suppose that the most appropriate conceptualization of the new phenomenon, which is replacing science as an institution, is “technoscience”, since the technical component in scientific (...) has now taken a dominant position and technology production has become more important than fundamental knowledge. Technoscience has at least two sources: 1) capitalization of scientific activity that has led to classical science has been replaced with technoscience developing on first-priority funded applied research; 2) theorization and autonomy of the techno sphere, which have resulted in instrumentalization of all levels of knowledge production as well as in technological / symbolic construction of reality and tangled ontology of technoscientific objects. We discuss both of these sources, with particular attention being paid to such trends as epistemic strategies transformation, modified reality, social sciences and humanities conformation to technoscience norms, and knowledge bearers egalitarianization. A crucial transformation of both science itself and its position in society breaks inevitably a demarcation line that separates scientific knowledge from other types of knowledge while promotes the replacement of scientific theory with discourses. Apparently, in “technoscience” an ethos of its own is being formed, where interaction with the “external environment” (with other social spheres) is crucial. In this context, scientific activity is becoming more and more transepistemic, transinstitutional practice, and accordingly ceases to be guided by the classical scientific ethos determined by the goals and objectives of academic community itself. (shrink)
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  43.  36
    Science as Labor.Wolfgang Lefèvre - 2005 - Perspectives on Science 13 (2):194-225.
    The article takes the term "technoscience" literally and investigates a conception of science that takes it not only as practice, but as production in the sense of a material labor process. It will explore in particular the material connection between science and ordinary production. It will furthermore examine how the historical development of science as a social enterprise was shaped by its technoscientific character. In this context, in an excursus, the prevailing notion will be questioned that social relations must (...)
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  44.  13
    The reconfiguration of biobanks in Europe under the BBMRI-ERIC framework: towards global sharing nodes?Miquel Domènech & Violeta Argudo-Portal - 2020 - Life Sciences, Society and Policy 16 (1):1-15.
    Freezers with biospecimen deposits became biobanks and later were networked at the pan-European level in 2013 under the Biobanking and BioMolecular Resources Research Infrastructure—European Research Infrastructure Consortium (BBMRI-ERIC). Drawing on document analysis about the BBMRI-ERIC and multi-sited fieldwork with biobankers in Spain from a science and technology studies approach, we explore what biobanks are expected to do and become under the BBMRI-ERIC framework, and how infrastructural transitions promote particular transformations in biobanking practices. The primary purpose of biobanks in Europe (...)
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  45.  15
    The Machine in the Ghost: Transhumanism and the Ontology of Information.Michael Burdett & King-Ho Leung - 2023 - Zygon 58 (3):714-731.
    An ontology of information belies our common intuitions about reality today and animates and governs both explicit scholarly study in philosophy and the sciences as well as the ideologies that are growing out of them. Transhumanism is one such technoscientific ideology that holds to a very specific ontology of information which need not be the only one on offer. This article argues that the transhumanist ontology of information exhibits gnostic and docetic religious overtones in it and that it devalues (...)
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  46. Coming to Terms with Technoscience: The Heideggerian Way.Hub Zwart - 2020 - Human Studies 43 (3):385-408.
    Heidegger’s oeuvre (> 100 volumes) contains a plethora of comments on contemporary science, or rathertechnosciencebecause, according to Heidegger, science is inherently technical. What insights can be derived from such comments for philosophers questioning technoscience as it is practiced today? Can Heidegger’s thoughts become a source of inspiration for contemporary scholars who are confronted with automated sequencing machines, magnetic resonance imaging machines and other technoscientific contrivances? This is closely related to the question of method, I will argue. Although Heidegger himself (...)
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  47.  12
    Leaving Us to Wonder: An Essay on the Questions Science Can't Ask.Linda Wiener & Ramsey Eric Ramsey - 2004 - State University of New York Press.
    This exciting collaboration between a biologist and a philosopher explores the meaning of the scientific worldview and how it plays out in our everyday lives. The authors investigate alternatives to scientism, the view that science is the proper and exclusive foundation for thinking about and answering every question. They ask: Does the current technoscientific worldview threaten the pursuit of living well? Do the facts procured by technoscientific systems render inconsequential our lived experiences, the wisdom of ancient and contemporary (...)
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  48.  70
    The Renaissance of Francis Bacon: On Bacon’s Account of Recent Nano-Technoscience.Jan Cornelius Schmidt - 2011 - NanoEthics 5 (1):29-41.
    The program of intervening, manipulating, constructing and creating is central to natural and engineering sciences. A renewed wave of interest in this program has emerged within the recent practices and discourse of nano-technoscience. However, it is striking that, framed from the perspective of well-established epistemologies, the constructed technoscientific objects and engineered things remain invisible. Their ontological and epistemological status is unclear. The purpose of the present paper is to support present-day approaches to techno-objects ( ontology ) insofar as (...)
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  49. Examining the Structured Uses of Concepts as Tools: Converging Insights.Eden T. Smith - 2019 - Filozofia Nauki 27 (4):7-22.
    Examining the historical development of scientific concepts is important for understanding the structured routines within which these concepts are currently used as goal-directed tools in experiments. To illustrate this claim, I will outline how the concepts of mental imagery and hallucinations each draw on an older interdependent set of associations that, although nominally-discarded, continues to structure their current independent uses for pursuing discrete experimental goals. In doing so, I will highlight how three strands of literature offer mutually instructive insights for (...)
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  50.  63
    On the anthropological foundation of bioethics: a critique of the work of J.-F. Malherbe.Henri Mbulu - 2013 - Theoretical Medicine and Bioethics 34 (5):409-431.
    In this article, I critically analyze the anthropological foundation of the bioethics of philosopher Jean-François Malherbe, particularly as presented in his book, Pour une Éthique de la Médecine. Malherbe argues that such practices as organ donation and transplants, assisted reproduction, resuscitation, and other uses of biotechnologies in contemporary medicine are unethical because they go against essential human nature. Furthermore, he uses this position as a basis to prescribe public policy and institutional practice. In contrast, I argue not only that (...)
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