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  1. The ethics of science: an introduction.David B. Resnik - 1998 - New York: Routledge.
    During the past decade scientists, public policy analysts, politicians, and laypeople, have become increasingly aware of the importance of ethical conduct in scientific research. In this timely book, David B. Resnik introduces the reader to the ethical dilemmas and questions that arise in scientific research. Some of the issues addressed in the book include ethical decision-making, the goals and methods of science, and misconduct in science. The Ethics of Science also discusses significant case studies such as human and animal cloning, (...)
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  • Social Science and Neuroscience beyond Interdisciplinarity: Experimental Entanglements. Des Fitzgerald & Felicity Callard - 2015 - Theory, Culture and Society 32 (1):3-32.
    This article is an account of the dynamics of interaction across the social sciences and neurosciences. Against an arid rhetoric of ‘interdisciplinarity’, it calls for a more expansive imaginary of what experiment – as practice and ethos – might offer in this space. Arguing that opportunities for collaboration between social scientists and neuroscientists need to be taken seriously, the article situates itself against existing conceptualizations of these dynamics, grouping them under three rubrics: ‘critique’, ‘ebullience’ and ‘interaction’. Despite their differences, each (...)
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  • Epistemic Cultures: How the Sciences Make Knowledge.Karin Knorr Cetina - 1999 - Harvard University Press.
    How does science create knowledge? Epistemic cultures, shaped by affinity, necessity, and historical coincidence, determine how we know what we know. In this book, Karin Knorr Cetina compares two of the most important and intriguing epistemic cultures of our day, those in high energy physics and molecular biology. The first ethnographic study to systematically compare two different scientific laboratory cultures, this book sharpens our focus on epistemic cultures as the basis of the knowledge society.
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  • ‘You Wouldn’t have Your Granny Using Them’: Drawing Boundaries Between Acceptable and Unacceptable Applications of Civil Drones.Philip Boucher - 2016 - Science and Engineering Ethics 22 (5):1391-1418.
    Some industry and policy actors are concerned about public opposition to civil drones, in particular because of their association with military drones. However, very little is understood about public reactions to the technology. Strategies to ‘manage public acceptance’ have so far relied upon several untested assumptions. We conducted public engagement activities to explore citizens’ visions of civil drones. Several insights counteracted the prevailing assumptions. Rejecting the notion of blanket support for or opposition to civil drones, we found that citizens make (...)
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  • Research ethics, research integrity and the responsible conduct of research.Stephanie J. Bird - 2006 - Science and Engineering Ethics 12 (3):411-412.
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  • Home on the Range: What and Where is the Middle in Science and Technology Studies?Brian Balmer & Sally Wyatt - 2007 - Science, Technology, and Human Values 32 (6):619-626.
    This article introduces the special issue on middle-range theory in science and technology studies, providing the background to its production and reviewing different notions of “middle.” It begins with Merton's ideas about middle-range theory as a way of moving beyond the production of either descriptions or theories of everything. Instead of seeing the middle as the space between the theoretical imagination and the detailed depiction of everyday practices, the authors outline three ways of thinking about the middle range: as an (...)
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  • Editorial Overview.Erik Fisher - 2011 - Science and Engineering Ethics 17 (4):607-620.
    Science policy mandates across the industrialized world insinuate more active roles for publics, their earlier participation in policy decisions, and expanded notions of science and technology governance. In response to these policies, engaged scholars in science studies have sought to design and conduct exercises aimed at better attuning science to its public contexts. As demand increases for innovative and potentially democratic forms of public engagement with science and technology, so also do the prospects for insights from science studies to contribute (...)
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  • From playfulness and self-centredness via grand expectations to normalisation: a psychoanalytical rereading of the history of molecular genetics. [REVIEW]H. A. E. Zwart - 2013 - Medicine, Health Care and Philosophy 16 (4):775-788.
    In this paper, I will reread the history of molecular genetics from a psychoanalytical angle, analysing it as a case history. Building on the developmental theories of Freud and his followers, I will distinguish four stages, namely: (1) oedipal childhood, notably the epoch of model building (1943–1953); (2) the latency period, with a focus on the development of basic skills (1953–1989); (3) adolescence, exemplified by the Human Genome Project, with its fierce conflicts, great expectations and grandiose claims (1989–2003) and (4) (...)
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  • 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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  • Dazzled by the Mirage of Influence?: STS-SSK in Multivalent Registers of Relevance.Brian Wynne - 2007 - Science, Technology, and Human Values 32 (4):491-503.
    Andrew Webster proposes that science and technology studies align itself more thoroughly with practical policy contexts, actors and issues, so as to become more useful, and thus more a regular actor in such worlds. This commentary raises some questions about this approach. First, I note that manifest influence in science or policy or both should not become-by default, or deliberately-a criterion of intellectual quality for STS research work. I distinguish between reflective historical work, which delineates the contingent ways in which (...)
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  • Standardising Responsibility? The Significance of Interstitial Spaces.Fern Wickson & Ellen-Marie Forsberg - 2015 - Science and Engineering Ethics 21 (5):1159-1180.
    Modern society is characterised by rapid technological development that is often socially controversial and plagued by extensive scientific uncertainty concerning its socio-ecological impacts. Within this context, the concept of ‘responsible research and innovation’ is currently rising to prominence in international discourse concerning science and technology governance. As this emerging concept of RRI begins to be enacted through instruments, approaches, and initiatives, it is valuable to explore what it is coming to mean for and in practice. In this paper we draw (...)
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  • Ethical perspectives on synthetic biology.Bernadette Bensaude Vincent - 2013 - Biological Theory 8 (4):368-375.
    Synthetic biologists are extremely concerned with responsible research and innovation. This paper critically assesses their culture of responsibility. Their notion of responsibility has been so far focused on the identification of risks, and in their prudential attitude synthetic biologists consider that the major risks can be prevented with technological solutions. Therefore they are globally opposed to public interference or political regulations and tend to self-regulate by bringing a few social scientists or ethicists on board. This article emphasizes that ethics lies (...)
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  • Constructing Productive Engagement: Pre-engagement Tools for Emerging Technologies.Haico te Kulve & Arie Rip - 2011 - Science and Engineering Ethics 17 (4):699-714.
    Engagement with stakeholders and civil society is increasingly important for new scientific and technological developments. Preparation of such engagements sets the stage for engagement activities and thus contributes to their outcomes. Preparation is a demanding task, particularly if the facilitating agent aims for timely engagement related to emerging technologies. Requirements for such preparation include understanding of the emerging science & technology and its dynamics. Multi-level analysis and socio-technical scenarios are two complementary tools for constructing productive engagement. Examination of the emergence (...)
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  • Questions Concerning the Clinical Translation of Cell-Based Interventions under an Innovation Pathway.Jeremy Sugarman - 2012 - Journal of Law, Medicine and Ethics 40 (4):945-950.
    Stem cell-based innovation is one pathway to clinical translation that stands in contrast to clinical research and medical treatment. After reviewing recently issued guidelines for responsible innovation, this article examines the potential benefits and harms of using this pathway as well as practical barriers and conceptual concerns regarding it.
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  • Questions concerning the Clinical Translation of Cell-Based Interventions under an Innovation Pathway.Jeremy Sugarman - 2012 - Journal of Law, Medicine and Ethics 40 (4):945-950.
    Criticisms of the traditional clinical research pathway and its extensive oversight often focus on proposals for deregulation or assert that as in clinical treatment, clinical research should always offer benefit to patient-subjects. Proponents of medical innovation take a different, middle path, arguing that innovation is distinguishable from both research and treatment. This article considers this third pathway by examining stem cell-based innovation.Stem cell-based medical innovation is one pathway toward clinical translation. In fact, such an approach was taken in developing umbilical (...)
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  • “Opening Up” and “Closing Down”: Power, Participation, and Pluralism in the Social Appraisal of Technology.Andy Stirling - 2008 - Science, Technology, and Human Values 33 (2):262-294.
    Discursive deference in the governance of science and technology is rebalancing from expert analysis toward participatory deliberation. Linear, scientistic conceptions of innovation are giving ground to more plural, socially situated understandings. Yet, growing recognition of social agency in technology choice is countered by persistently deterministic notions of technological progress. This article addresses this increasingly stark disjuncture. Distinguishing between “appraisal” and “commitment” in technology choice, it highlights contrasting implications of normative, instrumental, and substantive imperatives in appraisal. Focusing on the role of (...)
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  • Just a Cog in the Machine? The Individual Responsibility of Researchers in Nanotechnology is a Duty to Collectivize.Shannon L. Spruit, Gordon D. Hoople & David A. Rolfe - 2016 - Science and Engineering Ethics 22 (3):871-887.
    Responsible Research and Innovation provides a framework for judging the ethical qualities of innovation processes, however guidance for researchers on how to implement such practices is limited. Exploring RRI in the context of nanotechnology, this paper examines how the dispersed and interdisciplinary nature of the nanotechnology field somewhat hampers the abilities of individual researchers to control the innovation process. The ad-hoc nature of the field of nanotechnology, with its fluid boundaries and elusive membership, has thus far failed to establish a (...)
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  • What happens in the Lab: Applying Midstream Modulation to Enhance Critical Reflection in the Laboratory. [REVIEW]Daan Schuurbiers - 2011 - Science and Engineering Ethics 17 (4):769-788.
    In response to widespread policy prescriptions for responsible innovation, social scientists and engineering ethicists, among others, have sought to engage natural scientists and engineers at the ‘midstream’: building interdisciplinary collaborations to integrate social and ethical considerations with research and development processes. Two ‘laboratory engagement studies’ have explored how applying the framework of midstream modulation could enhance the reflections of natural scientists on the socio-ethical context of their work. The results of these interdisciplinary collaborations confirm the utility of midstream modulation in (...)
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  • The past and future of RRI.Arie Rip - 2014 - Life Sciences, Society and Policy 10 (1).
    Within the space of a few years, the idea of Responsible Research and Innovation, and its acronym RRI, catapulted from an obscure phrase to the topic of conferences and attempts to specify and realize it. How did this come about, and against which backdrop? What are the dynamics at present, and what do these imply for the future of RRI as a discourse, and as a patchwork of practices? It is a social innovation which creates opening in existing divisions of (...)
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  • Rethinking research ethics.Rosamond Rhodes - 2005 - American Journal of Bioethics 5 (1):7 – 28.
    Contemporary research ethics policies started with reflection on the atrocities perpetrated upoconcentration camp inmates by Nazi doctors. Apparently, as a consequence of that experience, the policies that now guide human subject research focus on the protection of human subjects by making informed consent the centerpiece of regulatory attention. I take the choice of context for policy design, the initial prioritization of informed consent, and several associated conceptual missteps, to have set research ethics off in the wrong direction. The aim of (...)
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  • Engineers and Active Responsibility.Udo Pesch - 2015 - Science and Engineering Ethics 21 (4):925-939.
    Knowing that technologies are inherently value-laden and systemically interwoven with society, the question is how individual engineers can take up the challenge of accepting the responsibility for their work? This paper will argue that engineers have no institutional structure at the level of society that allows them to recognize, reflect upon, and actively integrate the value-laden character of their designs. Instead, engineers have to tap on the different institutional realms of market, science, and state, making their work a ‘hybrid’ activity (...)
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  • Introduction: `Mode 2' Revisited: The New Production of Knowledge. [REVIEW]Helga Nowotny, Peter Scott & Michael Gibbons - 2003 - Minerva 41 (3):179-194.
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  • Science and the Common Good: Thoughts on Philip Kitcher’s S cience, Truth, and Democracy.Helen E. Longino - 2002 - Philosophy of Science 69 (4):560-568.
    In Science, Truth, and Democracy, Philip Kitcher develops the notion of well-ordered science: scientific inquiry whose research agenda and applications are subject to public control guided by democratic deliberation. Kitcher's primary departure from his earlier views involves rejecting the idea that there is any single standard of scientific significance. The context-dependence of scientific significance opens up many normative issues to philosophical investigation and to resolution through democratic processes. Although some readers will feel Kitcher has not moved far enough from earlier (...)
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  • This is Not a Boundary Object: Reflections on the Origin of a Concept.Susan Leigh Star - 2010 - Science, Technology, and Human Values 35 (5):601-617.
    There are three components to boundary objects as outlined in the original 1989 article. Interpretive flexibility, the structure of informatic and work process needs and arrangements, and, finally, the dynamic between ill-structured and more tailored uses of the objects. Much of the use of the concept has concentrated on the aspect of interpretive flexibility and has often mistaken or conflated this flexibility with the process of tacking back-and-forth between the ill-structured and well-structured aspects of the arrangements. Boundary objects are not (...)
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  • Morality and Technology.Bruno Latour & Couze Venn - 2002 - Theory, Culture and Society 19 (5-6):247-260.
    Technology is always limited to the realm of means, while morality is supposed to deal with ends. In this theoretical article about comparing those two regimes of enunciation, it is argued that technology is on the contrary characterized by the `ends of means' that is the impossibility of being limited to tools; technical artefacts are never tools if what is meant by this is a transmission of function in a mastered way. Once this modification of the meaning of technology is (...)
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  • Epistemic cultures: how the sciences make knowledge.Karin Knorr-Cetina - 1999 - Cambridge, Mass.: Harvard University Press.
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  • Continuous Variations: The Conceptual and the Empirical in STS.Casper Bruun Jensen - 2014 - Science, Technology, and Human Values 39 (2):192-213.
    The dichotomy between the conceptual and the empirical is part of common sense, yet its organizing force also extends to intellectual life more generally, including the disciplinary life of science and technology studies. This article problematizes this dichotomy as it operates in contemporary STS discussions, arguing instead that the conceptual and the empirical form unstable hybrids. Beginning with a discussion of the “discontents” with which the dominant theory methods packages in STS are viewed, it is suggested that STS has entered (...)
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  • Practitioners' Views on Responsibility: Applying Nanoethics. [REVIEW]Rider W. Foley, Ira Bennett & Jameson M. Wetmore - 2012 - NanoEthics 6 (3):231-241.
    Significant efforts have been made to define ethical responsibilities for professionals engaged in nanotechnology innovation. Rosalyn Berne delineated three ethical dimensions of nanotechnological innovation: non-negotiable concerns, negotiable socio-cultural claims, and tacitly ingrained norms. Braden Allenby demarcated three levels of responsibility: the individual, professional societies (e.g. engineering codes), and the macro-ethical. This article will explore how these definitions of responsibility map onto practitioners’ understanding of their responsibilities and the responsibilities of others using the nanotechnology innovation community of the greater Phoenix area, (...)
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  • The Why and How of Enabling the Integration of Social and Ethical Aspects in Research and Development.Steven M. Flipse, Maarten C. A. Sanden & Patricia Osseweijer - 2013 - Science and Engineering Ethics 19 (3):703-725.
    New and Emerging Science and Technology (NEST) based innovations, e.g. in the field of Life Sciences or Nanotechnology, frequently raise societal and political concerns. To address these concerns NEST researchers are expected to deploy socially responsible R&D practices. This requires researchers to integrate social and ethical aspects (SEAs) in their daily work. Many methods can facilitate such integration. Still, why and how researchers should and could use SEAs remains largely unclear. In this paper we aim to relate motivations for NEST (...)
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  • The Why and How of Enabling the Integration of Social and Ethical Aspects in Research and Development.Steven M. Flipse, Maarten Ca van der Sanden & Patricia Osseweijer - 2013 - Science and Engineering Ethics 19 (3):703-725.
    New and Emerging Science and Technology (NEST) based innovations, e.g. in the field of Life Sciences or Nanotechnology, frequently raise societal and political concerns. To address these concerns NEST researchers are expected to deploy socially responsible R&D practices. This requires researchers to integrate social and ethical aspects (SEAs) in their daily work. Many methods can facilitate such integration. Still, why and how researchers should and could use SEAs remains largely unclear. In this paper we aim to relate motivations for NEST (...)
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  • Setting Up Spaces for Collaboration in Industry Between Researchers from the Natural and Social Sciences.Steven M. Flipse, Maarten C. A. van der Sanden & Patricia Osseweijer - 2014 - Science and Engineering Ethics 20 (1):7-22.
    Policy makers call upon researchers from the natural and social sciences to collaborate for the responsible development and deployment of innovations. Collaborations are projected to enhance both the technical quality of innovations, and the extent to which relevant social and ethical considerations are integrated into their development. This could make these innovations more socially robust and responsible, particularly in new and emerging scientific and technological fields, such as synthetic biology and nanotechnology. Some researchers from both fields have embarked on collaborative (...)
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  • Midstream Modulation in Biotechnology Industry: Redefining What is 'Part of the Job' of Researchers in Industry. [REVIEW]Steven M. Flipse, Maarten C. A. Sanden & Patricia Osseweijer - 2013 - Science and Engineering Ethics 19 (3):1141-1164.
    In response to an increasing amount of policy papers stressing the need for integrating social and ethical aspects in Research and Development (R&D) practices, science studies scholars have conducted integrative research and experiments with science and innovation actors. One widely employed integration method is Midstream Modulation (MM), in which an ‘embedded humanist’ interacts in regular meetings with researchers to engage them with the social and ethical aspects of their work. While the possibility of using MM to enhance critical reflection has (...)
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  • Midstream Modulation in Biotechnology Industry: Redefining What is ‘Part of the Job’ of Researchers in Industry. [REVIEW]Steven M. Flipse, Maarten Ca van der Sanden & Patricia Osseweijer - 2013 - Science and Engineering Ethics 19 (3):1141-1164.
    In response to an increasing amount of policy papers stressing the need for integrating social and ethical aspects in Research and Development (R&D) practices, science studies scholars have conducted integrative research and experiments with science and innovation actors. One widely employed integration method is Midstream Modulation (MM), in which an ‘embedded humanist’ interacts in regular meetings with researchers to engage them with the social and ethical aspects of their work. While the possibility of using MM to enhance critical reflection has (...)
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  • Editorial Overview: Public Science and Technology Scholars: Engaging Whom?Erik Fisher - 2011 - Science and Engineering Ethics 17 (4):607-620.
    Science policy mandates across the industrialized world insinuate more active roles for publics, their earlier participation in policy decisions, and expanded notions of science and technology governance. In response to these policies, engaged scholars in science studies have sought to design and conduct exercises aimed at better attuning science to its public contexts. As demand increases for innovative and potentially democratic forms of public engagement with science and technology, so also do the prospects for insights from science studies to contribute (...)
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  • The whale and the reactor: a search for limits in an age of high technology.Langdon Winner - 1986 - Chicago: University of Chicago Press.
    "--David Dickson, New York Times Book Review "The Whale and the Reactor is the philosopher's equivalent of superb public history.
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  • The imperative of responsibility: in search of an ethics for the technological age.Hans Jonas - 1984 - Chicago: University of Chicago Press.
    Discusses the ethical implications of modern technology and examines the responsibility of humanity for the fate of the world.
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  • The Fifth Branch: Science Advisers as Policymakers.Sheila Jasanoff - 1990 - Harvard Univ Press.
    These are just some of the many controversial and timely questions that Sheila Jasanoff asks in this study of the way science advisers shape federal policy.
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  • The Imperative of Responsibility: In Search of an Ethics for the Technological Age.Hans Jonas - 1984 - Human Studies 11 (4):419-429.
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  • Public engagement as means of restoring trust in science? Hitting the notes, but missing the music.Brian E. Wynne - 2006 - .
    This paper analyses the recent widespread moves to 'restore' public trust in science by developing an avowedly two-way, public dialogue with science initiatives. Noting how previously discredited and supposedly abandoned public deficit explanations of 'mistrust' have actually been continually reinvented, it argues that this is a symptom of a continuing failure of scientific and policy institutions to place their own science-policy institutional culture into the frame of dialogue, as possible contributory cause of the public mistrust problem.
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  • Introduction.Helga Nowotny, Peter Scott & Michael Gibbons - 2003 - Minerva 41 (3):179-194.
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  • A field of its own: the emergence of science and technology studies.Sheila Jasanoff - 2010 - In Robert Frodeman, Julie Thompson Klein & Carl Mitcham (eds.), The Oxford Handbook of Interdisciplinarity. Oxford University Press.
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