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  1. A Framework for Analyzing Dialogues over the Acceptability of Controversial Technologies.Nichole D. Kerchner, Milton Russell, David J. Bjornstad & Amy K. Wolfe - 2002 - Science, Technology, and Human Values 27 (1):134-159.
    This article asks under what circumstances controversial technologies would be considered seriously for remediation instead of being rejected out of hand. To address this question, the authors developed a conceptual framework called public acceptability of controversial technologies. PACT considers site-specific, decision-oriented dialogues among the individuals and groups involved in selecting or recommending hazardous waste remediation technologies. It distinguishes technology acceptability, that is, a willingness to consider seriously, from technology acceptance, the decision to deploy. The framework integrates four dimensions: an acceptability (...)
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  • Ethics and technology 'in the making': An essay on the challenge of nanoethics. [REVIEW]Deborah G. Johnson - 2007 - NanoEthics 1 (1):21-30.
    After reviewing portions of the 21st Century Nanotechnology Research and Development Act that call for examination of societal and ethical issues, this essay seeks to understand how nanoethics can play a role in nanotechnology development. What can and should nanoethics aim to achieve? The focus of the essay is on the challenges of examining ethical issues with regard to a technology that is still emerging, still ‘in the making.’ The literature of science and technology studies (STS) is used to understand (...)
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  • Nanoethics: From utopian dreams and apocalyptic nightmares towards a more balanced view.Bert Gordijn - 2005 - Science and Engineering Ethics 11 (4):521-533.
    Nanotechnology is a swiftly developing field of technology that is believed to have the potential of great upsides and excessive downsides. In the ethical debate there has been a strong tendency to strongly focus on either the first or the latter. As a consequence ethical assessments of nanotechnology tend to radically diverge. Optimistic visionaries predict truly utopian states of affairs. Pessimistic thinkers present all manner of apocalyptic visions. Whereas the utopian views follow from one-sidedly focusing on the potential benefits of (...)
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  • But is it unique to nanotechnology?Marion Godman - 2008 - Science and Engineering Ethics 14 (3):391-403.
    Attempts have been made to establish nanoethics as a new sub-discipline of applied ethics. The nature of this sub-discipline is discussed and some issues that should be subsumed under nanoethics are proposed. A distinction is made between those issue that may ensue once nanotechnology applications become available and procedural issues that should be integrated into the decision structure of the development. A second distinction relates to the central value of the ethical issue. The conditions for the ethical debate differ depending (...)
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  • The Coming Era of Nanomedicine.Fritz Allhoff - 2009 - American Journal of Bioethics 9 (10):3-11.
    This essay presents some general background on nanomedicine, particularly focusing on some of the investment that is being made in this emerging field. The bulk of the essay, however, consists of explorations of two areas in which the impacts of nanomedicine are likely to be most significant: diagnostics and medical records and treatment, including surgery and drug delivery. Each discussion includes a survey some of the ethical and social issues that are likely to arise in these applications.
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  • Societal and Ethical Implications of Nanotechnology.Joachim Schummer - 2004 - Techné: Research in Philosophy and Technology 8 (2):56-87.
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  • Societal and Ethical Implications of Nanotechnology.Joachim Schummer - 2004 - Techné: Research in Philosophy and Technology 8 (2):56-87.
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  • Introduction: Engaging with nanotechnologies – engaging differently? [REVIEW]Tee Rogers-Hayden, Alison Mohr & Nick Pidgeon - 2007 - NanoEthics 1 (2):123-130.
    The idea of conducting upstream public engagement over emerging technologies has been gaining popularity in Europe and North America, with nanotechnologies seen as a test case for this. For many of its advocates, upstream engagement is about a re-conceptualisation of the science–society relationship in which a variety of ‘publics’ are brought together with stakeholders and scientists early in the Research and Development process to co-develop technological trajectories. However, the concept, aims and processes of upstream engagement remain ill-defined, are often misunderstood, (...)
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  • Evaluating Oversight of Human Drugs and Medical Devices: A Case Study of the FDA and Implications for Nanobiotechnology.Jordan Paradise, Alison W. Tisdale, Ralph F. Hall & Efrosini Kokkoli - 2009 - Journal of Law, Medicine and Ethics 37 (4):598-624.
    This article evaluates the oversight of drugs and medical devices by the U.S. Food and Drug Administration using an integration of public policy, law, and bioethics approaches and employing multiple assessment criteria, including economic, social, safety, and technological. Criteria assessment and expert elicitation are combined with existing literature, case law, and regulations in an integrative historical case studies approach. We then use our findings as a tool to explore possibilities for effective oversight and regulatory mechanisms for nanobiotechnology. Section I describes (...)
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  • Developing U.S. Oversight Strategies for Nanobiotechnology: Learning from Past Oversight Experiences.Jordan Paradise, Susan M. Wolf, Jennifer Kuzma, Aliya Kuzhabekova, Alison W. Tisdale, Efrosini Kokkoli & Gurumurthy Ramachandran - 2009 - Journal of Law, Medicine and Ethics 37 (4):688-705.
    The emergence of nanotechnology, and specifically nanobiotechnology, raises major oversight challenges. In the United States, government, industry, and researchers are debating what oversight approaches are most appropriate. Among the federal agencies already embroiled in discussion of oversight approaches are the Food and Drug Administration , Environmental Protection Agency , Department of Agriculture , Occupational Safety and Health Administration , and National Institutes of Health . All can learn from assessment of the successes and failures of past oversight efforts aimed at (...)
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  • The Sounds of Science: Listening to Laboratory Practice.Cyrus C. M. Mody - 2005 - Science, Technology, and Human Values 30 (2):175-198.
    Works in science and technology studies have repeatedly pointed to the importance of the visual in scientific practice. STS has also explicated how embodied practice generates scientific knowledge. I aim to supplement this literature by pointing out how sound and hearing are integral aspects of experimentation. Sound helps define how and when lab work is done, and in what kinds of spaces. It structures experimental experience. It affords interactions between researchers and instruments that are richer than could be obtained with (...)
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  • "It's like déjà-vu, all over again" : anticipating societal responses to nanotechnologies.Amy K. Wolfe & David J. Bjornstad - 2008 - In Kenneth H. David & Paul B. Thompson (eds.), What Can Nanotechnology Learn From Biotechnology?: Social and Ethical Lessons for Nanoscience From the Debate Over Agrifood Biotechnology and Gmos. Elsevier/Academic Press.
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  • Communicating Risk.[author unknown] - 2016
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