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  1. The Singularity is Near: When Humans Transcend Biology.Ray Kurzweil - 2005 - Viking Press.
    A controversial scientific vision predicts a time in which humans and machines will merge and create a new form of non-biological intelligence, explaining how the occurrence will solve such issues as pollution, hunger, and aging.
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  • Nanotechnology and the Developing World: Lab-on-Chip Technology for Health and Environmental Applications.Michael D. Mehta - 2008 - Bulletin of Science, Technology and Society 28 (5):400-407.
    This article argues that advances in nanotechnology in general, and lab-on-chip technology in particular, have the potential to benefit the developing world in its quest to control risks to human health and the environment. Based on the “risk society” thesis of Ulrich Beck, it is argued that the developed world must realign its science and technology policy priorities to meet some of the most pressing needs of humanity.
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  • Nanotech's History: An Interesting, Interdisciplinary, Ideological Split.Ashley Shew - 2008 - Bulletin of Science, Technology and Society 28 (5):390-399.
    Nanotechnology is viewed by those in favor of its development in two different ways, and the divide is not recent. This article describes the origins of the differing visions of nanotechnology and examines their broader impacts. The typical history of the field tells nothing about these differing visions, which perhaps misleads. At least two distinct camps among scientists and engineers pursue work on the nanoscale, but they rarely interact, and when they do, they get nowhere. This article looks first at (...)
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  • Midstream Modulation of Technology: Governance From Within.Carl Mitcham, Roop L. Mahajan & Erik Fisher - 2006 - Bulletin of Science, Technology and Society 26 (6):485-496.
    Public “upstream engagement” and other approaches to the social control of technology are currently receiving international attention in policy discourses around emerging technologies such as nanotechnology. To the extent that such approaches hold implications for research and development (R&D) activities, the distinct participation of scientists and engineers is required. The capacity of technoscientists to broaden the influences on R&D activities, however, implies that they conduct R&D differently. This article discusses the possibility for more reflexive participation by scientists and engineers in (...)
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  • Are We Really the Prey? Nanotechnology as Science and Science Fiction.Peter Binks, Graeme A. Hodge & Diana M. Bowman - 2007 - Bulletin of Science, Technology and Society 27 (6):435-445.
    Popular culture can play a significant role in shaping the acceptance of evolving technologies, with nanotechnology likely to be a case in point. The most popular fiction work to date in this arena has been Michael Crichton's techno-thriller Prey, which fuses together nanotechnology science with science fiction. Within the context of Prey, this article examines the role that scientists and popular culture play in educating society, and one another, about emerging technologies. In di ferentiating fact from fiction, the article reflects (...)
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  • Risky Talk: Framing the Analysis of the Social Implications of Nanotechnology.Stephen H. Cutcliffe & Christine M. Pense - 2007 - Bulletin of Science, Technology and Society 27 (5):349-366.
    Nanotechnology promises to amend an understanding of elemental properties, alter the basic techniques of manufacturing, and improve disease diagnosis. There is a disconnect among the positive predictions of scientists and researchers, the fears of public interest groups, and the developers of products. A new framework for evaluating the social implications of nanotechnology will permit a dialogue among interest groups, who currently fail to effectively communicate with one another. Each instance of nanotechnology application will likely have its own unique attributes, but (...)
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  • The Promises and Perils of Nanoscience and Nanotechnology: Exploring Emerging Social and Ethical Issues.Pallavoor Vaidyanathan, Sudipta Seal & Aldrin E. Sweeney - 2003 - Bulletin of Science, Technology and Society 23 (4):236-245.
    Rapid advances in nanoscience and nanotechnology are profoundly influencing the ways in which we conceptualize the world of the future, and human ability to manipulate matter at the atomic and molecular levels offers previously unimagined possibilities for scientific discovery and technological applications. The convergence of nanotechnology with biotechnology, information technology, cognitive science, and engineering may hold promise for the improvement of human performance at a number of levels. Based on a National Science Foundation-funded Research Experiences for Undergraduates Program in nanoscience (...)
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  • From Biotechnology to Nanotechnology: What Can We Learn from Earlier Technologies?Michael D. Mehta - 2004 - Bulletin of Science, Technology and Society 24 (1):34-39.
    Using Canada as a case study, this article argues that regulating biotechnology and nanotechnology is made unnecessarily complex and inherently unstable because of a failure to consult the public early and of-ten enough. Furthermore, it is argued that future regulators (and promoters) of nanotechnology may learn valuable lessons from the mistakes made in regulating biotechnology.
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  • Dwarfing the Social? Nanotechnology Lessons from the Biotechnology Front.Linda Goldenberg & Edna F. Einsiedel - 2004 - Bulletin of Science, Technology and Society 24 (1):28-33.
    Biotechnology and nanotechnology are both strategic technologies, and the former provides several lessons that could contribute to more successful embedding and integration processes for the latter. This article identifies some of the key questions emerging from the biotechnology experience and summarizes several lessons learned in the context of constructive technology assessment. This approach broadens the range of social considerations relevant to the sustainable development of nanotechnology and emphasizes the need for developing social tools for nanotechnology innovation while the technology is (...)
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  • Nanotechnology: From “Wow” to “Yuck”?Kristen Kulinowski - 2004 - Bulletin of Science, Technology and Society 24 (1):13-20.
    Nanotechnology is science and engineering resulting from the manipulation of matter’s most basic building blocks: atoms and molecules. As such, nanotechnology promises unprecedented control over both the materials we use and the means of their production. Such control could revolutionize nearly every sector of our economy, including medicine, defense, and energy. Despite the relatively recent emergence of this field, it already enjoys generous federal funding and enthusiastic media coverage. The tenor of discourse on nanotechnology is changing, however, as the voices (...)
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  • Nanoscience and Nanotechnology: Assessing the Nature of Innovation in These Fields.Michael D. Mehta - 2002 - Bulletin of Science, Technology and Society 22 (4):269-273.
    Sociologists of science and others have long been interested in how advances in science come about, and their potential social and economic impacts. Developments in nanoscience and nanotechnology will provide social scientists with a unique opportunity to explore how scientific activities form de novo. Additionally, scientists will have the opportunity to examine the factors that drive science and technology in certain directions by considering how different models of innovation may explain how the topography of the knowledge-based economy is being shaped (...)
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  • (1 other version)The Role of the Humanities and Social Sciences in Nanotechnology Research and Development.Mette Ebbesen - 2008 - NanoEthics 2 (1):1-13.
    The experience with genetically modified foods has been prominent in motivating science, industry and regulatory bodies to address the social and ethical dimensions of nanotechnology. The overall objective is to gain the general public’s acceptance of nanotechnology in order not to provoke a consumer boycott as it happened with genetically modified foods. It is stated implicitly in reports on nanotechnology research and development that this acceptance depends on the public’s confidence in the technology and that the confidence is created on (...)
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  • Chaos and Control: Nanotechnology and the Politics of Emergence.Matthew Kearnes - 2006 - Paragraph 29 (2):57-80.
    This article looks at the strong links between Deleuze's molecular ontology and the fields of complexity and emergence, and argues that Deleuze's work implies a ‘philosophy of technology’ that is both open and dynamic. Following Simondon and von Uexküll, Deleuze suggests that technical objects are ontologically unstable, and are produced by processes of individuation and self-organization in complex relations with their environment. For Deleuze design is not imposed from without, but emerges from within matter. The fundamental departure for Deleuze, on (...)
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  • The Social Construction of Technological Systems: New Directions in Sociology and History of Technology (25th Anniversary Edition with new preface).Wiebe E. Bijker, Thomas P. Hughes & Trevor Pinch (eds.) - 1987 - MIT Press.
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  • (1 other version)The Role of the Humanities and Social Sciences in Nanotechnology Research and Development.Mette Ebbesen - 2008 - NanoEthics 2 (3):333-333.
    The experience with genetically modified foods has been prominent in motivating science, industry and regulatory bodies to address the social and ethical dimensions of nanotechnology. The overall objective is to gain the general public’s acceptance of nanotechnology in order not to provoke a consumer boycott as it happened with genetically modified foods. It is stated implicitly in reports on nanotechnology research and development that this acceptance depends on the public’s confidence in the technology and that the confidence is created on (...)
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  • Ideas, Machines, and Values: An Introduction to Science, Technology, and Society Studies.Stephen H. Cutcliffe - 2000 - Rowman & Littlefield.
    Ideas, Machines, and Values is an introductory overview of the emergence of STS as a field of study, as well as a portrait of its current interests and concerns. The book examines the growth of STS from its birth inthe mid-1960's through its development as an interdisciplinary field to its present state. Also addressed are the questions 'Why should we study STS?' and 'In what direction should STS be headed?' This work is highly recommended for anyone interested in building a (...)
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  • Philosophy, Rhetoric and the End of Knowledge: The Coming of Science and Technology Studies.Steve Fuller - 1996 - Philosophy and Rhetoric 29 (2):200-205.
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  • The Handbook of Science and Technology Studies.Edward Hackett, Olga Amsterdamska, Michael Lynch & Judy Wajcman (eds.) - 2007 - MIT Press.
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  • The Novelty of Nano and the Regulatory Challenge of Newness.Christopher J. Preston, Maxim Y. Sheinin, Denyse J. Sproat & Vimal P. Swarup - 2010 - NanoEthics 4 (1):13-26.
    A great deal has been made of the question of whether nano-materials provide a unique set of ethical challenges. Equally important is the question of whether they provide a unique set of regulatory challenges. In the last 18 months, the US Environmental Protection Agency has begun the process of trying to meet the regulatory challenge of nano using the Toxic Substances Control Act (1976)(TSCA). In this central piece of legislation, ‘newness’ is a critical concept. Current EPA policy, we argue, does (...)
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  • (1 other version)Multidisciplinary Engagement with Nanoethics Through Education—The Nanobio-RAISE Advanced Courses as a Case Study and Model.Daan Schuurbiers, Susanne Sleenhoff, Johannes F. Jacobs & Patricia Osseweijer - 2009 - NanoEthics 3 (3):197-211.
    This paper presents and evaluates two advanced courses organised in Oxford as part of the European project Nanobio-RAISE and suggests using their format to encourage multidisciplinary engagement between nanoscientists and nanoethicists. Several nanoethicists have recently identified the need for ‘better’ ethics of emerging technologies, arguing that ethical reflection should become part and parcel of the research and development (R&D) process itself. Such new forms of ethical deliberation, it is argued, transcend traditional disciplinary boundaries and require the active engagement and involvement (...)
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  • Perceptions of nano ethics among practitioners in a developing country: A case of india. [REVIEW]Debasmita Patra, E. Haribabu & Katherine A. McComas - 2010 - NanoEthics 4 (1):67-75.
    Many developing countries have allocated significant amounts of funding for nanoscience and nanotechnology research, yet compared to developed countries, there has been little study, discussion, or debate over social and ethical issues. Using in-depth interviews, this study focuses on the perceptions of practitioners, that is, scientists and engineers, in one developing country: India. The disciplinary background, departmental affiliation, types of institutions, age, and sex of the practitioners varied but did not appear to affect their responses. The results show that 95% (...)
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  • Ethical responsibilities of nanotechnology researchers: A short guide. [REVIEW]Robert McGinn - 2010 - NanoEthics 4 (1):1-12.
    Little if any of the scholarly literature on nanotechnology (NT) and ethics is directed at NT researchers. Many of these practitioners believe that having clear ethical guidelines for the conduct of NT research is necessary. This work attempts to provide such guidelines. While no qualitatively new ethical issues unique to NT have yet been identified, the ethical responsibilities identified below merit serious attention by NT researchers. Thirteen specific ethical responsibilities arising at three levels are identified. They are derived by applying (...)
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  • Developments in the debate on nanoethics: Traditional approaches and the need for new kinds of analysis. [REVIEW]Arianna Ferrari - 2010 - NanoEthics 4 (1):27-52.
    This paper aims to review different discourses within the emerging field of ethical reflection on nanotechnology. I will start by analysing the early stages of this debate, showing how it has been focused on searching for legitimacy for this sphere of moral inquiry. I will then characterise an ethical approach, common to many authors, which frames ethical issues in terms of risks and benefits. This approach identifies normative issues where there are conflicts of interest or where challenges to the fundamental (...)
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  • Converging technologies, shifting boundaries.Tsjalling Swierstra, Marianne Boenink, B. Walhout & R. Van Est - 2009 - NanoEthics 3 (3):213-216.
    Converging Technologies, Shifting Boundaries Content Type Journal Article Pages 213-216 DOI 10.1007/s11569-009-0075-x Authors Tsjalling Swierstra, University of Twente Enschede Netherlands Marianne Boenink, University of Twente Enschede Netherlands B. Walhout, Rathenau Institute The Hague Netherlands R. Van Est, Rathenau Institute The Hague Netherlands Journal NanoEthics Online ISSN 1871-4765 Print ISSN 1871-4757 Journal Volume Volume 3 Journal Issue Volume 3, Number 3.
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  • Taking care of the symbolic order. How converging technologies challenge our concepts.Tsjalling Swierstra, Rinie van Est & Marianne Boenink - 2009 - NanoEthics 3 (3):269-280.
    In this article we briefly summarize how converging technologies challenge elements of the existing symbolic order, as shown in the contributions to this special issue. We then identify the vision of ‘life as a do it yourself kit’ as a common denominator in the various forms of convergence and proceed to show how this vision provokes unrest and debate about existing moral frameworks and taboos. We conclude that, just as the problems of the industrial revolution sparked off the now broadly (...)
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  • Ambient intelligence and persuasive technology: The blurring boundaries between human and technology. [REVIEW]Peter-Paul Verbeek - 2009 - NanoEthics 3 (3):231-242.
    The currently developing fields of Ambient Intelligence and Persuasive Technology bring about a convergence of information technology and cognitive science. Smart environments that are able to respond intelligently to what we do and that even aim to influence our behaviour challenge the basic frameworks we commonly use for understanding the relations and role divisions between human beings and technological artifacts. After discussing the promises and threats of these technologies, this article develops alternative conceptions of agency, freedom, and responsibility that make (...)
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  • The mind and the machine. On the conceptual and moral implications of brain-machine interaction.Maartje Schermer - 2009 - NanoEthics 3 (3):217-230.
    Brain-machine interfaces are a growing field of research and application. The increasing possibilities to connect the human brain to electronic devices and computer software can be put to use in medicine, the military, and entertainment. Concrete technologies include cochlear implants, Deep Brain Stimulation, neurofeedback and neuroprosthesis. The expectations for the near and further future are high, though it is difficult to separate hope from hype. The focus in this paper is on the effects that these new technologies may have on (...)
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  • Tensions and opportunities in convergence: Shifting concepts of disease in emerging molecular medicine. [REVIEW]Marianne Boenink - 2009 - NanoEthics 3 (3):243-255.
    The convergence of biomedical sciences with nanotechnology as well as ICT has created a new wave of biomedical technologies, resulting in visions of a ‘molecular medicine’. Since novel technologies tend to shift concepts of disease and health, this paper investigates how the emerging field of molecular medicine may shift the meaning of ‘disease’ as well as the boundary between health and disease. It gives a brief overview of the development towards and the often very speculative visions of molecular medicine. Subsequently (...)
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  • Dual-use research codes of conduct: Lessons from the life sciences. [REVIEW]Michael J. Selgelid - 2009 - NanoEthics 3 (3):175-183.
    This paper considers multiple meanings of the expression ‘dual use’ and examines lessons to be learned from the life sciences when considering ethical and policy issues associated with the dual-use nature of nanotechnology (and converging technologies). After examining recent controversial dual-use experiments in the life sciences, it considers the potential roles and limitations of science codes of conduct for addressing concerns associated with dual-use science and technology. It concludes that, rather than being essentially associated with voluntary self-governance of the scientific (...)
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  • Community engagement to facilitate, legitimize and accelerate the advancement of nanotechnologies in australia.Kristen Lyons & James Whelan - 2010 - NanoEthics 4 (1):53-66.
    There are increasing calls internationally for the development of regulation and policies related to the rapidly growing nanotechnologies sector. As part of the process of policy formation, it is widely accepted that deliberative community engagement processes should be included, enabling publics to have a say about nanotechnologies, expressing their hopes and fears, issues and concerns, and that these will be considered as part of the policy process. The Australian Federal and State governments have demonstrated a commitment to these ideals, undertaking (...)
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  • Why do we need to know what the public thinks about nanotechnology?Craig Cormick - 2009 - NanoEthics 3 (2):167-173.
    Public debate on nanotechnology is a large topic within governments, research agencies, industry and non-government organisations. But depending who you talk to the perception of what the public thinks about nanotechnology can be very varied. To define coherent policy and to invest in research and development that aligns with public preferences, needs more than just perceptions of public perceptions. Public attitude studies are vital in understanding what the public really think, but they need to go further than simplistic polling and (...)
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  • Piecing together the elephant: Public engagement on nanotechnology challenges.Craig Cormick - 2009 - Science and Engineering Ethics 15 (4):439-442.
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  • (1 other version)Multidisciplinary engagement with nanoethics through education—the nanobio-raise advanced courses as a case study and model.Susanne Sleenhoff Daan Schuurbiers, F. Jacobs Johannes & Patricia Osseweijer - 2009 - NanoEthics 3 (3):197-211.
    This paper presents and evaluates two advanced courses organised in Oxford as part of the European project Nanobio-RAISE and suggests using their format to encourage multidisciplinary engagement between nanoscientists and nanoethicists. Several nanoethicists have recently identified the need for ‘better’ ethics of emerging technologies, arguing that ethical reflection should become part and parcel of the research and development (R&D) process itself. Such new forms of ethical deliberation, it is argued, transcend traditional disciplinary boundaries and require the active engagement and involvement (...)
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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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  • The discursive and operational foundations of the national nanotechnology initiative in the history of the national science foundation.Jason Gallo - 2009 - Perspectives on Science 17 (2):pp. 174-211.
    The National Science Foundation's (NSF) role in, and influence on, the National Nanotechnology Initiative (NNI) can best be understood through an examination of the NSF's history. Because of the NSF's weakened position at its founding in 1950 and obstacles faced throughout its history, the NSF developed a discursive strategy that focuses on making a causal link between support for basic science and societal benefits, and an operational strategy focused on growing its constituency through infrastructural support. The hallmarks of both of (...)
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  • Nanotechnology, contingency and finitude.Christopher Groves - 2009 - NanoEthics 3 (1):1-16.
    It is argued that the social significance of nanotechnologies should be understood in terms of the politics and ethics of uncertainty. This means that the uncertainties surrounding the present and future development of nanotechnologies should not be interpreted, first and foremost, in terms of concepts of risk. It is argued that risk, as a way of managing uncertain futures, has a particular historical genealogy, and as such implies a specific politics and ethics. It is proposed, instead, that the concepts of (...)
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  • Researching and teaching the ethics and social implications of emerging technologies in the laboratory.Joan McGregor & Jameson M. Wetmore - 2009 - NanoEthics 3 (1):17-30.
    Ethicists and others who study and teach the social implications of science and technology are faced with a formidable challenge when they seek to address “emerging technologies.” The topic is incredibly important, but difficult to grasp because not only are the precise issues often unclear, what the technology will ultimately look like can be difficult to discern. This paper argues that one particularly useful way to overcome these difficulties is to engage with their natural science and engineering colleagues in laboratories. (...)
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  • Nanotechnology: Considering the complex ethical, legal, and societal issues with the parameters of human performance. [REVIEW]Linda MacDonald Glenn & Jeanann S. Boyce - 2008 - NanoEthics 2 (3):265-275.
    Nanotechnology: Considering the Complex Ethical, Legal, and Societal Issues with the Parameters of Human Performance Content Type Journal Article Pages 265-275 DOI 10.1007/s11569-008-0047-6 Authors Linda MacDonald Glenn, Albany Medical College/Center Alden March Bioethics Institute Albany NY 12208 USA Jeanann S. Boyce, Montgomery College Dept. of Computer Science and Business 7600 Takoma Avenue Takoma Park MD 20912 USA Journal NanoEthics Online ISSN 1871-4765 Print ISSN 1871-4757 Journal Volume Volume 2 Journal Issue Volume 2, Number 3.
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  • Nanotechnology, enhancement, and human nature.Nicole Hassoun - 2008 - NanoEthics 2 (3):289-304.
    Is nanotechnology-based human enhancement morally permissible? One reason to question such enhancement stems from a concern for preserving our species. It is harder than one might think, however, to explain what could be wrong with altering our own species. One possibility is to turn to the environmental ethics literature. Perhaps some of the arguments for preserving other species can be applied against nanotechnology-based human enhancements that alter human nature. This paper critically examines the case for using two of the strongest (...)
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  • The opposite of human enhancement: Nanotechnology and the blind chicken problem. [REVIEW]Paul B. Thompson - 2008 - NanoEthics 2 (3):305-316.
    Nanotechnologies that have been linked to the possibility of enhancing cognitive capabilities of human beings might also be deployed to reduce or eliminate such capabilities in non-human vertebrate animals. A surprisingly large literature on the ethics of such disenhancement has been developed in response to the suggestion that it would be an ethically defensible response to animal suffering both in medical experimentation and in industrial livestock production. However, review of this literature illustrates the difficulty of formulating a coherent ethical debate. (...)
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  • Ethics, speculation, and values.Rebecca Roache - 2008 - NanoEthics 2 (3):317-327.
    Some writers claim that ethicists involved in assessing future technologies like nanotechnology and human enhancement devote too much time to debating issues that may or may not arise, at the expense of addressing more urgent, current issues. This practice has been claimed to squander the scarce and valuable resource of ethical concern. I assess this view, and consider some alternatives to ‘speculative ethics’ that have been put forward. I argue that attempting to restrict ethical debate so as to avoid considering (...)
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  • Avoiding empty rhetoric: Engaging publics in debates about nanotechnologies.Renee Kyle & Susan Dodds - 2009 - Science and Engineering Ethics 15 (1):81-96.
    Despite the amount of public investment in nanotechnology ventures in the developed world, research shows that there is little public awareness about nanotechnology, and public knowledge is very limited. This is concerning given that nanotechnology has been heralded as ‘revolutionising’ the way we live. In this paper, we articulate why public engagement in debates about nanotechnology is important, drawing on literature on public engagement and science policy debate and deliberation about public policy development. We also explore the significance of timing (...)
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  • Ethics and nanotechnology: Views of nanotechnology researchers. [REVIEW]Robert McGinn - 2008 - NanoEthics 2 (2):101-131.
    A study was conducted of nanotechnology (NT) researchers’ views about ethics in relation to their work. By means of a purpose-built questionnaire, made available on the Internet, the study probed NT researchers’ general attitudes toward and beliefs about ethics in relation to NT, as well as their views about specific NT-related ethical issues. The questionnaire attracted 1,037 respondents from 13 U.S. university-based NT research facilities. Responses to key questionnaire items are summarized and noteworthy findings presented. For most respondents, the ethical (...)
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  • Nanoregulation—filtering out the small stuff.Karinne Ludlow - 2008 - NanoEthics 2 (2):183-191.
    Whilst there are not yet laws specifically relating to nanotechnology and its products in any country, the technology and its products are not unregulated. Regulatory frameworks created for conventional technologies and products will be expected to apply to nanotechnology and its products. For example, new medicines are regulated in Australia by the Therapeutic Goods Administration. If a new medicine incorporates nanotechnology, then it should still be regulated as a medicine. However, whether the expectation that pre-existing regulatory frameworks will apply is (...)
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  • Sunscreen safety: The precautionary principle, the australian therapeutic goods administration and nanoparticles in sunscreens. [REVIEW]Thomas Faunce, Katherine Murray, Hitoshi Nasu & Diana Bowman - 2008 - NanoEthics 2 (3):231-240.
    The ‘Precautionary Principle’ provides a somewhat ill-defined guide, often of uncertain normative status, for those exercising administrative decision-making power in circumstances where that may create potential risks to human health or the environment. This paper seeks to explore to what extent the precautionary principle should have been and was in fact utilised by the Australian Therapeutic Goods Administration (TGA) in its decision to approve the marketing of sunscreens containing titanium dioxide (TiO2) and zinc oxide (ZnO) in nanoparticulate form. In particular, (...)
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  • Governing nanotechnologies: Weaving new regulatory webs or patching up the old? [REVIEW]Diana M. Bowman - 2008 - NanoEthics 2 (2):179-181.
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  • A big regulatory tool-box for a small technology.Diana M. Bowman & Graeme A. Hodge - 2008 - NanoEthics 2 (2):193-207.
    There is little doubt that the development and commercialisation of nanotechnologies is challenging traditional state-based regulatory regimes. Yet governments currently appear to be taking a non-interventionist approach to directly regulating this emerging technology. This paper argues that a large regulatory toolbox is available for governing this small technology and that as nanotechnologies evolve, many regulatory advances are likely to occur outside of government. It notes the scientific uncertainties facing us as we contemplate nanotechnology regulatory matters and then examines the notion (...)
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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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  • Social and ethical dimensions of nanoscale science and engineering research.Aldrin E. Sweeney - 2006 - Science and Engineering Ethics 12 (3):435-464.
    Continuing advances in human ability to manipulate matter at the atomic and molecular levels (i.e. nanoscale science and engineering) offer many previously unimagined possibilities for scientific discovery and technological development. Paralleling these advances in the various science and engineering subdisciplines is the increasing realization that a number of associated social, ethical, environmental, economic and legal dimensions also need to be explored. An important component of such exploration entails the identification and analysis of the ways in which current and prospective researchers (...)
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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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