Results for ' nanotechnology‐based devices'

987 found
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  1.  12
    Nanomaterials.Fritz Allhoff, Patrick Lin & Daniel Moore - 2009 - In Fritz Allhoff, Patrick Lin & Daniel Moore (eds.), What is Nanotechnology and Why Does It Matter: From Science to Ethics. Wiley-Blackwell. pp. 36–55.
    This chapter contains sections titled: Formation of Materials Carbon Nanomaterials Inorganic Nanomaterials.
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  2.  49
    Analyses of Acceptability Judgments Made Toward the Use of Nanocarrier-Based Targeted Drug Delivery: Interviews with Researchers and Research Trainees in the Field of New Technologies.Vanessa Chenel, Patrick Boissy, Jean-Pierre Cloarec & Johane Patenaude - 2015 - NanoEthics 9 (3):199-215.
    The assessment of nanotechnology applications such as nanocarrier-based targeted drug delivery has historically been based mostly on toxicological and safety aspects. The use of nanocarriers for TDD, a leading-edge nanomedical application, has received little study from the angle of experts’ perceptions and acceptability, which may be reflected in how TDD applications are developed. In recent years, numerous authors have maintained that TDD assessment should also take into account impacts on ethical, environmental, economic, legal, and social issues in order to lead (...)
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  3.  39
    Commentary: Evaluating Oversight of Human Drugs and Medical Devices.Susan Bartlett Foote - 2009 - Journal of Law, Medicine and Ethics 37 (4):629-632.
    This article seeks to provide insights into appropriate FDA oversight of nanotechnology. This commentary identifies limitations in the methodology employed and concludes that the analysis would be stronger with a more in-depth institutional dimension based on administrative law and political science research.
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  4. Chemical Action: What is it and Why Does it Really Matter?W. John Koolage & W. John Koolage & Ralph Hall - 2011 - Journal of Nanoparticle Research 13 (13):1401-1427.
    Nanotechnology, as with many technologies before it, places a strain on existing legislation and poses a challenge to all administrative agencies tasked with regulating technology-based products. It is easy to see how statutory schemes become outdated, as our ability to understand and affect the world progresses. In this article, we address the regulatory problems that nanotechnology posses for the Food and Drug Administration’s (FDA) classification structure for ‘‘drugs’’ and ‘‘devices.’’ The last major modification to these terms was in 1976, (...)
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  5.  94
    Is There a Moral Obligation to Develop Brain Implants Involving NanoBionic Technologies? Ethical Issues for Clinical Trials.Frédéric Gilbert & Susan Dodds - 2014 - NanoEthics 8 (1):49-56.
    In their article published in Nanoethics, “Ethical, Legal and Social Aspects of Brain-Implants Using Nano-Scale Materials and Techniques”, Berger et al. suggest that there may be a prima facie moral obligation to improve neuro implants with nanotechnology given their possible therapeutic advantages for patients [Nanoethics, 2:241–249]. Although we agree with Berger et al. that developments in nanomedicine hold the potential to render brain implant technologies less invasive and to better target neural stimulation to respond to brain impairments in the near (...)
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  6.  29
    Metaphors in Nanomedicine: The Case of Targeted Drug Delivery.Bernadette Bensaude Vincent & Sacha Loeve - 2014 - NanoEthics 8 (1):1-17.
    The promises of nanotechnology have been framed by a variety of metaphors, that not only channel the attention of the public, orient the questions asked by researchers, and convey epistemic choices closely linked to ethical preferences. In particular, the image of the ‘therapeutic missile’ commonly used to present targeted drug delivery devices emphasizes precision, control, surveillance and efficiency. Such values are highly praised in the current context of crisis of pharmaceutical innovation where military metaphors foster a general mobilization of (...)
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  7.  23
    A Theater-Based Device for Training Teachers on the Nature of Science.Énery Melo & Manuel Bächtold - 2018 - Science & Education 27 (9-10):963-986.
    This article presents and discusses an innovative pedagogical device designed for training pre-service teachers on the nature of science. We endorse an approach according to which aspects of the nature of science should be explicitly discussed in order to be understood by learners. We identified quantum physics, and more precisely the principles of uncertainty and complementarity, as a rich topic suitable for such a discussion. Our training device consists in preparing and staging a new type of theater, the “scientific experimental (...)
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  8.  28
    Human-driven design of micro- and nanotechnology based future sensor systems.Veikko Ikonen, Eija Kaasinen, Päivi Heikkilä & Marketta Niemelä - 2015 - Journal of Information, Communication and Ethics in Society 13 (2):110-129.
    Purpose – This paper aims to present an overview of the various ethical, societal and critical issues that micro- and nanotechnology-based small, energy self-sufficient sensor systems raise in different selected application fields. An ethical approach on the development of these technologies was taken in a very large international, multitechnological European project. The authors approach and methodology are presented in the paper and, based on this review, the authors propose general principles for this kind of work. Design/methodology/approach – The authors’ approach (...)
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  9.  32
    Devices of Responsibility: Over a Decade of Responsible Research and Innovation Initiatives for Nanotechnologies.Clare Shelley-Egan, Diana M. Bowman & Douglas K. R. Robinson - 2018 - Science and Engineering Ethics 24 (6):1719-1746.
    Responsible research and innovation has come to represent a change in the relationship between science, technology and society. With origins in the democratisation of science, and the inclusion of ethical and societal aspects in research and development activities, RRI offers a means of integrating society and the research and innovation communities. In this article, we frame RRI activities through the lens of layers of science and technology governance as a means of characterising the context in which the RRI activity is (...)
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  10.  53
    Synthetic Neural Modeling and Brain-Based Devices.Gerald M. Edelman - 2006 - Biological Theory 1 (1):8-9.
  11.  62
    Moral Equivalence in the Metaverse.Alexei Grinbaum & Laurynas Adomaitis - 2022 - NanoEthics 16 (3):257-270.
    Are digital subjects in virtual reality morally equivalent to human subjects? We divide this problem into two questions bearing, respectively, on cognitive and emotional equivalence. Typically, cognitive equivalence does not hold due to the lack of substantialist indistinguishability, but emotional equivalence applies: digital subjects endowed with face or language elicit emotional responses on a par with real-world pleasure, desire, horror, or fear. This is sufficient for projecting moral traits on avatars in the metaverse or on dialog systems based on large (...)
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  12.  32
    A Matter of Accuracy. Nanobiochips in Diagnostics and in Research: Ethical Issues as Value Trade-Offs.Ronan Le Roux - 2015 - Science and Engineering Ethics 21 (2):343-358.
    The paper deals with the introduction of nanotechnology in biochips. Based on interviews and theoretical reflections, it explores blind spots left by technology assessment and ethical investigations. These have focused on possible consequences of increased diffusability of a diagnostic device, neglecting both the context of research as well as increased accuracy, despite it being a more essential feature of nanobiochip projects. Also, rather than one of many parallel aspects in innovation processes, ethics is considered here as a ubiquitous system of (...)
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  13.  36
    Manufacturing Life, What Life? Ethical Debates Around Biobanks and Social Robots.Núria Vallès-Peris, Violeta Argudo-Portal & Miquel Domènech - 2022 - NanoEthics 16 (1):21-34.
    In this paper, we explore how the definition of life takes on an essential character in the ethical debates around health technologies, with life thus being manufactured in the tensions and conflicts around the use of such artefacts and devices. We introduce concepts from science and technology studies (STS) to approach bioethics, overcoming the dualistic conception that separates the natural and the technological and questioning the dominant rationality that divides life into dualities. Drawing on two research projects in which (...)
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  14.  23
    Nanotechnology in Mexico: Key Findings Based on OECD Criteria.Guillermo Foladori, Edgar Arteaga Figueroa, Edgar Záyago Lau, Richard Appelbaum, Eduardo Robles-Belmont, Liliana Villa, Rachel Parker & Vanessa Leos - 2015 - Minerva 53 (3):279-301.
    This analysis of Mexico’s nanotechnology policies utilizes indicators developed by the Organization for Economic Co-operation and Development, which in 2008 conducted a pilot survey comparing the nanotechnology policies of 24 countries. In this paper, we apply the same questionnaire to the Mexican case, adding business information derived from the National Institute of Statistics and Geography survey on nanotechnologies, also an OECD instrument.
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  15. 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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  16.  13
    Wearable Device Monitoring Exercise Energy Consumption Based on Internet of Things.Xiaomei Shi & Zhihua Huang - 2021 - Complexity 2021:1-10.
    Computer technology and related Internet of things technology have penetrated into people’s daily life and industrial production; even in competitive sports training and competition, the Internet of things technology has also been a large number of applications. Traditional intelligent wearable devices are mainly used to calculate the steps of athletes or sports enthusiasts, corresponding physical data, and corresponding body indicators. The energy consumption calculated by these indexes is rough and the corresponding error is large. Based on this, this paper (...)
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  17.  18
    Nanotechnology: From Feynman to Funding.K. Eric Drexler - 2004 - Bulletin of Science, Technology and Society 24 (1):21-27.
    The revolutionary Feynman vision of a powerful and general nanotechnology, based on nanomachines that build with atom-by-atom control, promises great opportunities and, if abused, great dangers. This vision made nanotechnology a buzzword and launched the global nanotechnology race. Along the way, however, the meaning of the word has shifted. A vastly broadened definition of nanotechnology (including any technology with nanoscale features) enabled specialists from diverse fields to infuse unrelated research with the Feynman mystique. The resulting nanoscaletechnology funding coalition has obscured (...)
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  18.  19
    Are approaches to nanotechnology affected by cultural context and tradition?Pere Ruiz Trujillo, Albert Florensa & Salvador Borrós - 2011 - Ramon Llull Journal of Applied Ethics 2 (2):195-212.
    Lately, nanotechnology has become one of the main topics in the debates regarding what has been called the _Next Industrial Revolution_ within what are known as _emergent technologies_. This paper contains a comparative analysis of the different philosophical groundings, arguments and principles invoked in the official ethical approaches proposed by each of two of the main Western communities. By _official ethical approaches_ or _official positions_ we mean the opinions officially expressed by the government institutions about how ethical considerations prompted by (...)
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  19.  12
    Converging Technologies.William Sims Bainbridge - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 508–510.
    This chapter contains sections titled: The NBIC Fields Philosophical Implications of Convergence Conclusion References and Further Reading.
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  20.  8
    Regulating AI-Based Medical Devices in Saudi Arabia: New Legal Paradigms in an Evolving Global Legal Order.Barry Solaiman - 2024 - Asian Bioethics Review 16 (3):373-389.
    This paper examines the Saudi Food and Drug Authority’s (SFDA) Guidance on Artificial Intelligence (AI) and Machine Learning (ML) technologies based Medical Devices (the MDS-G010). The SFDA has pioneered binding requirements designed for manufacturers to obtain Medical Device Marketing Authorization. The regulation of AI in health is at an early stage worldwide. Therefore, it is critical to examine the scope and nature of the MDS-G010, its influences, and its future directions. It is argued that the guidance is a patchwork (...)
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  21.  33
    Nanotechnology Policy and Education.Regan Stinnett - 2012 - Journal of Business Ethics 109 (4):551-552.
    Nanotechnology has been a focal area of United States (US) Science and Technology policy since President Clinton's administration. The Unites States is investing more funds in nanotechnology research and development than any other nation. The US National Laboratory community and Sandia National Laboratories in particular is responding to their country's interest by generating exceptional Nano-based science and technology and focusing these efforts on national security and safety concerns. The United States and others are finding that the technological, safety, ethical, economic, (...)
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  22.  34
    Narrative, Nanotechnology and the Accomplishment of Public Responses: a Response to Thorstensen.Matthew Kearnes, Phil Macnaghten & Sarah R. Davies - 2014 - NanoEthics 8 (3):241-250.
    In this paper, we respond to a critique by Erik Thorstensen of the ‘Deepening Ethical Engagement and Participation in Emerging Nanotechnologies’ project concerning its ‘realist’ treatment of narrative, its restricted analytical framework and resources, its apparent confusion in focus and its unjustified contextualisation and overextension of its findings. We show that these criticisms are based on fairly serious misunderstandings of the DEEPEN project, its interdisciplinary approachand its conceptual context. Having responded to Thorstensen’s criticisms, we take the opportunity to clarify and (...)
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  23.  32
    Nanotechnology and Risk Governance in the European Union: the Constitution of Safety in Highly Promoted and Contested Innovation Areas.Hannot Rodríguez - 2018 - NanoEthics 12 (1):5-26.
    The European Union is strategically committed to the development of nanotechnology and its industrial exploitation. However, nanotechnology also has the potential to disrupt human health and the environment. The EU claims to be committed to the safe and responsible development of nanotechnology. In this sense, the EU has become the first governing body in the world to develop nanospecific regulations, largely due to legislative action taken by the European Parliament, which has compensated for the European Commission’s reluctance to develop special (...)
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  24.  29
    Handheld Mobile Device Based Text Region Extraction and Binarization of Image Embedded Text Documents.Dipak Kumar Basu, Mita Nasipuri, Subhadip Basu & Ayatullah Faruk Mollah - 2013 - Journal of Intelligent Systems 22 (1):25-47.
    . Effective text region extraction and binarization of image embedded text documents on mobile devices having limited computational resources is an open research problem. In this paper, we present one such technique for preprocessing images captured with built-in cameras of handheld devices with an aim of developing an efficient Business Card Reader. At first, the card image is processed for isolating foreground components. These foreground components are classified as either text or non-text using different feature descriptors of texts (...)
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  25.  37
    Nanotechnology, Sensors, and Rights to Privacy.Alan Rubel - 2010 - Public Affairs Quarterly 24 (2):131-153.
    A suite of technological advances based on nanotechnology has received substantial attention for its potential to affect privacy. Reports of the National Nanotechnology Initiative have recognized that the societal implications of nanotechnology will include better surveillance and information-gathering technologies. A variety of academic and popular publications have explained the potential effects of nanotechnology on privacy.The ways in which nanotechnology might affect privacy are varied. It may make current information technology better, make old information-gathering techniques more reliable, or expand information-gathering into (...)
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  26.  53
    The global institutionalization of nanotechnology research: A bibliometric approach to the assessment of science policy.Joachim Schummer - unknown
    Based on bibliometric methods, this paper describes the global institutionalization of nanotechnology research from the mid-1980s to 2006. Owing to an extremely strong dynamics, the institutionalization of nanotechnology is likely to surpass those of major disciplines in only a few years. A breakdown of the relative institutionalizations strengths by the main geographical regions, countries, research sectors, disciplines, and institutional types provides a very diverse picture over the time period because of different national science policies. The results allow a critical assessment (...)
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  27.  33
    Consumer attitudes towards nanotechnologies applied to food production.L. J. Frewer, N. Gupta, S. George, A. R. H. Fischer, E. L. Giles & David Coles - unknown
    The literature on public perceptions of, and attitudes towards, nanotechnology used in the agrifood sector is reviewed. Research into consumer perceptions and attitudes has focused on general applications of nanotechnology, rather than within the agrifood sector. Perceptions of risk and benefit associated with different applications of nanotechnology, including agrifood applications, shape consumer attitudes, and acceptance, together with ethical concerns related to environmental impact or animal welfare. Attitudes are currently moderately positive across all areas of application. The occurrence of a negative (...)
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  28.  34
    Network effects: Communities, devices, and disciplines: Cyrus C. M. Mody: Instrumental community: Probe microscopy and the path to nanotechnology. Cambridge, MA: The MIT Press, 2011, 280pp, $36.00, £24.95 HB. [REVIEW]David C. Brock - 2013 - Metascience 23 (1):113-116.
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  29.  24
    Nanotechnology Governance: from Risk Regulation to Informal Platforms.Antoni Roig - 2018 - NanoEthics 12 (2):115-121.
    Current nanotechnology regulation is focussed on risks. On the other hand, technical guidelines and other soft law tools are increasingly replacing hard law. This risk reduction approach does not seem to be fully aligned with open principles like sustainable nanotechnology. Indeed, risk optimization tends to be rather a continuous process than a way to settle ultimate lists of risks. There is therefore a need for a more dynamic view: Life cycle assessment contributes to add momentum and context to the models. (...)
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  30.  10
    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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  31.  21
    Two Cultures of Nanotechnology?Bernadette Bensaude-Vincent - 2004 - Hyle 10 (2):65 - 82.
    Although many active scientists deplore the publicity about Drexler's futuristic scenario, I will argue that the controversies it has generated are very useful, at least in one respect. They help clarify the metaphysical assumptions underlying nanotechnologies, which may prove very helpful for understanding their public and cultural impact. Both Drexler and his opponents take inspiration from living systems, which they both describe as machines. However there is a striking contrast in their respective views of molecular machineries. This paper based on (...)
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  32.  67
    Is There Room at the Bottom for CSR? Corporate Social Responsibility and Nanotechnology in the UK.Chris Groves, Lori Frater, Robert Lee & Elen Stokes - 2011 - Journal of Business Ethics 101 (4):525-552.
    Nanotechnologies are enabling technologies which rely on the manipulation of matter on the scale of billionths of a metre. It has been argued that scientific uncertainties surrounding nanotechnologies and the inability of regulatory agencies to keep up with industry developments mean that voluntary regulation will play a part in the development of nanotechnologies. The development of technological applications based on nanoscale science is now increasingly seen as a potential test case for new models of regulation based on future-oriented responsibility, lifecycle (...)
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  33.  25
    Flexible Sketches and Inflexible Data Bases: Visual Communication, Conscription Devices, and Boundary Objects in Design Engineering.Kathryn Henderson - 1991 - Science, Technology and Human Values 16 (4):448-473.
    Engineering sketches and drawings are the building blocks of technological design and production. These visual representations act as the means for organizing the design to production process, hence serving as a "social glue" both between individuals and between groups. The author discusses two main capacities such visual representations serve in facilitating distributed cognition in team design work As conscription devices, they enlist and organize group participation. As boundary objects, they facilitate the reading of alternative meanings by various groups involved (...)
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  34.  35
    Would the Convergence of Nanotechnology, Biotechnology, Information Technology and Cognitive Science Be a Springboard for Transhumanism and Posthumanism?Joseph Sawadogo & Jacques Simpore - 2023 - Open Journal of Philosophy 13 (4):681-695.
    Nanotechnologies, biotechnologies, information technologies and cognitive sciences (NBIC) have gradually gained traction in the United States of America (USA), subsequently expanding to Europe, and are now proliferating worldwide. Scientists are trying with more success to remove the causes of death by “repairing” humans, or even by “increasing” their physical and cognitive capacities. NBICs not only can help researchers promote “one health” by improving environmental conditions, human and animal health, but also, they can lead humanity towards transhumanism through eugenics. Thanks to (...)
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  35. Streaching the notion of moral responsibility in nanoelectronics by appying AI.Robert Albin & Amos Bardea - 2021 - In Robert Albin & Amos Bardea (eds.), Ethics in Nanotechnology Social Sciences and Philosophical Aspects, Vol. 2. Berlin: De Gruyter. pp. 75-87.
    The development of machine learning and deep learning (DL) in the field of AI (artificial intelligence) is the direct result of the advancement of nano-electronics. Machine learning is a function that provides the system with the capacity to learn from data without being programmed explicitly. It is basically a mathematical and probabilistic model. DL is part of machine learning methods based on artificial neural networks, simply called neural networks (NNs), as they are inspired by the biological NNs that constitute organic (...)
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  36.  65
    Framework for the Analysis of Nanotechnologies’ Impacts and Ethical Acceptability: Basis of an Interdisciplinary Approach to Assessing Novel Technologies.Johane Patenaude, Georges-Auguste Legault, Jacques Beauvais, Louise Bernier, Jean-Pierre Béland, Patrick Boissy, Vanessa Chenel, Charles-Étienne Daniel, Jonathan Genest, Marie-Sol Poirier & Danielle Tapin - 2015 - Science and Engineering Ethics 21 (2):293-315.
    The genetically manipulated organism crisis demonstrated that technological development based solely on the law of the marketplace and State protection against serious risks to health and safety is no longer a warrant of ethical acceptability. In the first part of our paper, we critique the implicitly individualist social-acceptance model for State regulation of technology and recommend an interdisciplinary approach for comprehensive analysis of the impacts and ethical acceptability of technologies. In the second part, we present a framework for the analysis (...)
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  37.  17
    Ethics in Nanotechnology: Starting From Scratch?Flemming Besenbacher, Svend Andersen & Mette Ebbesen - 2006 - Bulletin of Science, Technology and Society 26 (6):451-462.
    Research in nanotechnology has advanced rapidly in recent years. Several researchers, however, warn that there is a paucity of research on the ethical, legal, and social implications of nanotechnology, and they caution that ethical reflections on nanotechnology lag behind this fast developing science. In this article, the authors question this conclusion, pointing out that the predicted concrete ethical issues related to the area of nanotechnology are rather similar to those related to the area of biotechnology and biology that have been (...)
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  38.  50
    Patentable Novelty in Nanotechnology Inventions: a Legal Study in Iraq and Malaysia. [REVIEW]Nabeel Mahdi Althabhawi & Zinatul Ashiqin Zainol - 2013 - NanoEthics 7 (2):121-133.
    Nanotechnology has been facing multiple obstacles related to the applicability of patentability criteria. In this article, the authors addressed the novelty requirement in nanotechnology inventions in Iraqi and Malaysian patent acts. First, novelty was discussed to determine its applicability in the field of nanotechnology. Then, problems on nanotechnology patent application were presented along with some suggested solutions. The problems encountered in the patentability of nanotechnology inventions were summarized in two categories. First, the multidisciplinary nature of nanotechnology casts its shadow on (...)
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  39.  82
    Trust as Glue in Nanotechnology Governance Networks.Heidrun Åm - 2011 - NanoEthics 5 (1):115-128.
    This paper reflects on the change of relations among participants in nanotechnology governance through their participation in governance processes such as stakeholder dialogues. I show that policymaking in practice—that is, the practice of coming and working together in such stakeholder dialogues—has the potential for two-fold performative effects: it can contribute to the development of trust and mutual responsibility on the part of the involved actors, and it may bring about effects on the formation of boundaries of what is sayable and (...)
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  40.  82
    Proposed strategies for teaching ethics of nanotechnology.Heidi Jiao - 2010 - NanoEthics 4 (3):221-228.
    Nanotechnology and nanosciences have recently gained tremendous attention and funding, from multiple entities and directions. In the last 10 years the funding for nanotechnology research has increased by orders of magnitude. An important part that has also gained parallel attention is the societal and ethical impact of nanotechnology and the possible consequences of its products and processes on human life and welfare. Multiple thinkers and philosophers wrote about both negative and positive effects of nanotechnology on humans and societies. The literature (...)
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  41.  80
    A Novel Security Methodology for Smart Grids: A Case Study of Microcomputer-Based Encryption for PMU Devices.Metin Varan, Akif Akgul, Fatih Kurugollu, Ahmet Sansli & Kim Smith - 2021 - Complexity 2021:1-15.
    Coordination of a power system with the phasor measurement devices in real time on the load and generation sides is carried out within the context of smart grid studies. Power systems equipped with information systems in a smart grid pace with external security threats. Developing a smart grid which can resist against cyber threats is considered indispensable for the uninterrupted operation. In this study, a two-way secure communication methodology underpinned by a chaos-based encryption algorithm for PMU devices is (...)
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  42. Changing the Criminal Character: Nanotechnology and Criminal Punishment.Katrina Sifferd - 2012 - In Daniel Seltzer (ed.), The Social Scale: The Weight of Justice. MIT Press.
    This chapter examines how advances in nanotechnology might impact criminal sentencing. While many scholars have considered the ethical implications of emerging technologies, such as nanotechnology, few have considered their potential impact on crucial institutions such as our criminal justice system. Specifically, I will discuss the implications of two types of technological advances for criminal sentencing: advanced tracking devices enabled by nanotechnology, and nano-neuroscience, including neural implants. The key justifications for criminal punishment- including incapacitation, deterrence, rehabilitation, and retribution – apply (...)
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  43.  16
    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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  44.  34
    Assistive Device Art: aiding audio spatial location through the Echolocation Headphones.Aisen C. Chacin, Hiroo Iwata & Victoria Vesna - 2018 - AI and Society 33 (4):583-597.
    Assistive Device Art derives from the integration of Assistive Technology and Art, involving the mediation of sensorimotor functions and perception from both, psychophysical methods and conceptual mechanics of sensory embodiment. This paper describes the concept of ADA and its origins by observing the phenomena that surround the aesthetics of prosthesis-related art. It also analyzes one case study, the Echolocation Headphones, relating its provenience and performance to this new conceptual and psychophysical approach of tool design. This ADA tool is designed to (...)
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  45.  37
    Nanotechnologies, food, and agriculture: next big thing or flash in the pan? [REVIEW]Lawrence Busch - 2008 - Agriculture and Human Values 25 (2):215-218.
    The advent of the new nanotechnologies has been heralded by government, media, and many in the scientific community as the next big thing. Within the agricultural sector research is underway on a wide variety of products ranging from distributed intelligence in orchards, to radio frequency identification devices, to animal diagnostics, to nanofiltered food products. But the nano-revolution (if indeed there is a revolution at all) appears to be taking a turn quite different from the biotechnology revolution of two decades (...)
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  46.  68
    Brain Recording, Mind-Reading, and Neurotechnology: Ethical Issues from Consumer Devices to Brain-Based Speech Decoding.Stephen Rainey, Stéphanie Martin, Andy Christen, Pierre Mégevand & Eric Fourneret - 2020 - Science and Engineering Ethics 26 (4):2295-2311.
    Brain reading technologies are rapidly being developed in a number of neuroscience fields. These technologies can record, process, and decode neural signals. This has been described as ‘mind reading technology’ in some instances, especially in popular media. Should the public at large, be concerned about this kind of technology? Can it really read minds? Concerns about mind-reading might include the thought that, in having one’s mind open to view, the possibility for free deliberation, and for self-conception, are eroded where one (...)
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  47.  88
    Regulating nanotechnologies: Risk management models and nanomedicine. [REVIEW]Joachim Schummer & Elena Pariotti - 2008 - NanoEthics 2 (1):39-42.
    Legal regulation has a substantial impact on the development of technologies. Depending on its scope, structure, and effectiveness, regulation can essentially shape the research, development, production, commercialization, and consumption of emerging technologies in various ways. The lack of regulation, or of corresponding enforcement, can lead to the infringement of rights, harm to workers, consumers, and the environment, and to the neglect of the public interest. On the other hand, too strict regulations, based on incomplete information or excessive caution, may equally (...)
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  48.  52
    Ethics in Nanotechnology: What’s Being Done? What’s Missing? [REVIEW]Louis Y. Y. Lu, Bruce J. Y. Lin, John S. Liu & Chang-Yung Yu - 2012 - Journal of Business Ethics 109 (4):583-598.
    Nanotechnology shows great promise in a variety of applications with attractive economic and societal benefits. However, societal issues associated with nanotechnology are still a concern to the general public. While numerous technological advancements in nanotechnology have been achieved over the past decade, research into the broader societal issues of nanotechnology is still in its early phases. Based on the data from the Web of Science database, we applied the main path analysis, cluster analysis and text mining tools to explore the (...)
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  49.  51
    The Drexler-Smalley Debate on Nanotechnology: Incommensurability at Work?Otávio Bueno - 2004 - Hyle 10 (2):83 - 98.
    In a recent debate, Eric Drexler and Richard Smalley have discussed the chemical and physical possibility of constructing molecular assemblers - devices that guide chemical reactions by placing, with atomic precision, reactive molecules. Drexler insisted on the mechanical feasibility of such assemblers, whereas Smalley resisted the idea that such devices could be chemically constructed, because we do not have the required control. Underlying the debate, there are differences regarding the appropriate goals, methods, and theories of nanotechnology, and the (...)
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  50.  65
    Anticipatory Ethics and Governance : Towards a Future Care Orientation Around Nanotechnology.Syed A. M. Tofail, Finbarr Murphy, Martin Mullins & Karena Hester - 2015 - NanoEthics 9 (2):123-136.
    Nanotechnology presents significant challenges in terms of developing a regulatory framework. This is due to a lack of scientific knowledge about the behaviour of the technology in its interactions with biological and ecological processes, the environment and other technologies. Crucially, there is a great deal of uncertainty surrounding the potential environmental and human health and safety impacts of NT. Consequently, the development of NT is a potential test case for framing new models of ‘soft law’ voluntary governance as a substitute (...)
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