Results for 'technology evaluation'

999 found
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  1.  74
    A New Framework Integrating Environmental Effects into Technology Evaluation.Shiu-Wan Hung & Shih-Chang Tseng - 2010 - Journal of Business Ethics 95 (4):543 - 556.
    This study aims to propose a framework considering both economic issues and environmental effects in technology evaluation in order to provide firms' decision makers a useful reference in adopting technologies that will enable them to fulfill corporate social responsibilities and get competitive advantages at the same time. Recently, the demands for technology evaluation have increased with the flourishing development of technology licensing, technology transaction or joint venture on the one hand and with the pressing (...)
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  2.  50
    Technology Games: Using Wittgenstein for Understanding and Evaluating Technology.Mark Coeckelbergh - 2018 - Science and Engineering Ethics 24 (5):1503-1519.
    In the philosophy of technology after the empirical turn, little attention has been paid to language and its relation to technology. In this programmatic and explorative paper, it is proposed to use the later Wittgenstein, not only to pay more attention to language use in philosophy of technology, but also to rethink technology itself—at least technology in its aspect of tool, technology-in-use. This is done by outlining a working account of Wittgenstein’s view of language (...)
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  3.  27
    Medical technology assessment and the role of economic evaluation in health care.E. M. M. Adang, A. Ament & C. D. Dirksen - 1996 - Journal of Evaluation in Clinical Practice 2 (4):287-294.
  4.  25
    Philosophical evaluation of the conceptualisation of trust in the NHS’ Code of Conduct for artificial intelligence-driven technology.Soogeun Samuel Lee - 2022 - Journal of Medical Ethics 48 (4):272-277.
    The UK Government’s Code of Conduct for data-driven health and care technologies, specifically artificial intelligence -driven technologies, comprises 10 principles that outline a gold-standard of ethical conduct for AI developers and implementers within the National Health Service. Considering the importance of trust in medicine, in this essay I aim to evaluate the conceptualisation of trust within this piece of ethical governance. I examine the Code of Conduct, specifically Principle 7, and extract two positions: a principle of rationally justified trust that (...)
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  5.  12
    Philosophical evaluation of the conceptualisation of trust in the NHS Code of Conduct for artificial intelligence-driven technology.Soogeun Samuel Lee - 2022 - Journal of Medical Ethics Recent Issues 48 (4):272-277.
    The UK Government’s Code of Conduct for data-driven health and care technologies, specifically artificial intelligence -driven technologies, comprises 10 principles that outline a gold-standard of ethical conduct for AI developers and implementers within the National Health Service. Considering the importance of trust in medicine, in this essay I aim to evaluate the conceptualisation of trust within this piece of ethical governance. I examine the Code of Conduct, specifically Principle 7, and extract two positions: a principle of rationally justified trust that (...)
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  6.  25
    Evaluating Oversight Systems for Emerging Technologies: A Case Study of Genetically Engineered Organisms.Jennifer Kuzma, Pouya Najmaie & Joel Larson - 2009 - Journal of Law, Medicine and Ethics 37 (4):546-586.
    The U.S. oversight system for genetically engineered organisms was evaluated to develop hypotheses and derive lessons for oversight of other emerging technologies, such as nanotechnology. Evaluation was based upon quantitative expert elicitation, semi-standardized interviews, and historical literature analysis. Through an interdisciplinary policy analysis approach, blending legal, ethical, risk analysis, and policy sciences viewpoints, criteria were used to identify strengths and weaknesses of GEOs oversight and explore correlations among its attributes and outcomes. From the three sources of data, hypotheses and (...)
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  7.  15
    Technology, individual rights and the ethical evaluation of risk.Lanre-Abass Bolatito Asiata - 2010 - Journal of Information, Communication and Ethics in Society 8 (4):308-322.
    PurposeThe purpose of this paper is to examine the risk arising from technological devices, such as closed circuit television and nuclear power plants and the consequent effect on the rights to privacy and security of individuals.Design/methodology/approachThe paper presents critical and conceptual analyses of CCTV, nuclear power plants and the rights of individuals. It also analyses how communitarianism and liberal individualism would respond to right‐infringements and risk‐imposition. It draws on W.D. Ross's prima facie and actual duties to explain the pre‐eminence of (...)
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  8.  19
    Evaluating Oversight Systems for Emerging Technologies: A Case Study of Genetically Engineered Organisms.Jennifer Kuzma, Pouya Najmaie & Joel Larson - 2009 - Journal of Law, Medicine and Ethics 37 (4):546-586.
    U.S. approaches to oversight of research and technological products have developed over time in an effort to ensure safety to humans, animals, and the environment and to control use in a social context. In modern times, regulatory and oversight tools have evolved to include diverse approaches such as performance standards, tradable allowances, consultations between government and industry, and pre-market safety and efficacy reviews. The decision whether to impose an oversight system, the oversight elements, the level of oversight, the choice of (...)
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  9.  79
    Is Technology Good for Us? A Eudaimonic Meta-Model for Evaluating the Contributive Capability of Technologies for a Good Life.Edward H. Spence - 2011 - NanoEthics 5 (3):335-343.
    The title refers to the question addressed in this paper, namely, to what degree if any technology, including nanotechnologies, in the form of products and processes, is capable of contributing to a good life. To answer that question, the paper will develop a meta-normative model whose primary purpose is to determine the essential conditions that any normative theory of the Good Life and Technology (T-GLAT) must adequately address in order to be able to account for, explain and evaluate (...)
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  10.  16
    The Evaluative Relevance of Social Studies of Technology.Eduardo Aibar - 1996 - Techné: Research in Philosophy and Technology 1 (3-4):85-90.
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  11.  24
    Steps toward improving ethical evaluation in health technology assessment: a proposed framework.Nazila Assasi, Jean-Eric Tarride, Daria O’Reilly & Lisa Schwartz - 2016 - BMC Medical Ethics 17 (1):34.
    BackgroundWhile evaluation of ethical aspects in health technology assessment has gained much attention during the past years, the integration of ethics in HTA practice still presents many challenges. In response to the increasing demand for expansion of health technology assessment methodology to include ethical issues more systematically, this article reports on a multi-stage study that aimed at construction of a framework for improving the integration of ethics in HTA.MethodsThe framework was developed through the following phases: 1) a (...)
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  12.  7
    Dynamic evaluation of college English writing ability based on AI technology.Xuezhong Wu - 2022 - Journal of Intelligent Systems 31 (1):298-309.
    To accurately evaluate and improve college students’ English writing ability, this article proposes a dynamic evaluation method of college English writing ability based on artificial intelligence technology. First, a dynamic evaluation model of college English writing ability is constructed. Second, the index system of English writing dynamic evaluation model is established. Based on this, the dynamic evaluation of college English writing ability is realized. The experimental results show that the design method in this paper can (...)
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  13.  12
    An Evaluation Related With Authorship And Writing Skills Lesson In Axis Of Information And Communication Technologies.Ayşe Becel - 2013 - Journal of Turkish Studies 8:61-81.
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  14.  14
    Evaluation of Naturalistic Driving Behavior Using In-Vehicle Monitoring Technology in Preclinical and Early Alzheimer’s Disease.Jennifer D. Davis, Ganesh M. Babulal, George D. Papandonatos, Erin M. Burke, Christopher B. Rosnick, Brian R. Ott & Catherine M. Roe - 2020 - Frontiers in Psychology 11.
  15.  20
    Evaluating the UK House of Commons Science and Technology Committee’s position on the implausible effectiveness of homeopathic treatments.Andrew Turner - 2017 - Theoretical Medicine and Bioethics 38 (4):335-352.
    In 2009, the UK House of Commons Science and Technology Committee conducted an ‘evidence check’ on homeopathy to evaluate evidence for its effectiveness. In common with the wider literature critical of homeopathy, the STC report seems to endorse many of the strong claims that are made about its implausibility. In contrast with the critical literature, however, the STC report explicitly does not place any weight on implausibility in its evaluation. I use the contrasting positions of the STC and (...)
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  16.  18
    Steps toward improving ethical evaluation in health technology assessment: a proposed framework.Nazila Assasi, Jean-Eric Tarride, Daria O’Reilly & Lisa Schwartz - forthcoming - Most Recent Articles: Bmc Medical Ethics.
    While evaluation of ethical aspects in health technology assessment has gained much attention during the past years, the integration of ethics in HTA practice still presents many challenges. In response...
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  17.  7
    Evaluating the couriers’ experiences of logistics platform: The extension of expectation confirmation model and technology acceptance model.Qiumei Zheng, Chenglong Li & Shizhen Bai - 2022 - Frontiers in Psychology 13.
    The current study integrated the Extended Technology Acceptance Model and included information system quality, user interface, knowledge sharing motivation, the expectation confirmation model, safety management practices, interface aesthetics, and perceived value to evaluate the logistics couriers’ experience while using an Online logistics platform. This research examines the relationships of KSM, SMP, and ISQ on the TAM’s, perceived usefulness, and perceived ease of use. In addition, it explores the relationship between UI on PEOU. Furthermore, to explore the impact of ECM, (...)
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  18.  26
    Evaluating Hidden Costs of Technological Change.Joseph D. Martin - 2015 - Techné: Research in Philosophy and Technology 19 (1):1-25.
    This paper explores the process by which new technologies supplant or constrain cultural scaffolding processes and the consequences thereof. As elaborated by William Wimsatt and James Griesemer, cultural scaffolds support the acquisition of new capabilities by individuals or organizations. When technologies displace scaffolds, those who previously acquired capabilities from them come to rely upon the new technologies to complete tasks they could once accomplish on their own. Therefore, the would-be beneficiaries of those scaffolds are deprived of the agency to exercise (...)
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  19.  76
    Evaluating the impact of mobile telephone technology on type 2 diabetic patients' self‐management: the NICHE pilot study.Zubaida Faridi, Lauren Liberti, Kerem Shuval, Veronika Northrup, Ather Ali & David L. Katz - 2008 - Journal of Evaluation in Clinical Practice 14 (3):465-469.
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  20.  8
    Science, Technology, and Political Decision: From the Creation of a Theory to the Evaluation of the Consequences of Its Application.Gerard Radnitzky - 1984 - Revista Portuguesa de Filosofia 40 (3):307 - 317.
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  21.  10
    Evaluation of a New Lightweight EEG Technology for Translational Applications of Passive Brain-Computer Interfaces.Nicolina Sciaraffa, Gianluca Di Flumeri, Daniele Germano, Andrea Giorgi, Antonio Di Florio, Gianluca Borghini, Alessia Vozzi, Vincenzo Ronca, Fabio Babiloni & Pietro Aricò - 2022 - Frontiers in Human Neuroscience 16.
    Technologies like passive brain-computer interfaces can enhance human-machine interaction. Anyhow, there are still shortcomings in terms of easiness of use, reliability, and generalizability that prevent passive-BCI from entering real-life situations. The current work aimed to technologically and methodologically design a new gel-free passive-BCI system for out-of-the-lab employment. The choice of the water-based electrodes and the design of a new lightweight headset met the need for easy-to-wear, comfortable, and highly acceptable technology. The proposed system showed high reliability in both laboratory (...)
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  22.  31
    Moral Evaluations of Genetic Technologies.Devan Stahl - 2015 - The National Catholic Bioethics Quarterly 15 (3):477-489.
    The author argues that genetic technologies can never be fully sepa­rated from their eugenic ends. Because of this, the Church’s sexual ethic must be integrated with its social teaching to respond faithfully to ethical issues that arise with the use of genetic technologies. The author discusses, first, the Catholic opposition to eugenics from the turn of the twentieth century to the official papal condemnation of eugenics in 1930; next, the Church’s reaction to advances in DNA research in the 1950s and (...)
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  23.  75
    An Ethical Framework for Evaluating Experimental Technology.Ibo van de Poel - 2016 - Science and Engineering Ethics 22 (3):667-686.
    How are we to appraise new technological developments that may bring revolutionary social changes? Currently this is often done by trying to predict or anticipate social consequences and to use these as a basis for moral and regulatory appraisal. Such an approach can, however, not deal with the uncertainties and unknowns that are inherent in social changes induced by technological development. An alternative approach is proposed that conceives of the introduction of new technologies into society as a social experiment. An (...)
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  24.  18
    Evaluation of resource allocation and supply–demand balance in clinical practice with high‐cost technologies.Tetsuya Otsubo, Yuichi Imanaka, Jason Lee & Kenshi Hayashida - 2011 - Journal of Evaluation in Clinical Practice 17 (6):1114-1121.
    Japan has one of the highest numbers of high-cost medical devices installed relative to its population. While evaluations of the distribution of these devices traditionally involve simple population-based assessments, an indicator that includes the demand of these devices would more accurately reflect the situation. The purpose of this study was to develop an indicator of the supply–demand balance of such devices, using examples of magnetic resonance imaging scanners (MRI) and extracorporeal shockwave lithotripters (ESWL), and to investigate the relationship between this (...)
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  25.  21
    Ethical Evaluation in Health Technology Assessment: A Challenge for Applied Philosophy.Georges-Auguste Legault, Jean-Pierre Béland, Monelle Parent, Suzanne K.-Bédard, Christian A. Bellemare, Louise Bernier, Pierre Dagenais, Charles-Étienne Daniel, Hubert Gagnon & Johane Patenaude - 2019 - Open Journal of Philosophy 9 (3):331-351.
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  26.  29
    In Evaluating Technological Risks, When and Why Should We Consult Our Emotions?Sven Nyholm - 2020 - Science and Engineering Ethics 26 (4):1903-1912.
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  27.  22
    Decision Technologies in Medical Research and Practice: Practical Considerations, Ethical Implications, and the Need for Dialectic Evaluation.P. Justin Rossi, Philipp Novotny, Peyton Paulick, Herbert Plischke, Nikola B. Kohls & James Giordano - 2013 - Ethics in Biology, Engineering and Medicine 4 (2):91-102.
  28.  32
    From Manuscript Evaluation to Article Valuation: The Changing Technologies of Journal Peer Review.David Pontille & Didier Torny - 2015 - Human Studies 38 (1):57-79.
    Born in the 17th century, journal peer review is an extremely diverse technology, constantly torn between two often incompatible goals: the validation of manuscripts conceived as a collective industrial-like reproducible process performed to assert scientific statements, and the dissemination of articles considered as a means to spur scientific discussion, raising controversies, and civically challenging a state of knowledge. Such a situation is particularly conducive to clarifying the processes of valuation and evaluation in journal peer review. In this article, (...)
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  29.  30
    An Ethical Framework for Evaluating Experimental Technology.Ibo Poel - 2016 - Science and Engineering Ethics 22 (3):667-686.
    How are we to appraise new technological developments that may bring revolutionary social changes? Currently this is often done by trying to predict or anticipate social consequences and to use these as a basis for moral and regulatory appraisal. Such an approach can, however, not deal with the uncertainties and unknowns that are inherent in social changes induced by technological development. An alternative approach is proposed that conceives of the introduction of new technologies into society as a social experiment. An (...)
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  30. Evaluation Practices in the Commercialization of Early Stage Technology: The Role of Trust.Harry Scarbrough & Kenneth Amaeshi - 2008 - In The Evolution of Business Knowledge. Oxford University Press. pp. 215.
     
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  31. New technologies and old problems: evaluating and regulating media performance in the “information age”.Peter Golding - 1998 - In Kees Brants, Joke Hermes & Liesbet van Zoonen (eds.), The Media in Question: Popular Cultures and Public Interests. Sage Publications.
     
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  32.  10
    Evaluating the individual, situational, and technological drivers for creative ideas generation in virtual communities: A systematic literature review.Xin Zhao, Chunzhen Wang & Jianzhong Hong - 2022 - Frontiers in Psychology 13.
    The setting in which people generate ideas and work collaboratively to solve problems is gradually shifting from traditional face-to-face communities to virtual communities. Virtual communities are, therefore, becoming a new source of creative ideas. Nevertheless, online creativity is not without challenges. The main obstacle seems to be a lack of active engagement from participants within these virtual communities, resulting in a low quality and quantity of creative content when compared to traditional methods of creation. Research suggests that successfully generating creative (...)
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  33.  4
    Before Evaluating the New Educational Technologies, Place Them in a Social Context.Leonard Waks - 1999 - Bulletin of Science, Technology and Society 19 (1):3-4.
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  34.  8
    Economic Evaluations of Technology.Kristin Shrader-Frechette - 1997 - In Kristin Shrader-Frechette & Laura Westra (eds.), Technology and Values. Rowman & Littlefield. pp. 6--33.
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  35. the Public evaluation of science and technology.Barry Barnes - forthcoming - Bioethics for Scientists:19--36.
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  36.  17
    Aesthetic Perspectives on Urban Technologies: Conceptualizing and Evaluating the Technology-Driven Changes in the Urban Everyday Experience.Sanna Lehtinen & Vesa Vihanninjoki - 2021 - In Michael Nagenborg, Taylor Stone, Margoth González Woge & Pieter E. Vermaas (eds.), Technology and the City: Towards a Philosophy of Urban Technologies. Springer Verlag. pp. 13-35.
    The pervasiveness of technology has changed the way urban everyday is structured and experienced. An understanding of the deep impact of this development on everyday experience and its foundational aesthetic components is necessary in order to determine how skills and capacities can be improved in coping with such change, as well as managing it. Urban technology solutions—how they are defined, applied and used—are changing the sphere of everyday experience for urban dwellers. Philosophical and applied approaches to urban aesthetics (...)
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  37.  45
    Contextual Integrity as a General Conceptual Tool for Evaluating Technological Change.Elizabeth O’Neill - 2022 - Philosophy and Technology 35 (3):1-25.
    The fast pace of technological change necessitates new evaluative and deliberative tools. This article develops a general, functional approach to evaluating technological change, inspired by Nissenbaum’s theory of contextual integrity. Nissenbaum introduced the concept of contextual integrity to help analyze how technological changes can produce privacy problems. Reinterpreted, the concept of contextual integrity can aid our thinking about how technological changes affect the full range of human concerns and values—not only privacy. I propose a generalized concept of contextual integrity that (...)
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  38.  19
    Deployment of Mobile EEG Technology in an Art Museum Setting: Evaluation of Signal Quality and Usability.Jesus G. Cruz-Garza, Justin A. Brantley, Sho Nakagome, Kimberly Kontson, Murad Megjhani, Dario Robleto & Jose L. Contreras-Vidal - 2017 - Frontiers in Human Neuroscience 11.
  39. Human development or human enhancement? A methodological reflection on capabilities and the evaluation of information technologies.Mark Coeckelbergh - 2011 - Ethics and Information Technology 13 (2):81-92.
    Nussbaum’s version of the capability approach is not only a helpful approach to development problems but can also be employed as a general ethical-anthropological framework in ‘advanced’ societies. This paper explores its normative force for evaluating information technologies, with a particular focus on the issue of human enhancement. It suggests that the capability approach can be a useful way of to specify a workable and adequate level of analysis in human enhancement discussions, but argues that any interpretation of what these (...)
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  40.  11
    Exploring ethical approaches to evaluate future technology scenarios.David J. LePoire - 2005 - Journal of Information, Communication and Ethics in Society 3 (3):143-150.
    The integration of technology into the workplace has resulted in a long trend of changing working conditions, from agriculture to today’s growing “knowledge economy.” This latest development depends on information technology, which may continue to evolve through eventual convergence with nanotechnology and biotechnology. Knowledge work places more emphasis on an expanded skill set, as opposed to the smaller set of specialized skills typically needed in an industrial economy. Future technological progress might lead to further enhancement of human potential (...)
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  41.  65
    Expertise, Regulatory Science and the Evaluation of Technology and Risk: Introduction to the Special Issue.David Demortain - 2017 - Minerva 55 (2):139-159.
    Regulating technologies, innovations and risks is an activity that, as much as scientific research needs proofs and evidence. It is the site of development of a distinct kind of science, regulatory science. This special issue addresses the question of the standards of knowledge governing how we test, assess and monitor technologies and their effects. This topic is relevant and timely in the light of problematics of regulation of innovation, regulatory failure and capture. Given the enormous decisions and stakes regulatory science (...)
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  42.  20
    Perceptions and evaluations of gene technology: Linköping 4.–5.12.2003.Petra Gelhaus - 2004 - Ethik in der Medizin 16 (1):81-83.
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  43.  7
    Perceptions and evaluations of gene technology: Linköping 4.–5.12.2003.Petra Gelhaus - 2004 - Ethik in der Medizin 16 (1):81-83.
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  44.  13
    Perceptions and evaluations of gene technology.Lennart Nordenfelt & Viveka Adelswärd - 2003 - Medicine, Health Care and Philosophy 6 (221):221-221.
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  45.  2
    How To Evaluate Science and Technology Forecasts.Andy Hines - 1995 - Bulletin of Science, Technology and Society 15 (4):178-180.
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  46.  19
    Book Review: Technology in American Health Care: Policy Directions for Effective Evaluation and Management.Daniel P. Lorence - 2005 - Inquiry: The Journal of Health Care Organization, Provision, and Financing 42 (1):99-101.
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  47.  50
    Reducing normative bias in health technology assessment: Interactive evaluation and casuistry.Rob P. B. Reuzel, Gert-Jan van Der Wilt, Henk A. M. J. ten Have & Pieter F. de Vries Robbé - 1999 - Medicine, Health Care and Philosophy 2 (3):255-263.
    Health technology assessment (HTA) is often biased in the sense that it neglects relevant perspectives on the technology in question. To incorporate different perspectives in HTA, we should pursue agreement about what are relevant, plausible, and feasible research questions; interactive technology assessment (iTA) might be suitable for this goal. In this way a kind of procedural ethics is established. Currently, ethics too often is focussed on the application of general principles, which leaves a lot of confusion as (...)
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  48.  7
    Reducing normative bias in health technology assessment: Interactive evaluation and casuistry.Rob Reuzel, Gert-jan van der Wilt, Henk ten Have & Pieter de Vries Robbé - 1999 - Medicine, Health Care and Philosophy 2 (3):255-263.
    Health technology assessment (HTA) is often biased in the sense that it neglects relevant perspectives on the technology in question. To incorporate different perspectives in HTA, we should pursue agreement about what are relevant, plausible, and feasible research questions; interactive technology assessment (iTA) might be suitable for this goal. In this way a kind of procedural ethics is established. Currently, ethics too often is focussed on the application of general principles, which leaves a lot of confusion as (...)
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  49.  12
    “The Hardest Task”—Peer Review and the Evaluation of Technological Activities.Federico Vasen & Miguel Sierra Pereiro - 2022 - Minerva 60 (3):375-395.
    Technology development and innovation are fundamentally different from scientific research. However, in many circumstances, they are evaluated jointly and by the same processes. In these cases, peer review—the most usual procedure for evaluating research—is also applied to the evaluation of technological products and innovation activities. This can lead to unfair results and end up discouraging the involvement of researchers in these fields. This paper analyzes the evaluation processes in Uruguay's National System of Researchers. In this system, all (...)
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  50.  11
    Connecting the methods of psychology and philosophy: Applying Cognitive-Affective Maps (CAMs) to identify ethical principles underlying the evaluation of bioinspired technologies.Philipp Höfele, Lisa Reuter, Louisa Estadieu, Sabrina Livanec, Michael Stumpf & Andrea Kiesel - forthcoming - Philosophical Psychology.
    One major challenge of the 21st century is the increasingly rapid development of new technologies and their evaluation. In this article we argue for an interdisciplinary approach to meet this demand for evaluating new and specifically bioinspired technologies. We combine the consideration of normative principles in the field of ethics with psychological-empirical research on attitudes. In doing so, the paper has a twofold concern: first, we discuss how such an interdisciplinary collaboration can be implemented by using the method of (...)
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