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  1. European Public Deliberation on Brain Machine Interface Technology: Five Convergence Seminars. [REVIEW]Karim Jebari & Sven-Ove Hansson - 2013 - Science and Engineering Ethics 19 (3):1071-1086.
    We present a novel procedure to engage the public in ethical deliberations on the potential impacts of brain machine interface technology. We call this procedure a convergence seminar, a form of scenario-based group discussion that is founded on the idea of hypothetical retrospection. The theoretical background of this procedure and the results of five seminars are presented.
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  • Accounting for Future Generations in Energy Ethics: The Case for Temporalized Ethical Matrices.Céline Kermisch & Christophe Depaus - 2024 - Ethics, Policy and Environment 27 (1):30-47.
    Accounting for future generations is central in energy ethics and the ethical matrix can be used to reveal ethical impacts on them. However, the way it integrates future generations is questionable. The aim of this paper is to show why this tool does not consider ethical impacts on future generations appropriately and to propose a novel temporalized framework, which characterizes future people according to temporal, spatial and role features. By stimulating the disclosure of intergenerational conflicts, this temporalized matrix provides support (...)
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  • To Describe, Transmit or Inquire: Ethics and technology in school.Viktor Gardelli - 2016 - Dissertation, Luleå University of Technology
    Ethics is of vital importance to the Swedish educational system, as in many other educational systems around the world.Yet, it is unclear how ethics should be dealt with in school, and prior research and evaluations have found serious problems regarding ethics in education.The field of moral education lacks clear and widely accepted definitions of key concepts, and these ambiguities negatively impact both research and educational practice. This thesis draws a distinction between three approaches to ethics in school – the descriptive (...)
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  • Informed Consent in Asymmetrical Relationships: an Investigation into Relational Factors that Influence Room for Reflection.Shannon Lydia Spruit, Ibo Poel & Neelke Doorn - 2016 - NanoEthics 10 (2):123-138.
    In recent years, informed consent has been suggested as a way to deal with risks posed by engineered nanomaterials. We argue that while we can learn from experiences with informed consent in treatment and research contexts, we should be aware that informed consent traditionally pertains to certain features of the relationships between doctors and patients and researchers and research participants, rather than those between producers and consumers and employers and employees, which are more prominent in the case of engineered nanomaterials. (...)
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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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  • Evaluating Ethical Tools.Payam Moula & Per Sandin - 2015 - Metaphilosophy 46 (2):263-279.
    This article reviews suggestions for how ethical tools are to be evaluated and argues that the concept of ethical soundness as presented by Kaiser et al. is unhelpful. Instead, it suggests that the quality of an ethical tool is determined by how well it achieves its assigned purpose. Those are different for different tools, and the article suggests a categorization of such tools into three groups. For all ethical tools, it identifies comprehensiveness and user-friendliness as crucial. For tools that have (...)
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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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  • Informed Consent in Asymmetrical Relationships: an Investigation into Relational Factors that Influence Room for Reflection.Shannon Lydia Spruit, Ibo van de Poel & Neelke Doorn - 2016 - NanoEthics 10 (2):123-138.
    In recent years, informed consent has been suggested as a way to deal with risks posed by engineered nanomaterials. We argue that while we can learn from experiences with informed consent in treatment and research contexts, we should be aware that informed consent traditionally pertains to certain features of the relationships between doctors and patients and researchers and research participants, rather than those between producers and consumers and employers and employees, which are more prominent in the case of engineered nanomaterials. (...)
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  • We could be heroes: ethical issues with the pre-recruitment of research participants.David Hunter - 2015 - Journal of Medical Ethics 41 (7):557-558.
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