Results for 'Bioengineering ethics'

953 found
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  1.  38
    Development of a tissue engineered heart valve for pediatrics: A case study in bioengineering ethics.W. David Merryman - 2008 - Science and Engineering Ethics 14 (1):93-101.
    The following hypothetical case study was developed for bioengineering students and is concerned with choosing between two devices used for development of a pediatric tissue engineered heart valve (TEHV). This case is intended to elicit assessment of the devices, possible future outcomes, and ramifications of the decision making. It is framed in light of two predominant ethical theories: utilitarianism and rights of persons. After the case was presented to bioengineering graduate students, they voted on which device should be (...)
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  2.  53
    Validity and Reliability of an Instrument for Assessing Case Analyses in Bioengineering Ethics Education.Ilya M. Goldin, Rosa Lynn Pinkus & Kevin Ashley - 2015 - Science and Engineering Ethics 21 (3):789-807.
    Assessment in ethics education faces a challenge. From the perspectives of teachers, students, and third-party evaluators like the Accreditation Board for Engineering and Technology and the National Institutes of Health, assessment of student performance is essential. Because of the complexity of ethical case analysis, however, it is difficult to formulate assessment criteria, and to recognize when students fulfill them. Improvement in students’ moral reasoning skills can serve as the focus of assessment. In previous work, Rosa Lynn Pinkus and Claire (...)
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  3.  59
    Ethics in bioengineering.Carl Mitcham - 1990 - Journal of Business Ethics 9 (3):227 - 231.
    Bioengineering, as the decisive extension of engineering action to human life itself, constitutes a fundamental enlargement of the technical realm, and calls for a commensurate expansion of ethical reflection. In fact, the engineering profession has been actively pursuing the development of new ethical codes, and the promotion of ethics by bioengineers both in the United States and on the international level deserves philosophical recognition and support.
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  4.  58
    The Ethics of Global Catastrophic Risk from Dual-Use Bioengineering.Seth D. Baum & Grant S. Wilson - 2013 - Ethics in Biology, Engineering and Medicine 4 (1):59-72.
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  5. Some aspects of medical ethics from the perspective of bioengineering.H. Thoma - 1986 - Theoretical Medicine and Bioethics 7 (3).
    The problem of ethics in medical care as seen from the bioengineering results from the almost incredible technological achievements based on scientific research: On the one hand there is inadequate handling of technology and fear on the part of the patient; on the other hand there is admiration on the part of the physicians and the nursing staff. This article will survey the points of criticism concerning ethical behavior and will present and evaluate general problems of mechanization in (...)
     
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  6.  9
    Ethics of Medicine, Biology and Bioengineering at the New Critical Crossroads for Our Species—Beyond Aristotle and Hippocrates.George Bugliarello - 2010 - Ethics in Biology, Engineering and Medicine 1 (1):3-8.
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  7.  8
    Ethics for bioengineering scientists: treating data as clients. [REVIEW]Michal Pruski - 2022 - The New Bioethics 29 (2):191-193.
    This book aims to act as an ethics textbook for what it terms ‘bioengineering students’: scientists working with medical technologies either in research or clinical practice. It is aimed at an Amer...
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  8.  10
    The Ethics of Electronic Tracking Devices in Dementia Care: An Interview Study with Developers.Jared Howes, Yvonne Denier, Tijs Vandemeulebroucke & Chris Gastmans - 2024 - Science and Engineering Ethics 30 (3):1-29.
    Wandering is a symptom of dementia that can have devastating consequences on the lives of persons living with dementia and their families and caregivers. Increasingly, caregivers are turning towards electronic tracking devices to help manage wandering. Ethical questions have been raised regarding these location-based technologies and although qualitative research has been conducted to gain better insight into various stakeholders' views on the topic, developers of these technologies have been largely excluded. No qualitative research has focused on developers’ perceptions of (...) related to electronic tracking devices. To address this, we performed a qualitative semi-structured interview study based on grounded theory. We interviewed 15 developers of electronic tracking devices to better understand how they perceive ethical issues surrounding the design, development, and use of these devices within dementia care. Our results reveal that developers are strongly motivated by moral considerations and believe that including stakeholders throughout the development process is critical for success. Developers felt a strong sense of moral obligation towards topics within their control and a weaker sense of moral obligation towards topics outside their control. This leads to a perceived moral boundary between development and use, where some moral responsibility is shifted to end-users. (shrink)
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  9.  27
    Mapping Ethical Artificial Intelligence Policy Landscape: A Mixed Method Analysis.Tahereh Saheb - 2024 - Science and Engineering Ethics 30 (2):1-26.
    As more national governments adopt policies addressing the ethical implications of artificial intelligence, a comparative analysis of policy documents on these topics can provide valuable insights into emerging concerns and areas of shared importance. This study critically examines 57 policy documents pertaining to ethical AI originating from 24 distinct countries, employing a combination of computational text mining methods and qualitative content analysis. The primary objective is to methodically identify common themes throughout these policy documents and perform a comparative analysis of (...)
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  10.  28
    Measures of Ethics and Social Responsibility Among Undergraduate Engineering Students: Findings from a Longitudinal Study.Shiloh James Howland, Brent K. Jesiek, Stephanie Claussen & Carla B. Zoltowski - 2024 - Science and Engineering Ethics 30 (1):1-26.
    Prior research on engineering students’ understandings of ethics and social responsibility has produced mixed and sometimes conflicting results. Seeking greater clarity in this area of investigation, we conducted an exploratory, longitudinal study at four universities in the United States to better understand how engineering undergraduate students perceive ethics and social responsibility and how those perceptions change over time. Undergraduate engineering students at four U.S. universities were surveyed three times: during their 1st (Fall 2015), 5th (Fall 2017), and 8th (...)
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  11.  32
    Prioritizing Non-Human Bioengineering.Andrew Sneddon - 2012 - Ethics, Policy and Environment 15 (2):234 - 236.
    Ethics, Policy & Environment, Volume 15, Issue 2, Page 234-236, June 2012.
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  12.  35
    An Ethics of the System: Talking to Scientists About Research Integrity.Sarah R. Davies - 2019 - Science and Engineering Ethics 25 (4):1235-1253.
    Research integrity and misconduct have recently risen to public attention as policy issues. Concern has arisen about divergence between this policy discourse and the language and concerns of scientists. This interview study, carried out in Denmark with a cohort of highly internationalised natural scientists, explores how researchers talk about integrity and good science. It finds, first, that these scientists were largely unaware of the Danish Code of Conduct for Responsible Conduct of Research and indifferent towards the value of such codes; (...)
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  13.  23
    Ambiguity in Ethical Standards: Global Versus Local Science in Explaining Academic Plagiarism.Katerina S. Guba & Angelika O. Tsivinskaya - 2024 - Science and Engineering Ethics 30 (1):1-24.
    The past decade has seen extensive research carried out on the systematic causes of research misconduct. Simultaneously, less attention has been paid to the variation in academic misconduct between research fields, as most empirical studies focus on one particular discipline. We propose that academic discipline is one of several systematic factors that might contribute to academic misbehavior. Drawing on a neo-institutional approach, we argue that in the developing countries, the norm of textual originality has not drawn equal support across different (...)
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  14.  31
    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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  15.  24
    Clinical Ethics Consultation in the Transition Countries of Central and Eastern Europe.Marcin Orzechowski, Maximilian Schochow & Florian Steger - 2020 - Science and Engineering Ethics 26 (2):833-850.
    Since 1989, clinical ethics consultation in form of hospital ethics committees was established in most of the transition countries of Central and Eastern Europe. Up to now, the similarities and differences between HECs in Central and Eastern Europe and their counterparts in the U.S. and Western Europe have not been determined. Through search in literature databases, we have identified studies that document the implementation of clinical ethics consultation in Central and Eastern Europe. These studies have been analyzed (...)
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  16.  69
    Teaching for adaptive expertise in biomedical engineering ethics.Taylor Martin, Karen Rayne, Nate J. Kemp, Jack Hart & Kenneth R. Diller - 2005 - Science and Engineering Ethics 11 (2):257-276.
    This paper considers an approach to teaching ethics in bioengineering based on the How People Learn (HPL) framework. Curricula based on this framework have been effective in mathematics and science instruction from the kindergarten to the college levels. This framework is well suited to teaching bioengineering ethics because it helps learners develop “adaptive expertise”. Adaptive expertise refers to the ability to use knowledge and experience in a domain to learn in unanticipated situations. It differs from routine (...)
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  17.  12
    The Moral Superiority of Bioengineered Wombs and Ectogenesis for Absolute Uterine Factor Infertility.Evie Kendal & Julian J. Koplin - 2022 - Cambridge Quarterly of Healthcare Ethics 31 (1):73-82.
    This paper argues that uterine transplants are a potentially dangerous distraction from the development of alternative methods of providing reproductive options for women with absolute uterine factor infertility. We consider two alternatives in particular: the bioengineering of wombs using stem cells and ectogenesis. Whether biologically or mechanically engineered, these womb replacements could provide a way for women to have children, including genetically related offspring for those who would value this possibility. Most importantly, this alternative would avoid the challenge of (...)
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  18.  30
    Ethics Across the Curriculum: Prospects for Broader (and Deeper) Teaching and Learning in Research and Engineering Ethics.Carl Mitcham & Elaine E. Englehardt - 2016 - Science and Engineering Ethics 25 (6):1735-1762.
    The movements to teach the responsible conduct of research and engineering ethics at technological universities are often unacknowledged aspects of the ethics across the curriculum movement and could benefit from explicit alliances with it. Remarkably, however, not nearly as much scholarly attention has been devoted to EAC as to RCR or to engineering ethics, and RCR and engineering ethics educational efforts are not always presented as facets of EAC. The emergence of EAC efforts at two different (...)
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  19.  20
    How Do Molecular Systems Engineering Scientists Frame the Ethics of Their Research?Renan Gonçalves Leonel da Silva, Alessandro Blasimme, Effy Vayena & Kelly E. Ormond - forthcoming - AJOB Empirical Bioethics.
    Background There are intense discussions about the ethical and societal implications of biomedical engineering, but little data to suggest how scientists think about the ethics of their work. The aim of this study is to describe how scientists frame the ethics of their research, with a focus on the field of molecular systems engineering.Methods Semi-structured qualitative interviews were conducted during 2021–2022, as part of a larger study. This analysis includes a broad question about how participants view ethics (...)
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  20.  10
    Operationalizing Ethical Becoming as a Theoretical Framework for Teaching Engineering Design Ethics.Grant A. Fore & Justin L. Hess - 2020 - Science and Engineering Ethics 26 (3):1353-1375.
    Ethical becoming represents a novel framework for teaching engineering ethics. This framework insists on the complementarity of pragmatism, care, and virtue. The dispositional nature of the self is a central concern, as are relational considerations. However, unlike previous conceptual work, this paper introduces additional lenses for exploring ethical relationality by focusing on indebtedness, harmony, potency, and reflective thought. This paper first reviews relevant contributions in the engineering ethics literature. Then, the relational process ontology of Alfred North Whitehead is (...)
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  21.  22
    Food Ethics: The Basics.Ronald L. Sandler - 2014 - Routledge.
    Food Ethics: The Basics is a concise yet comprehensive introduction to the ethical dimensions of the production and consumption of food. It offers an impartial exploration of the most prominent ethical questions relating to food and agriculture including: • Should we eat animals? • Are locally produced foods ethically superior to globally sourced foods? • Do people in affluent nations have a responsibility to help reduce global hunger? • Should we embrace bioengineered foods? • What should be the role (...)
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  22.  79
    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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  23.  9
    Australia II: A Case Study in Engineering Ethics.Peter van Oossanen & Martin Peterson - 2024 - Science and Engineering Ethics 30 (3):1-24.
    Australia II became the first foreign yacht to win the America's Cup in 1983. The boat had a revolutionary wing keel and a better underwater hull form. In official documents, Ben Lexcen is credited with the design. He is also listed as the sole inventor of the wing keel in a patent application submitted on February 5, 1982. However, as reported in _New York Times_, _Sydney Morning Herald_, and _Professional Boatbuilder_, the wing keel was in fact designed by engineer Peter (...)
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  24.  30
    Ethical Concerns About Human Genetic Enhancement in the Malay Science Fiction Novels.Noor Munirah Isa & Muhammad Fakhruddin Hj Safian Shuri - 2018 - Science and Engineering Ethics 24 (1):109-127.
    Advancements in science and technology have not only brought hope to humankind to produce disease-free offspring, but also offer possibilities to genetically enhance the next generation’s traits and capacities. Human genetic enhancement, however, raises complex ethical questions, such as to what extent should it be allowed? It has been a great challenge for humankind to develop robust ethical guidelines for human genetic enhancement that address both public concerns and needs. We believe that research about public concerns is necessary prior to (...)
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  25.  62
    Ethical Decision Making in Autonomous Vehicles: The AV Ethics Project.Katherine Evans, Nelson de Moura, Stéphane Chauvier, Raja Chatila & Ebru Dogan - 2020 - Science and Engineering Ethics 26 (6):3285-3312.
    The ethics of autonomous vehicles has received a great amount of attention in recent years, specifically in regard to their decisional policies in accident situations in which human harm is a likely consequence. Starting from the assumption that human harm is unavoidable, many authors have developed differing accounts of what morality requires in these situations. In this article, a strategy for AV decision-making is proposed, the Ethical Valence Theory, which paints AV decision-making as a type of claim mitigation: different (...)
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  26.  50
    The Ethics of ‘Deathbots’.Nora Freya Lindemann - 2022 - Science and Engineering Ethics 28 (6):1-15.
    Recent developments in AI programming allow for new applications: individualized chatbots which mimic the speaking and writing behaviour of one specific living or dead person. ‘Deathbots’, chatbots of the dead, have already been implemented and are currently under development by the first start-up companies. Thus, it is an urgent issue to consider the ethical implications of deathbots. While previous ethical theories of deathbots have always been based on considerations of the dignity of the deceased, I propose to shift the focus (...)
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  27.  29
    The ethics of testing and research of manufactured organs on brain-dead/recently deceased subjects.Brendan Parent, Bruce Gelb, Stephen Latham, Ariane Lewis, Laura L. Kimberly & Arthur L. Caplan - 2020 - Journal of Medical Ethics 46 (3):199-204.
    Over 115 000 people are waiting for life-saving organ transplants, of whom a small fraction will receive transplants and many others will die while waiting. Existing efforts to expand the number of available organs, including increasing the number of registered donors and procuring organs in uncontrolled environments, are crucial but unlikely to address the shortage in the near future and will not improve donor/recipient compatibility or organ quality. If successful, organ bioengineering can solve the shortage and improve functional outcomes. (...)
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  28.  69
    Wired Emotions: Ethical Issues of Affective Brain–Computer Interfaces.Steffen Steinert & Orsolya Friedrich - 2020 - Science and Engineering Ethics 26 (1):351-367.
    Ethical issues concerning brain–computer interfaces have already received a considerable amount of attention. However, one particular form of BCI has not received the attention that it deserves: Affective BCIs that allow for the detection and stimulation of affective states. This paper brings the ethical issues of affective BCIs in sharper focus. The paper briefly reviews recent applications of affective BCIs and considers ethical issues that arise from these applications. Ethical issues that affective BCIs share with other neurotechnologies are presented and (...)
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  29.  35
    Customizable Ethics Settings for Building Resilience and Narrowing the Responsibility Gap: Case Studies in the Socio-Ethical Engineering of Autonomous Systems.Sadjad Soltanzadeh, Jai Galliott & Natalia Jevglevskaja - 2020 - Science and Engineering Ethics 26 (5):2693-2708.
    Ethics settings allow for morally significant decisions made by humans to be programmed into autonomous machines, such as autonomous vehicles or autonomous weapons. Customizable ethics settings are a type of ethics setting in which the users of autonomous machines make such decisions. Here two arguments are provided in defence of customizable ethics settings. Firstly, by approaching ethics settings in the context of failure management, it is argued that customizable ethics settings are instrumentally and inherently (...)
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  30. Unique ethical problems in information technology.Walter Maner - 1996 - Science and Engineering Ethics 2 (2):137-154.
    A distinction is made between moral indoctrination and instruction in ethics. It is argued that the legitimate and important field of computer ethics should not be permitted to become mere moral indoctrination. Computer ethics is an academic field in its own right with unique ethical issues that would not have existed if computer technology had not been invented. Several example issues are presented to illustrate this point. The failure to find satisfactory non-computer analogies testifies to the uniqueness (...)
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  31.  32
    An Ethical Exploration of Increased Average Number of Authors Per Publication.Mohammad Hosseini, Jonathan Lewis, Hub Zwart & Bert Gordijn - 2022 - Science and Engineering Ethics 28 (3):1-24.
    This article explores the impact of an Increase in the average Number of Authors per Publication on known ethical issues of authorship. For this purpose, the ten most common ethical issues associated with scholarly authorship are used to set up a taxonomy of existing issues and raise awareness among the community to take precautionary measures and adopt best practices to minimize the negative impact of INAP. We confirm that intense international, interdisciplinary and complex collaborations are necessary, and INAP is an (...)
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  32. Intrinsic Ethics Regarding Integrated Assessment Models for Climate Management.Erich W. Schienke, Seth D. Baum, Nancy Tuana, Kenneth J. Davis & Klaus Keller - 2011 - Science and Engineering Ethics 17 (3):503-523.
    In this essay we develop and argue for the adoption of a more comprehensive model of research ethics than is included within current conceptions of responsible conduct of research (RCR). We argue that our model, which we label the ethical dimensions of scientific research (EDSR), is a more comprehensive approach to encouraging ethically responsible scientific research compared to the currently typically adopted approach in RCR training. This essay focuses on developing a pedagogical approach that enables scientists to better understand (...)
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  33.  25
    The ethical implications of the new research paradigm.Peter Scott - 2003 - Science and Engineering Ethics 9 (1):73-84.
    Research is now an increasingly heterogeneous activity involving an expanded range of new actors and stake-holders and employing an eclectic range of epistemologies and methodologies. The emergence of these new research paradigms — and, in particular, of so-called ‘Mode 2’ knowledge production that is highly contextualised and socially distributed — raises new and challenging ethical issues and also important questions about the autonomy of science and the social responsibilities of scientists.
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  34.  33
    Ethical Issues in Consent for the Reuse of Data in Health Data Platforms.Alex McKeown, Miranda Mourby, Paul Harrison, Sophie Walker, Mark Sheehan & Ilina Singh - 2021 - Science and Engineering Ethics 27 (1):1-21.
    Data platforms represent a new paradigm for carrying out health research. In the platform model, datasets are pooled for remote access and analysis, so novel insights for developing better stratified and/or personalised medicine approaches can be derived from their integration. If the integration of diverse datasets enables development of more accurate risk indicators, prognostic factors, or better treatments and interventions, this obviates the need for the sharing and reuse of data; and a platform-based approach is an appropriate model for facilitating (...)
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  35.  47
    Implementing Ethics in Healthcare AI-Based Applications: A Scoping Review.Robyn Clay-Williams, Elizabeth Austin & Magali Goirand - 2021 - Science and Engineering Ethics 27 (5):1-53.
    A number of Artificial Intelligence (AI) ethics frameworks have been published in the last 6 years in response to the growing concerns posed by the adoption of AI in different sectors, including healthcare. While there is a strong culture of medical ethics in healthcare applications, AI-based Healthcare Applications (AIHA) are challenging the existing ethics and regulatory frameworks. This scoping review explores how ethics frameworks have been implemented in AIHA, how these implementations have been evaluated and whether (...)
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  36.  9
    Scientists’ Views on the Ethics, Promises and Practices of Synthetic Biology: A Qualitative Study of Australian Scientific Practice.Jacqueline Dalziell & Wendy Rogers - 2023 - Science and Engineering Ethics 29 (6):1-20.
    Synthetic biology is a broad term covering multiple scientific methodologies, technologies, and practices. Pairing biology with engineering, synbio seeks to design and build biological systems, either through improving living cells by adding in new functions, or creating new structures by combining natural and synthetic components. As with all new technologies, synthetic biology raises a number of ethical considerations. In order to understand what these issues might be, and how they relate to those covered in ethics literature on synbio, we (...)
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  37.  40
    Self-Focused Emotions and Ethical Decision-Making: Comparing the Effects of Regulated and Unregulated Guilt, Shame, and Embarrassment.Cory Higgs, Tristan McIntosh, Shane Connelly & Michael Mumford - 2020 - Science and Engineering Ethics 26 (1):27-63.
    Research has examined various cognitive processes underlying ethical decision-making, and has recently begun to focus on the differential effects of specific emotions. The present study examines three self-focused moral emotions and their influence on ethical decision-making: guilt, shame, and embarrassment. Given the potential of these discrete emotions to exert positive or negative effects in decision-making contexts, we also examined their effects on ethical decisions after a cognitive reappraisal emotion regulation intervention. Participants in the study were presented with an ethical scenario (...)
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  38.  47
    The Role of Professional Knowledge in Case-Based Reasoning in Practical Ethics.Rosa Lynn Pinkus, Claire Gloeckner & Angela Fortunato - 2015 - Science and Engineering Ethics 21 (3):767-787.
    The use of case-based reasoning in teaching professional ethics has come of age. The fields of medicine, engineering, and business all have incorporated ethics case studies into leading textbooks and journal articles, as well as undergraduate and graduate professional ethics courses. The most recent guidelines from the National Institutes of Health recognize case studies and face-to-face discussion as best practices to be included in training programs for the Responsible Conduct of Research. While there is a general consensus (...)
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  39.  26
    Ethics and Values in Design: A Structured Review and Theoretical Critique.Joseph Donia & James A. Shaw - 2021 - Science and Engineering Ethics 27 (5):1-32.
    A variety of approaches have appeared in academic literature and in design practice representing “ethics-first” methods. These approaches typically focus on clarifying the normative dimensions of design, or outlining strategies for explicitly incorporating values into design. While this body of literature has developed considerably over the last 20 years, two themes central to the endeavour of ethics and values in design (E + VID) have yet to be systematically discussed in relation to each other: (a) designer agency, and (...)
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  40.  22
    Tech Ethics Through Trust Auditing.Matthew Grellette - 2022 - Science and Engineering Ethics 28 (3):1-15.
    The public’s trust in the technology sector is waning and, in response, technology companies and state governments have started to champion “tech ethics”. That is, they have pledged to design, develop, distribute, and employ new technologies in an ethical manner. In this paper, I observe that tech ethics is already subject to a widespread pathology in that technology companies, the primary executors of tech ethics, are incentivized to pursue it half-heartedly or even disingenuously. Next, I highlight two (...)
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  41.  29
    Machine Ethics: Do Androids Dream of Being Good People?Gonzalo Génova, Valentín Moreno & M. Rosario González - 2023 - Science and Engineering Ethics 29 (2):1-17.
    Is ethics a computable function? Can machines learn ethics like humans do? If teaching consists in no more than programming, training, indoctrinating… and if ethics is merely following a code of conduct, then yes, we can teach ethics to algorithmic machines. But if ethics is not merely about following a code of conduct or about imitating the behavior of others, then an approach based on computing outcomes, and on the reduction of ethics to the (...)
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  42.  25
    Promoting Ethics and Integrity in Management Academic Research: Retraction Initiative.Freida Ozavize Ayodele, Liu Yao & Hasnah Haron - 2019 - Science and Engineering Ethics 25 (2):357-382.
    In the management academic research, academic advancement, job security, and the securing of research funds at one’s university are judged mainly by one’s output of publications in high impact journals. With bogus resumes filled with published journal articles, universities and other allied institutions are keen to recruit or sustain the appointment of such academics. This often places undue pressure on aspiring academics and on those already recruited to engage in research misconduct which often leads to research integrity. This structured review (...)
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  43.  41
    The Ethical Education and Perspectives of Chinese Engineering Students: A Preliminary Investigation and Recommendations.Rockwell F. Clancy - 2020 - Science and Engineering Ethics 26 (4):1935-1965.
    To develop more effective ethics education for cross-cultural and international engineering, a study was conducted to determine what Chinese engineering students have learned and think about ethics. Recent research shows traditional approaches to ethics education are potentially ineffective, but also points towards ways of improving ethical behaviors. China is the world’s most populous country, graduating and employing the highest number of STEM majors, although little empirical research exists about the ethical knowledge and perspectives of Chinese engineering students. (...)
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  44.  32
    Some ethical and legal issues in Germany involving informed consent and patenting.Brigitte Jansen & Juergen Simon - 2005 - Science and Engineering Ethics 11 (1):93-96.
    This paper elaborates on discussions in Germany regarding some of the ethical and legal issues in the area of the use and patenting of inventions involving human tissue. The issues discussed pertain to the benefits and problems regarding informed consent and the issue of property rights as they relate to the donation of cells and tissue.
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  45.  24
    Ethics in the Minutiae: Examining the Role of the Physical Laboratory Environment in Ethical Discourse.Louise Bezuidenhout - 2015 - Science and Engineering Ethics 21 (1):51-73.
    Responsibility within life science research is a highly scrutinised field. Increasingly, scientists are presented with a range of duties and expectations regarding their conduct within the research setting. In many cases, these duties are presented deontologically, forgoing extensive discussion on how these are practically implemented into the minutiae of daily research practices. This de-contextualized duty has proven problematic when it comes to practical issues of compliance, however it is not often considered as a fundamental aspect of building ethics discourse. (...)
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  46.  22
    Defining “Ethical Mathematical Practice” Through Engagement with Discipline-Adjacent Practice Standards and the Mathematical Community.Catherine A. Buell, Victor I. Piercey & Rochelle E. Tractenberg - 2024 - Science and Engineering Ethics 30 (3):1-31.
    This project explored what constitutes “ethical practice of mathematics”. Thematic analysis of ethical practice standards from mathematics-adjacent disciplines (statistics and computing), were combined with two organizational codes of conduct and community input resulting in over 100 items. These analyses identified 29 of the 52 items in the 2018 American Statistical Association Ethical Guidelines for Statistical Practice, and 15 of the 24 additional (unique) items from the 2018 Association of Computing Machinery Code of Ethics for inclusion. Three of the 29 (...)
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  47.  23
    Ethics Inside the Black Box: Integrating Science and Technology Studies into Engineering and Public Policy Curricula.Christopher Lawrence, Sheila Jasanoff, Sam Weiss Evans, Keith Raffel & L. Mahadevan - 2023 - Science and Engineering Ethics 29 (4):1-31.
    There is growing need for hybrid curricula that integrate constructivist methods from Science and Technology Studies (STS) into both engineering and policy courses at the undergraduate and graduate levels. However, institutional and disciplinary barriers have made implementing such curricula difficult at many institutions. While several programs have recently been launched that mix technical training with consideration of “societal” or “ethical issues,” these programs often lack a constructivist element, leaving newly-minted practitioners entering practical fields ill-equipped to unpack the politics of knowledge (...)
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  48.  11
    Startup Ethics: Ethically Responsible Conduct of Scientists and Engineers at Theranos.Robert E. McGinn - 2022 - Science and Engineering Ethics 28 (5):1-21.
    Studies of ethical challenges that can confront practicing scientists and engineers in the entrepreneurial stage of the overarching research-and-innovation process are virtually non-existent. This paper explores ethical challenges that arose at a specific entrepreneurial startup: Theranos, the defunct blood-testing company. The fundamental ethical responsibilities of scientists and engineers offer a framework useful for evaluating the conduct of practicing scientists and engineers from an ethical responsibility perspective. Questionable conduct by Theranos’s former top managers has been widely discussed. However, the fact that (...)
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  49.  53
    Ethics Teaching in Higher Education for Principled Reasoning: A Gateway for Reconciling Scientific Practice with Ethical Deliberation.Mehmet Aközer & Emel Aközer - 2017 - Science and Engineering Ethics 23 (3):825-860.
    This paper proposes laying the groundwork for principled moral reasoning as a seminal goal of ethics interventions in higher education, and on this basis, makes a case for educating future specialists and professionals with a foundation in philosophical ethics. Identification of such a seminal goal is warranted by the progressive dissociation of scientific practice and ethical deliberation since the onset of a problematic relationship between science and ethics around the mid-19th century, and the extensive mistrust of integrating (...)
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  50.  25
    Biomarketing Ethics, Functional Foods, Health, and Minors.Whiton S. Paine & Mary Lou Galantino - 2007 - Journal of Philosophical Research 32 (9999):163-176.
    In the next few years, biotechnology will continue to develop a wide variety of functional foods, foods whose benefits go well beyond basic nutrition. Minors are a major potential market for bioengineered foods that are promoted not as sustaining health but rather as supporting desired lifestyles through the enhancement of physical, athletic, intellectual, or social performance. The experience of other industries suggests that such biomarketing is likely to create a variety of highly public ethical controversies. After a discussion of some (...)
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