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  1. Care robots and the future of ICT-mediated elderly care: a response to doom scenarios.Mark Coeckelbergh - 2016 - AI and Society 31 (4):455-462.
    The discussion about robots in elderly care is populated by doom scenarios about a totally dehumanized care system in which elderly people are taken care of by machines. Such scenarios are helpful as they attend us to what we think is important with regard to the quality elderly care. However, this article argues that they are misleading in so far as they (1) assume that deception in care is always morally unacceptable, (2) suggest that robots and other information technologies necessarily (...)
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  • For and against the four principles of biomedical ethics.Richard Huxtable - 2013 - Clinical Ethics 8 (2-3):39-43.
    The four principles approach to biomedical ethics points to respect for autonomy, beneficence, non-maleficence and justice as the norms that should guide moral agents working in the biosciences, and particularly in health care. While the approach is well known, it is not without its critics. In this paper, which is primarily aimed at health professionals and students (from various disciplines) who are studying health care ethics, I consider four problems with the four principles, which respectively claim that the approach is (...)
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  • Designing Robots for Care: Care Centered Value-Sensitive Design.Aimee van Wynsberghe - 2013 - Science and Engineering Ethics 19 (2):407-433.
    The prospective robots in healthcare intended to be included within the conclave of the nurse-patient relationship—what I refer to as care robots—require rigorous ethical reflection to ensure their design and introduction do not impede the promotion of values and the dignity of patients at such a vulnerable and sensitive time in their lives. The ethical evaluation of care robots requires insight into the values at stake in the healthcare tradition. What’s more, given the stage of their development and lack of (...)
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  • Granny and the robots: ethical issues in robot care for the elderly.Amanda Sharkey & Noel Sharkey - 2012 - Ethics and Information Technology 14 (1):27-40.
    The growing proportion of elderly people in society, together with recent advances in robotics, makes the use of robots in elder care increasingly likely. We outline developments in the areas of robot applications for assisting the elderly and their carers, for monitoring their health and safety, and for providing them with companionship. Despite the possible benefits, we raise and discuss six main ethical concerns associated with: (1) the potential reduction in the amount of human contact; (2) an increase in the (...)
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  • Nancy N. Dubler, Carol B. Liebman (2004) Bioethics Mediation. A Guide to Shaping Shared Solutions: United Hospital Fund, New York, 236 Seiten, ISBN: 1-881277-70-4, $ 43,45.Jochen Vollmann - 2007 - Ethik in der Medizin 19 (2):161-162.
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  • In the hands of machines? The future of aged care.Robert Sparrow & Linda Sparrow - 2006 - Minds and Machines 16 (2):141-161.
    It is remarkable how much robotics research is promoted by appealing to the idea that the only way to deal with a looming demographic crisis is to develop robots to look after older persons. This paper surveys and assesses the claims made on behalf of robots in relation to their capacity to meet the needs of older persons. We consider each of the roles that has been suggested for robots in aged care and attempt to evaluate how successful robots might (...)
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  • A review of predictive policing from the perspective of fairness. [REVIEW]Kiana Alikhademi, Emma Drobina, Diandra Prioleau, Brianna Richardson, Duncan Purves & Juan E. Gilbert - 2021 - Artificial Intelligence and Law 30 (1):1-17.
    Machine Learning has become a popular tool in a variety of applications in criminal justice, including sentencing and policing. Media has brought attention to the possibility of predictive policing systems causing disparate impacts and exacerbating social injustices. However, there is little academic research on the importance of fairness in machine learning applications in policing. Although prior research has shown that machine learning models can handle some tasks efficiently, they are susceptible to replicating systemic bias of previous human decision-makers. While there (...)
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  • Principles alone cannot guarantee ethical AI.Brent Mittelstadt - 2019 - Nature Machine Intelligence 1 (11):501-507.
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  • The use of care robots in aged care: A systematic review of argument-based ethics literature.Tijs Vandemeulebroucke, Bernadette Dierckx De Casterlé & Chris Gastmans - 2018 - Archives of Gerontology and Geriatrics 74:15-25.
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  • Artificial Intelligence and Robotics in Nursing: Ethics of Caring as a Guide to Dividing Tasks Between AI and Humans.Felicia Stokes & Amitabha Palmer - 2020 - Nursing Philosophy 21 (4):e12306.
    Nurses have traditionally been regarded as clinicians that deliver compassionate, safe, and empathetic health care (Nurses again outpace other professions for honesty & ethics, 2018). Caring is a fundamental characteristic, expectation, and moral obligation of the nursing and caregiving professions (Nursing: Scope and standards of practice, American Nurses Association, Silver Spring, MD, 2015). Along with caring, nurses are expected to undertake ever‐expanding duties and complex tasks. In part because of the growing physical, intellectual and emotional demandingness, of nursing as well (...)
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  • Personal Robots, Appearance, and Human Good.Mark Coeckelbergh - 2009 - International Journal of Social Robotics 1 (3):217-221.
    The development of pet robots, toy robots, and sex robots suggests a near-future scenario of habitual living with 'personal' robots. How should we evaluate their potential impact on the quality of our lives and existence?In this paper, I argue for an approach to ethics of personal robots that advocates a methodological turn from robots to humans, from mind to interaction, from intelligent thinking to social-emotional being, from reality to appearance, from right to good, from external criteria to good internal to (...)
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  • The ethics of robotic caregivers.Amitai Etzioni & Oren Etzioni - 2017 - Interaction Studies 18 (2):174-190.
    As Artificial Intelligence technology seems poised for a major take-off and changing societal dynamics are creating a high demand for caregivers for elders, children and those infirmed-robotic caregivers, may well be used much more often. This article examines the ethical concerns raised by the use of AI caregivers and concludes that many of these concerns are avoided when AI caregivers operate as partners rather than substitutes. Furthermore, most of the remaining concerns are minor and are faced by human caregivers as (...)
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  • Designing Robots for Care: Care Centered Value-Sensitive Design. [REVIEW]Aimee Wynsberghe - 2013 - Science and Engineering Ethics 19 (2):407-433.
    The prospective robots in healthcare intended to be included within the conclave of the nurse-patient relationship—what I refer to as care robots—require rigorous ethical reflection to ensure their design and introduction do not impede the promotion of values and the dignity of patients at such a vulnerable and sensitive time in their lives. The ethical evaluation of care robots requires insight into the values at stake in the healthcare tradition. What’s more, given the stage of their development and lack of (...)
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  • Traversing boundaries: Clinical ethics, moral experience, and the withdrawal of life supports.Mark J. Bliton & Stuart G. Finder - 2002 - Theoretical Medicine and Bioethics 23 (3):233-258.
    While many have suggested that to withdraw medical interventions is ethically equivalent to withholding them, the moral complexity of actually withdrawing life supportive interventions from a patient cannot be ignored. Utilizing interplay between expository and narrative styles, and drawing upon our experiences with patients, families, nurses, and physicians when life supports have been withdrawn, we explore the changeable character of boundaries in end-of-life situations. We consider ways in which boundaries imply differences – for example, between cognition and performance – and (...)
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