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  1. Where are human subjects in Big Data research? The emerging ethics divide.Kate Crawford & Jacob Metcalf - 2016 - Big Data and Society 3 (1).
    There are growing discontinuities between the research practices of data science and established tools of research ethics regulation. Some of the core commitments of existing research ethics regulations, such as the distinction between research and practice, cannot be cleanly exported from biomedical research to data science research. Such discontinuities have led some data science practitioners and researchers to move toward rejecting ethics regulations outright. These shifts occur at the same time as a proposal for major revisions to the Common Rule—the (...)
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  • Can Machines Read our Minds?Christopher Burr & Nello Cristianini - 2019 - Minds and Machines 29 (3):461-494.
    We explore the question of whether machines can infer information about our psychological traits or mental states by observing samples of our behaviour gathered from our online activities. Ongoing technical advances across a range of research communities indicate that machines are now able to access this information, but the extent to which this is possible and the consequent implications have not been well explored. We begin by highlighting the urgency of asking this question, and then explore its conceptual underpinnings, in (...)
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  • Motives of contributing personal data for health research: (non-)participation in a Dutch biobank.R. Broekstra, E. L. M. Maeckelberghe, J. L. Aris-Meijer, R. P. Stolk & S. Otten - 2020 - BMC Medical Ethics 21 (1):1-11.
    BackgroundLarge-scale, centralized data repositories are playing a critical and unprecedented role in fostering innovative health research, leading to new opportunities as well as dilemmas for the medical sciences. Uncovering the reasons as to why citizens do or do not contribute to such repositories, for example, to population-based biobanks, is therefore crucial. We investigated and compared the views of existing participants and non-participants on contributing to large-scale, centralized health research data repositories with those of ex-participants regarding the decision to end their (...)
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  • Research and Practice of AI Ethics: A Case Study Approach Juxtaposing Academic Discourse with Organisational Reality.Bernd Stahl, Kevin Macnish, Tilimbe Jiya, Laurence Brooks, Josephina Antoniou & Mark Ryan - 2021 - Science and Engineering Ethics 27 (2):1-29.
    This study investigates the ethical use of Big Data and Artificial Intelligence (AI) technologies (BD + AI)—using an empirical approach. The paper categorises the current literature and presents a multi-case study of 'on-the-ground' ethical issues that uses qualitative tools to analyse findings from ten targeted case-studies from a range of domains. The analysis coalesces identified singular ethical issues, (from the literature), into clusters to offer a comparison with the proposed classification in the literature. The results show that despite the variety (...)
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  • Excavating awareness and power in data science: A manifesto for trustworthy pervasive data research.Michael Zimmer, Jessica Vitak, Jacob Metcalf, Casey Fiesler, Matthew J. Bietz, Sarah A. Gilbert, Emanuel Moss & Katie Shilton - 2021 - Big Data and Society 8 (2).
    Frequent public uproar over forms of data science that rely on information about people demonstrates the challenges of defining and demonstrating trustworthy digital data research practices. This paper reviews problems of trustworthiness in what we term pervasive data research: scholarship that relies on the rich information generated about people through digital interaction. We highlight the entwined problems of participant unawareness of such research and the relationship of pervasive data research to corporate datafication and surveillance. We suggest a way forward by (...)
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  • Trust and Justice in Big Data Analytics: Bringing the Philosophical Literature on Trust to Bear on the Ethics of Consent.J. Patrick Woolley - 2019 - Philosophy and Technology 32 (1):111-134.
    Much bioethical literature and policy guidances for big data analytics in biomedical research emphasize the importance of trust. It is essential that potential participants trust so they will allow their data to be used to further research. However, comparatively, little guidance is offered as to what trustworthy oversight mechanisms are, or how policy should support them, as data are collected, shared, and used. Generally, “trust” is not characterized well enough, or meaningfully enough, for the term to be systematically applied in (...)
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  • The use of personal health information outside the circle of care: consent preferences of patients from an academic health care institution.Sarah Tosoni, Indu Voruganti, Katherine Lajkosz, Flavio Habal, Patricia Murphy, Rebecca K. S. Wong, Donald Willison, Carl Virtanen, Ann Heesters & Fei-Fei Liu - 2021 - BMC Medical Ethics 22 (1):1-14.
    Background Immense volumes of personal health information are required to realize the anticipated benefits of artificial intelligence in clinical medicine. To maintain public trust in medical research, consent policies must evolve to reflect contemporary patient preferences. Methods Patients were invited to complete a 27-item survey focusing on: broad versus specific consent; opt-in versus opt-out approaches; comfort level sharing with different recipients; attitudes towards commercialization; and options to track PHI use and study results. Results 222 participants were included in the analysis; (...)
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  • An Unbiased Response to the Open Peer Commentaries on “Does Consent Bias Research?”.Mark A. Rothstein & Abigail B. Shoben - 2013 - American Journal of Bioethics 13 (4):W1 - W4.
    (2013). An Unbiased Response to the Open Peer Commentaries on “Does Consent Bias Research?”. The American Journal of Bioethics: Vol. 13, No. 4, pp. W1-W4. doi: 10.1080/15265161.2013.769824.
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  • Can Blockchain Solve the Dilemma in the Ethics of Genomic Biobanks?Valérie Racine - 2021 - Science and Engineering Ethics 27 (3):1-14.
    In discussions on the ethics of genome collections and biobanks, the main worry about whether we are permitted to collect and use individuals’ genomic and genetic data is the potential for the violation of individuals’ right to informational privacy. Yet, if we do not permit these endeavors, we risk giving up on the future benefits of biomedical research. In this paper, I describe a private venture in blockchain genomics that seeks to provide an apt solution to concerns about potential privacy (...)
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  • Privacy challenges in smart homes for people with dementia and people with intellectual disabilities.Fiachra O’Brolcháin & Bert Gordijn - 2019 - Ethics and Information Technology 21 (3):253-265.
    The aim of this paper is to analyse the ethical issues relating to privacy that arise in smart homes designed for people with dementia and for people with intellectual disabilities. We outline five different conceptual perspectives on privacy and detail the ways in which smart home technologies may violate residents’ privacy. We specify these privacy threats in a number of areas and under a variety of conceptions of privacy. Furthermore, we illustrate that informed consent may not provide a solution to (...)
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  • Mental health, big data and research ethics: Parity of esteem in mental health research from a UK perspective.Julie Morton & Michelle O’Reilly - 2019 - Clinical Ethics 14 (4):165-172.
    Central to ethical debates in contemporary mental health research are the rhetoric of parity of esteem, challenges underpinned by the social construct of vulnerability and the tendency to homogenis...
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  • The ethics of big data: current and foreseeable issues in biomedical contexts.Brent Daniel Mittelstadt & Luciano Floridi - 2016 - Science and Engineering Ethics 22 (2):303–341.
    The capacity to collect and analyse data is growing exponentially. Referred to as ‘Big Data’, this scientific, social and technological trend has helped create destabilising amounts of information, which can challenge accepted social and ethical norms. Big Data remains a fuzzy idea, emerging across social, scientific, and business contexts sometimes seemingly related only by the gigantic size of the datasets being considered. As is often the case with the cutting edge of scientific and technological progress, understanding of the ethical implications (...)
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  • Ethics of the health-related internet of things: a narrative review.Brent Mittelstadt - 2017 - Ethics and Information Technology 19 (3):1-19.
    The internet of things is increasingly spreading into the domain of medical and social care. Internet-enabled devices for monitoring and managing the health and well-being of users outside of traditional medical institutions have rapidly become common tools to support healthcare. Health-related internet of things (H-IoT) technologies increasingly play a key role in health management, for purposes including disease prevention, real-time tele-monitoring of patient’s functions, testing of treatments, fitness and well-being monitoring, medication dispensation, and health research data collection. H-IoT promises many (...)
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  • Ethics and Epistemology in Big Data Research.Wendy Lipworth, Paul H. Mason, Ian Kerridge & John P. A. Ioannidis - 2017 - Journal of Bioethical Inquiry 14 (4):489-500.
    Biomedical innovation and translation are increasingly emphasizing research using “big data.” The hope is that big data methods will both speed up research and make its results more applicable to “real-world” patients and health services. While big data research has been embraced by scientists, politicians, industry, and the public, numerous ethical, organizational, and technical/methodological concerns have also been raised. With respect to technical and methodological concerns, there is a view that these will be resolved through sophisticated information technologies, predictive algorithms, (...)
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  • Designing the Health-related Internet of Things: Ethical Principles and Guidelines.Brent Mittelstadt - 2017 - Information 8 (3):77.
    The conjunction of wireless computing, ubiquitous Internet access, and the miniaturisation of sensors have opened the door for technological applications that can monitor health and well-being outside of formal healthcare systems. The health-related Internet of Things (H-IoT) increasingly plays a key role in health management by providing real-time tele-monitoring of patients, testing of treatments, actuation of medical devices, and fitness and well-being monitoring. Given its numerous applications and proposed benefits, adoption by medical and social care institutions and consumers may be (...)
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