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  1. Multi Scale Ethics—Why We Need to Consider the Ethics of AI in Healthcare at Different Scales.Melanie Smallman - 2022 - Science and Engineering Ethics 28 (6):1-17.
    Many researchers have documented how AI and data driven technologies have the potential to have profound effects on our lives—in ways that make these technologies stand out from those that went before. Around the world, we are seeing a significant growth in interest and investment in AI in healthcare. This has been coupled with rising concerns about the ethical implications of these technologies and an array of ethical guidelines for the use of AI and data in healthcare has arisen. Nevertheless, (...)
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  • “I would rather have it done by a doctor”—laypeople’s perceptions of direct-to-consumer genetic testing (DTC GT) and its ethical implications.Manuel Schaper, Sabine Wöhlke & Silke Schicktanz - 2019 - Medicine, Health Care and Philosophy 22 (1):31-40.
    Direct-to-consumer genetic testing has been available for several years now, with varying degrees of regulation across different countries. Despite a restrictive legal framework it is possible for consumers to order genetic tests from companies located in other countries. However, German laypeople’s awareness and perceptions of DTC GT services is still unexplored. We conducted seven focus groups with German laypeople to explore their perceptions of and attitudes towards commercial genetic testing and its ethical implications. Participants were critical towards DTC GT. Criticism (...)
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  • Anticipatory Governance in Biobanking: Security and Risk Management in Digital Health.Dagmar Rychnovská - 2021 - Science and Engineering Ethics 27 (3):1-18.
    Although big-data research has met with multiple controversies in diverse fields, political and security implications of big data in life sciences have received less attention. This paper explores how threats and risks are anticipated and acted on in biobanking, which builds research repositories for biomedical samples and data. Focusing on the biggest harmonisation cluster of biomedical research in Europe, BBMRI-ERIC, the paper analyses different logics of risk in the anticipatory discourse on biobanking. Based on document analysis, interviews with ELSI experts, (...)
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  • Biometric Technology and Ethics: Beyond Security Applications.Andrea North-Samardzic - 2020 - Journal of Business Ethics 167 (3):433-450.
    Biometric technology was once the purview of security, with face recognition and fingerprint scans used for identification and law enforcement. This is no longer the case; biometrics is increasingly used for commercial and civil applications. Due to the widespread diffusion of biometrics, it is important to address the ethical issues inherent to the development and deployment of the technology. This article explores the burgeoning research on biometrics for non-security purposes and the ethical implications for organizations. This will be achieved by (...)
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  • Is there a civic duty to support medical AI development by sharing electronic health records?Sebastian Müller - 2022 - BMC Medical Ethics 23 (1):1-12.
    Medical artificial intelligence (AI) is considered to be one of the most important assets for the future of innovative individual and public health care. To develop innovative medical AI, it is necessary to repurpose data that are primarily generated in and for the health care context. Usually, health data can only be put to a secondary use if data subjects provide their informed consent (IC). This regulation, however, is believed to slow down or even prevent vital medical research, including AI (...)
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  • What ethical approaches are used by scientists when sharing health data? An interview study.Deborah Mascalzoni, Heidi Beate Bentzen & Jennifer Viberg Johansson - 2022 - BMC Medical Ethics 23 (1):1-12.
    BackgroundHealth data-driven activities have become central in diverse fields (research, AI development, wearables, etc.), and new ethical challenges have arisen with regards to privacy, integrity, and appropriateness of use. To ensure the protection of individuals’ fundamental rights and freedoms in a changing environment, including their right to the protection of personal data, we aim to identify the ethical approaches adopted by scientists during intensive data exploitation when collecting, using, or sharing peoples’ health data.MethodsTwelve scientists who were collecting, using, or sharing (...)
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  • Ethical considerations about the collection of biological samples for genetic analysis in clinical trials.Inés Galende-Domínguez & Octavio M. Rivero-Lezcano - 2023 - Research Ethics 19 (2):220-226.
    Progress in precision medicine is being achieved through the design of clinical trials that use genetic biomarkers to guide stratification of patients and assignation to treatment or control groups. Genetic analysis of biomarkers is, therefore, essential to complete their objectives, and this involves the study of biological samples from donor patients that have been recruited according to criteria previously established in the design of the clinical trial. Nevertheless, it is becoming very common that, in the solicitation of biological samples, purposes (...)
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  • Prospective Intention-Based Lifestyle Contracts: mHealth Technology and Responsibility in Healthcare.Emily Feng-Gu, Jim Everett, Rebecca C. H. Brown, Hannah Maslen, Justin Oakley & Julian Savulescu - 2021 - Health Care Analysis 29 (3):189-212.
    As the rising costs of lifestyle-related diseases place increasing strain on public healthcare systems, the individual’s role in disease may be proposed as a healthcare rationing criterion. Literature thus far has largely focused on retrospective responsibility in healthcare. The concept of prospective responsibility, in the form of a lifestyle contract, warrants further investigation. The responsibilisation in healthcare debate also needs to take into account innovative developments in mobile health technology, such as wearable biometric devices and mobile apps, which may change (...)
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  • Accessing medical biobanks to solve crimes: ethical considerations.Nina F. de Groot, Britta C. van Beers, Lieven Decock & Gerben Meynen - 2021 - Journal of Medical Ethics 47 (7):502-509.
    Millions of human biological samples are stored worldwide for medical research or treatment purposes. These biospecimens are of enormous potential value to law enforcement as DNA profiles can be obtained from these samples. However, forensic use of such biospecimens raises a number of ethical questions. This article aims to explore ethical issues of using human bodily material in medical biobanks for crime investigation and prosecution purposes. Concerns about confidentiality, trust, autonomy and justice will be discussed. We explore how to balance (...)
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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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