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  1. Human genetic biobanks in Asia: politics of trust and scientific advancement.Margaret Sleeboom-Faulkner (ed.) - 2009 - New York: Routledge.
    This volume investigates human genetic biobanking and its regulation in various Asian countries and areas, including Japan, Mainland China, Taiwan, Hong Kong, ...
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  • Rethinking Research Ethics.Rosamond Rhodes - 2010 - American Journal of Bioethics 10 (10):19-36.
    Contemporary research ethics policies started with reflection on the atrocities perpetrated upon concentration camp inmates by Nazi doctors. Apparently, as a consequence of that experience, the policies that now guide human subject research focus on the protection of human subjects by making informed consent the centerpiece of regulatory attention. I take the choice of context for policy design, the initial prioritization of informed consent, and several associated conceptual missteps, to have set research ethics off in the wrong direction. The aim (...)
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  • Why Communities and Their Goods Matter: Illustrated with the Example of Biobanks.Heather Widdows & Sean Cordell - 2011 - Public Health Ethics 4 (1):14-25.
    It is now being recognized across the spectrum of bioethics, and particularly in genetics and population ethics, that to focus on the individual person, and thereby neglect communities and the goods which accrue to them, is to fail to see all the ethically significant features of a range of ethical issues. This article argues that more work needs to be done in order for bioethics to respect not only goods (such as rights and interests) of communities per se, but also (...)
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  • Public health research ethics: A research agenda.Marcel Verweij & Angus Dawson - 2009 - Public Health Ethics 2 (1):1-6.
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  • Changing Ethical Frameworks: From Individual Rights to the Common Good?Margit Sutrop - 2011 - Cambridge Quarterly of Healthcare Ethics 20 (4):533-545.
    Whereas in the 1970s early bioethicists believed that bioethics is an arena for the application of philosophical theories of utilitarianism, deontology, and natural law thinking, contemporary policy-oriented bioethicists seem rather to be keen on framing ethical issues through political ideologies. Bioethicists today are often labeled “liberal” or “communitarian,” referring to their different understandings of the relationship between the individual and society. Liberal individualism, with its conceptual base of autonomy, dignity, and privacy, enjoyed a long period of dominance in bioethics, but (...)
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  • Health Ideologies, Objectivism, and the Common Good: On the Rights of Dissidents.Roger Strand - 2011 - Cambridge Quarterly of Healthcare Ethics 20 (4):605-611.
    With the development of large-scale health registries and human biobanks to be used as research infrastructures, bioethicists, lawyers, philosophers, and social scientists have worked intensely to cast light on current challenges to the principle of informed consent.
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  • Catharsis and Moral Therapy I: A Platonic Account.Jan Helge Solbakk - 2006 - Medicine, Health Care and Philosophy 9 (1):57-67.
    This paper aims at analysing the ancient Greek notions of catharsis (clearing up, cleaning), to holon (the whole) and therapeia (therapy, treatment, healing) to assess whether they may be of help in addressing a set of questions concerning the didactics of medical ethics: What do medical students actually experience and learn when they attend classes of medical ethics? How should teachers of medical ethics proceed didactically to make students benefit morally from their teaching? And finally, to what extent and in (...)
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  • The consent problem within DNA biobanks.Darren Shickle - 2006 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 37 (3):503-519.
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  • The consent problem within DNA biobanks.Darren Shickle - 2004 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 37 (3):503-519.
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  • Expanding the Ethical Analysis of Biobanks.Mark A. Rothstein - 2005 - Journal of Law, Medicine and Ethics 33 (1):89-101.
    Biobanks are repositories of human biological materials collected for biomedical research. There are over 300 million stored specimens in the United States, and the number grows by 20 million per year. In the post-genome world of high throughput gene sequencing and computational biology, biobanks hold the promise of facilitating large-scale research studies. New organizational and operational models of research repositories also raise complex issues of big science, big business, and big ethical concerns.
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  • Expanding the Ethical Analysis of Biobanks.Mark A. Rothstein - 2005 - Journal of Law, Medicine and Ethics 33 (1):89-101.
    Biobanks are repositories of human biological materials collected for biomedical research. There are over 300 million stored specimens in the United States, and the number grows by 20 million per year. In the post-genome world of high throughput gene sequencing and computational biology, biobanks hold the promise of facilitating large-scale research studies. New organizational and operational models of research repositories also raise complex issues of big science, big business, and big ethical concerns.
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  • Tackling Epistemological Naivety: Large-Scale Information Systems and the Complexities of the Common Good.Kjetil Rommetveit - 2011 - Cambridge Quarterly of Healthcare Ethics 20 (4):584-595.
    We have arrived at a situation in which policymakers and ethicists are considering abandoning informed consent in the governance of certain new technologies, many of which are related to large-scale information systems. A paradigm case is the problem with using individuals’ informed consent to regulate biobanks. As sometimes suggested, there is a need for “new ethical frameworks.”.
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  • Coding and Consent: Moral Challenges of the Database Project in Iceland.VilhjÁlmur Rnason - 2004 - Bioethics 18 (1):27-49.
    ABSTRACT A major moral problem in relation to the deCODE genetics database project in Iceland is that the heavy emphasis placed on technical security of healthcare information has precluded discussion about the issue of consent for participation in the database. On the other hand, critics who have emphasised the issue of consent have most often demanded that informed consent for participation in research be obtained. While I think that individual consent is of major significance, I argue that this demand for (...)
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  • Rethinking research ethics.Rosamond Rhodes - 2005 - American Journal of Bioethics 5 (1):7 – 28.
    Contemporary research ethics policies started with reflection on the atrocities perpetrated upoconcentration camp inmates by Nazi doctors. Apparently, as a consequence of that experience, the policies that now guide human subject research focus on the protection of human subjects by making informed consent the centerpiece of regulatory attention. I take the choice of context for policy design, the initial prioritization of informed consent, and several associated conceptual missteps, to have set research ethics off in the wrong direction. The aim of (...)
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  • Human Tissue Samples and Ethics: – Attitudes of the General Public in Sweden to Biobank Research.Tore Nilstun & Göran Hermerén - 2005 - Medicine, Health Care and Philosophy 9 (1):81-86.
    Purpose: To survey the attitudes of the general public in Sweden to biobank research and to discuss the findings in the light of some well-known ethical principles.Methods: A questionnaire was used to survey the opinions of the general public in Sweden, and an ethical analysis (using the principles of autonomy, non-maleficence, beneficence and justice) was performed to discuss the possible conditions of such research.Findings: Between 3 and 9% answered that they did not want their samples to be collected and stored (...)
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  • From genomic databases to translation: a call to action.B. M. Knoppers, J. R. Harris, P. R. Burton, M. Murtagh, D. Cox, M. Deschenes, I. Fortier, T. J. Hudson, J. Kaye & K. Lindpaintner - 2011 - Journal of Medical Ethics 37 (8):515-516.
    The rapid rise of international collaborative science has enabled access to genomic data. In this article, it is argued that to move beyond mapping genomic variation to understanding its role in complex disease aetiology and treatment will require extending data sharing for the purposes of clinical research translation and implementation.
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  • Ethical Endgames: Broad Consent for Narrow Interests; Open Consent for Closed Minds.Jan Reinert Karlsen, Jan Helge Solbakk & Søren Holm - 2011 - Cambridge Quarterly of Healthcare Ethics 20 (4):572-583.
    The ongoing legal and bioethics debates on consent requirements for collecting, storing, and utilizing human biological material for purposes of basic and applied research—that is, genomic research biobanking—have already managed to pass through three ostensibly dissimilar stages.
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  • Gene concepts and Genethics: Beyond exceptionalism.Péter Kakuk - 2008 - Science and Engineering Ethics 14 (3):357-375.
    The discursive explosion that was provoked by the new genetics could support the impression that the ethical and social problems posed by the new genetics are somehow exceptional in their very nature. According to this view we are faced with special ethical and social problems that create a challenge so fundamental that the special label of genethics is needless to justify. The historical account regarding the evolution of the gene concepts could serve us to highlight the limits of what we (...)
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  • Broadening consent--and diluting ethics?B. Hofmann - 2009 - Journal of Medical Ethics 35 (2):125-129.
    Biobank research is potentially fruitful. It is argued that broad consent is acceptable for future research on biological material because a) the benefit is high, b) it pays respect to people’s autonomy, c) it is consistent with current practices and d) because the risk is low. Furthermore, broad consent should be allowed if information is handled safely, people can withdraw and expanded research should be approved by an ethics review board. However, these arguments are flawed and the criteria for broad (...)
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  • The consent problem within DNA biobanks.Darren Shickle - 2006 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 37 (3):503-519.
    Large prospective biobanks are being established containing DNA, lifestyle and health information in order to study the relationship between diseases, genes and environment. Informed consent is a central component of research ethics protection. Disclosure of information about the research is an essential element of seeking informed consent. Within biobanks, it is not possible at recruitment to describe in detail the information that will subsequently be collected because people will not know which disease they will develop. It will also be difficult (...)
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  • The future of bioethics: Three dogmas and a cup of hemlock.Angus Dawson - 2010 - Bioethics 24 (5):218-225.
    In this paper I argue that bioethics is in crisis and that it will not have a future unless it begins to embrace a more Socratic approach to its leading assumptions. The absence of a critical and sceptical spirit has resulted in little more than a dominant ideology. I focus on three key issues. First, that too often bioethics collapses into medical ethics. Second, that medical ethics itself is beset by a lack of self-reflection that I characterize here as a (...)
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  • DNA databanks and consent: A suggested policy option involving an authorization model. [REVIEW]Timothy Caulfield, Ross Upshur & Abdallah Daar - 2003 - BMC Medical Ethics 4 (1):1-4.
    Background Genetic databases are becoming increasingly common as a means of determining the relationship between lifestyle, environmental exposures and genetic diseases. These databases rely on large numbers of research subjects contributing their genetic material to successfully explore the genetic basis of disease. However, as all possible research questions that can be posed of the data are unknown, an unresolved ethical issue is the status of informed consent for future research uses of genetic material. Discussion In this paper, we discuss the (...)
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  • Coding and Consent: Moral Challenges of the Database Project in Iceland.Vilhjálmur Árnason - 2004 - Bioethics 18 (1):27-49.
    ABSTRACT A major moral problem in relation to the deCODE genetics database project in Iceland is that the heavy emphasis placed on technical security of healthcare information has precluded discussion about the issue of consent for participation in the database. On the other hand, critics who have emphasised the issue of consent have most often demanded that informed consent for participation in research be obtained. While I think that individual consent is of major significance, I argue that this demand for (...)
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  • DNA databanks and consent: A suggested policy option involving an authorization model.Daar Abdallah, E. G. Upshur Ross & Caulfield Timothy - 2003 - BMC Medical Ethics 4 (1):1.
    Background Genetic databases are becoming increasingly common as a means of determining the relationship between lifestyle, environmental exposures and genetic diseases. These databases rely on large numbers of research subjects contributing their genetic material to successfully explore the genetic basis of disease. However, as all possible research questions that can be posed of the data are unknown, an unresolved ethical issue is the status of informed consent for future research uses of genetic material. Discussion In this paper, we discuss the (...)
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  • Ethical implications of the use of whole genome methods in medical research.Jane Kaye, Paula Boddington, Jantina de Vries, Naomi Hawkins & Karen Melham - unknown
    The use of genome-wide association studies in medical research and the increased ability to share data give a new twist to some of the perennial ethical issues associated with genomic research. GWAS create particular challenges because they produce fine, detailed, genotype information at high resolution, and the results of more focused studies can potentially be used to determine genetic variation for a wide range of conditions and traits. The information from a GWA scan is derived from DNA that is a (...)
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