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  1. Genetic Privacy: Might There Be a Moral Duty to Share One's Genetic Information?Heidi Malm - 2009 - American Journal of Bioethics 9 (6-7):52-54.
    In discussions about direct-to-consumer availability of genetic testing, much attention has been given to identifying the various risks and benefits that individuals might incur. For example, upon...
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  • Direct-to-Consumer Genomics and Research Ethics: Should a More Robust Informed Consent Process Be Included?Katherine Wasson - 2009 - American Journal of Bioethics 9 (6-7):56-58.
  • Medicine, market and communication: ethical considerations in regard to persuasive communication in direct-to-consumer genetic testing services.Manuel Schaper & Silke Schicktanz - 2018 - BMC Medical Ethics 19 (1):1-11.
    Commercial genetic testing offered over the internet, known as direct-to-consumer genetic testing (DTC GT), currently is under ethical attack. A common critique aims at the limited validation of the tests as well as the risk of psycho-social stress or adaption of incorrect behavior by users triggered by misleading health information. Here, we examine in detail the specific role of advertising communication of DTC GT companies from a medical ethical perspective. Our argumentative analysis departs from the starting point that DTC GT (...)
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  • Raising Genomic Citizens: Adolescents and the Return of Secondary Genomic Findings.Maya Sabatello & Paul S. Appelbaum - 2016 - Journal of Law, Medicine and Ethics 44 (2):292-308.
    Whole genome and exome sequencing techniques raise hope for a new scale of diagnosis, prevention, and prediction of genetic conditions, and improved care for children. For these hopes to materialize, extensive genomic research with children will be needed. However, the use of WGS/WES in pediatric research settings raises considerable challenges for families, researchers, and policy development. In particular, the possibility that these techniques will generate genetic findings unrelated to the primary goal of sequencing has stirred intense debate about whether, which, (...)
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  • Direct-to-Consumer Genomics, Social Networking, and Confidentiality.David B. Resnik - 2009 - American Journal of Bioethics 9 (6-7):45-46.
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  • Networking Genetics, Populations, and Race.Lynette Reid - 2009 - American Journal of Bioethics 9 (6-7):50-52.
  • The Apomediated World: Regulating Research When Social Media Has Changed Research.Dan O’Connor - 2013 - Journal of Law, Medicine and Ethics 41 (2):470-483.
    Social Media, like Facebook and Twitter, are having a profound effect on the way that human subjects research is being conducted. In light of the changes proposed in ANPRM, in this article I argue that traditional research ethics and regulations may not easily translate to the use of social media in human subjects research. Using the conceptual model of apomediation, which describes the peer-to-peer way in which health information is shared via social media, I suggest that we may need to (...)
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  • The Apomediated World: Regulating Research When Social Media Has Changed Research.Dan O’Connor - 2013 - Journal of Law, Medicine and Ethics 41 (2):470-483.
    Social media, meaning digital technologies and platforms such as blogs, wikis, forums, content aggregators, sharing sites, and social networks like Facebook and Twitter, have profoundly changed the way that information can be shared online. Now, almost anyone with a broadband internet connection or a smart phone can share ideas, data, and opinions with just about anyone else on the planet. This change has serious implications for the way in which human subjects research can be conducted and, concomitantly, for the ways (...)
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  • Apomediation and the Significance of Online Social Networking.Dan O'Connor - 2009 - American Journal of Bioethics 9 (6-7):25-27.
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  • Personal Genomics as an Interactive Web Broadcast.Ainsley J. Newson - 2009 - American Journal of Bioethics 9 (6-7):27-29.
  • Personal Genomics: Democratization, or Empowerment, or 'Something'.Chris MacDonald & Nancy Walton - 2009 - American Journal of Bioethics 9 (6-7):46-48.
  • Protecting Posted Genes: Social Networking and the Limits of GINA.Sandra Soo-Jin Lee & Emily Borgelt - 2014 - American Journal of Bioethics 14 (11):32-44.
    The combination of decreased genotyping costs and prolific social media use is fueling a personal genetic testing industry in which consumers purchase and interact with genetic risk information online. Consumers and their genetic risk profiles are protected in some respects by the 2008 federal Genetic Information Nondiscrimination Act (GINA), which forbids the discriminatory use of genetic information by employers and health insurers; however, practical and technical limitations undermine its enforceability, given the everyday practices of online social networking and its impact (...)
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  • Genes wide open: Data sharing and the social gradient of genomic privacy.Tobias Haeusermann, Marta Fadda, Alessandro Blasimme, Bastian Greshake Tzovaras & Effy Vayena - forthcoming - AJOB Empirical Bioethics:1-15.
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  • Personal genome testing: Test characteristics to clarify the discourse on ethical, legal and societal issues.Eline M. Bunnik, Maartje H. N. Schermer & A. Cecile J. W. Janssens - 2011 - BMC Medical Ethics 12 (1):11.
    Background: As genetics technology proceeds, practices of genetic testing have become more heterogeneous: many different types of tests are finding their way to the public in different settings and for a variety of purposes. This diversification is relevant to the discourse on ethical, legal and societal issues (ELSI) surrounding genetic testing, which must evolve to encompass these differences. One important development is the rise of personal genome testing on the basis of genetic profiling: the testing of multiple genetic variants simultaneously (...)
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  • Information and Communication Technologies, Genes, and Peer-Production of Knowledge to Empower Citizens’ Health.Annibale Biggeri & Mariachiara Tallacchini - 2018 - Science and Engineering Ethics 24 (3):871-885.
    The different and seemingly unrelated practices of Information and Communication Technologies used to collect and share personal and scientific data within networked communities, and the organized storage of human genetic samples and information—namely biobanking—have merged with another recent epistemic and social phenomenon, namely scientists and citizens collaborating as “peers” in creating knowledge. These different dimensions can be found in joint initiatives where scientists-and-citizens use genetic information and ICT as powerful ways to gain more control over their health and the environment. (...)
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  • Virtual Geographies of Belonging: The Case of Soviet and Post-Soviet Human Genetic Diversity Research.Susanne Bauer - 2014 - Science, Technology, and Human Values 39 (4):511-537.
    This article explores human genetic diversity research east of what was the iron curtain. It follows the technique of “genogeographic mapping” back to its early Soviet origins and up to the post-Soviet era. Bringing together the history of genogeographic mapping and genealogies of “nationality” and “race” in the USSR, I discuss how populations and belonging were enacted in late Soviet biological anthropology and human genetics. While genogeography had originally been developed within the early Soviet livestock economy, anthropologists, public health scientists, (...)
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