Results for ' Biotechnology'

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  1. Biotechnology: an agricultural revolution.Public Acceptability of Agricultural Biotechnology - 1995 - In T. B. Mepham, Gregory A. Tucker & Julian Wiseman (eds.), Issues in agricultural bioethics. Nottingham: Nottingham University Press.
     
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  2. The unexamined assumptions of intellectual property.Biotechnological Innovation - 2004 - Public Affairs Quarterly 18 (4).
  3.  16
    Biotechnology, Human Nature, and Christian Ethics.Gerald McKenny - 2018 - New York, NY: Cambridge University Press.
    In public debates over biotechnology, theologians, philosophers, and political theorists have proposed that biotechnology could have significant implications for human nature. They argue that ethical evaluations of biotechnologies that might affect human nature must take these implications into account. In this book, Gerald McKenny examines these important yet controversial arguments, which have in turn been criticized by many moral philosophers and professional bioethicists. He argues that Christian ethics is, in principle, committed to some version of the claim that (...)
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  4.  22
    Biotechnology and Faith. Relativism in the Postmodern Moral. A Christian-Orthodox Approach.Stefan Iloaie - 2009 - Journal for the Study of Religions and Ideologies 8 (22):38-52.
    The modern man lives in a more and more technologized world. This fact is obvious at every step of our life and, in the last decades, it went beyond any expectation. By using science and technology to procreate, prolong and sustain life, the man risks being dehumanized. Bioethics raises many questions that are waiting for an answer, and this answer is given by each person, according to his own values. One of the major challenges in the field of bioethics is (...)
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  5.  38
    Environmental Biotechnology Research: Challenges and Opportunities in Latin America.Janeth Sanabria - 2014 - Journal of Agricultural and Environmental Ethics 27 (4):681-694.
    Latin American countries have an extensive biological diversity and a tropical or subtropical climate. This condition has advantages for development and for the implementation of biotechnological solutions for environmental problems. Environmental biotechnology could be used to enhance biodegradation, waste recovery, and also for the development of biotechnology-based products to diagnose and reduce environmental impacts such as biosensors, biopesticides, biofertilizers and biofuels. To generate new environmental biotechnological products, Latin American countries must not only overcome the known limitations associated with (...)
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  6.  4
    Biotechnology in Our Lives.Sheldon Krimsky & Jeremy Gruber (eds.) - 2013 - Skyhorse Publishing.
    For a quarter of a century, the Council for Responsible Genetics has provided a unique historical lens into the modern history, science, ethics, and politics of genetic technologies. Since 1983 the Council has had leading scientists, activists, science writers, and public health advocates researching and reporting on a broad spectrum of issues, including genetically engineered foods, biological weapons, genetic privacy and discrimination, reproductive technologies, and human cloning. Biotechnology in Our Lives examines how these issues affect us daily whether we (...)
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  7.  11
    Biotechnology.Jennifer Kuzma - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 523–531.
    This chapter contains sections titled: Decision‐making about New Technologies Case Studies for Biotechnology Guidance from the Public References and Further Reading.
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  8.  51
    Biotechnology is compatible with sustainable agriculture.Donald Duvick - 1995 - Journal of Agricultural and Environmental Ethics 8 (2):112-125.
    Biotechnology can provide appropriate new tools for use in solution of specific problems in sustainable agriculture. Its usefulness will depend in large part on the degree to which sustainable agriculturists understand the utility of biotechnology and apply it toward ends they deem important. Biotechnology can give little assistance to sustainable agriculture in the short term. It can be more useful in the medium term, and it could be highly useful in the long term as an integral part (...)
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  9.  45
    Cyborgs, biotechnologies, and informatics in health care – new paradigms in nursing sciences.Ana Paula Teixeira de Almeida Vieira Monteiro - 2016 - Nursing Philosophy 17 (1):19-27.
    Nursing Sciences are at a moment of paradigmatic transition. The aim of this paper is to reflect on the new epistemological paradigms of nursing science from a critical approach. In this paper, we identified and analysed some new research lines and trends which anticipate the reorganization of nursing sciences and the paradigms emerging from nursing care: biotechnology‐centred knowledge; the interface between nursing knowledge and new information technologies; body care centred knowledge; the human body as a cyborg body; and the (...)
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  10.  67
    Agricultural Biotechnology and Environmental Justice.Kristen Hessler - 2011 - Environmental Ethics 33 (3):267-282.
    Agricultural biotechnology has long been criticized from an environmental justice perspective. However, an analysis, using golden rice as a case study, shows that golden rice is not susceptible to the main criticisms that are appropriate when directed at most products of agricultural biotechnology, and that golden rice has important humanitarian potential. For these reasons, an environmental justice evaluation of golden rice may need to be more nuanced and complex than a more traditional environmental ethics can provide. Study of (...)
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  11.  20
    Biotechnology, law, and bioethics: comparative perspectives.Romeo Casabona & Carlos María (eds.) - 1999 - Bruxelles: Bruylant.
    Fornece um panorama sobre os avanços biotecnológicos, dando ênfase aos aspectos jurídicos e éticos do impacto destes na área genética sobre o homem e o meio ambiente.
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  12.  48
    How biotechnology regulation sets a risk/ethics boundary.Les Levidow & Susan Carr - 1997 - Agriculture and Human Values 14 (1):29-43.
    In public debate over agricultural biotechnology, at issue hasbeen its self-proclaimed aim of further industrializingagriculture. Using languages of ’risk‘, critics and proponentshave engaged in an implicit ethics debate on the direction oftechnoscientific development. Critics have challenged thebiotechnological R&D agenda for attributing socio-agronomicproblems to genetic deficiencies, while perpetuating the hazardsof intensive monoculture. They diagnosed ominous links betweentechnological dependency and tangible harm from biotechnologyproducts.In response to scientific and public concerns, theEuropean Community enacted precautionary legislation for theintentional release of genetically modified organisms (...)
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  13.  21
    Biotechnological Creations, Life and the State of Indistinction.Anuradha Nayak - 2017 - Balkan Journal of Philosophy 9 (2):91-100.
    Humanity is at crossroads of evolution. Modernity has established its omnipresence through science and technology. The impact is so significant that now it has penetrated our genetic structure through biotechnological creations. This brings into question the very foundation of the ideological life on which the edifice of the social structure is built. These new modalities raise unprecedented issues, such as: what is our understanding of life in relation to biotechnological creations, where is the original biological life positioned in such circumstances, (...)
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  14.  70
    Biotechnology - the Making of a Global Controversy.Martin W. Bauer & G. Gaskell (eds.) - 2002 - Cambridge University Press.
    Biotechnology is one of the fastest-growing areas of scientific, technical and industrial innovation and one of the most controversial. As developments have occurred such as genetic test therapies and the breeding of genetically modified food crops, so the public debates have become more heated and grave concerns have been expressed about access to genetic information, labelling of genetically modified foods and human and animal cloning. Across Europe, public opinion has become a crucial factor in the ability of governments and (...)
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  15.  44
    Genetic Biotechnology and Evolutionary Theory: Some Unsolicited Advice to Rhetors.David Depew - 2001 - Journal of Medical Humanities 22 (1):15-28.
    In his book The Biotech Century Jeremy Rifkin makes arguments about the dangers of market-driven genetic biotechnology in medical and agricultural contexts. Believing that Darwinism is too compromised by a competitive ethic to resist capitalist depredations of the genetic commons, and perhaps hoping to pick up anti-Darwinian allies, he turns for support to unorthodox non-Darwinian views of evolution. The Darwinian tradition, more closely examined, contains resources that might better serve his argument. The robust tradition associated with Theodosius Dobzhansky, Ernst (...)
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  16.  60
    Crop Biotechnology for the Environment?Sven Ove Hansson & Karin Joelsson - 2013 - Journal of Agricultural and Environmental Ethics 26 (4):759-770.
    In public debates, agricultural biotechnology is almost invariably discussed as a potential threat to the environment and to human health. Without downplaying the risks associated with this technology we emphasize that if properly regulated, it can be a forceful tool to solve environmental problems and promote human health. Agricultural biotechnology can reduce environmental problems in at least three ways: it can diminish the need for environmentally damaging agricultural practices such as pesticides, fertilizers, tillage, and irrigation. It can reduce (...)
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  17.  56
    Biotechnology and global justice.Tony Smith - 1999 - Journal of Agricultural and Environmental Ethics 11 (3):219-242.
    Agricultural biotechnology is a social pursuit, undertaken by social agents within social institutions.1 Any attempt to explore the social dimensions of a profound and complex technological development such as biotechnology is bound to be controversial, and any attempt to formulate an ethical assessment of such a development is bound to be yet more complex and controversial. This surely explains why many choose to ignore these inquiries. But the social dimensions of biotechnology are just as real as viruses, (...)
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  18.  87
    Biotechnology is not compatible with sustainable agriculture.Martha L. Crouch - 1995 - Journal of Agricultural and Environmental Ethics 8 (2):98-111.
    Biotechnology increases commercialization of food production, which competes with food for home use. Most people in the world grow their own food, and are more secure without the mediation of the market. To the extent that biotechnology enhances market competitiveness, world food security will decrease. This instability will result in a greater gap between rich and poor, increasing poverty of women and children, less ability and incentive to protect the environment, and greater need for militarization to maintain order. (...)
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  19.  41
    Biotechnology and the Environment.Matti Häyry & Tuija Takala - 1999 - The Proceedings of the Twentieth World Congress of Philosophy 1:169-178.
    Rights can be founded in a variety of ethical systems—e.g., on natural law, on the duties postulated by deontological ethics, and on the consequences of our actions. The concept of risk we will outline supports a theory of rights which provides at least individual human beings with the entitlement not to be harmed by the environmental impacts of biotechnology. The analysis can, we believe, also be extended to the rights of animals as well as ecosystems, both of which can (...)
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  20.  18
    Genopolitics: Biotechnology Norms and the Liberal International Order.Jonathan Moreno - 2022 - In Tomas Zima & David N. Weisstub (eds.), Medical Research Ethics: Challenges in the 21st Century. Springer Verlag. pp. 35-45.
    What happens in the world’s most advanced life sciences laboratories, why those activities are important, and whether and how they can be brought under a uniform governance framework might be considered exquisitely esoteric matters in the context of the great geopolitical questions of our time. Nonetheless, the emerging issues in biotechnology—the use of living organisms to create new products and especially in the control of the human genome—represent a useful stress test for the future of the norms inherent in (...)
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  21.  16
    A Biotechnology Patent Pool: An Idea Whose Time Has Come?David B. Resnik - 2003 - Journal of Philosophy, Science and Law 3:1-22.
    This paper discusses the idea of forming a patent pool in order to address some of the licensing problems in the biotechnology industry. The pool would be an independent, non-profit corporation that would manage patents and have the authority to grant licenses. The patent pool would not be a purely altruistic venture, since it would charge licensing fees. The pool would charge the market price for licensing services and reimburse patent holders for licensing activities. The pool would also provide (...)
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  22. Biotechnology, Justice and Health.Ruth Faden & Madison Powers - 2013 - Journal of Practical Ethics 1 (1):49-61.
    New biotechnologies have the potential to both dramatically improve human well-being and dramatically widen inequalities in well-being. This paper addresses a question that lies squarely on the fault line of these two claims: When as a matter of justice are societies obligated to include a new biotechnology in a national healthcare system? This question is approached from the standpoint of a twin aim theory of justice, in which social structures, including nation-states, have double-barreled theoretical objectives with regard to human (...)
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  23.  13
    Ethics & Biotechnology.Anthony Dyson & John Harris - 1994 - Routledge.
    The development of biotechnology has produced nothing short of a revolution, both in our capacity to manipulate living things from single plant cells to human nature itself, but also to manufacture brand new life forms. This power to shape and create forms of life has sometimes been described as the power to "play God" and this book is about the ethics of "playing God" in the field of biotechnology. International scholars cover moral dilemmas posed by biotechnology, from (...)
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  24. Biotechnology, Ethics, and the Politics of Cloning.Steven Best & Douglas Kellner - unknown
    As we move into a new millennium fraught with terror and danger, a global postmodern cosmopolis is unfolding in the midst of rapid evolutionary and social changes co-constructed by science, technology, and the restructuring of global capital. We are quickly morphing into a new biological and social existence that is ever-more mediated and shaped by computers, mass media, and biotechnology, all driven by the logic of capital and a powerful emergent technoscience. In this global context, science is no longer (...)
     
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  25.  41
    Biotechnology, ethics and education.Peter John Fitzsimons - 2006 - Studies in Philosophy and Education 26 (1):1-11.
    Fundamental differences between current and past knowledge in the field of biotechnology mean that we now have at our disposal the means to irreversibly change what is meant by ‘human nature’. This paper explores some of the ethical issues that accompany the attempt to increase scientific control over the human genetic code in what amounts to a diminishing of difference and the reduction of human life to scientific explanations at the expense of spiritual, cultural and communal considerations. Within such (...)
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  26. Biotechnology and Monstrosity: Why We Should Pay Attention to the "Yuk Factor".Mary Midgley - 2000 - Hastings Center Report 30 (5):7-15.
    We find our way in the world partly by means of the discriminatory power of our emotions. The gut sense that something is repugnant or unsavory—the sort of feeling that many now have about various forms of biotechnology—sometimes turns out to be rooted in articulable and legitimate objections, which with time can be spelled out, weighed, and either endorsed or dismissed. But we ought not dismiss the emotional response at the outset as “mere feeling.”.
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  27.  28
    (1 other version)A biotechnological agenda for the third world.Daniel J. Goldstein - 1989 - Journal of Agricultural and Environmental Ethics 2 (1):37-51.
    Third World countries should exploit the genetic information stored in their flora and fauna to develop independent and highly competitive biotechnological and pharmaceutical industries. The necessary condition for this policy to succeed is the reshaping of their universities and hospitals—to turn them into high-caliber research institutions dedicated to the creation of original knowledge and biomedical invention. Part of the service of the Third World foreign debt should be co-invested with the lending banks in high technology enterprises. This should be complemented (...)
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  28.  47
    Biotechnology as End Game: Ontological and Ethical Collapse in the “Biotech Century”.Zipporah Weisberg - 2015 - NanoEthics 9 (1):39-54.
    I argue in this paper that animal biotechnology constitutes a dangerous ontological collapse between animals and the technical-economic apparatus. By ontological collapse, I mean the elimination of fundamental ontological tensions between embodied subjects and the principles of scientific, technological, and economic rationalization. Biotechnology imposes this collapse in various ways: by genetically “reprogramming” animals to serve as uniform commodities, by abstracting them into data and code, and, in some cases, by literally manipulating their movements with computer technologies. These and (...)
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  29.  45
    Biotechnology and commodification within health care.Mark J. Hanson - 1999 - Journal of Medicine and Philosophy 24 (3):267 – 287.
    The biotechnology industry's intellectual property claims contribute to a subtle but not insignificant encroachment of commodification within health care. Drawing on the conceptual framework of Margaret Jane Radin, I argue that patent claims on human biological materials may commodify that with which our personhood and individuality is intertwined but that such commodification is broad and incomplete. Patents on nonhuman biological organisms contribute to a more materialistic understanding of them but do not significantly change our relationship to them. The systemic (...)
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  30.  55
    Agricultural biotechnology and the future benefits argument.Jeffrey Burkhardt - 2001 - Journal of Agricultural and Environmental Ethics 14 (2):135-145.
    In the face of criticisms about the current generationof agricultural biotechnology products, some proponents ofagricultural biotechnology offer a ``future benefitsargument''''(FBA), which is a utilitarian ethical argument thatattempts to justify continued R&D. This paper analyzes severallogical implications of the FBA. Among these are that acceptanceof the FBA implies (1) acceptance of a precautionary approach torisk, (2) the need for a more proportional and equitabledistribution of the benefits of agricultural biotechnology, andmost important, (3) the need to reorient and restructurebiotechnology (...)
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  31.  45
    Des biotechnologies au biopouvoir, de la bioéthique aux biopolitiques.Frédéric Keck - 2003 - Multitudes 2 (2):179-187.
    This article reflects upon the notion of biopower deriving from Paul Rabinow’s work French DNA. This book undertakes an analysis of the relations between biotechnologies analysis of the relation between biotechnologies and bioethics in France informed by Foucault’s concept of biopower. We can retain two theses from this account: biotechnologies pluralise biopower and take it to the limit towards beings situated at the limits of life; bioethics fails to constitute a biopolitics because it is a discourse of sacralisation and not (...)
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  32.  44
    Biotechnology, ethics, and the structure of agriculture.Jeffrey Burkhardt - 1988 - Agriculture and Human Values 5 (3):53-60.
    The “new” agricultural biotechnologies are presently high-priority items on the national research agenda. The promise of increased efficiency and productivity resulting from products and processes derived from biotech is thought to justify the commitment to R&D. Nevertheless, critics challenge the environmental safety as well as political-economic consequences of particular products of biotech, notably, ice-nucleating bacteria and the bovine growth hormone. In this paper the critics' arguments are analyzed in explicitly ethical terms, and assessed as to their relative merits. In some (...)
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  33. Food Biotechnology in Ethical Perspective.Paul Thompson - 2007 - Environmental Values 16 (4):544-547.
     
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  34.  22
    Biotechnology and Economy: An ethical conflict of interest?Brigitte Jansen - 2004 - Global Bioethics 17 (1):203-209.
    When confronting the issues related to developments in Biotechnology, we must repeatedly ask ourselves anew what can and cannot be justified in an ethical sense. This is because radically new ethical questions seem to arise through innovative techniques such as stem cell research or GMOs as well as in the so-called “economic area”. This paper focuses more on society than on economy, because the term “economic area” is (from my point of view) a synonym for the perception of society. (...)
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  35.  24
    Biotechnology and the Animal Issue.Anna S. Olsson & Peter Sandøe - 2004 - Global Bioethics 17 (1):39-49.
    Both scientists and representatives of industry claim that important advantages can be secured through advances in biotechnology. However, the European public views new developments with caution, in particular when the applications concern animals and food. These differences in attitude cannot be explained merely in terms of differences in knowledge but also seem to be the upshot of contrasting values. One way to understand moral opinions and values is to view them against the background of so-called ethical theories. In this (...)
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  36.  54
    Biotechnology and the Utilitarian Argument for Patents.Michele Svatos - 1996 - Social Philosophy and Policy 13 (2):113.
    Biotechnology surpasses even computer technology in predictions of its potential for revolutionary effects on humankind. It includes agribusiness and phar-maceuticals. The U.S. government began investing heavily in biotechnology research in the 1980s, and by 1987 had spent approximately $2.7 billion to support research and development, including $150 million for agricultural biotechnology. The approximately sixty U.S. biotechnology companies invested $3.2 billion in R and D in 1991 alone, with a total of more than $10 billion spent since (...)
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  37.  49
    Biotechnologizing Jatropha for local sustainable development.Daniel Puente-Rodríguez - 2010 - Agriculture and Human Values 27 (3):351-363.
    This article explores whether and how the biotechnologization process that the fuel-plant Jatropha curcas is undergoing might strengthen local sustainable development. It focuses on the ongoing efforts of the multi-stakeholder network Gota Verde to harness Jatropha within local small-scale production systems in Yoro, Honduras. It also looks at the genomics research on Jatropha conducted by the Dutch research institute Plant Research International, specifically addressing the ways in which that research can assists local development in Honduras. A territorial approach is applied (...)
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  38.  35
    Biotechnology and Environmental Pollution.Dean W. Boening - 1999 - Environmental Ethics 21 (1):111-112.
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  39.  33
    Special Communication: Biotechnology From the Perspective of Iranian Law.Hamid Reza Salehi - 2014 - Journal of Bioethical Inquiry 11 (2):125-130.
    IntroductionNowadays, biotechnology has a significant influence on different aspects of human life. The applications of biotechnology are so broad, and the advantages so compelling, that virtually every industry is using this technology. Developments are under way in areas as diverse as pharmaceuticals, diagnostics, textiles, aquaculture, forestry, chemicals, household products, environmental cleanup, food processing, and forensics, to name a few. Biotechnology is enabling these industries to make new or better products, often with greater speed, efficiency, and flexibility. (...) is any technological application that uses biological systems, living organisms, or derivatives thereof to make or modify products or processes for specific use. It applies the knowledge of biology to enhance and improve the environment, health, and food supply. Using biotechnology, scientists work to develop environment-friendly alternatives to fossil fuels and plastics; new medicines, vaccines, and. (shrink)
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  40.  22
    European Biotechnology Regulation: Framing the Risk Assessment of a Herbicide-Tolerant Crop.Rene von Schomberg, David Wield, Susan Carr & Les Levidow - 1997 - Science, Technology and Human Values 22 (4):472-505.
    As products of the "new biotechnology," genetically modified organisms have provoked a wide-ranging risk debate on potential harm, especially from herbicide-tolerant crops. In response to this legitimacy problem, the European Community adopted precautionary legislation, which left open the definition of environmental harm. When the U.K. proposed Europe-wide market approval of a herbicide-tolerant oilseed rape, the proposal encountered dissent from some countries and environmentalist groups. Further debate on normative judgments became necessary to implement the precaution ary legislation. In dispute were (...)
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  41.  78
    Biotechnology and Human Dignity.Emmanuel Agius - 2011 - Human Reproduction and Genetic Ethics 17 (2):155-184.
    The precise meaning of “human dignity” is increasingly being questioned in ethics and law. Is human dignity an adequate guide to policymaking in today’s biotechnological era? This article is an attempt to answer this thorny issue. The emergence of the concept of human dignity as a key point of reference for the regulation of modern science and technology in the European Union is evaluated. The main contribution of this article is to prove that in EU Directives and Recommendations, human dignity (...)
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  42.  48
    Biotechnology and the Normative Significance of Human Nature: A Contribution from Theological Anthropology.Gerald McKenny - 2013 - Studies in Christian Ethics 26 (1):18-36.
    Does human nature possess normative significance? If so, what is it and what implications does it have for biotechnology? This essay critically examines three answers to these questions. One answer focuses on human nature as the ground of natural goods or goods dependent on human nature, another answer finds normative significance in the indeterminacy or malleability of human nature, and a third answer treats human nature as a natural sign of divine grace. Kathryn Tanner, who offers the second answer, (...)
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  43.  16
    From Biotechnology to Nanotechnology: What Can We Learn from Earlier Technologies?Michael D. Mehta - 2004 - Bulletin of Science, Technology and Society 24 (1):34-39.
    Using Canada as a case study, this article argues that regulating biotechnology and nanotechnology is made unnecessarily complex and inherently unstable because of a failure to consult the public early and of-ten enough. Furthermore, it is argued that future regulators (and promoters) of nanotechnology may learn valuable lessons from the mistakes made in regulating biotechnology.
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  44. Biotechnology, nanotechnology, media, and public opinion.Susanna Priest - 2008 - In Kenneth H. David & Paul B. Thompson (eds.), What Can Nanotechnology Learn From Biotechnology?: Social and Ethical Lessons for Nanoscience From the Debate Over Agrifood Biotechnology and Gmos. Elsevier/Academic Press.
     
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  45.  34
    Food Biotechnology's Challenge to Cultural Integrity and Individual Consent.Paul B. Thompson - 1997 - Hastings Center Report 27 (4):34-39.
    Consumer response to genetically altered foods has been mixed in the United States. While transgenic crops have entered the food supply with little comment, other foods, such as the bioengineered tomato, have caused considerable controversy. Objections to genetically engineered food are varied, ranging from the religious to the aesthetic. One need not endorse these concerns to conclude that food biotechnology violates procedural protections of consumer sovereignty and religious liberty. Consumer sovereignty, a principle especially valued in this country, requires that (...)
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  46. Agricultural Biotechnology and the Environment: Science, Policy, and Social Issues.S. Krimsky, R. P. Wrubel & Ronald Singer - 1996 - Perspectives in Biology and Medicine 40 (2):303-313.
     
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  47.  55
    Bodies, Commodities, and Biotechnologies: Death, Mourning, and Scientific Desire in the Realm of Human Organ Transfer.Lesley Alexandra Sharp - 2006 - Columbia University Press.
    In the United States today, the human body defines a lucrative site of reusable parts, ranging from whole organs to minuscule and even microscopic tissues. Although the medical practices that enable the transfer of parts from one body to another most certainly relieve suffering and extend lives, they have also irrevocably altered perceptions of the cultural values assigned to the body. Organ transfer is rich terrain to investigate—especially in the American context, where sophisticated technological interventions have significantly shaped understandings of (...)
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  48.  11
    Biotechnology: Plants and Animals.Bart Gremmen - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 402–405.
    This chapter contains sections titled: Intrinsic Value Environmental and Health Risks Human Hunger and Benefit‐sharing References and Further Reading.
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  49.  55
    Biotechnology and the new right: Neoconservatism's red menace.Jonathan D. Moreno & Sam Berger - 2007 - American Journal of Bioethics 7 (10):7 – 13.
    Although the neoconservative movement has come to dominate American conservatism, this movement has its origins in the old Marxist Left. Communists in their younger days, as the founders of neoconservatism, inverted Marxist doctrine by arguing that moral values and not economic forces were the primary movers of history. Yet the neoconservative critique of biotechnology still borrows heavily from Karl Marx and owes more to the German philosopher Martin Heidegger than to the Scottish philosopher and political economist Adam Smith. Loath (...)
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  50.  26
    Biotechnology.Inmacula de Melo-Martín - 2006 - Philosophy Now 56:35-37.
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