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  1. Biology’s First Law: The Tendency for Diversity and Complexity to Increase in Evolutionary Systems.Daniel W. McShea & Robert N. Brandon - 2010 - University of Chicago Press.
    1 The Zero-Force Evolutionary Law 2 Randomness, Hierarchy, and Constraint 3 Diversity 4 Complexity 5 Evidence, Predictions, and Tests 6 Philosophical Foundations 7 Implications.
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  • The Case for Conserving Disability.Rosemarie Garland-Thomson - 2012 - Journal of Bioethical Inquiry 9 (3):339-355.
    It is commonly believed that disability disqualifies people from full participation in or recognition by society. This view is rooted in eugenic logic, which tells us that our world would be a better place if disability could be eliminated. In opposition to this position, I argue that that disability is inherent in the human condition and consider the bioethical question of why we might want to conserve rather than eliminate disability from our shared world. To do so, I draw together (...)
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  • The Evolutionary Biological Implications of Human Genetic Engineering.Russell Powell - 2012 - Journal of Medicine and Philosophy 37 (1):22.
    A common worry about the genetic engineering of human beings is that it will reduce human genetic diversity, creating a biological monoculture that could not only increase our susceptibility to disease but also hasten the extinction of our species. Thus far, however, the evolutionary implications of human genetic modification remain largely unexplored. In this paper, I consider whether the widespread use of genetic engineering technology is likely to narrow the present range of genetic variation, and if so, whether this would (...)
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  • The reversal test: Eliminating status quo bias in applied ethics.Nick Bostrom & Toby Ord - 2006 - Ethics 116 (4):656-679.
    Suppose that we develop a medically safe and affordable means of enhancing human intelligence. For concreteness, we shall assume that the technology is genetic engineering (either somatic or germ line), although the argument we will present does not depend on the technological implementation. For simplicity, we shall speak of enhancing “intelligence” or “cognitive capacity,” but we do not presuppose that intelligence is best conceived of as a unitary attribute. Our considerations could be applied to specific cognitive abilities such as verbal (...)
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  • Breaking Evolution's Chains: The Prospect of Deliberate Genetic Modification in Humans.Russell Powell & Allen Buchanan - 2011 - Journal of Medicine and Philosophy 36 (1):6-27.
    Many philosophers invoke the "wisdom of nature" in arguing for varying degrees of caution in the development and use of genetic enhancement technologies. Because they view natural selection as akin to a master engineer that creates functionally and morally optimal design, these authors tend to regard genetic intervention with suspicion. In Part II, we examine and ultimately reject the evolutionary assumptions that underlie the master engineer analogy (MEA). By highlighting the constraints on ordinary unassisted evolution, we show how intentional genetic (...)
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  • The Evolutionary Biological Implications of Human Genetic Engineering.R. Powell - 2012 - Journal of Medicine and Philosophy 37 (3):204-225.
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  • Imposing Genetic Diversity.Robert Sparrow - 2015 - American Journal of Bioethics 15 (6):2-10.
    The idea that a world in which everyone was born “perfect” would be a world in which something valuable was missing often comes up in debates about the ethics of technologies of prenatal testing and preimplantation genetic diagnosis . This thought plays an important role in the “disability critique” of prenatal testing. However, the idea that human genetic variation is an important good with significant benefits for society at large is also embraced by a wide range of figures writing in (...)
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