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  1. Space Debris: Litter or Pollution?Michael Lindquist - 2024 - Diálogos. Revista de Filosofía de la Universidad de Puerto Rico 55 (114):195-226.
    In this paper, I undertake a conceptual analysis of ordinary usages of the concepts of “litter” and “pollution.” If “litter” or “pollution” applies to space debris in its various contexts, then in dealing with space debris as an ethical concern, we may more neatly apply arguments for the wrongness of litter and pollution to these new contexts. After engaging in a conceptual analysis of “litter” and “pollution,” I consider whether these concepts apply to space debris, examining three contexts: (1) surface (...)
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  • Engineers of Life? A Critical Examination of the Concept of Life in the Debate on Synthetic Biology.Johannes Steizinger - 2016 - In Toepfer Georg & Engelhard Margret (eds.), : Ambivalences of Creating Life – Societal and Philosophical Dimensions of Synthetic Biology. Springer. pp. 275−292.
    The concept of life plays a crucial role in the debate on synthetic biology. The first part of this chapter outlines the controversial debate on the status of the concept of life in current science and philosophy. Against this background, synthetic biology and the discourse on its scientific and societal consequences is revealed as an exception. Here, the concept of life is not only used as buzzword but also discussed theoretically and links the ethical aspects with the epistemological prerequisites and (...)
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  • Living Machines: Metaphors We Live By.Nora S. Vaage - 2020 - NanoEthics 14 (1):57-70.
    Within biology and in society, living creatures have long been described using metaphors of machinery and computation: ‘bioengineering’, ‘genes as code’ or ‘biological chassis’. This paper builds on Lakoff and Johnson’s argument that such language mechanisms shape how we understand the world. I argue that the living machines metaphor builds upon a certain perception of life entailing an idea of radical human control of the living world, looking back at the historical preconditions for this metaphor. I discuss how design is (...)
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  • Generative Models.Sim-Hui Tee - 2020 - Erkenntnis 88 (1):23-41.
    Generative models have been proposed as a new type of non-representational scientific models recently. A generative model is characterized with the capacity of producing new models on the basis of the existing one. The current accounts do not explain sufficiently the mechanism of the generative capacity of a generative model. I attempt to accomplish this task in this paper. I outline two antecedent accounts of generative models. I point out that both types of generative models function to generate new homogenous (...)
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  • Metabolism Instead of Machine: Towards an Ontology of Hybrids.Julia Rijssenbeek, Vincent Blok & Zoë Robaey - 2022 - Philosophy and Technology 35 (3):1-23.
    The emerging field of synthetic biology aims to engineer novel biological entities. The envisioned future bio-based economy builds largely on “cell factories”: organisms that have been metabolically engineered to sustainably produce substances for human ends. In this paper, we argue that synthetic biology’s goal of creating efficient production vessels for industrial applications implies a set of ontological assumptions according to which living organisms are machines. Traditionally, a machine is understood as a technological, isolated and controllable production unit consisting of parts. (...)
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  • Philosophy and Synthetic Biology: the BrisSynBio Experiment.Darian Meacham & Miguel Prado Casanova - 2020 - NanoEthics 14 (1):21-25.
    This article provides an overview of the relation between synthetic biology and philosophy as understood from within the Ethics, Philosophy and Responsible Innovation programme of BrisSynBio (a BBSRC/EPSCR Synthetic Biology Research Centre). It also introduces the special issue of NanoEthics devoted to synthetic biology and philosophy.
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  • Functions and Health at the Interface of Biology and Technology.Elselijn Kingma - 2020 - Noûs 54 (1):182-203.
    Synthetic biology promises to eliminate the distinction between biology and engineering by delivering a philosophically interesting new kind of entity: a biological organism that is wholly designed and constructed by humans. The possibility of such organisms raises interesting questions in three domains: the analysis of (1) biological functions, (2) engineering functions, and (3) health and disease. This paper identifies and systematically answers these questions. This does not only establish how we should think about functions and health and disease in synthetic (...)
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  • Similarity Arguments in the Genetic Modification Debate.Andreas Christiansen - 2017 - Ethical Theory and Moral Practice 20 (2):239-255.
    In the ethical debate on genetic modification, it is common to encounter the claim that some anti-GM argument would also apply an established, ethically accepted technology, and that the anti-GM argument is therefore unsuccessful. The paper discusses whether this argumentative strategy, the Similarity Argument, is sound. It presents a logically valid, generic form of the Similarity Argument and then shows that it is subject to three types of objection: It does not respect the difference between pro tanto reasons and all-things-considered (...)
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  • Life Formed: Evolutionary Design and the Futures of a Political Biology.Aubrey Yee - 2019 - Dissertation, University of Hawai'i at Manoa
    With the advent of CRISPR and gene drive gene editing technologies, synthetic biology is paving the way towards a world where humans have the capacity to rapidly design and re-design lifeforms. With little oversight and agreed upon governance structures, how will we ensure that these technologies are used for the greatest good? As we begin to actively design evolution, how might we decolonize this science? Privileging alternative forms of knowledge production and ethical frameworks from Indigenous peoples and spiritual ecologists in (...)
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