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Zoë Robaey [20]Zoë Houda Robaey [1]
  1. What Does it Mean to Mimic Nature? A Typology for Biomimetic Design.Alessio Gerola, Zoë Robaey & Vincent Blok - 2023 - Philosophy and Technology 36 (4):1-20.
    In an effort to produce new and more sustainable technologies, designers have turned to nature in search of inspiration and innovation. Biomimetic design (from the Greek bios, life, mimesis, imitation) is the conscious imitation of biological models to solve today's technical and ecological challenges. Nowadays numerous different approaches exist that take inspiration from nature as a model for design, such as biomimicry, biomimetics, bionics, permaculture, ecological engineering, etc. This variety of practices comes in turn with a wide range of different (...)
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  2. 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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  3.  45
    Safe-by-Design: from Safety to Responsibility.Ibo van de Poel & Zoë Robaey - 2017 - NanoEthics 11 (3):297-306.
    Safe-by-design aims at addressing safety issues already during the R&D and design phases of new technologies. SbD has increasingly become popular in the last few years for addressing the risks of emerging technologies like nanotechnology and synthetic biology. We ask to what extent SbD approaches can deal with uncertainty, in particular with indeterminacy, i.e., the fact that the actual safety of a technology depends on the behavior of actors in the value chain like users and operators. We argue that while (...)
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  4.  44
    Safe-by-Design: from Safety to Responsibility.Zoë Robaey & Ibo Poel - 2017 - NanoEthics 11 (3):297-306.
    Safe-by-design aims at addressing safety issues already during the R&D and design phases of new technologies. SbD has increasingly become popular in the last few years for addressing the risks of emerging technologies like nanotechnology and synthetic biology. We ask to what extent SbD approaches can deal with uncertainty, in particular with indeterminacy, i.e., the fact that the actual safety of a technology depends on the behavior of actors in the value chain like users and operators. We argue that while (...)
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  5. Agrobiodiversity Under Different Property Regimes.Cristian Timmermann & Zoë Robaey - 2016 - Journal of Agricultural and Environmental Ethics 29 (2):285-303.
    Having an adequate and extensively recognized resource governance system is essential for the conservation and sustainable use of crop genetic resources in a highly populated planet. Despite the widely accepted importance of agrobiodiversity for future plant breeding and thus food security, there is still pervasive disagreement at the individual level on who should own genetic resources. The aim of the article is to provide conceptual clarification on the following concepts and their relation to agrobiodiversity stewardship: open access, commons, private property, (...)
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  6.  86
    Transferring Moral Responsibility for Technological Hazards: The Case of GMOs in Agriculture.Zoë Robaey - 2016 - Journal of Agricultural and Environmental Ethics 29 (5):767-786.
    The use of genetically modified organisms in agriculture makes great promises of better seeds, but also raises many controversies about ownership of seeds and about potential hazards. I suggest that owners of these seeds bear the responsibility to do no harm in using these seeds. After defining the nature of this responsibility, this paper asks, if ownership entails moral responsibility, and ownership can be transferred, then how is moral responsibility transferred? Building on the literature on use plans, I suggest five (...)
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  7.  47
    Looking for Moral Responsibility in Ownership: A Way to Deal with Hazards of GMOs.Zoë Robaey - 2015 - Journal of Agricultural and Environmental Ethics 28 (1):43-56.
    Until now, the debates around genetically modified seeds in agriculture have converged towards two main issues. The first is about hazards that this new technology brings about, and the second is about the ownership of seeds and the distribution of their economic benefits. In this paper, I explore an underdeveloped topic by linking these two issues: how ownership shapes the distribution of moral responsibility for the potential hazards of genetically modified seeds. Indeed, while ownership is debated in terms of economic (...)
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  8.  32
    Exploring the Impact of Tensions in Stakeholder Norms on Designing for Value Change: The Case of Biosafety in Industrial Biotechnology.Vitor A. P. Martins dos Santos, Linde F. C. Kampers, Zoë Robaey & Enrique Asin-Garcia - 2023 - Science and Engineering Ethics 29 (2):1-28.
    Synthetic biologists design and engineer organisms for a better and more sustainable future. While the manifold prospects are encouraging, concerns about the uncertain risks of genome editing affect public opinion as well as local regulations. As a consequence, biosafety and associated concepts, such as the Safe-by-design framework and genetic safeguard technologies, have gained notoriety and occupy a central position in the conversation about genetically modified organisms. Yet, as regulatory interest and academic research in genetic safeguard technologies advance, the implementation in (...)
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  9.  31
    Capability Approach and Inclusion: Developing a Context Sensitive Design for Biobased Value Chains.Patricia Osseweijer, Sara Francke, Zoë Houda Robaey & Lotte Asveld - 2023 - Journal of Agricultural and Environmental Ethics 36 (1):1-17.
    Biomass such as crops and agricultural waste is increasingly used as the primary resource for products like bioplastics and biofuels. Incorporating the needs, knowledge, skills and values of biomass producers in the design of global value chains – the steps involved in creating any finished product from design to delivery – can contribute to sustainability, reliability and fairness. However, how to involve biomass producers, especially if they are resource poor, remains a challenge. To make sure that inclusion in global biobased (...)
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  10.  45
    Gone with the Wind: Conceiving of Moral Responsibility in the Case of GMO Contamination.Zoë Robaey - 2016 - Science and Engineering Ethics 22 (3):889-906.
    Genetically modified organisms are a technology now used with increasing frequency in agriculture. Genetically modified seeds have the special characteristic of being living artefacts that can reproduce and spread; thus it is difficult to control where they end up. In addition, genetically modified seeds may also bring about uncertainties for environmental and human health. Where they will go and what effect they will have is therefore very hard to predict: this creates a puzzle for regulators. In this paper, I use (...)
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  11.  34
    The Food Warden: An Exploration of Issues in Distributing Responsibilities for Safe-by-Design Synthetic Biology Applications.Ibo Poel, Shannon Spruit & Zoë Robaey - 2018 - Science and Engineering Ethics 24 (6):1673-1696.
    The Safe-by-Design approach in synthetic biology holds the promise of designing the building blocks of life in an organism guided by the value of safety. This paves a new way for using biotechnologies safely. However, the Safe-by-Design approach moves the bulk of the responsibility for safety to the actors in the research and development phase. Also, it assumes that safety can be defined and understood by all stakeholders in the same way. These assumptions are problematic and might actually undermine safety. (...)
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  12.  50
    The Food Warden: An Exploration of Issues in Distributing Responsibilities for Safe-by-Design Synthetic Biology Applications.Zoë Robaey, Shannon L. Spruit & Ibo van de Poel - 2018 - Science and Engineering Ethics 24 (6):1673-1696.
    The Safe-by-Design approach in synthetic biology holds the promise of designing the building blocks of life in an organism guided by the value of safety. This paves a new way for using biotechnologies safely. However, the Safe-by-Design approach moves the bulk of the responsibility for safety to the actors in the research and development phase. Also, it assumes that safety can be defined and understood by all stakeholders in the same way. These assumptions are problematic and might actually undermine safety. (...)
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  13. Fair agricultural innovation for a changing climate.Zoë Robaey & Cristian Timmermann - 2018 - In Erinn C. Gilson & Sarah Kenehan, Food, Environment, and Climate Change: Justice at the Intersections. Rowman & Littlefield International. pp. 213-230.
    Agricultural innovation happens at different scales and through different streams. In the absence of a common global research agenda, decisions on which innovations are brought to existence, and through which methods, are taken with insufficient view on how innovation affects social relations, the environment, and future food production. Mostly, innovations are considered from the standpoint of economic efficiency, particularly in relationship to creating jobs for technology-exporting countries. Increasingly, however, the realization that innovations cannot be successful on their technical prowess alone (...)
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  14.  59
    Editors’ Overview: Experiments, Ethics, and New Technologies.Neelke Doorn, Shannon Spruit & Zoë Robaey - 2016 - Science and Engineering Ethics 22 (3):607-611.
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  15. Agrobiodiversität, das Gemeinschaftserbe-Prinzip und Marktanreize.Cristian Timmermann & Zoë Robaey - 2016 - In Stephan Schleissing & Barbara Brandl, Biopatente: Saatgut Als Ware Und Als Öffentliches Gut. Nomos. pp. 109-131.
    Die Diversität von Nahrungspflanzen, ein Ergebnis Jahrtausende langer Zuchtbemühungen, ist in den letzten Jahrzehnten dramatisch zurückgegangen. Schätzungen zufolge machen von den über 7000 Nahrungspflanzenarten ganze 103 Sorten 90% der Nahrungsmittelproduktion aus. Dieser Verlust könnte in Zukunft gewaltige negative Auswirkungen auf die Nahrungsmittelsicherheit haben, da die Biodiversität eine zentrale Rolle bei der Absorbierung biotischer und abiotischer Stressfaktoren spielt, die auf die Pflanzen wirken. Darüber hinaus stellt der Verlust eine bedeutende Verarmung nicht nur des Pools genetischer Ressourcen dar, die zukünftigen Generationen zur (...)
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  16. Who owns the taste of coffee – examining implications of biobased means of production in food.Zoë Robaey & Cristian Timmermann - 2021 - In Hanna Schübel & Ivo Wallimann-Helmer, Justice and food security in a changing climate. Wageningen Academic Publishers. pp. 85-90.
    Synthetic foods advocates offer the promise of efficient, reliable, and sustainable food production. Engineered organisms become factories to produce food. Proponents claim that through this technique important barriers can be eliminated which would facilitate the production of traditional foods outside their climatic range. This technique would allow reducing food miles, secure future supply, and maintain quality and taste expectations. In this paper, we examine coffee production via biobased means. A startup called Atomo Coffee aims to produce synthetic coffee with the (...)
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  17.  52
    Designing in Times of Uncertainty: What Virtue Ethics Can Bring to Engineering Ethics in the Twenty-First Century.Jan Peter Bergen & Zoë Robaey - 2022 - In Matthew James Dennis, Georgy Ishmaev, Steven Umbrello & Jeroen van den Hoven, Values for a Post-Pandemic Future. Cham: Springer. pp. 163-183.
    Our world is changing in rapid and unanticipated ways. Given technology’s central role in those changes, engineers face difficult design decisions. In dominant consequentialist and deontological engineering ethics paradigms, making design choices implies having sufficient information on those choices and their trade-offs, which is often lacking. Some scholars have pointed to virtue ethics as an alternative approach to engineering ethics, but how can virtue ethics support engineers in situations of uncertainty? In this chapter, we explore how virtue ethics is conducive (...)
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  18.  25
    Editorial: Ten simple rules for building an enthusiastic iGEM team.Luis G. Morales, Niek H. A. Savelkoul, Zoë Robaey, Nico J. Claassens, Raymond H. J. Staals & Robert W. Smith - 2022 - PLOS Computational Biology 18.
    Synthetic biology, as a research field, brings together molecular life scientists, computational biologists, and social scientists to engineer biological systems toward societally desired goals. Given the field’s broad multidisciplinarity and relatively young age, innovative educational methods are required to provide students with the needed background knowledge to push the field forward in the future. The international Genetically Engineered Machine competition is such an example where education and high-level research merge, providing the synthetic biology field with trained students, new ideas, and (...)
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  19.  17
    Modern Biotechnology, Agriculture, and Ethics.Per Sandin & Zoë Robaey - 2021 - In Deborah C. Poff & Alex C. Michalos, Encyclopedia of Business and Professional Ethics. Springer Verlag. pp. 1334-1338.
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  20.  17
    Sue Booth and John Coveney: Food Democracy: from Consumer to Food Citizen. (SpringerBriefs in Public Health): Springer, 2015, ISBN 978-981-287-423-8. [REVIEW]Zoë Robaey - 2019 - Food Ethics 4 (1):113-115.
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