Results for 'bioengineering'

14 found
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  1.  89
    In Vitro Analogies: Simulation Modeling in Bioengineering Sciences.Nancy Nersessian - forthcoming - In Tarja Knuuttila, Natalia Carrillo & Rami Koskinen (eds.), Routledge Handbook of Scientific Modeling. Routledge.
    This chapter focuses on a novel class of models used in frontier research in the bioengineering sciences – in vitro simulation models – that provide the basis for biological experimentation. These bioengineered models are hybrid constructions, composed of living tissues or cells and engineered materials. Specifically, it discusses the processes through which in vitro models were built, experimented with, and justified in a tissue engineering lab. It examines processes of design, construction, experimentation, evaluation, and redesign of in vitro simulation (...)
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  2. The web of clinical data, bioengineering, augmented reality and robotic in vascular surgery.Carlo Setacci, Alberto Maria Settembrini & Domenico Benevento - 2022 - Frontiers in Surgery 9:971776.
    The new protocol for information distribution amongst scientists within the CERN, once slightly refined and publicly announced as the Worldwide Web in the August of 1991, has led to impressive achievements beyond the starting plan.
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  3. Should DBS for Psychiatric Disorders be Considered a Form of Psychosurgery? Ethical and Legal Considerations.Devan Stahl, Laura Cabrera & Tyler Gibb - 2018 - Science and Engineering Ethics 24 (4):1119-1142.
    Deep brain stimulation (DBS), a surgical procedure involving the implantation of electrodes in the brain, has rekindled the medical community’s interest in psychosurgery. Whereas many researchers argue DBS is substantially different from psychosurgery, we argue psychiatric DBS—though a much more precise and refined treatment than its predecessors—is nevertheless a form of psychosurgery, which raises both old and new ethical and legal concerns that have not been given proper attention. Learning from the ethical and regulatory failures of older forms of psychosurgery (...)
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  4. Interdisciplinary Confusion and Resolution in the Context of Moral Machines.Jakob Stenseke - 2022 - Science and Engineering Ethics 28 (3):1-17.
    Recent advancements in artificial intelligence have fueled widespread academic discourse on the ethics of AI within and across a diverse set of disciplines. One notable subfield of AI ethics is machine ethics, which seeks to implement ethical considerations into AI systems. However, since different research efforts within machine ethics have discipline-specific concepts, practices, and goals, the resulting body of work is pestered with conflict and confusion as opposed to fruitful synergies. The aim of this paper is to explore ways to (...)
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  5. Non/living Matter, Bioscientific Imaginaries and Feminist Techno-ecologies of Bioart.Marietta Radomska - 2017 - Australian Feminist Studies 32 (94):377-394.
    Bioart is a form of hybrid artistico-scientific practices in contemporary art that involve the use of bio-materials (such as living cells, tissues, organisms) and scientific techniques, protocols, and tools. Bioart-works embody vulnerability (intrinsic to all beings) and depend on (bio)technologies that allow these creations to come into being, endure and flourish but also discipline them. This article focuses on ‘semi-living’ sculptures by The Tissue Culture and Art Project (TC&A). TC&A’s artworks consist of bioengineered mammal tissues grown over biopolymer scaffoldings of (...)
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  6.  88
    A Confucian Algorithm for Autonomous Vehicles.Tingting Sui & Sebastian Sunday Grève - 2024 - Science and Engineering Ethics 30 (52):1-22.
    Any moral algorithm for autonomous vehicles must provide a practical solution to moral problems of the trolley type, in which all possible courses of action will result in damage, injury, or death. This article discusses a hitherto neglected variety of this type of problem, based on a recent psychological study whose results are reported here. It argues that the most adequate solution to this problem will be achieved by a moral algorithm that is based on Confucian ethics. In addition to (...)
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  7. Interdisciplinarity in the Making: Models and Methods in Frontier Science.Nancy J. Nersessian - 2022 - Cambridge, MA: MIT.
    A cognitive ethnography of how bioengineering scientists create innovative modeling methods. In this first full-scale, long-term cognitive ethnography by a philosopher of science, Nancy J. Nersessian offers an account of how scientists at the interdisciplinary frontiers of bioengineering create novel problem-solving methods. Bioengineering scientists model complex dynamical biological systems using concepts, methods, materials, and other resources drawn primarily from engineering. They aim to understand these systems sufficiently to control or intervene in them. What Nersessian examines here is (...)
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  8. Should We Dream of Designer Babies?Samantha Noll & Laci Hubbard-Mattix - 2019 - In Robin Bunce & Trip McCrossin (eds.), Blade Runner 2049 and Philosophy. Chicago: Open Court.
    Seventy-five years before Niander Wallace brutally kills a newborn replicant in Blade Runner 2049, the National Commission for the Protection of Human Subjects of Biomedical and Behavioral Research was formed. Its formation led to the creation of the Belmont Report, which established guidelines for the treatment of human subjects. Wallace uses a scalpel as the instrument of disposal, of the newborn replicant, stabbing her in the womb, thereby ending her life moments after wishing her a happy birthday. The conjunction of (...)
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  9. Biotechnology and naturalness in the genomics era: Plotting a timetable for the biotechnology debate. [REVIEW]Hub Zwart - 2009 - Journal of Agricultural and Environmental Ethics 22 (6):505-529.
    Debates on the role of biotechnology in food production are beset with notorious ambiguities. This already applies to the term “biotechnology” itself. Does it refer to the use and modification of living organisms in general, or rather to a specific set of technologies developed quite recently in the form of bioengineering and genetic modification? No less ambiguous are discussions concerning the question to what extent biotechnology must be regarded as “unnatural.” In this article it will be argued that, in (...)
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  10. The Living Image in Bio-Art and in Philosophy.Vid Simoniti - 2019 - Oxford Art Journal 42 (2):177-196.
    What role do images play in philosophical persuasion? With the advent of bio-art in the 1990s, a new vista opened up for this age-old puzzle: the possibility of creating images through bioengineering of living matter. Here, I test the critical intentions of bio-artists by setting up a comparison between, on the one hand, bio-art, and on the other, bioethics, a philosophical discipline, which developed at around the same time as this new artform. I argue there is an aspect of (...)
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  11. Review of Doomsday End of the World Scenarios by Richard Moran (2003).Michael Starks - 2017 - Philosophy, Human Nature and the Collapse of Civilization Michael Starks 3rd Ed. (2017).
    This is a quickly produced book that is an easy read on a plane. It will not give you any kind of depth on any of the issues and there are no refs to enable you to check anything. He covers asteroids, WMD´s, greenhouse effect, ice ages, volcanos, plagues, insects, bioengineering, cyberterror and, presciently, tsunamis. He does not mention overpopulation, supernovas or the Doomsday Hypothesis (the seemingly absurd but quite serious idea that on general grounds alone it is likely (...)
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  12. Global Catastrophic Risks by Chemical Contamination.Alexey Turchin - manuscript
    Abstract: Global chemical contamination is an underexplored source of global catastrophic risks that is estimated to have low a priori probability. However, events such as pollinating insects’ population decline and lowering of the human male sperm count hint at some toxic exposure accumulation and thus could be a global catastrophic risk event if not prevented by future medical advances. We identified several potentially dangerous sources of the global chemical contamination, which may happen now or could happen in the future: autocatalytic (...)
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  13. Towards a proteomics meta-classification.Anand Kumar & Barry Smith - 2004 - In Kumar Anand & Smith Barry (eds.), IEEE Fourth Symposium on Bioinformatics and Bioengineering, Taichung, Taiwan. IEEE Press. pp. 419–427.
    that can serve as a foundation for more refined ontologies in the field of proteomics. Standard data sources classify proteins in terms of just one or two specific aspects. Thus SCOP (Structural Classification of Proteins) is described as classifying proteins on the basis of structural features; SWISSPROT annotates proteins on the basis of their structure and of parameters like post-translational modifications. Such data sources are connected to each other by pairwise term-to-term mappings. However, there are obstacles which stand in the (...)
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  14. Synthetic life and the value of life.Erik Persson - 2021 - Frontiers in Bioengineering and Biotechnology 9.
    If humans eventually attain the ability to create new life forms, how will it affect the value of life? This is one of several questions that can be sources of concern when discussing synthetic life, but is the concern justified? In an attempt to answer this question, I have analyzed some possible reasons why an ability to create synthetic life would threaten the value of life in general (that is, not just of the synthetic creations), to see if they really (...)
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