Results for '570 Life sciences'

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  1.  32
    Transforming Traditions in American Biology, 1880-1915.Jane Maienschein & Regents' Professor President'S. Professor and Parents Association Professor at the School of Life Sciences and Director Center for Biology and Society Jane Maienschein - 1991
  2.  14
    Opinion on the vulnerabilities of elderly people, especially of those who reside in institutions.National Council of Ethics for the Life Sciences - 2016 - Jahrbuch für Wissenschaft Und Ethik 20 (1):303-312.
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  3.  47
    “Editing” Genes: A Case Study About How Language Matters in Bioethics.Meaghan O'Keefe, Sarah Perrault, Jodi Halpern, Lisa Ikemoto, Mark Yarborough & U. C. North Bioethics Collaboratory for Life & Health Sciences - 2015 - American Journal of Bioethics 15 (12):3-10.
    Metaphors used to describe new technologies mediate public understanding of the innovations. Analyzing the linguistic, rhetorical, and affective aspects of these metaphors opens the range of issues available for bioethical scrutiny and increases public accountability. This article shows how such a multidisciplinary approach can be useful by looking at a set of texts about one issue, the use of a newly developed technique for genetic modification, CRISPRcas9.
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  4. Per-Erik Malmnas.Towards A. Mechanization Of Real-Life - 1994 - In Dag Prawitz & Dag Westerståhl (eds.), Logic and Philosophy of Science in Uppsala. Kluwer Academic Publishers. pp. 231.
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  5. Life Sciences in the Twentieth Century.Garland Allen - 1976 - Journal of the History of Biology 9 (2):323-323.
     
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  6.  51
    The Life Sciences in Early Modern Philosophy.Ohad Nachtomy & Justin E. H. Smith (eds.) - 2014 - New York, NY: Oup Usa.
    This volume explores the intersection between early modern philosophy and the life sciences by presenting the contributions of important but often neglected figures such as Cudworth, Grew, Glisson, Hieronymus Fabricius, Stahl, Gallego, Hartsoeker, and More, as well as familiar figures such as Descartes, Spinoza, Leibniz, Malebranche, and Kant.
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  7.  6
    The Life Sciences in Eighteenth-century French Thought.Jacques Roger - 1997
    Available for the first time in English, Roger's masterwork of intellectual history situates the life sciences within the larger context of French Enlightenment thought and the history of institutions.
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  8. Life Science Ethics, 2nd ed.Gary Comstock (ed.) - 2010 - Dordrecht: Springer.
    This second edition of Life Science Ethics includes four essays not found in the first edition: Richard Haynes on “Animals in Research” Stephen M. Gardiner on “Climate Change” Christopher Kelty on “Nanotechnology” Gary Comstock on “Genetically Modified Foods” and a revised and expanded version of the chapter on “Farms” in which Stephen Carpenter joins Charles Taliaferro as author. In addition, Part III has been thoroughly revised with the goal of focusing attention on salient examples. Three new case studies have (...)
     
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  9.  8
    Field life: science in the American West during the railroad era.Jeremy Vetter - 2016 - Pittsburgh, Pa.: University of Pittsburgh Press.
    Field Life examines the practice of science in the field in the Great Plains and Rocky Mountains of the American West between the 1860s and the 1910s, when the railroad was the dominant form of long-distance transportation. Grounded in approaches from environmental history and the history of technology, it emphasizes the material basis of scientific fieldwork, joining together the human labor that produced knowledge with the natural world in which those practices were embedded. Four distinct modes of field practice, (...)
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  10. First principles in the life sciences: the free-energy principle, organicism, and mechanism.Matteo Colombo & Cory Wright - 2021 - Synthese 198 (14):3463–3488.
    The free-energy principle states that all systems that minimize their free energy resist a tendency to physical disintegration. Originally proposed to account for perception, learning, and action, the free-energy principle has been applied to the evolution, development, morphology, anatomy and function of the brain, and has been called a postulate, an unfalsifiable principle, a natural law, and an imperative. While it might afford a theoretical foundation for understanding the relationship between environment, life, and mind, its epistemic status is unclear. (...)
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  11. Life, science, and meaning: some logical considerations.Louis Caruana - 2013 - Pensamiento. Revista de Investigación E Información Filosófica 69 (6):659-670.
    Both science and theology involve philosophy. They both involve reasoned argument, evaluation of possible explanations, clarification of concepts, ways of interpreting experience, understanding the present significance of what has gone before us, and other such eminently philosophical tasks. They both involve philosophy, especially when they enter into dialogue with each other. In fact, they involve philosophical thinking even when they may not be aware of it. In this paper I will explore a specific area of philosophy that is particularly important (...)
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  12.  50
    Life Sciences for Philosophers and Philosophy for Life Scientists: What Should We Teach?Giovanni Boniolo & Raffaella Campaner - 2020 - Biological Theory 15 (1):1-11.
    Following recent debate on the relations between philosophy of science and the sciences, we wish to draw attention to some actual ways of training both young philosophers of science and young life scientists and clinicians. First, we recall a successful case of training philosophers of the life sciences in a strictly scientific environment. Second, after a brief review of the reasons why life scientists and clinicians are currently asking for more ethics, more methodology of science, (...)
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  13.  51
    Moving Life Science Ethics Debates Beyond National Borders: Some Empirical Observations.Louise Bezuidenhout - 2014 - Science and Engineering Ethics 20 (2):445-467.
    The life sciences are increasingly being called on to produce “socially robust” knowledge that honors the social contract between science and society. This has resulted in the emergence of a number of “broad social issues” that reflect the ethical tensions in these social contracts. These issues are framed in a variety of ways around the world, evidenced by differences in regulations addressing them. It is important to question whether these variations are simply regulatory variations or in fact reflect (...)
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  14.  13
    Life, Science, and Biopower.Richard Tutton & Sujatha Raman - 2010 - Science, Technology, and Human Values 35 (5):711-734.
    This article critically engages with the influential theory of ‘‘molecularized biopower’’ and ‘‘politics of life’’ developed by Paul Rabinow and Nikolas Rose. Molecularization is assumed to signal the end of population-centred biopolitics and the disciplining of subjects as described by Foucault, and the rise of new forms of biosociality and biological citizenship. Drawing on empirical work in Science and Technology Studies, we argue that this account is limited by a focus on novelty and assumptions about the transformative power of (...)
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  15.  36
    The Life Sciences and French Philosophy of Science: Georges Canguilhem on Norms.Cristina Chimisso - 2013 - In Hanne Andersen, Dennis Dieks, Wenceslao González, Thomas Uebel & Gregory Wheeler (eds.), New Challenges to Philosophy of Science. Springer Verlag. pp. 399--409.
    Although in the last decades increasingly more philosophers have paid attention to the life sciences, traditionally physics has dominated general philosophy of science. Does a focus on the life sciences and medicine produce a different philosophy of science and indeed a different conception of knowledge? Here Cristina Chimisso does not attempt to give a comprehensive answer to this question; rather, she presents a case study focussed on Georges Canguilhem. Canguilhem continued the philosophical tradition that we now (...)
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  16.  7
    Life science of georges canguilhem.Thomas Ebke - 2008 - Philosophische Rundschau 55 (3):252 - 261.
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  17.  26
    Steno: Life, Science, Philosophy with Niels Stensen's Prooemium and Holger Jacobaeus Niels Stensen's Anatomical Demonstration no. XVI. Troels Kardel, Paul Maquet, Emmanuel Collins.Norma E. Emerton - 1996 - Isis 87 (4):727-728.
  18.  20
    The Romantic Conception of Life: Science and Philosophy in the Age of Goethe.Robert J. Richards - 2002 - University of Chicago Press.
    "All art should become science and all science art; poetry and philosophy should be made one." Friedrich Schlegel's words perfectly capture the project of the German Romantics, who believed that the aesthetic approaches of art and literature could reveal patterns and meaning in nature that couldn't be uncovered through rationalistic philosophy and science alone. In this wide-ranging work, Robert J. Richards shows how the Romantic conception of the world influenced (and was influenced by) both the lives of the people who (...)
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  19.  6
    Field Life: Science in the American West During the Railroad Era.Antony Adler - 2017 - Annals of Science 74 (4):339-341.
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  20. Life Sciences, Intellectual Property Regimes and Global Justice.Cristian Timmermann - 2013 - Dissertation, Wageningen University
    In this thesis we have examined the complex interaction between intellectual property rights, life sciences and global justice. Science and the innovations developed in its wake have an enormous effect on our daily lives, providing countless opportunities but also raising numerous problems of justice. The complexity of a problem however does not liberate society as a whole from moral responsibilities. Our intellectual property regimes clash at various points with human rights law and commonly held notions of justice.
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  21.  24
    New life sciences innovation and distributive justice: rawlsian goods versus senian capabilities.Theo Papaioannou - 2013 - Life Sciences, Society and Policy 9 (1):1-13.
    The successful decoding of human genome and subsequent advances in new life sciences innovation create technological presuppositions of a new possibility of justice i.e. the just distribution of both social and natural goods. Although Rawlsians attempt to expand their theory to include this new possibility, they fail to provide plausible metrics of social justice in the genomics and post-genomics era. By contrast, Senians seem to succeed to do so through their index of basic capabilities. This paper explores what (...)
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  22.  8
    Value practices in the life sciences and medicine.Isabelle Dussauge, Claes-Fredrik Helgesson & Francis Lee (eds.) - 2015 - Oxford, United Kingdom: Oxford University Press.
    Providing a compelling scholarly statement about the interrelation and pliability of values in the life sciences, medicine and health care, this volume aims to aid our understanding of the roles of power, knowledge production and economic action in the heavily scientised and economised areas of life science and medicine.
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  23.  40
    The life science: current ideas of biology.P. B. Medawar - 1977 - London: Wildwood House. Edited by J. S. Medawar.
  24. Continental philosophical perspectives on life sciences and emerging technologies.Hub Zwart, Laurens Landeweerd & Pieter Lemmens - 2016 - Life Sciences, Society and Policy 12 (1):1-4.
    Life sciences and emerging technologies raise a plethora of issues. Besides practical, bioethical and policy issues, they have broader, cultural implications as well, affecting and reflecting our zeitgeist and world-view, challenging our understanding of life, nature and ourselves as human beings, and reframing the human condition on a planetary scale. In accordance with the aims and scope of the journal, LSSP aims to foster engaged scholarship into the societal dimensions of emerging life sciences (Chadwick and (...)
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  25.  14
    Life, Science, and Wisdom According to Descartes.Adriaan Peperzak - 1995 - History of Philosophy Quarterly 12 (2):133 - 153.
  26.  83
    Ethology, Natural History, the Life Sciences, and the Problem of Place.Richard W. Burkhardt - 1999 - Journal of the History of Biology 32 (3):489 - 508.
    Investigators of animal behavior since the eighteenth century have sought to make their work integral to the enterprises of natural history and/or the life sciences. In their efforts to do so, they have frequently based their claims of authority on the advantages offered by the special places where they have conducted their research. The zoo, the laboratory, and the field have been major settings for animal behavior studies. The issue of the relative advantages of these different sites has (...)
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  27.  3
    Life Sciences.Peter J. Bowler - 2009 - Annals of Science 66 (1):145-147.
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  28.  15
    Editorial introduction: Biomedicine and life sciences as a challenge to human temporality.Mark Schweda & Nitzan Rimon-Zarfaty - 2023 - History and Philosophy of the Life Sciences 45 (1):1-10.
    Bringing together scholars from philosophy, bioethics, law, sociology, and anthropology, this topical collection explores how innovations in the field of biomedicine and the life sciences are challenging and transforming traditional understandings of human temporality and of the temporal duration, extension and structure of human life. The contributions aim to expand the theoretical debate by highlighting the significance of time and human temporality in different discourses and practical contexts, and developing concrete, empirically informed, and culturally sensitive perspectives. The (...)
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  29. The Life Sciences: Some Problems and Perspectives.Percy Lowenhard - 1989 - Norwell: Kluwer.
  30.  10
    Life Science Art. A Critique.T. Brian Mooney - unknown
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  31. The Third Man: comparative analysis of a science autobiography and a cinema classic as windows into post-war life sciences research.Hub Zwart - 2015 - History and Philosophy of the Life Sciences 37 (4):382-412.
    In 2003, biophysicist and Nobel Laureate Maurice Wilkins published his autobiography entitled The Third Man. In the preface, he diffidently points out that the title was chosen by his publisher, as a reference to the famous 1949 movie no doubt, featuring Orson Welles in his classical role as penicillin racketeer Harry Lime. In this paper I intend to show that there is much more to this title than merely its familiar ring. If subjected to a comparative analysis, multiple correspondences between (...)
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  32.  20
    Investigating the life sciences: an introduction to the philosophy of science.Geert M. N. Verschuuren - 1986 - New York: Pergamon Press.
    A unique introduction to the philosophy of science with special emphasis on the life sciences. Part I presents elementary but fundamental concepts and problems in epistemology and their relation to questions of scientific methodology. Part II deals with case studies from the history of biology which illustrate particular philosophical points while Part III progresses to more complex ideas as on the nature and methodology of science. Part IV discusses the limitations of scientific enquiry and its relations to other (...)
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  33.  32
    Demarcating cognition: the cognitive life sciences.Fred Keijzer - 2020 - Synthese 198 (Suppl 1):137-157.
    This paper criticizes the role of intuition-based ascriptions of cognition that are closely related to the ascription of mind. This practice hinders the explication of a clear and stable target domain for the cognitive sciences. To move forward, the proposal is to cut the notion of cognition free from such ascriptions and the intuition-based judgments that drive them. Instead, cognition is reinterpreted and developed as a scientific concept that is tied to a material domain of research. In this reading, (...)
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  34.  28
    »Life Sciences and Globalization: The Coming Historioricity of Helmut Plessner's Philosophical Anthropology«.Hans-Peter Krüger - 2016 - Zeitschrift Fuer Kulturphilosophie 2016 (2):251-265.
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  35. Ontologies for the life sciences.Steffen Schulze-Kremer & Barry Smith - 2005 - In Schulze-Kremer Steffen & Smith Barry (eds.), Encyclopedia of Genetics, Genomics, Proteomics and Bioinformatics, vol. 4. Wiley.
    Where humans can manipulate and integrate the information they receive in subtle and ever-changing ways from context to context, computers need structured and context-free background information of a sort which ontologies can help to provide. A domain ontology captures the stable, highly general and commonly accepted core knowledge for an application domain. The domain at issue here is that of the life sciences, in particular molecular biology and bioinformatics. Contemporary life science research includes components drawn from physics, (...)
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  36.  23
    A Perspectival Account of the Concept of ‘Nature’.Anna Deplazes-Zemp - 2022 - Environmental Ethics 44 (2):99-119.
    The question of whether or not people are part of nature is relevant to discuss humans’ role on earth and their environmental responsibilities. This article introduces the perspectival account of the concept of ‘nature,’ which starts from the observation that we talk about the environment from a particular, human perspective. In this account, the term ‘nature’ is used to refer to those parts of and events in the environment we perceive as being shaped by typically human activities. Humans themselves are (...)
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  37.  8
    Life Sciences and Moral Education (Translation from German by Ganna Hubenko).Fritz Jar - 2016 - Filosofiya osvity Philosophy of Education 19 (2):218-220.
    The author considers ethical obligations in relation to all living beings. As a result, he formulates the guiding principle of our actions - a bioethical imperative «Respect each living being as an end in itself and, if possible, treat it, as yourself». Based on this principle, you can pedagogically influence morality with the help of various scientific disciplines.
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  38. The Romantic Conception of Life: Science and Philosophy in the Age of Goethe.Robert J. Richards - 2002 - Journal of the History of Biology 36 (3):618-619.
     
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  39.  13
    Probability Models in the Life Sciences: What Do They Really Stand for?K. Abt - 1987 - Erkenntnis 26 (3):423 - 427.
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  40. Ethics and the Life Sciences.Fred Adams (ed.) - 2007 - Philosophy Document Center.
  41.  84
    Do the Life Sciences Need Natural Kinds?Thomas A. C. Reydon - 2009 - Croatian Journal of Philosophy 9 (2):167-190.
    Natural kinds have been a constant topic in philosophy throughout its history, but many issues pertaining to natural kinds still remain unresolved. This paper considers one of these issues: the epistemic role of natural kinds in scientific investigation. I begin by clarifying what is at stake for an individual scientific field when asking whether or not the field studies a natural kind. I use an example from life science, concerning how biologists explain the similar body shapes of fish and (...)
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  42. Robust realism for the life sciences.Markus I. Eronen - 2019 - Synthese 196 (6):2341-2354.
    Although scientific realism is the default position in the life sciences, philosophical accounts of realism are geared towards physics and run into trouble when applied to fields such as biology or neuroscience. In this paper, I formulate a new robustness-based version of entity realism, and show that it provides a plausible account of realism for the life sciences that is also continuous with scientific practice. It is based on the idea that if there are several independent (...)
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  43.  15
    Life Science: The Semantic Confrontation.Douglas Dix - 1997 - Perspectives in Biology and Medicine 40 (3):452-454.
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  44.  14
    Life Science and Naturphilosophie: Rethinking the relationship.Phillip R. Sloan - 2019 - Studies in History and Philosophy of Science Part A 76:98-100.
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  45.  21
    The Life Sciences in Eighteenth-Century French Thought. Jacques Roger, Keith R. Benson, Robert Ellrich.Anita Guerrini - 1999 - Isis 90 (4):813-814.
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  46.  12
    Life Sciences.Cay-Rüdiger Prüll - 2009 - Annals of Science 66 (1):143-145.
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  47.  26
    In search of mechanisms: discoveries across the life sciences.Carl F. Craver - 2013 - London: University of Chicago Press. Edited by Lindley Darden.
    With In Search of Mechanisms, Carl F. Craver and Lindley Darden offer both a descriptive and an instructional account of how biologists discover mechanisms. Drawing on examples from across the life sciences and through the centuries, Craver and Darden compile an impressive toolbox of strategies that biologists have used and will use again to reveal the mechanisms that produce, underlie, or maintain the phenomena characteristic of living things. They discuss the questions that figure in the search for mechanisms, (...)
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  48. 'Captivated by life': The life sciences in the heretical tradition of Heidegger, Merleau-Ponty and Ruyer.Jack Alan Reynolds & Jon Roffe - 2023 - New Yearbook for Phenomenology and Phenomenological Philosophy:425-446.
    Although their work in the philosophy of biology is not well known, Heidegger, Merleau-Ponty, and Ruyer all offer interesting and heterodox accounts of the life and environmental sciences and the organism in particular. In this chapter, we discuss their respective views, with a focus on their shared criticisms of Neo- Darwinism and the way this tradition grasped the structural coupling between organism and environment. We also outline some significant differences between each of them concerning how to conceive of (...)
     
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  49.  85
    A precautionary principle for dual use research in the life sciences.Frida Kuhlau, Anna T. Höglund, Kathinka Evers & Stefan Eriksson - 2010 - Bioethics 25 (1):1-8.
    Most life science research entails dual-use complexity and may be misused for harmful purposes, e.g. biological weapons. The Precautionary Principle applies to special problems characterized by complexity in the relationship between human activities and their consequences. This article examines whether the principle, so far mainly used in environmental and public health issues, is applicable and suitable to the field of dual-use life science research. Four central elements of the principle are examined: threat, uncertainty, prescription and action. Although charges (...)
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  50.  5
    The impact of new life sciences innovation on political theories of justice.Theo Papaioannou - 2009 - Genomics, Society and Policy 5 (1):1-13.
    New life sciences innovation offers the possibility of new conceptions of human nature with significant impact on liberal theories of justice. So far, nature as such has been thought to be something given and beyond human control. Thus, to define something as natural has meant the same thing as to relegate it to the realm of fortune or misfortune, rather than justice or injustice. However, the successful decoding of the human genome and subsequent advances in genomics-based technologies begins (...)
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