Results for 'Ruttenberg Alan'

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  1. Guidelines for writing definitions in ontologies.Selja Seppälä, Alan Ruttenberg & Barry Smith - 2017 - Ciência da Informação 46 (1): 73-88.
    Ontologies are being used increasingly to promote the reusability of scientific information by allowing heterogeneous data to be integrated under a common, normalized representation. Definitions play a central role in the use of ontologies both by humans and by computers. Textual definitions allow ontologists and data curators to understand the intended meaning of ontology terms and to use these terms in a consistent fashion across contexts. Logical definitions allow machines to check the integrity of ontologies and reason over data annotated (...)
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  2. An Axiomatisation of Basic Formal Ontology with Projection Functions.Kerry Trentelman, Alan Ruttenberg & Barry Smith - 2010 - In Kerry Taylor (ed.), Advances in Ontologies, Proceedings of the Sixth Australasian Ontology Workshop. University of Adelaide. pp. 71-80.
    This paper proposes a reformulation of the treatment of boundaries, at parts and aggregates of entities in Basic Formal Ontology. These are currently treated as mutually exclusive, which is inadequate for biological representation since some entities may simultaneously be at parts, boundaries and/or aggregates. We introduce functions which map entities to their boundaries, at parts or aggregations. We make use of time, space and spacetime projection functions which, along the way, allow us to develop a simple temporal theory.
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  3. Definitions in ontologies.Selja Seppälä, Alan Ruttenberg, Yonatan Schreiber & Barry Smith - 2016 - Cahiers de Lexicologie 109 (2):175‐207.
    Definitions vary according to context of use and target audience. They must be made relevant for each context to fulfill their cognitive and linguistic goals. This involves adapting their logical structure, type of content, and form to each context of use. We examine from these perspectives the case of definitions in ontologies.
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  4. BFO: Basic Formal Ontology.J. Neil Otte, John Beverley & Alan Ruttenberg - 2022 - Applied ontology 17 (1):17-43.
    Basic Formal Ontology (BFO) is a top-level ontology consisting of thirty-six classes, designed to support information integration, retrieval, and analysis across all domains of scientific investigation, presently employed in over 350 ontology projects around the world. BFO is a genuine top-level ontology, containing no terms particular to material domains, such as physics, medicine, or psychology. In this paper, we demonstrate how a series of cases illustrating common types of change may be represented by universals, defined classes, and relations employing the (...)
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  5. The Ontology for Biomedical Investigations.Anita Bandrowski, Ryan Brinkman, Mathias Brochhausen, Matthew H. Brush, Bill Bug, Marcus C. Chibucos, Kevin Clancy, Mélanie Courtot, Dirk Derom, Michel Dumontier, Liju Fan, Jennifer Fostel, Gilberto Fragoso, Frank Gibson, Alejandra Gonzalez-Beltran, Melissa A. Haendel, Yongqun He, Mervi Heiskanen, Tina Hernandez-Boussard, Mark Jensen, Yu Lin, Allyson L. Lister, Phillip Lord, James Malone, Elisabetta Manduchi, Monnie McGee, Norman Morrison, James A. Overton, Helen Parkinson, Bjoern Peters, Philippe Rocca-Serra, Alan Ruttenberg, Susanna-Assunta Sansone, Richard H. Scheuermann, Daniel Schober, Barry Smith, Larisa N. Soldatova, Christian J. Stoeckert, Chris F. Taylor, Carlo Torniai, Jessica A. Turner, Randi Vita, Patricia L. Whetzel & Jie Zheng - 2016 - PLoS ONE 11 (4):e0154556.
    The Ontology for Biomedical Investigations (OBI) is an ontology that provides terms with precisely defined meanings to describe all aspects of how investigations in the biological and medical domains are conducted. OBI re-uses ontologies that provide a representation of biomedical knowledge from the Open Biological and Biomedical Ontologies (OBO) project and adds the ability to describe how this knowledge was derived. We here describe the state of OBI and several applications that are using it, such as adding semantic expressivity to (...)
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  6. The functions of definitions in ontologies.Selja Seppälä, Alan Ruttenberg, & Barry Smith - 2016 - In R. Ferrario & W. Kuhn (eds.), Formal Ontology in Information Systems. Proceedings of the Ninth International Conference (FOIS 2016). IOS Pres. pp. 37-50.
    To understand what ontologies do through their definitions, we propose a theoretical explanation of the functions of definitions in ontologies backed by empirical neuropsychological studies. Our goal is to show how these functions should motivate (i) the systematic inclusion of definitions in ontologies and (ii) the adaptation of definition content and form to the specific context of use of ontologies.
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  7. The OBO Foundry: Coordinated evolution of ontologies to support biomedical data integration.Barry Smith, Michael Ashburner, Cornelius Rosse, Jonathan Bard, William Bug, Werner Ceusters, Louis J. Goldberg, Karen Eilbeck, Amelia Ireland, Christopher J. Mungall, Neocles Leontis, Philippe Rocca-Serra, Alan Ruttenberg, Susanna-Assunta Sansone, Richard H. Scheuermann, Nigam Shah, Patricia L. Whetzel & Suzanna Lewis - 2007 - Nature Biotechnology 25 (11):1251-1255.
    The value of any kind of data is greatly enhanced when it exists in a form that allows it to be integrated with other data. One approach to integration is through the annotation of multiple bodies of data using common controlled vocabularies or ‘ontologies’. Unfortunately, the very success of this approach has led to a proliferation of ontologies which itself creates obstacles to integration. The Open Biomedical Ontologies (OBO) consortium has set in train a strategy to overcome this problem. Existing (...)
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  8.  47
    Overcoming the ontology enrichment bottleneck with quick term templates.Philippe Rocca-Serra, Alan Ruttenberg, Martin J. O'Connor, Patricia L. Whetzel, Daniel Schober, Jay Greenbaum, Mélanie Courtot, Ryan R. Brinkman, Susanna Assunta Sansone & Richard Scheuermann - 2011 - Applied ontology 6 (1):13-22.
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  9. ARGO: Arguments Ontology.John Beverley, Neil Otte, Francesco Franda, Brian Donohue, Alan Ruttenberg, Jean-Baptiste Guillion & Yonatan Schreiber - manuscript
    Although the last decade has seen a proliferation of ontological approaches to arguments, many of them employ ad hoc solutions to representing arguments, lack interoperability with other ontologies, or cover arguments only as part of a broader approach to evidence. To provide a better ontological representation of arguments, we present the Arguments Ontology (ArgO), a small ontology for arguments that is designed to be imported and easily extended by researchers who work in different upper-level ontology frameworks, different logics, and different (...)
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  10.  56
    MIREOT: the minimum information to reference an external ontology term.Mélanie Courtot, Frank Gibson, Allyson L. Lister, James Malone, Daniel Schober, Ryan R. Brinkman & Alan Ruttenberg - 2011 - Applied ontology 6 (1):23-33.
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  11. Toll-like receptor signaling in vertebrates: Testing the integration of protein, complex, and pathway data in the Protein Ontology framework.Cecilia Arighi, Veronica Shamovsky, Anna Maria Masci, Alan Ruttenberg, Barry Smith, Darren Natale, Cathy Wu & Peter D’Eustachio - 2015 - PLoS ONE 10 (4):e0122978.
    The Protein Ontology provides terms for and supports annotation of species-specific protein complexes in an ontology framework that relates them both to their components and to species-independent families of complexes. Comprehensive curation of experimentally known forms and annotations thereof is expected to expose discrepancies, differences, and gaps in our knowledge. We have annotated the early events of innate immune signaling mediated by Toll-Like Receptor 3 and 4 complexes in human, mouse, and chicken. The resulting ontology and annotation data set has (...)
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  12. Improving the Quality and Utility of Electronic Health Record Data through Ontologies.Asiyah Yu Lin, Sivaram Arabandi, Thomas Beale, William Duncan, Hicks D., Hogan Amanda, R. William, Mark Jensen, Ross Koppel, Catalina Martínez-Costa, Øystein Nytrø, Jihad S. Obeid, Jose Parente de Oliveira, Alan Ruttenberg, Selja Seppälä, Barry Smith, Dagobert Soergel, Jie Zheng & Stefan Schulz - 2023 - Standards 3 (3):316–340.
    The translational research community, in general, and the Clinical and Translational Science Awards (CTSA) community, in particular, share the vision of repurposing EHRs for research that will improve the quality of clinical practice. Many members of these communities are also aware that electronic health records (EHRs) suffer limitations of data becoming poorly structured, biased, and unusable out of original context. This creates obstacles to the continuity of care, utility, quality improvement, and translational research. Analogous limitations to sharing objective data in (...)
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  13. The representation of protein complexes in the Protein Ontology.Carol Bult, Harold Drabkin, Alexei Evsikov, Darren Natale, Cecilia Arighi, Natalia Roberts, Alan Ruttenberg, Peter D’Eustachio, Barry Smith, Judith Blake & Cathy Wu - 2011 - BMC Bioinformatics 12 (371):1-11.
    Representing species-specific proteins and protein complexes in ontologies that are both human and machine-readable facilitates the retrieval, analysis, and interpretation of genome-scale data sets. Although existing protin-centric informatics resources provide the biomedical research community with well-curated compendia of protein sequence and structure, these resources lack formal ontological representations of the relationships among the proteins themselves. The Protein Ontology (PRO) Consortium is filling this informatics resource gap by developing ontological representations and relationships among proteins and their variants and modified forms. Because (...)
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  14. OBO Foundry in 2021: Operationalizing Open Data Principles to Evaluate Ontologies.Rebecca C. Jackson, Nicolas Matentzoglu, James A. Overton, Randi Vita, James P. Balhoff, Pier Luigi Buttigieg, Seth Carbon, Melanie Courtot, Alexander D. Diehl, Damion Dooley, William Duncan, Nomi L. Harris, Melissa A. Haendel, Suzanna E. Lewis, Darren A. Natale, David Osumi-Sutherland, Alan Ruttenberg, Lynn M. Schriml, Barry Smith, Christian J. Stoeckert, Nicole A. Vasilevsky, Ramona L. Walls, Jie Zheng, Christopher J. Mungall & Bjoern Peters - 2021 - BioaRxiv.
    Biological ontologies are used to organize, curate, and interpret the vast quantities of data arising from biological experiments. While this works well when using a single ontology, integrating multiple ontologies can be problematic, as they are developed independently, which can lead to incompatibilities. The Open Biological and Biomedical Ontologies Foundry was created to address this by facilitating the development, harmonization, application, and sharing of ontologies, guided by a set of overarching principles. One challenge in reaching these goals was that the (...)
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  15. The ImmPort Antibody Ontology.William Duncan, Travis Allen, Jonathan Bona, Olivia Helfer, Barry Smith, Alan Ruttenberg & Alexander D. Diehl - 2016 - Proceedings of the International Conference on Biological Ontology 1747.
    Monoclonal antibodies are essential biomedical research and clinical reagents that are produced by companies and research laboratories. The NIAID ImmPort (Immunology Database and Analysis Portal) resource provides a long-term, sustainable data warehouse for immunological data generated by NIAID, DAIT and DMID funded investigators for data archiving and re-use. A variety of immunological data is generated using techniques that rely upon monoclonal antibody reagents, including flow cytometry, immunofluorescence, and ELISA. In order to facilitate querying, integration, and reuse of data, standardized terminology (...)
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  16. Ontologies for the study of neurological disease.Alexander P. Cox, Mark Jensen, William Duncan, Bianca Weinstock-Guttman, Kinga Szigeti, Alan Ruttenberg, Barry Smith & Alexander D. Diehl - 2012 - In Towards an Ontology of Mental Functioning (ICBO Workshop), Third International Conference on Biomedical Ontology. Graz:
    We have begun work on two separate but related ontologies for the study of neurological diseases. The first, the Neurological Disease Ontology (ND), is intended to provide a set of controlled, logically connected classes to describe the range of neurological diseases and their associated signs and symptoms, assessments, diagnoses, and interventions that are encountered in the course of clinical practice. ND is built as an extension of the Ontology for General Medical Sciences — a high-level candidate OBO Foundry ontology that (...)
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  17. The Neurological Disease Ontology.Mark Jensen, Alexander P. Cox, Naveed Chaudhry, Marcus Ng, Donat Sule, William Duncan, Patrick Ray, Bianca Weinstock-Guttman, Barry Smith, Alan Ruttenberg, Kinga Szigeti & Alexander D. Diehl - 2013 - Journal of Biomedical Semantics 4 (42):42.
    We are developing the Neurological Disease Ontology (ND) to provide a framework to enable representation of aspects of neurological diseases that are relevant to their treatment and study. ND is a representational tool that addresses the need for unambiguous annotation, storage, and retrieval of data associated with the treatment and study of neurological diseases. ND is being developed in compliance with the Open Biomedical Ontology Foundry principles and builds upon the paradigm established by the Ontology for General Medical Science (OGMS) (...)
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  18. Towards a Body Fluids Ontology: A unified application ontology for basic and translational science.Jiye Ai, Mauricio Barcellos Almeida, André Queiroz De Andrade, Alan Ruttenberg, David Tai Wai Wong & Barry Smith - 2011 - Second International Conference on Biomedical Ontology , Buffalo, Ny 833:227-229.
    We describe the rationale for an application ontology covering the domain of human body fluids that is designed to facilitate representation, reuse, sharing and integration of diagnostic, physiological, and biochemical data, We briefly review the Blood Ontology (BLO), Saliva Ontology (SALO) and Kidney and Urinary Pathway Ontology (KUPO) initiatives. We discuss the methods employed in each, and address the project of using them as starting point for a unified body fluids ontology resource. We conclude with a description of how the (...)
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  19. Developing the Quantitative Histopathology Image Ontology : A case study using the hot spot detection problem.Metin Gurcan, Tomaszewski N., Overton John, A. James, Scott Doyle, Alan Ruttenberg & Barry Smith - 2017 - Journal of Biomedical Informatics 66:129-135.
    Interoperability across data sets is a key challenge for quantitative histopathological imaging. There is a need for an ontology that can support effective merging of pathological image data with associated clinical and demographic data. To foster organized, cross-disciplinary, information-driven collaborations in the pathological imaging field, we propose to develop an ontology to represent imaging data and methods used in pathological imaging and analysis, and call it Quantitative Histopathological Imaging Ontology – QHIO. We apply QHIO to breast cancer hot-spot detection with (...)
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  20. Ontology and the Future of Dental Research Informatics.Barry Smith, Louis J. Goldberg, Alan Ruttenberg & Michael Glick - 2010 - Journal of the American Dental Association 141 (10):1173-75.
    How do we find what is clinically significant in the swarms of data being generated by today’s diagnostic technologies? As electronic records become ever more prevalent – and digital imaging and genomic, proteomic, salivaomics, metabalomics, pharmacogenomics, phenomics and transcriptomics techniques become commonplace – fdifferent clinical and biological disciplines are facing up to the need to put their data houses in order to avoid the consequences of an uncontrolled explosion of different ways of describing information. We describe a new strategy to (...)
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  21. VO: Vaccine Ontology.Yongqun He, Lindsay Cowell, Alexander D. Diehl, H. L. Mobley, Bjoern Peters, Alan Ruttenberg, Richard H. Scheuermann, Ryan R. Brinkman, Melanie Courtot, Chris Mungall, Barry Smith & Others - 2009 - In ICBO 2009: Proceedings of the First International Conference on Biomedical Ontology. Buffalo:
    Vaccine research, as well as the development, testing, clinical trials, and commercial uses of vaccines involve complex processes with various biological data that include gene and protein expression, analysis of molecular and cellular interactions, study of tissue and whole body responses, and extensive epidemiological modeling. Although many data resources are available to meet different aspects of vaccine needs, it remains a challenge how we are to standardize vaccine annotation, integrate data about varied vaccine types and resources, and support advanced vaccine (...)
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  22. The development of non-coding RNA ontology.Jingshan Huang, Karen Eilbeck, Barry Smith, Judith Blake, Deijing Dou, Weili Huang, Darren Natale, Alan Ruttenberg, Jun Huan, Michael Zimmermann, Guoqian Jiang, Yu Lin, Bin Wu, Harrison Strachan, Nisansa de Silva & Mohan Vamsi Kasukurthi - 2016 - International Journal of Data Mining and Bioinformatics 15 (3):214--232.
    Identification of non-coding RNAs (ncRNAs) has been significantly improved over the past decade. On the other hand, semantic annotation of ncRNA data is facing critical challenges due to the lack of a comprehensive ontology to serve as common data elements and data exchange standards in the field. We developed the Non-Coding RNA Ontology (NCRO) to handle this situation. By providing a formally defined ncRNA controlled vocabulary, the NCRO aims to fill a specific and highly needed niche in semantic annotation of (...)
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  23. A domain ontology for the non-coding RNA field.Jingshan Huang, Karen Eilbeck, Judith A. Blake, Dejing Dou, Darren A. Natale, Alan Ruttenberg, Barry Smith, Michael T. Zimmermann, Guoqian Jiang & Yu Lin - 2015 - In Huang Jingshan, Eilbeck Karen, Blake Judith A., Dou Dejing, Natale Darren A., Ruttenberg Alan, Smith Barry, Zimmermann Michael T., Jiang Guoqian & Lin Yu (eds.), IEEE International Conference on Bioinformatics and Biomedicine (IEEE BIBM 2015). pp. 621-624.
    Identification of non-coding RNAs (ncRNAs) has been significantly enhanced due to the rapid advancement in sequencing technologies. On the other hand, semantic annotation of ncRNA data lag behind their identification, and there is a great need to effectively integrate discovery from relevant communities. To this end, the Non-Coding RNA Ontology (NCRO) is being developed to provide a precisely defined ncRNA controlled vocabulary, which can fill a specific and highly needed niche in unification of ncRNA biology.
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  24. The development of non-coding RNA ontology.Huang Jingshan, Eilbeck Karen, Smith Barry, Blake Judith, A. Dou, Dejing Huang, Weili Natale, A. Darren, Ruttenberg Alan, Huan Jun, Zimmermann Michael & T. Others - 2016 - International Journal of Data Mining and Bioinformatics 15 (3):214--232.
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  25. More about ontology: Response.Barry Smith, Louis Goldberg, Michael Glick & Alan Ruttenberg - 2011 - Journal of the American Dental Association 142 (3):252-254.
    Letter commenting on the paper Barry Smith, Louis J. Goldberg, Alan Ruttenberg & Michael Glick, "Ontology and the Future of Dental Research Informatics", Journal of the American Dental Association 141 2010;(10):1173-75 with responses by the authors of the paper.
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  26. The Non-Coding RNA Ontology : a comprehensive resource for the unification of non-coding RNA biology.Huang Jingshan, Eilbeck Karen, Barry Smith, A. Blake Judith, Dou Dejing, Huang Weili, A. Natale Darren, Ruttenberg Alan, Huan Jun & T. Zimmermann Michael - 2016 - Journal of Biomedical Semantics 7 (1).
    In recent years, sequencing technologies have enabled the identification of a wide range of non-coding RNAs (ncRNAs). Unfortunately, annotation and integration of ncRNA data has lagged behind their identification. Given the large quantity of information being obtained in this area, there emerges an urgent need to integrate what is being discovered by a broad range of relevant communities. To this end, the Non-Coding RNA Ontology (NCRO) is being developed to provide a systematically structured and precisely defined controlled vocabulary for the (...)
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  27. Computing machinery and intelligence.Alan M. Turing - 1950 - Mind 59 (October):433-60.
    I propose to consider the question, "Can machines think?" This should begin with definitions of the meaning of the terms "machine" and "think." The definitions might be framed so as to reflect so far as possible the normal use of the words, but this attitude is dangerous, If the meaning of the words "machine" and "think" are to be found by examining how they are commonly used it is difficult to escape the conclusion that the meaning and the answer to (...)
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  28.  36
    The Standing of Psychoanalysis.Howard S. Ruttenberg - 1984 - Noûs 18 (3):534-541.
  29.  19
    Exploitation.Alan Wertheimer - 1996 - Princeton University Press.
    What is the basis for arguing that a volunteer army exploits citizens who lack civilian career opportunities? How do we determine that a doctor who has sex with his patients is exploiting them? In this book, Alan Wertheimer seeks to identify when a transaction or relationship can be properly regarded as exploitative--and not oppressive, manipulative, or morally deficient in some other way--and explores the moral weight of taking unfair advantage. Among the first political philosophers to examine this important topic (...)
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  30.  7
    Review of B. A. Farrell: The Standing of Psychoanalysis[REVIEW]Howard S. Ruttenberg - 1984 - Ethics 94 (2):350-351.
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  31.  42
    Plato's use of the analogy between justice and health.Howard S. Ruttenberg - 1986 - Journal of Value Inquiry 20 (2):145-156.
  32.  36
    The Normativity of Meaning.Alan Millar - 2002 - Royal Institute of Philosophy Supplement 51:57-73.
    In a discussion of rule-following inspired by Wittgenstein, Kripke asks us to consider the relation which holds between meaning plus by ‘+’ and answering questions like, ‘What is the sum of 68 and 57?’. A dispositional theory has it that if you mean plus by ‘+’ then you will probably answer, ‘125’. That is because, according to such a theory, to mean plus by ‘+’is, roughly speaking, to be disposed, by and large, and among other things, to answer such questions (...)
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  33.  15
    Alan Watts--in the academy: essays and lectures.Alan Watts (ed.) - 2017 - Albany, NY: SUNY Press.
    Explores language and mysticism, Buddhism and Zen, Christianity, comparative religion, psychedelics, and psychology and psychotherapy. Gold Winner for Philosophy, 2017 Foreword INDIES Book of the Year Awards To commemorate the 2015 centenary of the birth of Alan Watts (1915–1973), Peter J. Columbus and Donadrian L. Rice have assembled a much-needed collection of Watts’s scholarly essays and lectures. Compiled from professional journals, monographs, scholarly books, conferences, and symposia proceedings, the volume sheds valuable light on the developmental arc of Watts’s thinking (...)
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  34. Coincidence: The Grounding Problem, Object-Specifying Principles, and Some Consequences.Alan Sidelle - 2016 - Philosophical Papers 45 (3):497-528.
    This paper lays out the basic structure of any view involving coincident entities, in the light of the grounding problem. While the account is not novel, I highlight fundamental features, to which attention is not usually properly drawn. With this in place, I argue for a number of further claims: The basic differences between coincident objects are modal differences, and any other differences between them need to be explained in terms of these differences. More specifically, the basic difference is not (...)
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  35.  5
    Corrigendum to Trent Hamann's Review of Edward F. McGushin's Foucault's Askesis_ published in _Foucault Studies 6.Alan Rosenberg, Sverre Raffnsøe, Alain Beaulieu, Sam Binkley, Jens Erik Kristensen, Sven Opitz, Chloë Taylor, Morris Rabinowitz & Ditte Vilstrup Holm - 2009 - Foucault Studies 7.
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  36. Self-Developing America.H. J. RUTTENBERG - 1960
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  37.  16
    The Greeks on Pleasure. J. C. B. Gosling, C. C. W. Taylor.Howard Ruttenberg - 1985 - Ethics 95 (4):963-964.
  38.  46
    The Cambridge Companion to Pragmatism.Alan R. Malachowski (ed.) - 2013 - New York: Cambridge University Press.
    Pragmatism established a philosophical presence over a century ago through the work of Charles Peirce, William James and John Dewey, and has enjoyed an unprecedented revival in recent years owing to the pioneering efforts of Richard Rorty and Hilary Putnam. The essays in this volume explore the history and themes of classic pragmatism, discuss the revival of pragmatism and show how it engages with a range of areas of inquiry including politics, law, education, aesthetics, religion and feminism. Together they provide (...)
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  39.  12
    Philosophy and Personal Relations: An Anglo-French Study.Alan Montefiore (ed.) - 1973 - Montreal,: McGill-Queen's University Press.
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  40.  3
    Natural: how faith in nature's goodness leads to harmful fads, unjust laws, and flawed science.Alan Levinovitz - 2020 - Boston: Beacon Press.
    The widespread confusion of Nature with God and "natural" with holy has far-reaching negative consequences, from misinformation about everyday food and health choices to mistaken justifications of sexism, racism, and flawed economic policies.
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  41.  4
    A companion to Rorty.Alan R. Malachowski (ed.) - 2020 - Hoboken: Wiley.
    There has been an upsurge of interest in Rorty's contribution to philosophy in recent years, and his extensive influence is now widely acknowledged. Clear division of RR's work to give people a way in to the study of this wide-ranging philosopher. Five parts dealing with: (1) Rorty's early work (2) key texts (3) Rorty's unique pragmatist approach to key philosophical themes (4) reactions to, and appropriations of, Rorty's work, and (5) a selection of essays dealing with the practical application of (...)
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  42.  6
    Introduction.Alan Malachowski - 2020 - In A companion to Rorty. Hoboken: Wiley. pp. 1–7.
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  43. The Genealogy of Epistemic Virtue Concepts.Alan Thomas - 2008 - Philosophical Papers 37 (3):345-369.
    Abstract This paper examines the treatment of thick ethical concepts in Williams's work in order to evaluate the consistency of his treatment of ethical and epistemic concepts and to assess whether the idea of a thick concept can be extended from ethics to epistemology. A virtue epistemology is described modeled on a cognitivist virtue ethics. Williams's genealogy of the virtues surrounding propositional knowledge (the virtues of ?truthfulness?) is critically evaluated. It is concluded that this genealogy is an important contribution to (...)
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  44.  21
    Is Cultural Pluralism Relevant to Moral Knowledge?Alan Gewirth - 2000 - In Christopher W. Gowans (ed.), Moral Disagreements: Classic and Contemporary Readings. New York: Routledge. pp. 22-43.
  45.  62
    Consent to Sexual Relations.Alan Wertheimer - 2003 - Cambridge University Press.
    When does a woman give valid consent to sexual relations? When does her consent render it morally or legally permissible for a man to have sexual relations with her? Why is sexual consent generally regarded as an issue about female consent? And what is the moral significance of consent? These are some of the questions discussed in this important book, which will appeal to a wide readership in philosophy, law, and the social sciences. Alan Wertheimer develops a theory of (...)
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  46.  10
    Political philosophy after 1945.Alan Haworth - 2023 - New York, NY: Routledge.
    The period following World War Two required a major reassessment of the very nature of political philosophy and political ideas and witnessed the emergence or reemerging of major concepts, such as political freedom, liberty and justice. In this clear and engaging introduction to recent political philosophy Alan Haworth explores the following topics: The philosophical nature of totalitarianism Hannah Arendt's explanation of totalitarianism in the context of Hitler and Stalin's regimes Karl Popper and the idea of the open society The (...)
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  47.  14
    Alan Turing's systems of logic: the Princeton thesis.Alan Turing - 2012 - Woodstock, England: Princeton University Press. Edited by Andrew W. Appel & Solomon Feferman.
    Though less well known than his other work, Turings 1938 Princeton Thesis, this title which includes his notion of an oracle machine, has had a lasting influence on computer science and mathematics. It presents a facsimile of the original typescript of the thesis along with essays by Appel and Feferman that explain its still-unfolding significance.
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  48.  6
    Introduction.Alan Montefiore - 1973 - In Philosophy and Personal Relations: An Anglo-French Study. Montreal,: McGill-Queen's University Press. pp. 1-22.
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  49.  13
    Hegel and the Spirit: Philosophy as Pneumatology.Alan M. Olson - 1992 - Princeton University Press.
    Hegel and the Spirit explores the meaning of Hegel's grand philosophical category, the category of Geist, by way of what Alan Olson terms a pneumatological thesis. Hegel's philosophy of spirit, according to Olson, is a speculative pneumatology that completes what Adolf von Harnack once called the "orphan doctrine" in Christian theology--the doctrine of the Holy Spirit. Olson argues that Hegel's development of philosophy as pneumatology originates out of a deep appreciation of Luther's dialectical understanding of Spirit and that Hegel's (...)
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    Scales of ignorance: an ethical normative framework to account for relative risk of harm in sport categorization.Alan C. Oldham - forthcoming - Journal of the Philosophy of Sport:1-19.
    Sport categorization is often justified by benefits such as increased fairness or inclusion. Taking inspiration from John Rawls, Sigmund Loland’s fair equality of opportunity principle in sport (FEOPs) is a tool for determining whether the existence of an inequality ethically justifies the institution of a new category in any given sport. It is an elegant ethical normative framework, but since FEOPs does not account explicitly for athlete safety (i.e. athlete physical and mental wellbeing), we are left in an ethically dubious (...)
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