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Introduction: What is Ontology for?

In Katherine Munn & Barry Smith (eds.), Applied Ontology: An Introduction. Walter de Gruyter. pp. 7-19 (2008)

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  1. Bodily Systems and the Spatial-Functional Structure of the Human Body.Barry Smith - 2004 - Studies in Health and Technology Informatics 102:39–63.
    The human body is a system made of systems. The body is divided into bodily systems proper, such as the endocrine and circulatory systems, which are subdivided into many sub-systems at a variety of levels, whereby all systems and subsystems engage in massive causal interaction with each other and with their surrounding environments. Here we offer an explicit definition of bodily system and provide a framework for understanding their causal interactions. Medical sciences provide at best informal accounts of basic notions (...)
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  • Aristoteles 2002.Barry Smith - 2003 - In T. Buchheim (ed.), Kann man heute noch etwas anfangen mit Aristoteles? Meiner. pp. 3-38.
    The essay surveys recent developments in ontology and defends a strategy for improvement of ontologies based on ontological realism. As a thought experiment, we consider central theses of Aristotelian metaphysics, and show how they fall short of what we believe to be the requirements of ontology today. Above all, Aristotle provides us with no strategy for the reconciliation of common-sense realism and scientific realism where these diverge. We focus specifically on shortfalls in Aristotle’s treatment of individual accidents, especially in regard (...)
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  • The Ontology-Epistemology Divide: A Case Study in Medical Terminology.OIivier Bodenreider, Barry Smith & Anita Burgun - 2004 - In Achille Varzi & Laure Vieu (eds.), Formal Ontology in Information Systems. Proceedings of the Third International Conference (FOIS 2004). IOS Press.
    Medical terminology collects and organizes the many different kinds of terms employed in the biomedical domain both by practitioners and also in the course of biomedical research. In addition to serving as labels for biomedical classes, these names reflect the organizational principles of biomedical vocabularies and ontologies. Some names represent invariant features (classes, universals) of biomedical reality (i.e., they are a matter for ontology). Other names, however, convey also how this reality is perceived, measured, and understood by health professionals (i.e., (...)
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  • Against idiosyncrasy in ontology development.Barry Smith - 2006 - In B. Bennett & C. Fellbaum (eds.), Formal Ontology in Information Systems (FOIS). Amsterdam: IOS Press. pp. 15-26.
    The world of ontology development is full of mysteries. Recently, ISO Standard 15926 (“Lifecycle Integration of Process Plant Data Including Oil and Gas Production Facilities”), a data model initially designed to support the integration and handover of large engineering artefacts, has been proposed by its principal custodian for general use as an upper level ontology. As we shall discover, ISO 15926 is, when examined in light of this proposal, marked by a series of quite astonishing defects, which may however provide (...)
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  • Näst sista ordet.Per Lindström - 2001 - Norsk Filosofisk Tidsskrift 1.
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  • My Philosophical Development. By T. V. Smith.Bertrand Russell & Alan Wood - 1959 - Ethics 70 (1):93-94.
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  • Ontology with Human Subjects Testing: An Empirical Investigation of Geographic Categories.Barry Smith & David M. Mark - 1998 - American Journal of Economics and Sociology 58 (2):245–272.
    Ontology, since Aristotle, has been conceived as a sort of highly general physics, a science of the types of entities in reality, of the objects, properties, categories and relations which make up the world. At the same time ontology has been for some two thousand years a speculative enterprise. It has rested methodologically on introspection and on the construction and analysis of elaborate world-models and of abstract formal-ontological theories. In the work of Quine and others this ontological theorizing in abstract (...)
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  • Intentionality.John Searle - 1983 - Philosophy 59 (229):417-418.
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  • The Logical Structure of the Linnaen Hierarchy.Roger C. Buck & David L. Hull - 1966 - Systematic Zoology 15 (2):97-111.
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  • Concepts and Cognitive Science.Stephen Laurence & Eric Margolis - 1999 - In Eric Margolis & Stephen Laurence (eds.), Concepts: Core Readings. MIT Press. pp. 3-81.
    Given the fundamental role that concepts play in theories of cognition, philosophers and cognitive scientists have a common interest in concepts. Nonetheless, there is a great deal of controversy regarding what kinds of things concepts are, how they are structured, and how they are acquired. This chapter offers a detailed high-level overview and critical evaluation of the main theories of concepts and their motivations. Taking into account the various challenges that each theory faces, the chapter also presents a novel approach (...)
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  • The structure of knowing : Existential trust as an epistemological category.Hildur Kalman - 1999 - Acta Universitatis Umensis 145.
    This thesis investigates the structure of knowing, and it argues that existential trust is an epistemological category. The aim of the dissertation is to develop a view according to which all human activity is seen as an activity of a lived body, and in which the understanding of the structure of such activity is regarded as central for the solution even of epistemological problems. This view is not rooted in any one philosophical tradition, but circles around activity of the lived (...)
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  • Ontology theory.Christopher Menzel - 2002 - In Jerome Euzenat, Asuncion Gomez-Perez, Nicola Guarino & Heiner Stuckenschmidt (eds.), CEUR Workshop Proceedings, Vol. 64.
    Ontology today is in many ways in a state similar to that of analysis in the late 18th century prior to arithmetization: it lacks the sort rigorous theoretical foundations needed to elevate ontology to the level of a genuine scientific discipline. This paper attempts to make some first steps toward the development of such foundations. Specifically, starting with some basic intuitions about ontologies and their content, I develop an expressively rich framework capable of treating ontologies as theoretical objects whose properties (...)
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  • A unified theory of truth and reference.Barry Smith & Berit Brogaard - 2000 - Logique Et Analyse 43 (169-170):49–93.
    The truthmaker theory rests on the thesis that the link between a true judgment and that in the world to which it corresponds is not a one-to-one but rather a one-to-many relation. An analogous thesis in relation to the link between a singular term and that in the world to which it refers is already widely accepted. This is the thesis to the effect that singular reference is marked by vagueness of a sort that is best understood in supervaluationist terms. (...)
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  • Against Set Theory.Peter Simons - 2005 - In Johann C. Marek Maria E. Reicher (ed.), Experience and Analysis. Hpt&Öbv. pp. 143--152.
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  • SNAP and SPAN: Towards dynamic spatial ontology.Pierre Grenon & Barry Smith - 2004 - Spatial Cognition and Computation 4 (1):69–103.
    We propose a modular ontology of the dynamic features of reality. This amounts, on the one hand, to a purely spatial ontology supporting snapshot views of the world at successive instants of time and, on the other hand, to a purely spatiotemporal ontology of change and process. We argue that dynamic spatial ontology must combine these two distinct types of inventory of the entities and relationships in reality, and we provide characterizations of spatiotemporal reasoning in the light of the interconnections (...)
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  • A hierarchy of species concepts: the denouement in the saga of the species problem.R. L. Mayden - 1997 - In M. F. Claridge, H. A. Dawah & M. R. Wilson (eds.), Species: The units of diversity,. Chapman & Hall. pp. 381–423.
    At least 22 concepts of species are in use today and many of these are notably incompatible in their accounts of biological diversity. Much of the traditional turmoil embodied in the species problem ultimately derives from the packaging of inappropriate criteria for species into a single concept. This results from a traditional conflation of function of concepts with their applications, definitions with concepts, taxonomic categories with groups, and the ontological status of real species with teleological approaches to recover them. Analogous (...)
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  • Beyond concepts: Ontology as reality representation.Barry Smith - 2004 - In Achille C. Varzi & Laure Vieu (eds.), Formal Ontology in Information Systems (FOIS). pp. 1-12.
    The present essay is devoted to the application of ontology in support of research in the natural sciences. It defends the thesis that ontologies developed for such purposes should be understood as having as their subject matter, not concepts, but rather the universals and particulars which exist in reality and are captured in scientific laws. We outline the benefits of a view along these lines by showing how it yields rigorous formal definitions of the foundational relations used in many influential (...)
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  • Aristoteles’ Kategorie des Relativen zwischen Dialektik und Ontologie.Ludger Jansen - 2006 - History of Philosophy & Logical Analysis 9.
    Like the doctrine of the categories in general, Aristotle’s category of the relative fulfils disparate functions: On the one hand, the category of the pros ti fulfils a dialectic or logical function that aims at the avoidance of fallacies. On the other hand, the category respects the peculiar mode of being of the relative. Taking these two different functions into consideration helps with the interpretation of Aristotle’s two definitions of the relative and his treatment of the properties of the relative (...)
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  • Critique of Pure Reason.I. Kant - 1787/1998 - Philosophy 59 (230):555-557.
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  • On negative and disjunctive properties.Uwe Meixner - 1992 - In Kevin Mulligan (ed.), Language, Truth and Ontology. Kluwer Academic Publishers. pp. 28--36.
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  • Surrounding Space.Barry Smith & Achille C. Varzi - 2002 - Theory in Biosciences 121 (2):139-162.
    The history of evolution is a history of development from less to more complex organisms. This growth in complexity of organisms goes hand in hand with a concurrent growth in complexity of environments and of organism-environment relations. It is a concern with this latter aspect of evolutionary development that motivates the present paper. We begin by outlining a theory of organism-environment relations. We then show that the theory can be applied to a range of different sorts of cases, both biological (...)
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  • Biodynamic Ontology: Applying BFO in the Biomedical Domain.Barry Smith, Pierre Grenon & Louis Goldberg - 2004 - Studies in Health and Technology Informatics 102:20–38.
    Current approaches to formal representation in biomedicine are characterized by their focus on either the static or the dynamic aspects of biological reality. We here outline a theory that combines both perspectives and at the same time tackles the by no means trivial issue of their coherent integration. Our position is that a good ontology must be capable of accounting for reality both synchronically (as it exists at a time) and diachronically (as it unfolds through time), but that these are (...)
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  • Referent Tracking: The Problem of Negative Findings.Werner Ceusters, Peter Elkin & Barry Smith - 2006 - Studies in Health Technology and Informatics 124:741-46.
    The paradigm of referent tracking is based on a realist presupposition which rejects so-called negative entities (congenital absent nipple, and the like) as spurious. How, then, can a referent tracking-based Electronic Health Record deal with what are standardly called ‘negative findings’? To answer this question we carried out an analysis of some 748 sentences drawn from patient charts and containing some form of negation. Our analysis shows that to deal with these sentences we need to introduce a new ontological relationship (...)
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  • Tracking Referents in Electronic Health Records.Werner Ceusters & Barry Smith - 2005 - Studies in Health Technology and Informatics 116:71–76.
    Electronic Health Records (EHRs) are organized around two kinds of statements: those reporting observations made, and those reporting acts performed. In neither case does the record involve any direct reference to what such statements are actually about. They record not: what is happening on the side of the patient, but rather: what is said about what is happening. While the need for a unique patient identifier is generally recognized, we argue that we should now move to an EHR regime in (...)
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  • Quantum mereotopology.Barry Smith & Berit O. Brogaard - 2002 - Annals of Mathematics and Artificial Intelligence 36 (1):153-175.
    Mereotopology faces problems when its methods are extended to deal with time and change. We offer a new solution to these problems, based on a theory of partitions of reality which allows us to simulate (and also to generalize) aspects of set theory within a mereotopological framework. This theory is extended to a theory of coarse- and fine-grained histories (or finite sequences of partitions evolving over time), drawing on machinery developed within the framework of the so-called ‘consistent histories’ interpretation of (...)
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  • The Logic of Scientific Discovery.K. Popper - 1959 - British Journal for the Philosophy of Science 10 (37):55-57.
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  • The Human Animal. Personal identity without psychology.Eric T. Olson - 1997 - Revue Philosophique de la France Et de l'Etranger 192 (1):112-113.
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  • Strategies for Referent Tracking in Electronic Health Records.Werner Ceusters & Barry Smith - 2006 - Journal of Biomedical Informatics 39 (3):362-378.
    The goal of referent tracking is to create an ever-growing pool of data relating to the entities existing in concrete spatiotemporal reality. In the context of Electronic Healthcare Records (EHRs) the relevant concrete entities are not only particular patients but also their parts, diseases, therapies, lesions, and so forth, insofar as these are salient to diagnosis and treatment. Within a referent tracking system, all such entities are referred to directly and explicitly, something which cannot be achieved when familiar concept-based systems (...)
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  • Conjectures and Refutations.K. Popper - 1963 - Les Etudes Philosophiques 21 (3):431-434.
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  • Wüsteria.Barry Smith, Werner Ceusters & Rita Temmerman - 2005 - Studies in Health Technology and Informatics 116:647-652.
    The last two decades have seen considerable efforts directed towards making Electronic Health Records interoperable through improvements in medical ontologies, terminologies and coding systems. Unfortunately, these efforts have been hampered by a number of influential ideas inherited from the work of Eugen Wüster, the father of terminology standardization and the founder of ISO TC 37. We here survey Wüster’s ideas – which see terminology work as being focused on the classification of concepts in people’s minds – and we argue that (...)
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  • A Survey of Metaphysics.Ernest Jonathan Lowe & Jörg Disse - 2005 - Tijdschrift Voor Filosofie 67 (2):347-348.
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  • Phylogenetic Systematics.Willi Hennig, D. Dwight Davis & Rainer Zangerl - 1980 - Philosophy of Science 47 (3):499-502.
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  • The Logical Syntax of Language.Rudolf Carnap & Amethe Smeaton - 1938 - Philosophy 13 (52):485-486.
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  • Human Knowledge, Its Scope and Limits.Bertrand Russell - 1949 - Revue de Métaphysique et de Morale 54 (2):198-199.
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  • The Logic of Scientific Discovery.Karl R. Popper - 1959 - Les Etudes Philosophiques 14 (3):383-383.
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  • The Open Society and its Enemies.Karl R. Popper - 1952 - Revue Philosophique de la France Et de l'Etranger 142:629-634.
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  • Biological Individuality: The Identity and Persistence of Living Entities.Jack Wilson - 2001 - Philosophical Quarterly 51 (203):264-266.
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  • Things and Descriptions.Herbert Hochberg - 1966 - American Philosophical Quarterly 3 (1):39 - 47.
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  • Logic: Part I.W. E. Johnson - 1921 - Mind 30 (120):448-455.
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