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  1. Top-down causation without top-down causes.Carl F. Craver & William Bechtel - 2007 - Biology and Philosophy 22 (4):547-563.
    We argue that intelligible appeals to interlevel causes (top-down and bottom-up) can be understood, without remainder, as appeals to mechanistically mediated effects. Mechanistically mediated effects are hybrids of causal and constitutive relations, where the causal relations are exclusively intralevel. The idea of causation would have to stretch to the breaking point to accommodate interlevel causes. The notion of a mechanistically mediated effect is preferable because it can do all of the required work without appealing to mysterious interlevel causes. When interlevel (...)
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  • Dispositions. [REVIEW]John W. Carroll - 2001 - Philosophical Review 110 (1):82-84.
    With the possible exception of causation, disposition concepts are as prevalent in ordinary thought as any of the nomic concepts. Progress on their nature has been hard to come by. No doubt the difficulty of saying anything illuminating and suitably general about their nature is a function of their pervasiveness.
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  • Explanation: a mechanist alternative.William Bechtel & Adele Abrahamsen - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 36 (2):421-441.
    Explanations in the life sciences frequently involve presenting a model of the mechanism taken to be responsible for a given phenomenon. Such explanations depart in numerous ways from nomological explanations commonly presented in philosophy of science. This paper focuses on three sorts of differences. First, scientists who develop mechanistic explanations are not limited to linguistic representations and logical inference; they frequently employ diagrams to characterize mechanisms and simulations to reason about them. Thus, the epistemic resources for presenting mechanistic explanations are (...)
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  • Causality and explanation: A reply to two critiques.Wesley C. Salmon - 1997 - Philosophy of Science 64 (3):461-477.
    This paper discusses several distinct process theories of causality offered in recent years by Phil Dowe and me. It addresses problems concerning the explication of causal process, causal interaction, and causal transmission, whether given in terms of transmission of marks, transmission of invariant or conserved quantities, or mere possession of conserved quantities. Renouncing the mark-transmission and invariant quantity criteria, I accept a conserved quantity theory similar to Dowe's--differing basically with respect to causal transmission. This paper also responds to several fundamental (...)
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  • Organisms ≠ Machines.Daniel J. Nicholson - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4):669-678.
    The machine conception of the organism (MCO) is one of the most pervasive notions in modern biology. However, it has not yet received much attention by philosophers of biology. The MCO has its origins in Cartesian natural philosophy, and it is based on the metaphorical redescription of the organism as a machine. In this paper I argue that although organisms and machines resemble each other in some basic respects, they are actually very different kinds of systems. I submit that the (...)
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  • Powers: A Study in Metaphysics.George Molnar - 2003 - New York: Oxford University Press. Edited by Stephen Mumford.
    George Molnar came to see that the solution to a number of the problems of contemporary philosophy lay in the development of an alternative to Hume's metaphysics. This alternative would have real causal powers at its centre. Molnar set about developing a thorough account of powers that might persuade those who remained, perhaps unknowingly, in the grip of Humean assumptions. He succeeded in producing something both highly focused and at the same time wide-ranging. He showed both that the notion of (...)
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  • Thinking about mechanisms.Peter Machamer, Lindley Darden & Carl F. Craver - 2000 - Philosophy of Science 67 (1):1-25.
    The concept of mechanism is analyzed in terms of entities and activities, organized such that they are productive of regular changes. Examples show how mechanisms work in neurobiology and molecular biology. Thinking in terms of mechanisms provides a new framework for addressing many traditional philosophical issues: causality, laws, explanation, reduction, and scientific change.
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  • Time, space and form: Necessary for causation in health, disease and intervention?David W. Evans, Nicholas Lucas & Roger Kerry - 2016 - Medicine, Health Care and Philosophy 19 (2):207-213.
    Sir Austin Bradford Hill’s ‘aspects of causation’ represent some of the most influential thoughts on the subject of proximate causation in health and disease. Hill compiled a list of features that, when present and known, indicate an increasing likelihood that exposure to a factor causes—or contributes to the causation of—a disease. The items of Hill’s list were not labelled ‘criteria’, as this would have inferred every item being necessary for causation. Hence, criteria that are necessary for causation in health, disease (...)
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  • The clinical application of the biopsychosocial model.George L. Engel - 1980 - Journal of Medicine and Philosophy 6 (2):101-124.
    How physicians approach patients and the problems they present is much influenced by the conceptual models around which their knowledge is organized. In this paper the implications of the biopsychosocial model for the study and care of a patient with an acute myocardial infarction are presented and contrasted with approaches used by adherents of the more traditional biomedical model. CiteULike Connotea Del.icio.us What's this?
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  • Phil Dowe, Physical Causation. [REVIEW]Phil Dowe - 2002 - Erkenntnis 56 (2):258-263.
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  • Mental Mechanisms: Philosophical Perspectives on Cognitive Neuroscience.William Bechtel - 2007 - Psychology Press.
    A variety of scientific disciplines have set as their task explaining mental activities, recognizing that in some way these activities depend upon our brain. But, until recently, the opportunities to conduct experiments directly on our brains were limited. As a result, research efforts were split between disciplines such as cognitive psychology, linguistics, and artificial intelligence that investigated behavior, while disciplines such as neuroanatomy, neurophysiology, and genetics experimented on the brains of non-human animals. In recent decades these disciplines integrated, and with (...)
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  • Causation and Laws of Nature.Max Kistler - 2006 - London: Routledge.
    This is the first English translation of _Causalite´ et Lois de La Nature,_ and is an important contribution to the theory of causation_._ Max Kistler reconstructs a unified concept of causation that is general enough to adequately deal with both elementary physical processes, and the macroscopic level of phenomena we encounter in everyday life. This book will be of great interest to philosophers of science and metaphysics, and also to students and scholars of philosophy of mind where concepts of causation (...)
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  • Discovering Complexity: Decomposition and Localization as Strategies in Scientific Research.William Bechtel & Robert C. Richardson - 2010 - Princeton.
    An analysis of two heuristic strategies for the development of mechanistic models, illustrated with historical examples from the life sciences. In Discovering Complexity, William Bechtel and Robert Richardson examine two heuristics that guided the development of mechanistic models in the life sciences: decomposition and localization. Drawing on historical cases from disciplines including cell biology, cognitive neuroscience, and genetics, they identify a number of "choice points" that life scientists confront in developing mechanistic explanations and show how different choices result in divergent (...)
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  • Why We Get Sick: The New Science of Darwinian Medicine.Randolph M. Nesse & George Christopher Williams - 1996 - Vintage.
    The next time you get sick, consider this before picking up the aspirin: your body may be doing exactly what it's supposed to. In this ground-breaking book, two pioneers of the science of Darwinian medicine argue that illness as well as the factors that predispose us toward it are subject to the same laws of natural selection that otherwise make our bodies such miracles of design. Among the concerns they raise: When may a fever be beneficial? Why do pregnant women (...)
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  • The Normal and the Pathological.Georges Canguilhem - 1989 - Zone Books.
    The normal and the pathological are terms used for structures, activities, individual or collective situations proper to living beings and especially to man. The relation of a fact and a norm is its positive or negative value. Can the assessment of behaviours be reduced to noting a necessity? Is a living being's disease a fact similar to universal attraction? The author maintains that diseases are not merely predetermined effects, but are revealing of a normative regulation proper to living beings and (...)
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  • Getting Causes From Powers.Stephen Mumford & Rani Lill Anjum - 2011 - Oxford, GB: Oxford University Press. Edited by Rani Lill Anjum.
    Causation is everywhere in the world: it features in every science and technology. But how much do we understand it? Mumford and Anjum develop a new theory of causation based on an ontology of real powers or dispositions. They provide the first detailed outline of a thoroughly dispositional approach, and explore its surprising features.
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  • Causation and laws of nature.Max Kistler - 2006 - London: Routledge. Edited by Michael Beaney.
    Causation is important. It is, as Hume said, the cement of the universe, and lies at the heart of our conceptual structure. Causation is one of the most fundamental tools we have for organizing our apprehension of the external world and ourselves. But philosophers' disagreement about the correct interpretation of causation is as limitless as their agreement about its importance. The history of attempts to elucidate the nature of this concept and to situate it with respect to other fundamental concepts (...)
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  • Dispositions.Stephen Mumford - 1998 - Oxford, GB: Clarendon Press.
    Stephen Mumford puts forward a new theory of dispositions, showing how central their role is in metaphysics and philosophy of science. Much of our understanding of the physical and psychological world is expressed in terms of dispositional properties--from the solubility of sugar to the belief that zebras have stripes. Mumford discusses what it means to say that something has a property of this kind, and how dispositions can possibly be real things in the world. His clear, straightforward, realist account reveals (...)
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  • Physical Causation.Phil Dowe - 2000 - New York: Cambridge University Press.
    This book, published in 2000, is a clear account of causation based firmly in contemporary science. Dowe discusses in a systematic way, a positive account of causation: the conserved quantities account of causal processes which he has been developing over the last ten years. The book describes causal processes and interactions in terms of conserved quantities: a causal process is the worldline of an object which possesses a conserved quantity, and a causal interaction involves the exchange of conserved quantities. Further, (...)
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  • The environment and disease: association or causation?Austin Bradford Hill - 1965 - Proceedings of the Royal Society of Medicine 58 (5):295-300.
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  • The need for a new medical model: a challenge for biomedicine.George L. Engel - 1977 - Science 196:129-136.
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  • Dispositions.Stephen Mumford - 1998 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 32 (1):193-197.
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  • Powers: A Study in Metaphysics.George Molnar & Stephen Mumford - 2006 - Philosophy and Phenomenological Research 72 (2):485-487.
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  • Physical Causation.Phil Dowe - 2003 - Philosophy and Phenomenological Research 67 (1):244-248.
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  • The Normal and the Pathological.Georges Canguilhem & Carolyn R. Fawcett - 1991 - Journal of the History of Biology 24 (3):542-545.
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  • More is different.P. W. Anderson - 1994 - In H. Gutfreund & G. Toulouse (eds.), Biology and Computation: A Physicist's Choice. World Scientific. pp. 3--21.
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