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  1. Epistemological custard pies from functional brain imaging.James Bogen - 2002 - Philosophy of Science 69 (3):S59-S71.
    This paper discusses features of an epistemically valuable form of evidence that raise troubles for received and new epistemological treatments of experimental evidence.
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  • Experiment and observation.James Bogen - 2002 - In Peter Machamer & Michael Silberstein (eds.), The Blackwell Guide to the Philosophy of Science. Cambridge: Blackwell. pp. 128--148.
    This chapter contains sections titled: Introduction Neglecting Experiment; Distorting Observation The Socio‐Theoretical Turn Some Issues for Empirical Epistemologists.
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  • Model Organisms as Models: Understanding the 'Lingua Franca' of the Human Genome Project.Rachel A. Ankeny - 2001 - Philosophy of Science 68 (S3):S251-S261.
    Through an examination of the actual research strategies and assumptions underlying the Human Genome Project, it is argued that the epistemic basis of the initial model organism programs is not best understood as reasoning via causal analog models. In order to answer a series of questions about what is being modeled and what claims about the models are warranted, a descriptive epistemological method is employed that uses historical techniques to develop detailed accounts which, in turn, help to reveal forms of (...)
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  • Fashioning descriptive models in biology: Of Worms and wiring diagrams.Rachel A. Ankeny - 2000 - Philosophy of Science 67 (3):272.
    The biological sciences have become increasingly reliant on so-called 'model organisms'. I argue that in this domain, the concept of a descriptive model is essential for understanding scientific practice. Using a case study, I show how such a model was formulated in a preexplanatory context for subsequent use as a prototype from which explanations ultimately may be generated both within the immediate domain of the original model and in additional, related domains. To develop this concept of a descriptive model, I (...)
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  • Why philosophical theories of evidence are (and ought to be) ignored by scientists.Peter Achinstein - 2000 - Philosophy of Science 67 (3):180-192.
    There are two reasons, I claim, scientists do and should ignore standard philosophical theories of objective evidence: (1) Such theories propose concepts that are far too weak to give scientists what they want from evidence, viz., a good reason to believe a hypothesis; and (2) They provide concepts that make the evidential relationship a priori, whereas typically establishing an evidential claim requires empirical investigation.
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  • Discovering Cell Mechanisms: The Creation of Modern Cell Biology.William Bechtel - 2005 - Cambridge University Press.
    Between 1940 and 1970 pioneers in the new field of cell biology discovered the operative parts of cells and their contributions to cell life. They offered mechanistic accounts that explained cellular phenomena by identifying the relevant parts of cells, the biochemical operations they performed, and the way in which these parts and operations were organised to accomplish important functions. Cell biology was a revolutionary science but in this book it also provides fuel for yet another revolution, one that focuses on (...)
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  • Philosophical Foundations of Neuroscience.Max R. Bennett & P. M. S. Hacker - 2003 - Hoboken, New Jersey: Wiley-Blackwell. Edited by P. M. S. Hacker.
    Writing from a scientifically and philosophically informed perspective, the authors provide a critical overview of the conceptual difficulties encountered in many current neuroscientific and psychological theories.
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  • Philosophical explanations.Robert Nozick - 1981 - Cambridge, Mass.: Harvard University Press.
    Nozick analyzes fundamental issues, such as the identity of the self, knowledge and skepticism, free will, the foundations of ethics, and the meaning of life.
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  • Representing and Intervening.Ian Hacking - 1983 - British Journal for the Philosophy of Science 35 (4):381-390.
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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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  • Experimental and quasi-experimental designs for generalized causal inference.William R. Shadish - 2001 - Boston: Houghton Mifflin. Edited by Thomas D. Cook & Donald Thomas Campbell.
    Sections include: experiments and generalised causal inference; statistical conclusion validity and internal validity; construct validity and external validity; quasi-experimental designs that either lack a control group or lack pretest observations on the outcome; quasi-experimental designs that use both control groups and pretests; quasi-experiments: interrupted time-series designs; regresssion discontinuity designs; randomised experiments: rationale, designs, and conditions conducive to doing them; practical problems 1: ethics, participation recruitment and random assignment; practical problems 2: treatment implementation and attrition; generalised causal inference: a grounded theory; (...)
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  • No Easy Answers: Science and the Pursuit of Knowledge.Allan Franklin - 2005 - University of Pittsburgh Press.
    In _No Easy Answers_, Allan Franklin offers an accurate picture of science to both a general reader and to scholars in the humanities and social sciences who may not have any background in physics. Through the examination of nontechnical case studies, he illustrates the various roles that experiment plays in science. He uses examples of unquestioned success, such as the discoveries of the electron and of three types of neutrino, as well as studies that were dead ends, wrong turns, or (...)
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  • Memory From a to Z: Keywords, Concepts, and Beyond.Yadin Dudai - 2004 - Oxford University Press.
    Now available as a low priced paperback, Memory from A to Z provides a unique, highly valuable introduction to the field of memory for students and researchers approaching the subject for the first time, while at the same time serving and stimulating the more experienced.
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  • Biological Complexity and Integrative Pluralism.Sandra D. Mitchell - 2003 - Cambridge University Press.
    This fine collection of essays by a leading philosopher of science presents a defence of integrative pluralism as the best description for the complexity of scientific inquiry today. The tendency of some scientists to unify science by reducing all theories to a few fundamental laws of the most basic particles that populate our universe is ill-suited to the biological sciences, which study multi-component, multi-level, evolved complex systems. This integrative pluralism is the most efficient way to understand the different and complex (...)
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  • Philosophy of Experimental Biology.Marcel Weber - 2004 - Cambridge University Press.
    Philosophy of Experimental Biology explores some central philosophical issues concerning scientific research in experimental biology, including genetics, biochemistry, molecular biology, developmental biology, neurobiology, and microbiology. It seeks to make sense of the explanatory strategies, concepts, ways of reasoning, approaches to discovery and problem solving, tools, models and experimental systems deployed by scientific life science researchers and also integrates developments in historical scholarship, in particular the New Experimentalism. It concludes that historical explanations of scientific change that are based on local laboratory (...)
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  • Tracking truth: knowledge, evidence, and science.Sherrilyn Roush - 2005 - New York: Oxford University Press.
    Sherrilyn Roush defends a new theory of knowledge and evidence, based on the idea of "tracking" the truth, as the best approach to a wide range of questions about knowledge-related phenomena. The theory explains, for example, why scepticism is frustrating, why knowledge is power, and why better evidence makes you more likely to have knowledge. Tracking Truth provides a unification of the concepts of knowledge and evidence, and argues against traditional epistemological realist and anti-realist positions about scientific theories and for (...)
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  • The Logic of Reliable Inquiry.Kevin T. Kelly - 1996 - Oxford, England: Oxford University Press USA. Edited by Kevin Kelly.
    This book is devoted to a different proposal--that the logical structure of the scientist's method should guarantee eventual arrival at the truth given the scientist's background assumptions.
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  • Explaining the brain: mechanisms and the mosaic unity of neuroscience.Carl F. Craver - 2007 - New York : Oxford University Press,: Oxford University Press, Clarendon Press.
    Carl Craver investigates what we are doing when we sue neuroscience to explain what's going on in the brain.
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  • The concept of evidence.Peter Achinstein (ed.) - 1983 - New York: Oxford University Press.
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  • The book of evidence.Peter Achinstein - 2001 - New York: Oxford University Press.
    What is required for something to be evidence for a hypothesis? In this fascinating, elegantly written work, distinguished philosopher of science Peter Achinstein explores this question, rejecting typical philosophical and statistical theories of evidence. He claims these theories are much too weak to give scientists what they want--a good reason to believe--and, in some cases, they furnish concepts that mistakenly make all evidential claims a priori. Achinstein introduces four concepts of evidence, defines three of them by reference to "potential" evidence, (...)
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  • The Dappled World: A Study of the Boundaries of Science.Nancy Cartwright - 1999 - New York, NY: Cambridge University Press.
    It is often supposed that the spectacular successes of our modern mathematical sciences support a lofty vision of a world completely ordered by one single elegant theory. In this book Nancy Cartwright argues to the contrary. When we draw our image of the world from the way modern science works - as empiricism teaches us we should - we end up with a world where some features are precisely ordered, others are given to rough regularity and still others behave in (...)
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  • Cognitive science and naturalized epistemology: A review of Alvin I. Goldman's Epistemology and Cognition[REVIEW]Gerald W. Glaser - 1989 - Behaviorism 17 (2):161-164.
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  • Alvin I. Goldman, Epistemology and Cognition[REVIEW]Darryl Bruce - 1989 - Synthese 79 (1):165-169.
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  • Goldman's psychologism: Review of Epistemology and Cognition[REVIEW]Paul Thagard - 1986 - Erkenntnis 34 (1):117-123.
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  • Philosophical Explanations. [REVIEW]Robert Nozick - 1982 - Critica 14 (41):87-93.
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  • The Aim and Structure of Physical Theory.Pierre Duhem & Philip P. Wiener - 1955 - Science and Society 19 (1):85-87.
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  • The self-vindication of the laboratory sciences.Ian Hacking - 1992 - In Andrew Pickering (ed.), Science as Practice and Culture. University of Chicago Press. pp. 29--64.
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  • How Experiments End.P. Galison - 1990 - Synthese 82 (1):157-162.
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  • Error and the Growth of Experimental Knowledge.Deborah Mayo - 1997 - British Journal for the Philosophy of Science 48 (3):455-459.
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  • Theory and Evidence.Clark Glymour - 1981 - British Journal for the Philosophy of Science 32 (3):314-318.
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  • The Dappled World: A Study of the Boundaries of Science.Nancy Cartwright - 2001 - Erkenntnis 54 (3):411-415.
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  • The Dappled World: A Study of the Boundaries of Science.Nancy Cartwright - 1999 - Philosophy 75 (294):613-616.
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  • Theory and Evidence.Clark Glymour - 1980 - Ethics 93 (3):613-615.
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  • Philosophical Criticism of Behaviorism: An Analysis.Brenda Munsey Mapel - 1977 - Behavior and Philosophy 5 (1):17.
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  • Conditioned Reflexes.I. P. Pavlov - 1927 - Les Etudes Philosophiques 17 (4):560-560.
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  • Skinner skinned.Daniel C. Dennett - 1978 - In Daniel C. Dennet (ed.), Brainstorms: Philosophical Essays on Mind and Psychology. Bradford Books. pp. 53--70.
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  • The Neglect of Experiment.Allan Franklin - 1988 - Philosophy of Science 55 (2):306-308.
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  • Discovering Cell Mechanisms: The Creation of Modern Cell Biology.William Bechtel - 2007 - Journal of the History of Biology 40 (1):185-187.
    Between 1940 and 1970 pioneers in the new field of cell biology discovered the operative parts of cells and their contributions to cell life. They offered mechanistic accounts that explained cellular phenomena by identifying the relevant parts of cells, the biochemical operations they performed, and the way in which these parts and operations were organised to accomplish important functions. Cell biology was a revolutionary science but in this book it also provides fuel for yet another revolution, one that focuses on (...)
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  • Representing and Intervening.Ian Hacking - 1987 - Revue de Métaphysique et de Morale 92 (2):279-279.
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  • Man on His Nature.Charles Sherrington - 1956 - British Journal for the Philosophy of Science 7 (27):268-269.
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  • The Logic of Reliable Inquiry.Kevin Kelly - 1998 - British Journal for the Philosophy of Science 49 (2):351-354.
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  • The Study of Instinct.N. Tinbergen - 1954 - British Journal for the Philosophy of Science 5 (17):72-76.
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  • Construct validity in psychological tests.Lee J. Cronbach & P. E. Meehl - 1956 - In Herbert Feigl & Michael Scriven (eds.), Minnesota Studies in the Philosophy of Science. , Vol. pp. 1--174.
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  • Interactions among Theory, Experiment, and Technology in Molecular Biology.Kenneth F. Schaffner - 1994 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994:192 - 205.
    This article examines how a molecular "solution" to an important biological problem-how is antibody diversity generated? was obtained in the 1970s. After the primarily biological clonal selection theory (CST) was accepted by 1967, immunologists developed several different contrasting theories to complete the SCST. To choose among these theories, immunology had to turn to the new molecular biology, first to nucleic acid hybridization and then to recombinant DNA technology. The research programs of Tonegawa and Leder that led to the "solution" are (...)
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  • Deciding on the Data: Epistemological Problems Surrounding Instruments and Research Techniques in Cell Biology.William Bechtel - 1994 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994:167 - 178.
    The question whether research techniques are producing artifacts or data is often a crucial one for scientists. The potential for artifacts results from the fact that generating data often requires numerous procedures that are often brutal, poorly understood, and very sensitive to details of the procedure. Through a case-study of the introduction of electron microscopy as a tool for studying cells, I examine how scientists judge whether new techniques are introducing artifacts. Three factors seem to be most salient in their (...)
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  • From imaging to believing: Epistemic issues in generating biological data.William Bechtel - 2000 - In Richard Creath & Jane Maienschein (eds.), Biology and Epistemology. Cambridge University Press. pp. 138--163.
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