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  1. Artifact, cause and genic selection.Elliott Sober & Richard C. Lewontin - 1982 - Philosophy of Science 49 (2):157-180.
    Several evolutionary biologists have used a parsimony argument to argue that the single gene is the unit of selection. Since all evolution by natural selection can be represented in terms of selection coefficients attaching to single genes, it is, they say, "more parsimonious" to think that all selection is selection for or against single genes. We examine the limitations of this genic point of view, and then relate our criticisms to a broader view of the role of causal concepts and (...)
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  • The peripherality of reductionism in the development of molecular biology.Kenneth F. Schaffner - 1974 - Journal of the History of Biology 7 (1):111-139.
    I have not attempted to provide here an analysis of the methodology of molecular biology or molecular genetics which would demonstrate at what specific points a more reductionist aim would make sense as a research strategy. This, I believe, would require a much deeper analysis of scientific growth than philosophy of science has been able to provide thus far. What I have tried to show is that a straightforward reductionist strategy cannot be said to be follwed in important cases of (...)
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  • Species as family resemblance concepts: the (dis-)solution of the species problem?Massimo Pigliucci - 2003 - Bioessays 25 (6):596-602.
    The so-called ‘‘species problem’’ has plagued evolution- ary biology since before Darwin’s publication of the aptly titled Origin of Species. Many biologists think the problem is just a matter of semantics; others complain that it will not be solved until we have more empirical data. Yet, we don’t seem to be able to escape discussing it and teaching seminars about it. In this paper, I briefly examine the main themes of the biological and philosophical liter- atures on the species problem, (...)
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  • Topological explanations and robustness in biological sciences.Philippe Huneman - 2010 - Synthese 177 (2):213-245.
    This paper argues that besides mechanistic explanations, there is a kind of explanation that relies upon “topological” properties of systems in order to derive the explanandum as a consequence, and which does not consider mechanisms or causal processes. I first investigate topological explanations in the case of ecological research on the stability of ecosystems. Then I contrast them with mechanistic explanations, thereby distinguishing the kind of realization they involve from the realization relations entailed by mechanistic explanations, and explain how both (...)
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  • Concepts and Methods in Evolutionary Biology.Barbara L. Horan - 1998 - Philosophical Review 107 (3):483.
    This collection of essays by Robert Brandon spans two decades and most of the important problems in the philosophy of biology. Four of his five most important contributions to the philosophy of biology can be found here: the concept of relative adaptedness and its role in the propensity interpretation of fitness; the principle of natural selection; the use of the screening-off relation in defense of organismic selection; and the distinction between units of selection and levels of selection. The fifth major (...)
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  • The British Journal for the Philosophy of Science | Vol 73, No 3.John Dupré - 1996 - Cambridge University Press.
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  • Review of Robert N. Brandon: Concepts and Methods in Evolutionary Biology[REVIEW]John Dupré - 1997 - British Journal for the Philosophy of Science 48 (2):292-296.
    This book is a collection of essays by a leading philosopher of biology and spans his career over almost the last twenty years. Most of the topics that have been of concern to philosophers of biology in this period are touched on to some extent, and the collection of these essays in a convenient volume will certainly be welcomed by everyone working in this field. The essays are arranged chronologically, and divided into three sections. Although the chapters in the first (...)
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  • Concepts and Methods in Evolutionary Biology.Robert N. Brandon - 1995 - Cambridge University Press.
    Robert Brandon is one of the most important and influential of contemporary philosophers of biology. This collection of his recent essays covers all the traditional topics in the philosophy of evolutionary biology and as such could serve as an introduction to the field. There are essays on the nature of fitness, teleology, the structure of the theory of natural selection, and the levels of selection. The book also deals with newer topics that are less frequently discussed but are of growing (...)
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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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  • Discovery and explanation in biology and medicine.Kenneth F. Schaffner - 1993 - Chicago: University of Chicago Press.
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  • Unsimple Truths: Science, Complexity, and Policy.Sandra D. Mitchell - 2009 - London: University of Chicago Press.
    The world is complex, but acknowledging its complexity requires an appreciation for the many roles context plays in shaping natural phenomena. In _Unsimple Truths, _Sandra Mitchell argues that the long-standing scientific and philosophical deference to reductive explanations founded on simple universal laws, linear causal models, and predict-and-act strategies fails to accommodate the kinds of knowledge that many contemporary sciences are providing about the world. She advocates, instead, for a new understanding that represents the rich, variegated, interdependent fabric of many levels (...)
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  • Theory and reality: an introduction to the philosophy of science.Peter Godfrey-Smith - 2003 - Chicago: University of Chicago Press.
    How does science work? Does it tell us what the world is "really" like? What makes it different from other ways of understanding the universe? In Theory and Reality , Peter Godfrey-Smith addresses these questions by taking the reader on a grand tour of one hundred years of debate about science. The result is a completely accessible introduction to the main themes of the philosophy of science. Intended for undergraduates and general readers with no prior background in philosophy, Theory and (...)
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  • Are Species Really Individuals?David L. Hull - 1976 - Systematic Zoology 25:174–191.
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  • A Radical Solution to the Species Problem.Michael T. Ghiselin - 1974 - Systematic Zoology 23 (4):536–544.
    Traditionally, species have been treated as classes. In fact they may be considered individuals. The logical term “individual” has been confused with a biological synonym for “organism.” If species are individuals, then: 1) their names are proper, 2) there cannot be instances of them, 3) they do not have defining properties, 4) their constituent organisms are parts, not members. “ Species " may be defined as the most extensive units in the natural economy such that reproductive competition occurs among their (...)
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  • Won't you please unite? Darwinism, cultural evolution and kinds of synthesis.Maria Kronfeldner - 2010 - In A. Barahona, H.-J. Rheinberger & E. Suarez-Diaz (eds.), The Hereditary Hourglass: Genetics and Epigenetics, 1868-2000. Max Planck Insititute for the History of Science. pp. 111-125.
    The synthetic theory of evolution has gone stale and an expanding or (re-)widening of it towards a new synthesis has been announced. This time, development and culture are supposed to join the synthesis bandwagon. In this article, I distinguish between four kinds of synthesis that are involved when we extend the evolutionary synthesis towards culture: the integration of fields, the heuristic generation of interfields, the expansion of validity, and the creation of a common frame of discourse or ‘big-picture’. These kinds (...)
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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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  • Problems and Prospects of Interdisciplinary Philosophy of Science: A Report from the Workbench.Marie I. Kaiser, Maria Kronfeldner & Robert Meunier - 2015 - Briefe Zur Interdisziplinarität 15:32-41.
    Early-career philosophers of science often find themselves caught between a rock and a hard place, facing conflicting demands. While they have to meet the rigorous standards of a career in philosophy, they are at the same time expected to possess detailed knowledge of the sciences they study. By pulling in different directions, these two poles can be difficult to bridge. Interdisciplinarily engaged philosophers of science face not just an increased workload but also institutional conditions that are not always supportive for (...)
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  • Discovery and Explanation in Biology and Medicine.Kenneth F. Schaffner - 1995 - British Journal for the Philosophy of Science 46 (4):621-623.
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  • Theory and Reality. An Introduction to the Philosophy of Science.Peter Godfrey-Smith - 2005 - Tijdschrift Voor Filosofie 67 (2):393-394.
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  • Discovery and Explanation in Biology and Medicine.Kenneth F. Schaffner - 1995 - Journal of the History of Biology 28 (1):172-174.
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  • A taxonomy of interdisciplinarity.Julie Thompson Klein - 2010 - In Julie Thompson Klein & Carl Mitcham (eds.), The Oxford Handbook of Interdisciplinarity. Oxford University Press.
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  • Mental mechanisms: Philosophical perspectives on the sciences of cognition and the brain.William P. Bechtel - manuscript
    1. The Naturalistic Turn in Philosophy of Science 2. The Framework of Mechanistic Explanation: Parts, Operations, and Organization 3. Representing and Reasoning About Mechanisms 4. Mental Mechanisms: Mechanisms that Process Information 5. Discovering Mental Mechanisms 6 . Summary.
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