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  1. La teoría de la selección darwiniana y la genética de poblaciones.Santiago Ginnobili - 2010 - Endoxa 24:169-184.
    Para algunos la selección natural se identifica con las diferencias de éxito de distintos organismos en la reproducción diferencial. Si esto fuese así, el principio de Hardy-Weinberg, por permitir determinar con bastante precisión bajo ciertos supuestos que la frecuencia génica en una población no es la esperada, podría ser visto como una versión cuantitativa de la selección natural cualitativa propuesta por Darwin. Es mi intención mostrar, a través del análisis de explicaciones dadas por Darwin, que la selección natural es más (...)
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  • Función como concepto teórico.Santiago Ginnobili - 2011 - Scientiae Studia 9 (4):847-880.
    En este artículo, se pretende brindar una nueva perspectiva al respecto de la atribución de funciones en biología. La idea consiste en considerar que los conceptos funcionales son conceptos primitivos de una teoría científica, tal como desarrollada por Darwin en sus textos sobre la fecundación cruzada. Intentaré mostrar que teorías, que hacen ese uso de los conceptos funcionales, tienen características sintomáticas de teorías consideradas habitualmente genuinas y compararé mi enfoque con otros alternativos acerca de las funciones. En la reconstrucción, se (...)
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  • La teoría de la selección natural darwiniana (The Darwinian Theory of Natural Selection).Santiago Ginnobili - 2010 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 25 (1):37-58.
    RESUMEN: El tema de este trabajo es la reconstrucción de la teoría de la selección natural darwiniana. Me propongo esbozar la ley fundamental de esta teoría de manera informal a partir de sus aplicaciones en El origen de las especies de Darwin y presentar sus conceptos fundamentales. Presentaré la red teórica de leyes especiales que surgen de la especialización de esta ley fundamental. Supondré el estructuralismo como marco metateórico. Señalaré también algunas consecuencias que mi propuesta tiene sobre ciertas discusiones metateóricas (...)
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  • Instrumental Biology, or the Disunity of Science.Alexander Rosenberg - 1994 - Chicago: University of Chicago Press.
    Do the sciences aim to uncover the structure of nature, or are they ultimately a practical means of controlling our environment? In Instrumental Biology, or the Disunity of Science, Alexander Rosenberg argues that while physics and chemistry can develop laws that reveal the structure of natural phenomena, biology is fated to be a practical, instrumental discipline. Because of the complexity produced by natural selection, and because of the limits on human cognition, scientists are prevented from uncovering the basic structure of (...)
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  • The supervenience of biological concepts.Alexander Rosenberg - 1978 - Philosophy of Science 45 (3):368-386.
    In this paper the concept of supervenience is employed to explain the relationship between fitness as employed in the theory of natural selection and population biology and the physical, behavioral and ecological properties of organisms that are the subjects of lower level theories in the life sciences. The aim of this analysis is to account simultaneously for the fact that the theory of natural selection is a synthetic body of empirical claims, and for the fact that it continues to be (...)
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  • Chance and natural selection.John Beatty - 1984 - Philosophy of Science 51 (2):183-211.
    Among the liveliest disputes in evolutionary biology today are disputes concerning the role of chance in evolution--more specifically, disputes concerning the relative evolutionary importance of natural selection vs. so-called "random drift". The following discussion is an attempt to sort out some of the broad issues involved in those disputes. In the first half of this paper, I try to explain the differences between evolution by natural selection and evolution by random drift. On some common construals of "natural selection", those two (...)
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  • Functional analysis.Robert E. Cummins - 1975 - Journal of Philosophy 72 (November):741-64.
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  • In defense of proper functions.Ruth Millikan - 1989 - Philosophy of Science 56 (June):288-302.
    I defend the historical definition of "function" originally given in my Language, Thought and Other Biological Categories (1984a). The definition was not offered in the spirit of conceptual analysis but is more akin to a theoretical definition of "function". A major theme is that nonhistorical analyses of "function" fail to deal adequately with items that are not capable of performing their functions.
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  • Teleología Naturalizada (Naturalized Teleology).Gustavo Caponi - 2013 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 28 (1):97-114.
    En la Teoría de la Selección Natural, el concepto de función biológica debe suponerse para delimitar el concepto de aptitud; y éste debe suponerse para delimitar el concepto de adaptación y también para explicar el fenómeno al que este último alude. Esos tres conceptos, por otra parte, son especificaciones de tres conceptos de aplicación más universal. El concepto de función biológica es un caso particular del concepto general de función; y el concepto de aptitud especifica el concepto de eficiencia. El (...)
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  • Adaptación y función.Santiago Ginnobili - 2009 - Ludus Vitalis (31):3-24.
    The scientific revolution of the XVII siècle is normally described as erasing final causes and the teleology of physics. Nevertheless, the functional language plays a central role in certain areas of biological practice. This is why many philosophers have tried to explicate the concept of function, sometimes to defend the relevance of its use, some other times to show that it is merely a way of speaking that could be easily eliminated without any relevant information loss. The principal purpose of (...)
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  • On the Origin of Species by Means of Natural Selection.Charles Darwin - 1897 - New York: Heritage Press. Edited by George W. Davidson.
    ... Difficulty of distinguishing between Varieties and Species — Origin of Domestic ... and Origin— Principle of Selection anciently followed, its Effects— ...
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  • The confusions of fitness.André Ariew & Richard C. Lewontin - 2004 - British Journal for the Philosophy of Science 55 (2):347-363.
    The central point of this essay is to demonstrate the incommensurability of ‘Darwinian fitness’ with the numeric values associated with reproductive rates used in population genetics. While sometimes both are called ‘fitness’, they are distinct concepts coming from distinct explanatory schemes. Further, we try to outline a possible answer to the following question: from the natural properties of organisms and a knowledge of their environment, can we construct an algorithm for a particular kind of organismic life-history pattern that itself will (...)
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  • Darwinism's Struggle for Survival: Heredity and the Hypothesis of Natural Selection.Jean Gayon - 1998 - Cambridge University Press.
    In Darwinism's Struggle for Survival Jean Gayon offers a philosophical interpretation of the history of theoretical Darwinism. He begins by examining the different forms taken by the hypothesis of natural selection in the nineteenth century and the major difficulties which it encountered, particularly with regard to its compatibility with the theory of heredity. He then shows how these difficulties were overcome during the seventy years which followed the publication of Darwin's Origin of Species, and he concludes by analysing the major (...)
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  • Reply to Alexander Rosenberg's Review of The Nature of Selection.Elliott Sober - 1986 - Behaviorism 14 (1):77-88.
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  • Missing Concepts in Natural Selection Theory Reconstructions.Santiago Ginnobili - 2016 - History and Philosophy of the Life Sciences 38 (3):1-33.
    The concept of fitness has generated a lot of discussion in philosophy of biology. There is, however, relative agreement about the need to distinguish at least two uses of the term: ecological fitness on the one hand, and population genetics fitness on the other. The goal of this paper is to give an explication of the concept of ecological fitness by providing a reconstruction of the theory of natural selection in which this concept was framed, that is, based on the (...)
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  • Mind and Cosmos: Essays in Contemporary Science and Philosophy.Robert Garland Colodny - 1983 - Upa.
    To find more information about Rowman and Littlefield titles, please visit www.rowmanlittlefield.com.
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  • Wayward Modeling: Population Genetics and Natural Selection.Bruce Glymour - 2006 - Philosophy of Science 73 (4):369-389.
    Since the introduction of mathematical population genetics, its machinery has shaped our fundamental understanding of natural selection. Selection is taken to occur when differential fitnesses produce differential rates of reproductive success, where fitnesses are understood as parameters in a population genetics model. To understand selection is to understand what these parameter values measure and how differences in them lead to frequency changes. I argue that this traditional view is mistaken. The descriptions of natural selection rendered by population genetics models are (...)
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  • Population level causation and a unified theory of natural selection.Bruce Glymour - 1999 - Biology and Philosophy 14 (4):521-536.
    Sober (1984) presents an account of selection motivated by the view that one property can causally explain the occurrence of another only if the first plays a unique role in the causal production of the second. Sober holds that a causal property will play such a unique role if it is a population level cause of its effect, and on this basis argues that there is selection for a trait T only if T is a population level cause of survival (...)
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  • The Logical Structure of Functional Explanations in Biology.Mary B. Williams - 1976 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1976:37 - 46.
    This paper: (1) gives a schema of the logical structure of functional explanation in biology; (2) shows that it falls under the covering law model of explanation by proving that the explanandum follows from the explanans; and (3) supports the claim that it captures the logical structure underlying the biological usage by analyzing in detail two cases from biology.
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