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The Structure of Biological Science

New York: Cambridge University Press (1985)

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  1. Philosophy of biology, faithful or useful?Peter B. Sloep & Wim J. van der Steen - 1991 - Biology and Philosophy 6 (1):93-98.
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  • Methodology revitalized?Peter B. Sloep - 1993 - British Journal for the Philosophy of Science 44 (2):231-249.
    Controversies in science have a tendency to be long-lasting. Moreover, they tend to wither rather than be solved by sorting out the arguments pro and con. Barring the sociological dimension, an important factor in the perpetuation of scientific controversies seems to be the contestants' passion for broad philosophical theses when it comes to defending their respective positions. In this paper one such controversy is analysed. It involves the alleged use of Popperian falsificationism to defend a position in (community) ecology some (...)
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  • The nature and nurture of birdsong.P. J. B. Slater - 1988 - Behavioral and Brain Sciences 11 (4):648-649.
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  • How evolutionary theory faces the reality.Matti Sintonen - 1991 - Synthese 89 (1):163 - 183.
    The paper sketches an account of explanatory practice in which explanations are viewed as answers to explanation-requiring questions. To avoid difficulties in previous proposals, the paper uses the structuralist account of theory structure, arguing that theories are complex and evolving entities formed around a conceptual core and a set of intended applications. The argument is that this view does better justice to theories which involve a number of different kinds of theory-elements to give narrative explanations. Theories are, among other things, (...)
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  • Maladaptation and hierarchically organized explanatory levels.Ronald C. Simons - 1991 - Behavioral and Brain Sciences 14 (2):314-315.
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  • Adaptation and natural selection: A new look at some old ideas.Jeffry A. Simpson - 1994 - Behavioral and Brain Sciences 17 (4):634-636.
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  • Rational agents, real people and the quest for optimality.Eldar Shafir - 1991 - Behavioral and Brain Sciences 14 (2):232-232.
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  • 'Fitness' and 'altruism': Traps for the unwary, bystander and biologist alike. [REVIEW]Tom Settle - 1993 - Biology and Philosophy 8 (1):61-83.
    At one level, this paper is a lament and a warning. I lament biologists borrowing well-known terms and then drastically and awkwardly changing their meanings, and I warn about the mischief this does. Biology''s public image is at stake, as is its general usefulness. At another level, I attempt to clarify the misnamed concepts, beyond what has been achieved in recent philosophical writings. This helps to account for the mischief, and to see how it might be avoidable. But the most (...)
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  • Song development from evolutionary and ecological perspectives.William A. Searcy - 1988 - Behavioral and Brain Sciences 11 (4):647-648.
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  • Theory structure, reduction, and disciplinary integration in biology.Kenneth F. Schaffner - 1993 - Biology and Philosophy 8 (3):319-347.
    This paper examines the nature of theory structure in biology and considers the implications of those theoretical structures for theory reduction. An account of biological theories as interlevel prototypes embodying causal sequences, and related to each other by strong analogies, is presented, and examples from the neurosciences are provided to illustrate these middle-range theories. I then go on to discuss several modifications of Nagel''s classical model of theory reduction, and indicate at what stages in the development of reductions these models (...)
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  • The strategy of optimality revisited.Paul J. H. Schoemaker - 1991 - Behavioral and Brain Sciences 14 (2):237-245.
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  • The quest for optimality: A positive heuristic of science?Paul J. H. Schoemaker - 1991 - Behavioral and Brain Sciences 14 (2):205-215.
    This paper examines the strengths and weaknesses of one of science's most pervasive and flexible metaprinciples;optimalityis used to explain utility maximization in economics, least effort principles in physics, entropy in chemistry, and survival of the fittest in biology. Fermat's principle of least time involves both teleological and causal considerations, two distinct modes of explanation resting on poorly understood psychological primitives. The rationality heuristic in economics provides an example from social science of the potential biases arising from the extreme flexibility of (...)
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  • Self-re-production and functionality.Gerhard Schlosser - 1998 - Synthese 116 (3):303-354.
    Function and teleology can be naturalized either by reference to systems with a particular type of organization or by reference to a particular kind of history. As functions are generally ascribed to states or traits according to their current role and regardless of their origin, etiological accounts are inappropriate. Here, I offer a systems-theoretical interpretation as a new version of an organizational account of functionality, which is more comprehensive than traditional cybernetic views and provides explicit criteria for empirically testable function (...)
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  • In defense of innateness and of its critics.Jonathan Schull - 1988 - Behavioral and Brain Sciences 11 (4):646-647.
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  • From intestine transport to enzymatic regulation: The works of the Spanish biochemist Alberto Sols (1917–1989).Marı́a Jesús Santesmases - 2000 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 31 (2):287-313.
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  • Should the quest for optimality worry us?Nils-Eric Sahlin - 1991 - Behavioral and Brain Sciences 14 (2):231-231.
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  • New philosophies of science in north America — twenty years later.Joseph Rouse - 1998 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 29 (1):71-122.
    This survey of major developments in North American philosophy of science begins with the mid-1960s consolidation of the disciplinary synthesis of internalist history and philosophy of science (HPS) as a response to criticisms of logical empiricism. These developments are grouped for discussion under the following headings: historical metamethodologies, scientific realisms, philosophies of the special sciences, revivals of empiricism, cognitivist naturalisms, social epistemologies, feminist theories of science, studies of experiment and the disunity of science, and studies of science as practice and (...)
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  • Reductionism redux: Computing the embryo. [REVIEW]Alex Rosenberg - 1997 - Biology and Philosophy 12 (4):445-470.
    This paper argues that the consensus physicalist antireductionism in the philosophy of biology cannot accommodate the research strategy or indeed the recent findings of molecular developmental biology. After describing Wolperts programmatic claims on its behalf, and recent work by Gehring and others to identify the molecular determinants of development, the paper attempts to identify the relationship between evolutionary and developmental biology by reconciling two apparently conflicting accounts of bio-function – Wrights and Nagels (as elaborated by Cummins). Finally, the paper seeks (...)
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  • Ignorance and disinformation in the philosophy of biology: A reply to STENT. [REVIEW]Alexander Rosenberg - 1986 - Biology and Philosophy 1 (4):461-471.
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  • Optimality as a prescriptive tool.Alexander H. G. Rinnooy Kan - 1991 - Behavioral and Brain Sciences 14 (2):230-231.
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  • Structuralism, functionalism, and the four Aristotelian causes.Olivier Rieppel - 1990 - Journal of the History of Biology 23 (2):291-320.
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  • The cladistic solution to the species problem.Mark Ridley - 1989 - Biology and Philosophy 4 (1):1-16.
    The correct explanation of why species, in evolutionary theory, are individuals and not classes is the cladistic species concept. The cladistic species concept defines species as the group of organisms between two speciation events, or between one speciation event and one extinction event, or (for living species) that are descended from a speciation event. It is a theoretical concept, and therefore has the virtue of distinguishing clearly the theoretical nature of species from the practical criteria by which species may be (...)
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  • Reviews. [REVIEW]David B. Resnik - 1987 - British Journal for the Philosophy of Science 38 (1):119-121.
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  • Laws and development.David Resnik - 1997 - Synthese 112 (1):37-51.
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  • Functional language and biological discovery.David B. Resnik - 1995 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 26 (1):119 - 134.
    This paper provides an explication and defense of a view that many philosophers and biologists have accepted though few have understood, the idea that functional language can play an important role in biological discovery. I defend four theses in support of this view: (1) functional statements can serve as background assumptions that produce research problems; (2) functional questions can be important parts of research problems; (3) functional concepts can provide a framework for developing general theories; (4) functional statements can serve (...)
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  • The function of function.Matthew Ratcliffe - 2000 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 31 (1):113-133.
    Contemporary analyses of biological function almost invariably advocate a naturalistic analysis, grounding biological functions in some feature of the mind-independent world. Many recent accounts suggest that no single analysis will be appropriate for all cases of use and that biological teleology should be split into several distinct categories. This paper argues that such accounts have paid too little attention to the way in which functional language is used, concentrating instead on the types of situation in which it is used. An (...)
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  • Thought-provoking speculations with need of rigor.Dennis R. Rasmussen - 1991 - Behavioral and Brain Sciences 14 (2):313-314.
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  • Nongenetic and non-Darwinian evolution.Anatol Rapoport - 1994 - Behavioral and Brain Sciences 17 (4):634-634.
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  • Stability and lawlikeness.Jani Raerinne - 2013 - Biology and Philosophy 28 (5):833-851.
    There appear to be no biological regularities that have the properties traditionally associated with laws, such as an unlimited scope or holding in all or many possible background conditions. Mitchell, Lange, and others have therefore suggested redefining laws to redeem the lawlike status of biological regularities. These authors suggest that biological regularities are lawlike because they are pragmatically or paradigmatically similar to laws or stable regularities. I will review these re-definitions by arguing both that there are difficulties in applying their (...)
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  • What philosophy of biology should be: Rosenberg, McShea: Philosophy of biology. A contemporary introduction. Routledge, 2008.Thomas Pradeu - 2011 - Biology and Philosophy 26 (1):119-127.
    This paper reviews Rosenberg’s and McShea’s textbook in philosophy of biology, entitled Philosophy of Biology. A Contemporary Introduction. I insist on the excellent quality of this textbook, then I turn to more critical comments, which deal mainly with what philosophy of biology is, and what it should be.
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  • Thirty years of Biology & Philosophy: philosophy of which biology?Thomas Pradeu - 2017 - Biology and Philosophy 32 (2):149-167.
    Which domains of biology do philosophers of biology primarily study? The fact that philosophy of biology has been dominated by an interest for evolutionary biology is widely admitted, but it has not been strictly demonstrated. Here I analyse the topics of all the papers published in Biology & Philosophy, just as the journal celebrates its thirtieth anniversary. I then compare the distribution of biological topics in Biology & Philosophy with that of the scientific journal Proceedings of the National Academy of (...)
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  • Toolbox murders: putting genes in their epigenetic and ecological contexts: P. Griffiths and K. Stotz: Genetics and philosophy: an introduction. [REVIEW]Thomas Pradeu - 2016 - Biology and Philosophy 31 (1):125-142.
    Griffiths and Stotz’s Genetics and Philosophy: An Introduction offers a very good overview of scientific and philosophical issues raised by present-day genetics. Examining, in particular, the questions of how a “gene” should be defined and what a gene does from a causal point of view, the authors explore the different domains of the life sciences in which genetics has come to play a decisive role, from Mendelian genetics to molecular genetics, behavioural genetics, and evolution. In this review, I highlight what (...)
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  • Towards a pluralistic concept of function function statements in biology.Rob Pranger - 1990 - Acta Biotheoretica 38 (1):63-71.
    The meaning of function statements is not clear. Several authors have come up with different explications. By interviewing biologists I tried to get a picture of how they think about function. Two explications of Feature X of organism S has function F came to the fore: (1) X contributes to F and F contributes to survival/reproduction of S and (2) X does F and that contributes to the evolutionary development of X in S via natural selection. Most biologists also related (...)
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  • Multiple causes of human behavior.H. C. Plotkin - 1991 - Behavioral and Brain Sciences 14 (2):313-313.
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  • William Bateson from "Balanoglossus" to "Materials for the Study of Variation": The Transatlantic Roots of Discontinuity and the (Un)naturalness of Selection. [REVIEW]Erik L. Peterson - 2008 - Journal of the History of Biology 41 (2):267 - 305.
    William Bateson (1861-1926) has long occupied a controversial role in the history of biology at the turn of the twentieth century. For the most part, Bateson has been situated as the British translator of Mendel or as the outspoken antagonist of W. F. R. Weldon and Karl Pearson's biometrics program. Less has been made of Bateson's transition from embryologist to advocate for discontinuous variation, and the precise role of British and American influences in that transition, in the years leading up (...)
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  • William Bateson from Balanoglossus to Materials for the Study of Variation: The Transatlantic Roots of Discontinuity and the naturalness of Selection.Erik L. Peterson - 2008 - Journal of the History of Biology 41 (2):267-305.
    William Bateson has long occupied a controversial role in the history of biology at the turn of the twentieth century. For the most part, Bateson has been situated as the British translator of Mendel or as the outspoken antagonist of W. F. R. Weldon and Karl Pearson's biometrics program. Less has been made of Bateson's transition from embryologist to advocate for discontinuous variation, and the precise role of British and American influences in that transition, in the years leading up to (...)
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  • Nature/nurture reflux.Irene M. Pepperberg - 1988 - Behavioral and Brain Sciences 11 (4):645-646.
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  • Don't just sit there, optimise something.J. H. P. Paelinck - 1991 - Behavioral and Brain Sciences 14 (2):230-230.
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  • How do you transmit a template?Susan Oyama - 1988 - Behavioral and Brain Sciences 11 (4):644-645.
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  • A critical review of the statisticalist debate.Jun Otsuka - 2016 - Biology and Philosophy 31 (4):459-482.
    Over the past decade philosophers of biology have discussed whether evolutionary theory is a causal theory or a phenomenological study of evolution based solely on the statistical features of a population. This article reviews this controversy from three aspects, respectively concerning the assumptions, applications, and explanations of evolutionary theory, with a view to arriving at a definite conclusion in each contention. In so doing I also argue that an implicit methodological assumption shared by both sides of the debate, namely the (...)
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  • Darwinian metaphysics: Species and the question of essentialism.Samir Okasha - 2002 - Synthese 131 (2):191-213.
    Biologists and philosophers of biology typically regard essentialism about speciesas incompatible with modern Darwinian theory. Analytic metaphysicians such asKripke, Putnam and Wiggins, on the other hand, believe that their essentialist thesesare applicable to biological kinds. I explore this tension. I show that standard anti-essentialist considerations only show that species do not have intrinsic essential properties. I argue that while Putnam and Kripke do make assumptions that contradict received biological opinion, their model of natural kinds, suitably modified, is partially applicable to (...)
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  • Complementarity in Molecular Biology.Masayuki Obayashi - 1992 - Annals of the Japan Association for Philosophy of Science 8 (2):111-116.
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  • Elme és evolúció.Bence Nanay - 2000 - Kávé..
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  • Rethinking Woodger’s Legacy in the Philosophy of Biology.Daniel J. Nicholson & Richard Gawne - 2014 - Journal of the History of Biology 47 (2):243-292.
    The writings of Joseph Henry Woodger (1894–1981) are often taken to exemplify everything that was wrongheaded, misguided, and just plain wrong with early twentieth-century philosophy of biology. Over the years, commentators have said of Woodger: (a) that he was a fervent logical empiricist who tried to impose the explanatory gold standards of physics onto biology, (b) that his philosophical work was completely disconnected from biological science, (c) that he possessed no scientific or philosophical credentials, and (d) that his work was (...)
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  • Neither Logical Empiricism nor Vitalism, but Organicism: What the Philosophy of Biology Was.Daniel J. Nicholson & Richard Gawne - 2015 - History and Philosophy of the Life Sciences 37 (4):345-381.
    Philosophy of biology is often said to have emerged in the last third of the twentieth century. Prior to this time, it has been alleged that the only authors who engaged philosophically with the life sciences were either logical empiricists who sought to impose the explanatory ideals of the physical sciences onto biology, or vitalists who invoked mystical agencies in an attempt to ward off the threat of physicochemical reduction. These schools paid little attention to actual biological science, and as (...)
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  • Why is group selection such a problem?Randolph M. Nesse - 1994 - Behavioral and Brain Sciences 17 (4):633-634.
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  • Human nature and the Holy Grail.Randolph M. Nesse - 1991 - Behavioral and Brain Sciences 14 (2):312-313.
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  • Conceptual errors, different perspectives, and genetic analysis of song ontogeny.Paul C. Mundinger - 1988 - Behavioral and Brain Sciences 11 (4):643-644.
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  • From intestine transport to enzymatic regulation: The works of the Spanish biochemist Alberto Sols (1917–1989).Marı́a Jesús Santesmases - 2000 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 31 (2):287-313.
    In this paper the scientific trajectory of Spanish influential biochemist Alberto Sols (1917–1989) is presented in comparative perspective. His social and academic environment, his research training under the Cori's in the US in the early 1950s and his works when coming back to Spain to develop his own scientific career are described in order to present the central argument of this paper on his path from physiological research to research on enzymatic regulation. Sols' main contributions were both scientific and academic. (...)
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  • The strategy of biological research programmes: Reassessing the ‘dark age’ of biochemistry, 1910–1930.Neil Morgan - 1990 - Annals of Science 47 (2):139-150.
    The historiography of the ‘dark age’ of biochemistry between 1910–1930 is examined. The biochemistry of the period is located within a larger contemporary debate on the interrelationship between structure and function on a submicroscopic level. It is suggested that biocolloid science was an understandable part of the historical development of biochemistry, representing a conceptual bridge between the cell biology of the late nineteenth century, and the era of structural macromolecular studies of proteins that began after 1930.
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