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Animal Species and Evolution

Belknap of Harvard University Press (1963)

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  1. Explaining diversity and searching for general processes: Isn't there a middle ground?Paul Rozin - 1981 - Behavioral and Brain Sciences 4 (1):157-158.
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  • Abduction and styles of scientific thinking.Mariana Vitti Rodrigues & Claus Emmeche - 2019 - Synthese 198 (2):1397-1425.
    In philosophy of science, the literature on abduction and the literature on styles of thinking have existed almost totally in parallel. Here, for the first time, we bring them together and explore their mutual relevance. What is the consequence of the existence of several styles of scientific thinking for abduction? Can abduction, as a general creative mode of inference, have distinct characteristic forms within each style? To investigate this, firstly, we present the concept of abduction; secondly we analyze what is (...)
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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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  • The series, the network, and the tree: changing metaphors of order in nature.Olivier Rieppel - 2010 - Biology and Philosophy 25 (4):475-496.
    The history of biological systematics documents a continuing tension between classifications in terms of nested hierarchies congruent with branching diagrams (the ‘Tree of Life’) versus reticulated relations. The recognition of conflicting character distribution led to the dissolution of the scala naturae into reticulated systems, which were then transformed into phylogenetic trees by the addition of a vertical axis. The cladistic revolution in systematics resulted in a representation of phylogeny as a strictly bifurcating pattern (cladogram). Due to the ubiquity of character (...)
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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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  • Species as a process.Olivier Rieppel - 2008 - Acta Biotheoretica (1-2):33-49.
    Species are generally considered to be the basic units of evolution, and hence to constitute spatio-temporally bounded entities. In addition, it has been argued that species also instantiate a natural kind. Evolution is fundamentally about change. The question then is how species can remain the same through evolutionary change. Proponents of the species qua individuals thesis individuate species through their unique evolutionary origin. Individuals, or spatio-temporally located particulars in general, can be bodies, objects, events, or processes, or a combination of (...)
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  • Monophyly, paraphyly, and natural kinds.Olivier Rieppel - 2005 - Biology and Philosophy 20 (2-3):465-487.
    A long-standing debate has dominated systematic biology and the ontological commitments made by its theories. The debate has contrasted individuals and the part – whole relationship with classes and the membership relation. This essay proposes to conceptualize the hierarchy of higher taxa is terms of a hierarchy of homeostatic property cluster natural kinds (biological species remain largely excluded from the present discussion). The reference of natural kind terms that apply to supraspecific taxa is initially fixed descriptively; the extension of those (...)
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  • Biological Individuals and Natural Kinds.Olivier Rieppel - 2013 - Biological Theory 7 (2):162-169.
    This paper takes a hierarchical approach to the question whether species are individuals or natural kinds. The thesis defended here is that species are spatiotemporally located complex wholes (individuals), that are composed of (i.e., include) causally interdependent parts, which collectively also instantiate a homeostatic property cluster (HPC) natural kind. Species may form open or closed genetic systems that are dynamic in nature, that have fuzzy boundaries due to the processual nature of speciation, that may have leaky boundaries as is manifest (...)
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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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  • Cetacean brain evolution.S. H. Ridgway & F. G. Wood - 1988 - Behavioral and Brain Sciences 11 (1):99-100.
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  • Known general principles of learning cannot be ignored.Sam Revusky - 1981 - Behavioral and Brain Sciences 4 (1):156-157.
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  • What about Sirenia?Bernhard Rensch - 1988 - Behavioral and Brain Sciences 11 (1):99-99.
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  • Constructional morphology: The analysis of constraints in evolution dedicated to A. seilacher in honour of his 60. birthday.Wolf-Ernst Reify, Roger D. K. Thomas & Martin S. Fischer - 1985 - Acta Biotheoretica 34 (2-4):233-248.
    Evolutionary change is opportunistic, but its course is strongly constrained in several fundamental ways. These constraints (historical/phylogenetic, functional/adaptive, constructional/morphogenetic) and their dynamic relationships are discussed here and shown to constitute the conceptual framework of Constructional Morphology. Notwithstanding recent published opinions which claim that the discovery of constraints renders Neodarwinian selection theory obsolete, we regard the insights of Constructional Morphology as being entirely consistent with this theory. As is shown here in the case of the Hyracoidea, formal analysis of the constraints (...)
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  • The “initial brain”: Initial considerations.Roger L. Reep - 1988 - Behavioral and Brain Sciences 11 (1):98-99.
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  • Darwin's evolutionary philosophy: The laws of change.Edward S. Reed - 1978 - Acta Biotheoretica 27 (3-4):201-235.
    The philosophical or metaphysical architecture of Darwin's theory of evolution by natural selection is analyzed and diflussed. It is argued that natural selection was for Darwin a paradigmatic case of a natural law of change — an exemplar of what Ghiselin (1969) has called selective retention laws. These selective retention laws lie at the basis of Darwin's revolutionary world view. In this essay special attention is paid to the consequences for Darwin's concept of species of his selective retention laws. Although (...)
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  • Probabilistic causation and the explanatory role of natural selection.Pablo Razeto-Barry & Ramiro Frick - 2011 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (3):344-355.
    The explanatory role of natural selection is one of the long-term debates in evolutionary biology. Nevertheless, the consensus has been slippery because conceptual confusions and the absence of a unified, formal causal model that integrates different explanatory scopes of natural selection. In this study we attempt to examine two questions: (i) What can the theory of natural selection explain? and (ii) Is there a causal or explanatory model that integrates all natural selection explananda? For the first question, we argue that (...)
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  • Ernst Mayr’s interactions with J. B. S. Haldane.Veena Rao & Vidyanand Nanjundiah - 2016 - History and Philosophy of the Life Sciences 38 (1):138-150.
    Ernst Mayr and J. B. S. Haldane, major contributors to the ‘modern synthesis’ in evolutionary theory, set an example of how scientific disagreements need not come in the way of friendship. After getting acquainted, they kept discussing issues related to evolution until just before Haldane’s death in 1964. Their dissimilar backgrounds meant that they adopted different approaches. A major disagreement emerged regarding the right way to look at the role of genes in evolution. Mayr felt that the elementary models of (...)
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  • J. B. S. Haldane, Ernst Mayr and the Beanbag Genetics Dispute.Veena Rao & Vidyanand Nanjundiah - 2011 - Journal of the History of Biology 44 (2):233 - 281.
    Starting from the early decades of the twentieth century, evolutionary biology began to acquire mathematical overtones. This took place via the development of a set of models in which the Darwinian picture of evolution was shown to be consistent with the laws of heredity discovered by Mendel. The models, which came to be elaborated over the years, define a field of study known as population genetics. Population genetics is generally looked upon as an essential component of modern evolutionary theory. This (...)
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  • Learning theory in its niche.Howard Rachlin - 1981 - Behavioral and Brain Sciences 4 (1):155-156.
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  • A biological approach to sociological functionalism.Vernon Pratt - 1975 - Inquiry: An Interdisciplinary Journal of Philosophy 18 (4):371 – 389.
    The rationale for the common rejection of classical societal functionalism is that it entails treating a society as an intelligent purposer, capable of directing its own internal organization in furtherance of survival. But a more acceptable alternative account of the origins of a society's functional organization is conceivable: the individual unconsciously recognizes the needs of his group and directs his behaviour so that they are met. The plausibility of this explanation hangs on whether selection between groups occurs to any significant (...)
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  • The rise and fall of the adaptive landscape?Anya Plutynski - 2008 - Biology and Philosophy 23 (5):605-623.
    The discussion of the adaptive landscape in the philosophical literature appears to be divided along the following lines. On the one hand, some claim that the adaptive landscape is either “uninterpretable” or incoherent. On the other hand, some argue that the adaptive landscape has been an important heuristic, or tool in the service of explaining, as well as proposing and testing hypotheses about evolutionary change. This paper attempts to reconcile these two views.
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  • Speciation Post Synthesis: 1960–2000.Anya Plutynski - 2019 - Journal of the History of Biology 52 (4):569-596.
    Speciation—the origin of new species—has been one of the most active areas of research in evolutionary biology, both during, and since the Modern Synthesis. While the Modern Synthesis certainly shaped research on speciation in significant ways, providing a core framework, and set of categories and methods to work with, the history of work on speciation since the mid-twentieth century is a history of divergence and diversification. This piece traces this divergence, through both theoretical advances, and empirical insights into how different (...)
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  • Is cancer a matter of luck?Anya Plutynski - 2021 - Biology and Philosophy 36 (1):1-28.
    In 2015, Tomasetti and Vogelstein published a paper in Science containing the following provocative statement: “… only a third of the variation in cancer risk among tissues is attributable to environmental factors or inherited predispositions. The majority is due to “bad luck,” that is, random mutations arising during DNA replication in normal, noncancerous stem cells.” The paper—and perhaps especially this rather coy reference to “bad luck”—became a flash point for a series of letters and reviews, followed by replies and yet (...)
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  • Is an ecological approach radical enough?H. C. Plotkin & F. J. Odling-Smee - 1981 - Behavioral and Brain Sciences 4 (1):154-155.
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  • Evolutionary epistemology as science.H. C. Plotkin - 1987 - Biology and Philosophy 2 (3):295-313.
    What credentials does evolutionary epistemology have as science? A judgement based on past performance, both in terms of advancing an empirical programme and further ng theory construction, is not much. This paper briefly outlines some of the research areas, both theoretical and empirical, that can be developed and that might secure for evolutionary epistemology a future in evolutionary biology.
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  • Levels of Consciousness.Wojciech Pisula - 2016 - Open Journal of Philosophy 6 (1):51-58.
    Consciousness attracts the attention of researchers representing various disciplines. Hence, there is a demand for a theoretical tool that could integrate data and theoretical concepts originating from distinct fields. The paper proposes to use the framework of the theory of integrative levels. The development and the definitions of the concept of levels are briefly discussed. The final part of the paper presents a proposal for incorporating the levels of consciousness into the framework of the integrative levels theory.
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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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  • An unbalanced survey of bird-song research: Smoke gets in your eyes.Lewis Petrinovich - 1985 - Behavioral and Brain Sciences 8 (1):113-114.
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  • A functional view of learning.Lewis Petrinovich - 1981 - Behavioral and Brain Sciences 4 (1):153-154.
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  • The economy of nature: the structure of evolution in Linnaeus, Darwin, and the modern synthesis.Charles H. Pence & Daniel G. Swaim - 2017 - European Journal for Philosophy of Science 8 (3):435-454.
    We argue that the economy of nature constitutes an invocation of structure in the biological sciences, one largely missed by philosophers of biology despite the turn in recent years toward structural explanations throughout the philosophy of science. We trace a portion of the history of this concept, beginning with the theologically and economically grounded work of Linnaeus, moving through Darwin’s adaptation of the economy of nature and its reconstitution in genetic terms during the first decades of the Modern Synthesis. What (...)
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  • Putting all cetacean brains in one category is a big order.Sue T. Parker - 1988 - Behavioral and Brain Sciences 11 (1):97-98.
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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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  • Speciation by postzygotic isolation: forces, genes and molecules.H. Allen Orr & Daven C. Presgraves - 2000 - Bioessays 22 (12):1085-1094.
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  • Ernst Mayr, the tree of life, and philosophy of biology.Maureen A. O’Malley - 2010 - Biology and Philosophy 25 (4):529-552.
    Ernst Mayr’s influence on philosophy of biology has given the field a particular perspective on evolution, phylogeny and life in general. Using debates about the tree of life as a guide, I show how Mayrian evolutionary biology excludes numerous forms of life and many important evolutionary processes. Hybridization and lateral gene transfer are two of these processes, and they occur frequently, with important outcomes in all domains of life. Eukaryotes appear to have a more tree-like history because successful lateral events (...)
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  • Sound transmission, signal salience, and song dialects.Fernando Nottebohm - 1985 - Behavioral and Brain Sciences 8 (1):112-113.
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  • Learning theory: Behavioral artifacts or general principles?John A. Nevin - 1981 - Behavioral and Brain Sciences 4 (1):152-153.
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  • Rethinking Cohesion and Species Individuality.Celso Neto - 2016 - Biological Theory 11 (3):01-12.
    According to the species-as-individuals thesis(hereafter S-A-I), species are cohesive entities. Barker and Wilson recently pointed out that the type of cohesion exhibited by species is fundamentally different from that of organisms (paradigmatic individuals), suggesting that species are homeostatic property cluster kinds. In this article, I propose a shift in how to approach cohesion in the context of S-A-I: instead of analyzing the different types of cohesion and questioning whether species have them, I focus on the role played by cohesion in (...)
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  • Feminist Philosophy of Science.Lynn Hankinson Nelson - 2002 - In Peter Machamer & Michael Silberstein (eds.), The Blackwell Guide to the Philosophy of Science. Oxford, UK: Blackwell. pp. 312–331.
    This chapter contains sections titled: Highlights of Past Literature Current Work Future Work.
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  • The concept of association cortex should be abandoned.E. J. Neafsey - 1988 - Behavioral and Brain Sciences 11 (1):97-97.
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  • Population thinking as trope nominalism.Bence Nanay - 2010 - Synthese 177 (1):91 - 109.
    The concept of population thinking was introduced by Ernst Mayr as the right way of thinking about the biological domain, but it is difficult to find an interpretation of this notion that is both unproblematic and does the theoretical work it was intended to do. I argue that, properly conceived, Mayr’s population thinking is a version of trope nominalism: the view that biological property-types do not exist or at least they play no explanatory role. Further, although population thinking has been (...)
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  • Singularist Semirealism.Bence Nanay - 2013 - British Journal for the Philosophy of Science 64 (2):371-394.
    This paper proposes to carve out a new position in the scientific realism/antirealism debate and argue that it captures some of the most important realist and some of the most important antirealist considerations. The view, briefly stated, is that there is always a fact of the matter about whether the singular statements science gives us are literally true, but there is no fact of the matter about whether the non-singular statements science gives us are literally true. I call this view (...)
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  • Linguistic applications to avian dialect biology.Paul C. Mundinger - 1985 - Behavioral and Brain Sciences 8 (1):111-112.
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  • Evolution and special creation.Ernan Mc Mullin - 1993 - Zygon 28 (3):299-335.
    The logical relationships between the ideas of evolution and of special creation are explored here in the context of a recent paper by Alvin Plantinga claiming that from the perspective of biblical religion it is more likely than not that God acted in a “special” way at certain crucial moments in the long process whereby life developed on earth. I argue against this thesis, asking first under what circumstances the Bible might be thought relevant to an issue of broadly scientific (...)
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  • Bird-song dialects and human-language dialects.William G. Moulton - 1985 - Behavioral and Brain Sciences 8 (1):110-111.
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  • Botánica y Evolución.Margarita Moreno - 2002 - Arbor 172 (677):59-99.
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  • The infinite regress of optimization.Philippe Mongin - 1991 - Behavioral and Brain Sciences 14 (2):229-230.
    A comment on Paul Schoemaker's target article in Behavioral and Brain Sciences, 14 (1991), p. 205-215, "The Quest for Optimality: A Positive Heuristic of Science?" (https://doi.org/10.1017/S0140525X00066140). This comment argues that the optimizing model of decision leads to an infinite regress, once internal costs of decision (i.e., information and computation costs) are duly taken into account.
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  • Possibility spaces and the notion of novelty: from music to biology.Maël Montévil - 2019 - Synthese 196 (11):4555-4581.
    We provide a new perspective on the relation between the space of description of an object and the appearance of novelties. One of the aims of this perspective is to facilitate the interaction between mathematics and historical sciences. The definition of novelties is paradoxical: if one can define in advance the possibles, then they are not genuinely new. By analyzing the situation in set theory, we show that defining generic (i.e., shared) and specific (i.e., individual) properties of elements of a (...)
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  • Two dynamic criteria for validating claims of optimality.Geoffrey F. Miller - 1991 - Behavioral and Brain Sciences 14 (2):228-229.
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  • Complexity and optimality.Dauglas A. Miller & Steven W. Zucker - 1991 - Behavioral and Brain Sciences 14 (2):227-228.
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