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  1. Principles of Animal Taxonomy.George Gaylord Simpson - 1961 - Columbia University Press.
    The Development of Modern Taxonomy Taxonomy has a long history, going back to the ancient Greeks and to forerunners even less sophisticated in systematics. Our interest here is centered on modern taxonomy itself, and we shall largely ...
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  • On the foundations of biological systematics.Graham C. D. Griffiths - 1974 - Acta Biotheoretica 23 (3-4):85-131.
    The foundations of systematics lie in ontology, not in subjective epistemology. Systems and their elements should be distinguished from classes; only the latter are constructed from similarities. The term classification should be restricted to ordering into classes; ordering according to systematic relations may be called systematization.The theory of organization levels portrays the real world as a hierarchy of open systems, from energy quanta to ecosystems; followingHartmann these systems as extended in time are considered the primary units of reality. Organization levels (...)
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  • Some problems with the linnaean hierarchy.Marc Ereshefsky - 1994 - Philosophy of Science 61 (2):186-205.
    Most biologists use the Linnaean system for constructing classifications of the organic world. The Linnaean system, however, has lost its theoretical basis due to the shift in biology from creationist and essentialist tenets to evolutionary theory. As a result, the Linnaean system is both cumbersome and ontologically vacuous. This paper illustrates the problems facing the Linnaean system, and ends with a brief introduction to an alternative approach to biological classification.
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  • The Growth of Biological Thought: Diversity, Evolution, and Inheritance.Ernst Mayr - 1982 - Harvard University Press.
    Explores the development of the ideas of evolutionary biology, particularly as affected by the increasing understanding of genetics and of the chemical basis of inheritance.
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  • Cognitive Foundations of Natural History: Towards an Anthropology of Science.Scott Atran - 1990 - Cambridge: Cambridge University Press.
    Inspired by a debate between Noam Chomsky and Jean Piaget, this work traces the development of natural history from Aristotle to Darwin, and demonstrates how the science of plants and animals has emerged from the common conceptions of folkbiology.
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  • (1 other version)Principles of Systematic Zoology.Ernst Mayr - 1969 - McGraw-Hill.
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  • Vicariant patterns and historical explanation in biogeography.Donn E. Rosen - 1978 - Systematic Zoology 27:159-188.
    Geographic coincidence of animal and plant distributions to form recognizable patterns suggests that the separate components of the patterns are historically connected with each other and with geographic history. To seek evidence of these historical connections, cladograms of geographic areas, representing sequences of disruptive geologic, climatic, or geographic events, may be compared with biological cladograms, representing sequences of allopatric speciation events in relation to those geographic areas. Such comparisons, when they meet the minimum requirements of being among dichotomized threetaxon cladograms, (...)
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  • Phylogenetic Systematics.Willi Hennig - 1966 - University of Illinois Press.
    Argues for the primacy of the phylogenetic system as the general reference system in biology. This book, first published in 1966, generated significant controversy and opened possibilities for evolutionary biology.
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  • Species Concepts: A Case for Pluralism.Brent D. Mishler & M. J. Donoghue - 1982 - Systematic Zoology 31:491-503.
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  • An Annotated Linnean Hierarchy, with Comments on Natural Taxa and Competing Systems.E. O. Wiley - 1979 - Systematic Zoology 28:308-337.
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  • A matter of individuality.David L. Hull - 1978 - Philosophy of Science 45 (3):335-360.
    Biological species have been treated traditionally as spatiotemporally unrestricted classes. If they are to perform the function which they do in the evolutionary process, they must be spatiotemporally localized individuals, historical entities. Reinterpreting biological species as historical entities solves several important anomalies in biology, in philosophy of biology, and within philosophy itself. It also has important implications for any attempt to present an "evolutionary" analysis of science and for sciences such as anthropology which are devoted to the study of single (...)
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  • Species, higher taxa, and the units of evolution.Marc Ereshefsky - 1991 - Philosophy of Science 58 (1):84-101.
    A number of authors argue that while species are evolutionary units, individuals and real entities, higher taxa are not. I argue that drawing the divide between species and higher taxa along such lines has not been successful. Common conceptions of evolutionary units either include or exclude both types of taxa. Most species, like all higher taxa, are not individuals, but historical entities. Furthermore, higher taxa are neither more nor less real than species. None of this implies that there is no (...)
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  • Populations, species and evolution: An abridgment of Animal species and evolution.Ernst Mayr - 1970 - Belknap Press of Harvard University Press.
    In the Preface of Animal Species and Evolution (1963), I wrote that it was "an attempt to summarize and review critically what we know about the biology and genetics of animal species and their role in evolution." The result was a volume of XIV ...
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  • Phylogenetics: The Theory and Practice of Phylogenetic Systematics.E. O. Wiley - 1981 - Wiley.
    The long-awaited revision of the industry standard on phylogenetics Since the publication of the first edition of this landmark volume more than twenty-five years ago, phylogenetic systematics has taken its place as the dominant paradigm of systematic biology. It has profoundly influenced the way scientists study evolution, and has seen many theoretical and technical advances as the field has continued to grow. It goes almost without saying that the next twenty-five years of phylogenetic research will prove as fascinating as the (...)
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  • The Logical Structure of the Linnaen Hierarchy.Roger C. Buck & David L. Hull - 1966 - Systematic Zoology 15 (2):97-111.
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  • Phylogenetic Numericlature.David L. Hull - 1966 - Systematic Zoology 15 (1):14-17.
    The author proposes a system of identification, positional, and phyletic numbers for taxa that makes possible a significant relationship between numerical classification and phylogeny.
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  • Consistency and Monophyly.David L. Hull - 1964 - Systematic Zoology 13 (1):1-11.
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  • Cognitive Foundations of Natural History: Towards an Anthropology of Science.[author unknown] - 1991 - Journal of the History of Biology 24 (3):537-540.
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  • Phylogenetic Systematics.Willi Hennig, D. Dwight Davis & Rainer Zangerl - 1980 - Philosophy of Science 47 (3):499-502.
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  • Logic and memory in Linnaeus's system of taxonomy.A. J. Cain - 1958 - Proceedings of the Linnean Society of London 169:144-163.
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  • Naming Species.Anna Graybeal - 1995 - Systematic Biology 44 (2):237-250.
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