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  1. Neuropsychology vis-à-vis Skinner's behaviouristic psychology.Gerhard D. Wassermann - 1984 - Behavioral and Brain Sciences 7 (4):700-701.
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  • Skinner's blind eye.H. J. Eysenck - 1984 - Behavioral and Brain Sciences 7 (4):686-687.
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  • The structure versus the provenance of behavior.Jerry A. Hogan - 1984 - Behavioral and Brain Sciences 7 (4):690-690.
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  • Behavior in the light of identified neurons.Graham Hoyle - 1984 - Behavioral and Brain Sciences 7 (4):690-691.
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  • The phylogeny and ontogeny of behavior.B. F. Skinner - 1984 - Behavioral and Brain Sciences 7 (4):669-677.
    Responses are strengthened by consequences having to do with the survival of individuals and species. With respect to the provenance of behavior, we know more about ontogenic than phylogenic contingencies. The contingencies responsible for unlearned behavior acted long ago. This remoteness affects our scientific methods, both experimental and conceptual. Until we have identified he variables responsible for an event, we tend to invent causes. Explanatory entities such as “instincts,” “drives,” and “traits” still survive. Unable to show how organisms can behave (...)
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  • Contingencies of selection, reinforcement, and survival.David P. Barash - 1984 - Behavioral and Brain Sciences 7 (4):680-680.
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  • Difficulties with phylogenetic and ontogenetic concepts.Irenäus Eibl-Eibesfeldt - 1984 - Behavioral and Brain Sciences 7 (4):685-686.
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  • A new experimental analysis of behavior – one for all behavior.D. Caroline Blanchard, Robert J. Blanchard & Kevin J. Flannelly - 1984 - Behavioral and Brain Sciences 7 (4):681-682.
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  • The embryological origins of the gene theory.Scott F. Gilbert - 1978 - Journal of the History of Biology 11 (2):307-351.
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  • Is evolution of behavior operant conditioning writ large?Anatol Rapoport - 1984 - Behavioral and Brain Sciences 7 (4):696-696.
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  • Reinforcement is the problem, not the solution: Variation and selection of behavior.J. E. R. Staddon - 1984 - Behavioral and Brain Sciences 7 (4):697-699.
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  • Each behavior is a product of heredity and experience.Douglas Wahlsten - 1984 - Behavioral and Brain Sciences 7 (4):699-700.
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  • How Theories Became Knowledge: Morgan's Chromosome Theory of Heredity in America and Britain. [REVIEW]Stephen G. Brush - 2002 - Journal of the History of Biology 35 (3):471-535.
    T. H. Morgan, A. H. Sturtevant, H. J. Muller and C. B. Bridges published their comprehensive treatise "The Mechanism of Mendelian Heredity" in 1915. By 1920 Morgan 's "Chromosome Theory of Heredity" was generally accepted by geneticists in the United States, and by British geneticists by 1925. By 1930 it had been incorporated into most general biology, botany, and zoology textbooks as established knowledge. In this paper, I examine the reasons why it was accepted as part of a series of (...)
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  • Folding into being: early embryology and the epistemology of rhythm.Janina Wellmann - 2015 - History and Philosophy of the Life Sciences 37 (1):17-33.
    Historians have often described embryology and concepts of development in the period around 1800 in terms of “temporalization” or “dynamization”. This paper, in contrast, argues that a central epistemological category in the period was “rhythm”, which played a major role in the establishment of the emerging discipline of biology. I show that Caspar Friedrich Wolff’s epigenetic theory of development was based on a rhythmical notion, namely the hypothesis that organic development occurs as a series of ordered rhythmical repetitions and variations. (...)
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  • Rationalizing Early Embryogenesis in the 1930s: Albert Dalcq on Gradients and Fields. [REVIEW]Denis Thieffry - 2001 - Journal of the History of Biology 34 (1):149 - 181.
    The present account aims to contribute to a better characterization of the state and the dynamics of embryological knowledge at the dawn of the molecular revolution in biology. In this study, Albert Dalcq (1893-1973) was chosen as a representative of a generation of embryologists who found themselves at the junction of two very different approaches to the study of life: the first, focusing on global properties of organisms; the second focusing on the characterization of basic molecular constituents. Though clearly belonging (...)
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  • Ontogenetic or phylogenetic – another afterpain of the fallacious Cartesian dichotomy.Gerard P. Baerends - 1984 - Behavioral and Brain Sciences 7 (4):679-680.
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  • Consequence contingencies and provenance partitions.Juan D. Delius - 1984 - Behavioral and Brain Sciences 7 (4):685-685.
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  • The idea of immunity: Metchnikoff's metaphysics and science.Leon Chernyak & Alfred I. Tauber - 1990 - Journal of the History of Biology 23 (2):187-249.
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  • Cost–benefit models and the evolution of behavior.Jerram L. Brown - 1984 - Behavioral and Brain Sciences 7 (4):682-682.
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  • What's in a (biological) term?…Frequently, a great deal of ambiguity.Adam S. Wilkins - 1995 - Bioessays 17 (5):375-377.
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  • Hereditary ≠ innate.Robert Plomin & Denise Daniels - 1984 - Behavioral and Brain Sciences 7 (4):694-695.
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  • Molar concepts and mentalistic theories: A moral perspective.Stephen Kaplan - 1984 - Behavioral and Brain Sciences 7 (4):692-693.
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  • Are Research Schools Necessary? Contrasting Models of 20th Century Research at Yale Led by Ross Granville Harrison, Grace E. Pickford and G. Evelyn Hutchinson.Nancy G. Slack - 2003 - Journal of the History of Biology 36 (3):501 - 529.
    This paper compares and contrasts three groups that conducted biological research at Yale University during overlapping periods between 1910 and 1970. Yale University proved important as a site for this research. The leaders of these groups were Ross Granville Harrison, Grace E. Pickford, and G. Evelyn Hutchinson, and their members included both graduate students and more experienced scientists. All produced innovative research, including the opening of new subfields in embryology, endocrinology and ecology respectively, over a long period of time. Harrison's (...)
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  • Die Metamorphose der Bilder: Die Verwandlung der Insekten und ihre Darstellung vom Ende des 17. bis zum Anfang des 19. Jahrhunderts.Janina Wellmann - 2008 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 16 (2):183-211.
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  • The use of evolutionary analogies and the rejection of state variables by B. F. Skinner.Alejandro Kacelnik & Alasdair Houston - 1984 - Behavioral and Brain Sciences 7 (4):691-692.
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  • Ethology and operant psychology.Gordon M. Burghardt - 1984 - Behavioral and Brain Sciences 7 (4):683-684.
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  • Operant conditioning and natural selection.Andrew M. Colman - 1984 - Behavioral and Brain Sciences 7 (4):684-685.
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  • Phylogenic and ontogenic environments.B. F. Skinner - 1984 - Behavioral and Brain Sciences 7 (4):701-711.
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  • Skinner's practical metaphysic may be impractical.S. N. Salthe - 1984 - Behavioral and Brain Sciences 7 (4):696-697.
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  • B. F. Skinner and the flaws of sociobiology.Anthony J. Perzigian - 1984 - Behavioral and Brain Sciences 7 (4):693-694.
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  • Skinner's circus.Stuart A. Altmann - 1984 - Behavioral and Brain Sciences 7 (4):678-679.
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  • Lingering Haeckelian influences and certain other inadequacies of the operant viewpoint for phylogeny and ontogeny.Gilbert Gottlieb - 1984 - Behavioral and Brain Sciences 7 (4):688-689.
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  • Von Baer, the intensification of uniqueness, and historical explanation.Joshua Rust - 2021 - History and Philosophy of the Life Sciences 43 (4):1-26.
    This paper aims to uncover the explanatory profile of an idealized version of Karl Ernst von Baer’s notion of individuation, wherein the special develops from the general. First, because such sequences can only be exemplified by a multiplicity of causally-related events, they should be seen as the topics of historical why-questions, rather than initial condition why-questions. Second, because historical why-questions concern the diachronic unity or genidentity of the events under consideration, I argue that the von Baerian pattern elicits a distinctive (...)
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  • B. F. Skinner versus Dr. Pangloss.Michael T. Ghiselin - 1984 - Behavioral and Brain Sciences 7 (4):687-688.
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  • Ethology ignored Skinner to its detriment.Jack P. Hailman - 1984 - Behavioral and Brain Sciences 7 (4):689-690.
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  • Of false dichotomies and larger frames.Jerome H. Barkow - 1984 - Behavioral and Brain Sciences 7 (4):680-681.
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  • Nature and nurture revisited.H. C. Plotkin - 1984 - Behavioral and Brain Sciences 7 (4):695-696.
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