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  1. Typology and Natural Kinds in Evo-Devo.Ingo Brigandt - 2021 - In Nuño De La Rosa Laura & Müller Gerd (eds.), Evolutionary Developmental Biology: A Reference Guide. Springer. pp. 483-493.
    The traditional practice of establishing morphological types and investigating morphological organization has found new support from evolutionary developmental biology (evo-devo), especially with respect to the notion of body plans. Despite recurring claims that typology is at odds with evolutionary thinking, evo-devo offers mechanistic explanations of the evolutionary origin, transformation, and evolvability of morphological organization. In parallel, philosophers have developed non-essentialist conceptions of natural kinds that permit kinds to exhibit variation and undergo change. This not only facilitates a construal of species (...)
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  • EvoDevo Concepts in the Work of Waddington.Brian K. Hall - 2008 - Biological Theory 3 (3):198-203.
    Conrad Hal Waddington integrated genetics with embryology and evolution by formulating and providing experimental evidence for the mechanisms of canalization and genetic assimilation in the context of stabilizing selection, and by fostering an epigenetic rather than the prevailing gene-centered view of embryonic development and of evolutionary change in development and adult form. Waddington saw phenotypes as processes, not static structures and behaviors. Trained in geology at Cambridge, Waddington turned to experimental studies on the chemical nature of the primary organizer and (...)
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  • Pattern Cladistics and the ‘Realism–Antirealism Debate’ in the Philosophy of Biology.Francisco Vergara-Silva - 2009 - Acta Biotheoretica 57 (1-2):269-294.
    Despite the amount of work that has been produced on the subject over the years, the ‘transformation of cladistics’ is still a misunderstood episode in the history of comparative biology. Here, I analyze two outstanding, highly contrasting historiographic accounts on the matter, under the perspective of an influential dichotomy in the philosophy of science: the opposition between Scientific Realism and Empiricism. Placing special emphasis on the notion of ‘causal grounding’ of morphological characters in modern developmental biology’s theories, I arrive at (...)
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  • Cycles and circulation: a theme in the history of biology and medicine.Lucy van de Wiel, Mathias Grote, Peder Anker, Warwick Anderson, Ariane Dröscher, Hans-Jörg Rheinberger, Lynn K. Nyhart, Guido Giglioni, Maaike van der Lugt, Shigehisa Kuriyama, Christiane Groeben, Janet Browne, Staffan Müller-Wille & Nick Hopwood - 2021 - History and Philosophy of the Life Sciences 43 (3):1-39.
    We invite systematic consideration of the metaphors of cycles and circulation as a long-term theme in the history of the life and environmental sciences and medicine. Ubiquitous in ancient religious and philosophical traditions, especially in representing the seasons and the motions of celestial bodies, circles once symbolized perfection. Over the centuries cyclic images in western medicine, natural philosophy, natural history and eventually biology gained independence from cosmology and theology and came to depend less on strictly circular forms. As potent ‘canonical (...)
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  • The Current Status of the Philosophy of Biology.Peter Takacs & Michael Ruse - 2013 - Science & Education 22 (1):5-48.
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  • Homology thinking reconciles the conceptual conflict between typological and population thinking.Daichi G. Suzuki - 2021 - Biology and Philosophy 36 (2):1-17.
    This paper attempts to reconcile the conceptual conflict between typological and population thinking to provide a philosophical foundation for extended evolutionary synthesis. Typological thinking has been considered a pre-Darwinian, essentialist dogma incompatible with population thinking, which is the core notion of Darwinism. More recent philosophical and historical studies suggest that a non-essentialist form of typology has some advantages in the study of evolutionary biology. However, even if we adopt such an epistemological interpretation of typological thinking, there still remains an epistemological (...)
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  • Individuating population lineages: a new genealogical criterion.Beckett Sterner - 2017 - Biology and Philosophy 32 (5):683-703.
    Contemporary biology has inherited two key assumptions from the Modern Synthesis about the nature of population lineages: sexual reproduction is the exemplar for how individuals in population lineages inherit traits from their parents, and random mating is the exemplar for reproductive interaction. While these assumptions have been extremely fruitful for a number of fields, such as population genetics and phylogenetics, they are increasingly unviable for studying the full diversity and evolution of life. I introduce the “mixture” account of population lineages (...)
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  • The importance of homology for biology and philosophy.Ingo Brigandt & Paul Edmund Griffiths - 2007 - Biology and Philosophy 22 (5):633-641.
    Editors' introduction to the special issue on homology (Biology and Philosophy Vol. 22, Issue 5, 2007).
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  • Peter Bowler Evolution: The History of an Idea, 25th Anniversary Edition.Erik L. Peterson - 2011 - Science & Education 20 (5-6):557-562.
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  • Introduction: sketches of a conceptual history of epigenesis.Antonine Nicoglou & Charles T. Wolfe - 2018 - History and Philosophy of the Life Sciences 40 (4):64.
    This is an introduction to a collection of articles on the conceptual history of epigenesis, from Aristotle to Harvey, Cavendish, Kant and Erasmus Darwin, moving into nineteenth-century biology with Wolff, Blumenbach and His, and onto the twentieth century and current issues, with Waddington and epigenetics. The purpose of the topical collection is to emphasize how epigenesis marks the point of intersection of a theory of biological development and a theory of active matter. We also wish to show that the concept (...)
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  • Defining the Boundaries of Development with Plasticity.Antonine Nicoglou - 2011 - Biological Theory 6 (1):36-47.
    The concept of plasticity has always been present in the history of developmental biology, both within the theory of epigenesis and within morphogenesis studies. However this tradition relies also upon a genetic conception of plasticity. Founded upon the concepts of ‘‘phenotypic plasticity’’ and ‘‘reaction norm,’’ this genetic conception focuses on the array of possible phenotypic change in relation to diversified environments. Another concept of plasticity can be found in recent publications by some developmental biologists (Gilbert, West-Eberhard). I argue that these (...)
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  • Estructuración filo y ontogenética de la cognición incorporada.Rómulo San Martin - 2014 - Sophia. Colección de Filosofía de la Educación 16:124-168.
    La cognición incorporada es antipresencialista y por lo mismo no sucumbe al externalismo objetual. Su naturaleza es archeológica y teleológica: en cuanto a la primera, todo conocer está encadenado al desarrollo de la especie, por lo mismo no se la entiende desde la sola dimensión antropológica. En cuanto a la segunda, es finalizada en comportamientos, representaciones, objetivaciones-cosistas. El conocer es incorporado porque es filogenético, entonces perteneciente a la especie; pero también es ontogenético, entonces perteneciente al individuo. El conocimiento del sujeto (...)
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  • The Specter of the Past: What the History of Theoretical Biology Means Today.Manfred D. Laubichler - 2007 - Biological Theory 2 (2):131-133.
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  • The potency of the butterfly: The reception of Richard B. Goldschmidt’s animal experiments in German sexology around 1920.Ina Linge - 2021 - History of the Human Sciences 34 (1):40-70.
    This article considers the sexual politics of animal evidence in the context of German sexology around 1920. In the 1910s, the German-Jewish geneticist Richard B. Goldschmidt conducted experiments on the moth Lymantria dispar, and discovered individuals that were no longer clearly identifiable as male or female. When he published an article tentatively arguing that his research on ‘intersex butterflies’ could be used to inform concurrent debates about human homosexuality, he triggered a flurry of responses from Berlin-based sexologists. In this article, (...)
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  • The Comet Cometh: Evolving Developmental Systems.Johannes Jaeger, Manfred Laubichler & Werner Callebaut - 2015 - Biological Theory 10 (1):36-49.
    In a recent opinion piece, Denis Duboule has claimed that the increasing shift towards systems biology is driving evolutionary and developmental biology apart, and that a true reunification of these two disciplines within the framework of evolutionary developmental biology may easily take another 100 years. He identifies methodological, epistemological, and social differences as causes for this supposed separation. Our article provides a contrasting view. We argue that Duboule’s prediction is based on a one-sided understanding of systems biology as a science (...)
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  • Regulatory evolution and theoretical arguments in evolutionary biology.Stavros Ioannidis - 2013 - Science & Education 22 (2):279-292.
    The cis-regulatory hypothesis is one of the most important claims of evolutionary developmental biology. In this paper I examine the theoretical argument for cis-regulatory evolution and its role within evolutionary theorizing. I show that, although the argument has some weaknesses, it acts as a useful example for the importance of current scientific debates for science education.
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  • The phenomena of homology.Paul Edmund Griffiths - 2007 - Biology and Philosophy 22 (5):643-658.
    Philosophical discussions of biological classification have failed to recognise the central role of homology in the classification of biological parts and processes. One reason for this is a misunderstanding of the relationship between judgments of homology and the core explanatory theories of biology. The textbook characterisation of homology as identity by descent is commonly regarded as a definition. I suggest instead that it is one of several attempts to explain the phenomena of homology. Twenty years ago the ‘new experimentalist’ movement (...)
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  • Étienne Geoffroy Saint-Hilaire and the First Embryological Evolutionary Model on the Origin of Vertebrates.Andrés Galera - 2021 - Journal of the History of Biology 54 (2):229-245.
    Historiographical accounts typically place the formulation of the first embryological theory of the evolutionary origin of vertebrates after the publication of Darwin’s On the Origin of Species. However, the French naturalist Étienne Geoffroy Saint-Hilaire developed an embryological evolutionary model in the 1820s that followed the Lamarckian theory. Geoffroy was the first to establish a direct embryological relationship between vertebrates and invertebrates. This idea was not forgotten, and the embryologists Anton Dohrn and Carl Semper subsequently updated it in their annelid theory (...)
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  • Thomas Hunt Morgan and the invisible gene: the right tool for the job.Giulia Frezza & Mauro Capocci - 2018 - History and Philosophy of the Life Sciences 40 (2):31.
    The paper analyzes the early theory building process of Thomas Hunt Morgan from the 1910s to the 1930s and the introduction of the invisible gene as a main explanatory unit of heredity. Morgan’s work marks the transition between two different styles of thought. In the early 1900s, he shifted from an embryological study of the development of the organism to a study of the mechanism of genetic inheritance and gene action. According to his contemporaries as well as to historiography, Morgan (...)
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  • Wilhelm His and mechanistic approaches to development at the time of Entwicklungsmechanik.Jean-Claude Dupont - 2017 - History and Philosophy of the Life Sciences 39 (3):21.
    At the end of the nineteenth century, approaches from experimental physiology made inroads into embryological research. A new generation of embryologists felt urged to study the mechanisms of organ formation. This new program, most prominently defended by Wilhelm Roux, was called Entwicklungsmechanik. Named variously as “causal embryology”, “physiological embryology” or “developmental mechanics”, it catalyzed the movement of embryology from a descriptive science to one exploring causal mechanisms. This article examines the specific scientific and epistemological meaning of the mechanistic approaches of (...)
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  • Brains, genes, and language evolution: A new synthesis.Morten H. Christiansen & Nick Chater - 2008 - Behavioral and Brain Sciences 31 (5):537-558.
    Our target article argued that a genetically specified Universal Grammar (UG), capturing arbitrary properties of languages, is not tenable on evolutionary grounds, and that the close fit between language and language learners arises because language is shaped by the brain, rather than the reverse. Few commentaries defend a genetically specified UG. Some commentators argue that we underestimate the importance of processes of cultural transmission; some propose additional cognitive and brain mechanisms that may constrain language and perhaps differentiate humans from nonhuman (...)
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  • Conceptual heterogeneity and the legacy of organicism: thoughts on the life organic: Essay review of Erik Peterson, The life organic: the theoretical biology club and the roots of epigenetics, Pittsburgh: University of Pittsburgh Press, 2016, 328 pp., $45.00.Daniel S. Brooks - 2019 - History and Philosophy of the Life Sciences 41 (2):24.
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  • Handbook of Evolutionary Thinking in the Sciences.Thomas Heams, Philippe Huneman, Guillaume Lecointre & Marc Silberstein (eds.) - 2015 - Springer.
    The Darwinian theory of evolution is itself evolving and this book presents the details of the core of modern Darwinism and its latest developmental directions. The authors present current scientific work addressing theoretical problems and challenges in four sections, beginning with the concepts of evolution theory, its processes of variation, heredity, selection, adaptation and function, and its patterns of character, species, descent and life. The second part of this book scrutinizes Darwinism in the philosophy of science and its usefulness in (...)
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  • The Use of Natural Kinds in Evolutionary Developmental Biology.Jessica Bolker - 2013 - Biological Theory 7 (2):121-129.
    Evolutionary developmental biologists categorize many different kinds of things, from ontogenetic stages to modules of gene activity. The process of categorization—the establishment of “kinds”—is an implicit part of describing the natural world in consistent, useful ways, and has an essentially practical rather than philosophical basis. Kinds commonly serve one of three purposes: they may function (1) as practical tools for communication; (2) to support prediction and generalization; or (3) as a basis for theoretical discussions. Beyond the minimal requirement that classifications (...)
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  • Between the Wars, Facing a Scientific Crisis: The Theoretical and Methodological Bottleneck of Interwar Biology.Jan Baedke & Christina Brandt - 2022 - Journal of the History of Biology 55 (2):209-217.
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  • Um exame histórico-filosófico da biologia evolutiva do desenvolvimento.Ana Maria Rocha de Almeida & Charbel Niño El-Hani - 2010 - Scientiae Studia 8 (1):9-10.
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  • Special Issue: Philosophical Considerations in the Teaching of Biology. Part II, Evolution, Development and Genetics.Kostas Kampourakis (ed.) - 2013 - Springer (Science & Education).
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  • Evo-Devo as a Trading Zone.Rasmus Grønfeldt Winther - 2015 - In Alan Love (ed.), Conceptual Change in Biology: Scientific and Philosophical Perspectives on Evolution and Development. Springer Verlag, Boston Studies in the Philosophy of Science.
    Evo-Devo exhibits a plurality of scientific “cultures” of practice and theory. When are the cultures acting—individually or collectively—in ways that actually move research forward, empirically, theoretically, and ethically? When do they become imperialistic, in the sense of excluding and subordinating other cultures? This chapter identifies six cultures – three /styles/ (mathematical modeling, mechanism, and history) and three /paradigms/ (adaptationism, structuralism, and cladism). The key assumptions standing behind, under, or within each of these cultures are explored. Characterizing the internal structure of (...)
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