Results for 'developmental evolutionary biology'

993 found
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  1.  46
    Readers of the book of life: contextualizing developmental evolutionary biology.Anton Markoš - 2002 - New York: Oxford University Press.
    This is a wide ranging and deeply learned examination of evolutionary developmental biology, and the foundations of life from the perspective of information theory. Hermeneutics was a method developed in the humanities to achieve understanding, in a given context, of texts, history, and artwork. In Readers of the Book of Life, the author shows that living beings are also hermeneutical interpreters of genetics texts saved in DNA; an interpretation based on the past experience of the cell (cell (...)
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  2.  13
    Evolutionary developmental biology does not offer a significant challenge to the neo-Darwinian paradigm.Alessandro Minelli - 2010 - In Francisco José Ayala & Robert Arp (eds.), Contemporary debates in philosophy of biology. Malden, MA: Wiley-Blackwell. pp. 213–226.
    This chapter contains sections titled: Introduction The Evolving Evolutionary Synthesis Population Genetics vs. Developmental Genetics Evo‐Devo's Central Target: The Study of Evolvability Origins? Conclusion Postscript: Counterpoint Acknowledgments References.
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  3.  12
    Evolutionary developmental biology offers a significant challenge to the neo-Darwinian paradigm.Manfred D. Laubichler - 2010 - In Francisco José Ayala & Robert Arp (eds.), Contemporary debates in philosophy of biology. Malden, MA: Wiley-Blackwell. pp. 199–212.
    This chapter contains sections titled: Introduction A Brief History of Developmental Explanations of Phenotypic Evolution Research Questions of Evo‐Devo Unifying Themes of the Conceptual Basis of Evo‐Devo Conclusion: A Mechanistic Theory of Evo‐Devo Challenges the Modern Synthesis Postscript: Counterpoint References.
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  4.  64
    Does evolutionary biology contribute to ethics?Patrick Bateson - 1989 - Biology and Philosophy 4 (3):287-301.
    Human propensities that are the products of Darwinian evolution may combine to generate a form of social behavior that is not itself a direct result of such pressure. This possibility may provide a satisfying explanation for the origin of socially transmitted rules such as the incest taboo. Similarly, the regulatory processes of development that generated adaptations to the environment in the circumstances in which they evolved can produce surprising and sometimes maladaptive consequences for the individual in modern conditions. These combinatorial (...)
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  5.  18
    Cognitive Biology: Evolutionary and Developmental Perspectives on Mind, Brain, and Behavior.Luca Tommasi, Mary A. Peterson & Lynn Nadel (eds.) - 2009 - MIT Press.
    An overview of current research at the intersection of psychology and biology,integrating evolutionary and developmental data and explanations.
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  6.  47
    Perspectives on Integrating Developmental and Evolutionary Biology.Jonathan Kaplan - 2007 - Biological Theory 2 (4):427-429.
  7. Epigenetic inheritance and progress in evolutionary biology : a developmental system approach.Eva Jablonka - 2022 - In Yafeng Shan (ed.), New Philosophical Perspectives on Scientific Progress. Routledge.
  8.  79
    Is Evolutionary Biology Infected With Invalid Teleological Reasoning?David J. Depew - 2010 - Philosophy, Theory, and Practice in Biology 2 (20130604).
    John Reiss is a practicing evolutionary biologist (herpetology) who by his own account happened to be in the right place (Harvard’s Museum of Comparative Zoology) at the right time (the 1980s) to hear echoes of the debate about sociobiology that had been raging there between E. O. Wilson and, on the other side, Stephen Jay Gould and Richard Lewontin (xiv). Reiss is not concerned with sociobiology, at least in this book, but with the adaptationism that Gould and Lewontin saw (...)
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  9. Evolutionary morphology, innovation, and the synthesis of evolutionary and developmental biology.Alan C. Love - 2003 - Biology and Philosophy 18 (2):309-345.
    One foundational question in contemporarybiology is how to `rejoin evolution anddevelopment. The emerging research program(evolutionary developmental biology or`evo-devo) requires a meshing of disciplines,concepts, and explanations that have beendeveloped largely in independence over the pastcentury. In the attempt to comprehend thepresent separation between evolution anddevelopment much attention has been paid to thesplit between genetics and embryology in theearly part of the 20th century with itscodification in the exclusion of embryologyfrom the Modern Synthesis. This encourages acharacterization of evolutionary (...)
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  10.  28
    Interpreting the History of Evolutionary Biology through a Kuhnian Prism: Sense or Nonsense?Koen Tanghe, Lieven Pauwels, Alexis De Tiège & Braeckman J. - 2021 - Perspectives on Science 29 (1):1-35.
    Traditionally, Thomas S. Kuhn’s The Structure of Scientific Revolutions (1962) is largely identified with his analysis of the structure of scientific revolutions. Here, we contribute to a minority tradition in the Kuhn literature by interpreting the history of evolutionary biology through the prism of the entire historical developmental model of sciences that he elaborates in The Structure. This research not only reveals a certain match between this model and the history of evolutionary biology but, more (...)
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  11.  25
    Interpreting the History of Evolutionary Biology through a Kuhnian Prism: Sense or Nonsense?Koen B. Tanghe, Lieven Pauwels, Alexis De Tiège & Johan Braeckman - 2021 - Perspectives on Science 29 (1):1-35.
    Traditionally, Thomas S. Kuhn’s The Structure of Scientific Revolutions (1962) is largely identified with his analysis of the structure of scientific revolutions. Here, we contribute to a minority tradition in the Kuhn literature by interpreting the history of evolutionary biology through the prism of the entire historical developmental model of sciences that he elaborates in The Structure. This research not only reveals a certain match between this model and the history of evolutionary biology but, more (...)
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  12. Evolutionary Developmental Biology and the Limits of Philosophical Accounts of Mechanistic Explanation.Ingo Brigandt - 2015 - In P.-A. Braillard & C. Malaterre (eds.), Explanation in Biology: An Enquiry into the Diversity of Explanatory Patterns in the Life Sciences. Springer. pp. 135-173.
    Evolutionary developmental biology (evo-devo) is considered a ‘mechanistic science,’ in that it causally explains morphological evolution in terms of changes in developmental mechanisms. Evo-devo is also an interdisciplinary and integrative approach, as its explanations use contributions from many fields and pertain to different levels of organismal organization. Philosophical accounts of mechanistic explanation are currently highly prominent, and have been particularly able to capture the integrative nature of multifield and multilevel explanations. However, I argue that evo-devo demonstrates (...)
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  13. How developmental is evolutionary developmental biology?Jason Scott Robert - 2002 - Biology and Philosophy 17 (5):591-611.
    Evolutionary developmental biology (evo-devo) offers both an account of developmental processes and also new integrative frameworks for analyzing interactions between development and evolution. Biologists and philosophers are keen on evo-devo in part because it appears to offer a comfort zone between, on the one hand, what some take to be the relative inability of mainstream evolutionary biology to integrate a developmental perspective; and, on the other hand, what some take to be more intractable (...)
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  14.  6
    Theism and Evolutionary Biology.William Hasker - 2010 - In Charles Taliaferro, Paul Draper & Philip L. Quinn (eds.), A Companion to Philosophy of Religion. Oxford, UK: Wiley‐Blackwell. pp. 548–556.
    This chapter contains sections titled: Theism and Evolutionary Theory Evolution and Divine Purpose Evolution and the “Objectivity of Nature” Evolution as Cruel and Wasteful Evolution as Random and Contingent Evolution and Human Nature Evolution, Physicalism, and Purpose Works cited.
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  15.  20
    Gerd B. müller and Stuart A. Newman (eds) (2003). Origination of organismal form. Beyond the Gene in developmental and evolutionary biology[REVIEW]Frietson Galis - 2003 - Acta Biotheoretica 51 (3):237-238.
  16.  5
    Gerd B. Müller and Stuart A. Newman (Eds) (2003). Origination of Organismal Form. Beyond the Gene in Developmental and Evolutionary Biology[REVIEW]Frietson Galis - 2003 - Acta Biotheoretica 51 (3):237-238.
  17.  23
    Scaffolds and scaffolding: an explanatory strategy in evolutionary biology.Celso Neto, Letitia Meynell & Christopher T. Jones - 2023 - Biology and Philosophy 38 (2):1-22.
    In recent years, the explanatory term “scaffold” has been gaining prominence in evolutionary biology. This notion has a long history in other areas, in particular, developmental psychology. In this paper, we connect these two traditions and identify a specific type of explanatory strategy shared between them, namely scaffolding explanations. We offer a new definition of “scaffold” anchored in the explanatory practices of evolutionary biologists and developmental psychologists that has yet to be clearly articulated. We conclude (...)
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  18.  15
    Evolutionary developmental biology: philosophical issues.Alan Love - 2015 - In Thomas Heams, Philippe Huneman, Guillaume Lecointre & Marc Silberstein (eds.), Handbook of Evolutionary Thinking in the Sciences. Springer. pp. 265-283.
    Evolutionary developmental biology (Evo-devo) is a loose conglomeration of research programs in the life sciences with two main axes: (a) the evolution of development, or inquiry into the pattern and processes of how ontogeny varies and changes over time; and, (b) the developmental basis of evolution, or inquiry into the causal impact of ontogenetic processes on evolutionary trajectories—both in terms of constraint and facilitation. Philosophical issues are found along both axes surrounding concepts such as evolvability, (...)
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  19.  2
    Contrastive explanations in evolutionary biology.Stephen Boulter - 2013 - In David S. Oderberg (ed.), Classifying Reality. Chichester, UK: Wiley-Blackwell. pp. 61–77.
    Taxonomists in biology have traditionally been concerned to delimit and classify actual (or previously actual) biological forms orkinds. But not all useful classification schemes are of actualisedforms. This paper focuses on the need to delimit and classifynon‐actual forms when offering contrastive explanations in evolutionary biology. Such a classification scheme sorts actual and nonfactual forms according to their modal status. Such a sorting has been offered by theoretical morphologists, but these efforts havepaid insufficient attention to the metaphysics of (...)
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  20.  49
    Bridging the gap between developmental systems theory and evolutionary developmental biology†.Jason Scott Robert, Brian K. Hall & Wendy M. Olson - 2001 - Bioessays 23 (10):954-962.
    Many scientists and philosophers of science are troubled by the relative isolation of developmental from evolutionary biology. Reconciling the science of development with the science of heredity preoccupied a minority of biologists for much of the twentieth century, but these efforts were not corporately successful. Mainly in the past fifteen years, however, these previously dispersed integrating programmes have been themselves synthesized and so reinvigorated. Two of these more recent synthesizing endeavours are evolutionary developmental biology (...)
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  21.  30
    Developmental biology, natural selection, and the conceptual boundaries of the modern evolutionary synthesis.David J. Depew & Bruce H. Weber - 2017 - Zygon 52 (2):468-490.
    Using the evolution of the stickleback family of subarctic fish as a touchstone, we explore the effect of new discoveries about regulatory genetics, developmental plasticity, and epigenetic inheritance on the conceptual foundations of the Modern Evolutionary Synthesis. Identifying the creativity of natural selection as the hallmark of the Modern Synthesis, we show that since its inception its adherents have pursued a variety of research projects that at first seemed to conflict with its principles, but were accommodated. We situate (...)
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  22.  51
    Niche Construction and Conceptual Change in Evolutionary Biology.Tobias Uller & Heikki Helanterä - 2019 - British Journal for the Philosophy of Science 70 (2):351-375.
    The theoretical status of ‘niche construction’ in evolution is intensely debated. Here we substantiate the reasons for different interpretations. We consider two concepts of niche construction brought to bear on evolutionary theory; one that emphasizes how niche construction contributes to selection and another that emphasizes how it contributes to development and inheritance. We explain the rationale for claims that selective and developmental niche construction motivate conceptual change in evolutionary biology and the logic of those who reject (...)
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  23. Evolutionary Developmental Biology, the Human Life Course, and Transpersonal Experience.Edward Dale - 2011 - Journal of Mind and Behavior 32 (4):277.
    This paper explicates secular psychodynamic growth through the life time and meditation as routes to the transpersonal from the perspective of evolutionary developmental biology, based around a multi-line model of growth. A multi-line model raises many significant points for a transpersonal audience. Such models have been pioneered by Hunt. When set on the footing of evolutionary developmental biology and nonlinear dynamics these kind of models become all the more cogent, penetrating and far reaching, validating (...)
     
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  24. Evo-devo meets the mind: Toward a developmental evolutionary psychology.Paul E. Griffiths - 2007 - In Roger Sansom & Robert N. Brandon (eds.), Integrating Evolution and Development: From Theory to Practice. MIT Press. pp. 195-225.
    The emerging discipline of evolutionary developmental biology has opened up many new lines of investigation into morphological evolution. Here I explore how two of the core theoretical concepts in ‘evo-devo’ – modularity and homology – apply to evolutionary psychology. I distinguish three sorts of module – developmental, functional and mental modules and argue that mental modules need only be ‘virtual’ functional modules. Evolutionary psychologists have argued that separate mental modules are solutions to separate (...) problems. I argue that the structure of developmental modules in an organism helps determine what counts as a separate evolutionary problem for that organism. I suggest that homology as an organizing principle for research in evolutionary psychology, has been severely neglected in favor of analogy (adaptive function). I consider some arguments suggesting that determining homology is less epistemically demanding than determining adaptive function and argue that psychological categories defined by homology are, in fact, more suitable objects of psychological – and particularly neuropsychological – investigation than categories defined by analogy. (shrink)
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  25.  14
    Teaching evolutionary developmental biology: concepts, problems, and controversy.A. C. Love - 2013 - In K. Kampourakis (ed.), Philosophy of Biology: A Companion for Educators. Springer. pp. 323-341.
    Although sciences are often conceptualized in terms of theory confirmation and hypothesis testing, an equally important dimension of scientific reasoning is the structure of problems that guide inquiry. This problem structure is evident in several concepts central to evolutionary developmental biology (Evo-devo)—constraints, modularity, evolvability, and novelty. Because problems play an important role in biological practice, they should be included in biological pedagogy, especially when treating the issue of scientific controversy. A key feature of resolving controversy is synthesizing (...)
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  26. Evolutionary developmental biology.Manfred D. Laubichler - 2007 - In David L. Hull & Michael Ruse (eds.), The Cambridge Companion to the Philosophy of Biology. Cambridge University Press.
  27. Evolutionary Developmental Biology.Laura Nuño de la Rosa & G. Müller (eds.) - 2018 - Springer.
  28. Evolutionary Developmental Biology Meets Levels of Selection: Modular Integration or Competition, or Both?Rasmus Grønfeldt Winther - 2005 - In Werner Callebaut & Diego Rasskin-Gutman (eds.), Modularity. Understanding the Development and Evolution of Natural Complex Systems. MIT Press.
  29. Conceptual Barriers to Progress Within Evolutionary Biology.Kevin N. Laland, John Odling-Smee, Marcus W. Feldman & Jeremy Kendal - 2009 - Foundations of Science 14 (3):195-216.
    In spite of its success, Neo-Darwinism is faced with major conceptual barriers to further progress, deriving directly from its metaphysical foundations. Most importantly, neo-Darwinism fails to recognize a fundamental cause of evolutionary change, “niche construction”. This failure restricts the generality of evolutionary theory, and introduces inaccuracies. It also hinders the integration of evolutionary biology with neighbouring disciplines, including ecosystem ecology, developmental biology, and the human sciences. Ecology is forced to become a divided discipline, (...) biology is stubbornly difficult to reconcile with evolutionary theory, and the majority of biologists and social scientists are still unhappy with evolutionary accounts of human behaviour. The incorporation of niche construction as both a cause and a product of evolution removes these disciplinary boundaries while greatly generalizing the explanatory power of evolutionary theory. (shrink)
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  30. Typology reconsidered: Two doctrines on the history of evolutionary biology.Ron Amundson - 1998 - Biology and Philosophy 13 (2):153-177.
    Recent historiography of 19th century biology supports the revision of two traditional doctrines about the history of biology. First, the most important and widespread biological debate around the time of Darwin was not evolution versus creation, but biological functionalism versus structuralism. Second, the idealist and typological structuralist theories of the time were not particularly anti-evolutionary. Typological theories provided argumentation and evidence that was crucial to the refutation of Natural Theological creationism. The contrast between functionalist and structuralist approaches (...)
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  31. 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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  32.  15
    Beyond Haeckel’s Law: Walter Garstang and the Evolutionary Biology that Might Have Been.Maurizio Esposito - 2020 - Journal of the History of Biology 53 (2):249-268.
    At the beginning of the twentieth century Haeckel’s biogenetic law was widely questioned. On the one hand, there were those who wanted to dismiss it altogether: ontogeny and phylogeny did not have any systematic or interesting relation. On the other hand, there were those who sought to revise it. They argued that while Haeckel’s recapitulationism might have been erroneous, this should not deter the research over the relation between evolution and development. The British embryologist Walter Garstang was one of the (...)
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  33. Evolutionary Developmental Biology.Laura Nuño De La Nuño De La Rosa & G. Müller (eds.) - forthcoming - Springer.
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  34. The proximate–ultimate distinction and evolutionary developmental biology: causal irrelevance versus explanatory abstraction.Massimo Pigliucci & Raphael Scholl - 2015 - Biology and Philosophy 30 (5):653-670.
    Mayr’s proximate–ultimate distinction has received renewed interest in recent years. Here we discuss its role in arguments about the relevance of developmental to evolutionary biology. We show that two recent critiques of the proximate–ultimate distinction fail to explain why developmental processes in particular should be of interest to evolutionary biologists. We trace these failures to a common problem: both critiques take the proximate–ultimate distinction to neglect specific causal interactions in nature. We argue that this is (...)
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  35.  42
    Neo-Darwinism and Evo-Devo: An Argument for Theoretical Pluralism in Evolutionary Biology.Lindsay R. Craig - 2015 - Perspectives on Science 23 (3):243-279.
    The relatively new field of evolutionary developmental biology continues to attract considerable attention from biologists, philosophers, and historians, in part, because work in this field demonstrates that important changes are underway within biology. Though studies of development and evolution were closely connected during the 19th century, continued work in genetics fostered a general split between the two during the first decades of the twentieth century (e.g., Allen 1978; Gilbert 1978; Mayr and Provine 1980; Gilbert, Opitz and..
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  36. Situating evolutionary developmental biology in evolutionary theory.Alan Love - 2020 - In S. M. Scheiner and D. P. Mindell (ed.), The Theory of Evolution: Principles, Concepts, and Assumptions. Chicago, IL, USA: pp. 144-169.
  37. Evolutionary developmental biology: where is it going?Adam S. Wilkins - 1998 - Bioessays 20 (10):783-784.
  38.  22
    Evolutionary developmental biology of the cerebral cortex.Vania Broccoli - 1999 - Bioessays 21 (11):974-977.
  39.  18
    Conceptual change and evolutionary developmental biology.A. C. Love - 2015 - In Conceptual Change in Biology: Scientific and Philosophical Perspectives on Evolution and Development. Springer. pp. 1-54.
    The 1981 Dahlem conference was a catalyst for contemporary evolutionary developmental biology (Evo-devo). This introductory chapter rehearses some of the details of the history surrounding the original conference and its associated edited volume, explicates the philosophical problem of conceptual change that provided the rationale for a workshop devoted to evaluating the epistemic revisions and transformations that occurred in the interim, explores conceptual change with respect to the concept of evolutionary novelty, and highlights some of the themes (...)
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  40.  49
    Scale‐Free Biology: Integrating Evolutionary and Developmental Thinking.Chris Fields & Michael Levin - 2020 - Bioessays 42 (8):1900228.
    When the history of life on earth is viewed as a history of cell division, all of life becomes a single cell lineage. The growth and differentiation of this lineage in reciprocal interaction with its environment can be viewed as a developmental process; hence the evolution of life on earth can also be seen as the development of life on earth. Here, in reviewing this field, some potentially fruitful research directions suggested by this change in perspective are highlighted. Variation (...)
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  41. Exporting causal knowledge in evolutionary and developmental biology.Sandra D. Mitchell - 2008 - Philosophy of Science 75 (5):697-706.
    In this article I consider the challenges for exporting causal knowledge raised by complex biological systems. In particular, James Woodward’s interventionist approach to causality identified three types of stability in causal explanation: invariance, modularity, and insensitivity. I consider an example of robust degeneracy in genetic regulatory networks and knockout experimental practice to pose methodological and conceptual questions for our understanding of causal explanation in biology. †To contact the author, please write to: Department of History and Philosophy of Science, University (...)
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  42.  6
    Navigating the Evolvability Landscape — Essay Review of Hansen T.F., Houle, D., Pavlicev, M., & Pelabon, C. (Eds.). (2023). Evolvability: A Unifying Concept in Evolutionary Biology? MIT Press. [REVIEW]David Chun Yin Li - forthcoming - Biosemiotics:1-7.
    This article reviews the edited volume “Evolvability: A Unifying Concept in Evolutionary Biology?” through biological and philosophical lenses. The book provides diverse angles on evolvability, which is affected by various hierarchical levels, timescales, and types of variation, thus moving beyond a purely genomics perspective. Evolvability is important to biosemiotics because understanding the dynamics of topological genotype spaces could help one better comprehend the phenotypic spaces of meaning, as developmental codes and interrelations can influence the emergence of biological (...)
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  43. Keywords and Concepts in Evolutionary Developmental Biology.Brian Hall & Wendy Olson - 2007 - Journal of the History of Biology 40 (4):776-777.
     
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  44. Generative entrenchment and an evolutionary developmental biology for culture.William C. Wimsatt - 2006 - Behavioral and Brain Sciences 29 (4):364-366.
    Mesoudi et al.'s new synthesis for cultural evolution closely parallels the evolutionary synthesis of Neo-Darwinism. It too draws inspiration from population genetics, recruits other fields, and, unfortunately, also ignores development. Enculturation involves many serially acquired skills and dependencies that allow us to build a rich cumulative culture. The newer synthesis, evolutionary developmental biology, provides a key tool, generative entrenchment, to analyze them. (Published Online November 9 2006).
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  45. Overextension: the extended mind and arguments from evolutionary biology[REVIEW]Armin W. Schulz - 2013 - European Journal for Philosophy of Science 3 (2):241-255.
    I critically assess two widely cited evolutionary biological arguments for two versions of the ‘Extended Mind Thesis’ (EMT): namely, an argument appealing to Dawkins’s ‘Extended Phenotype Thesis’ (EPT) and an argument appealing to ‘Developmental Systems Theory’ (DST). Specifically, I argue that, firstly, appealing to the EPT is not useful for supporting the EMT (in either version), as it is structured and motivated too differently from the latter to be able to corroborate or elucidate it. Secondly, I extend and (...)
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  46. Keywords and Concepts in Evolutionary Developmental Biology.Brian K. Hall & Wendy M. Olson - 2004 - Journal of the History of Biology 37 (2):406-408.
  47.  77
    Developmental objections to evolutionary modularity.John Sarnecki - 2007 - Biology and Philosophy 22 (4):529-546.
    Evolutionary psychologists argue that selective pressures in our ancestral environment yield a highly specialized set of modular cognitive capacities. However, recent papers in developmental psychology and neuroscience claim that evolutionary accounts of modularity are incompatible with the flexibility and plasticity of the developing brain. Instead, they propose cortical and neuronal brain structures are fixed through interactions with our developmental environment. Buller and Gray Hardcastle contend that evolutionary accounts of cognitive development are unacceptably rigid in light (...)
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  48.  62
    The Concept of Morphospaces in Evolutionary and Developmental Biology: Mathematics and Metaphors.Philipp Mitteroecker & Simon M. Huttegger - 2009 - Biological Theory 4 (1):54-67.
    Formal spaces have become commonplace conceptual and computational tools in a large array of scientific disciplines, including both the natural and the social sciences. Morphological spaces are spaces describing and relating organismal phenotypes. They play a central role in morphometrics, the statistical description of biological forms, but also underlie the notion of adaptive landscapes that drives many theoretical considerations in evolutionary biology. We briefly review the topological and geometrical properties of the most common morphospaces in the biological literature. (...)
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  49.  10
    The Role of Information in Evolutionary Biology.Thomas E. Dickins - 2023 - Acta Biotheoretica 71 (3).
    The Modern Synthesis has received criticism for its purported gene-centrism. That criticism relies on a concept of the gene as a unit of instructional information. In this paper I discuss information concepts and endorse one, developed from Floridi, that sees information as a functional relationship between data and context. I use this concept to inspect developmental criticisms of the Modern Synthesis and argue that the instructional gene arose as an idealization practice when evolutionary biologists made comment on development. (...)
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  50. Homology in comparative, molecular, and evolutionary developmental biology: The radiation of a concept.Ingo Brigandt - 2003 - Journal of Experimental Zoology (Molecular and Developmental Evolution) 299:9-17.
    The present paper analyzes the use and understanding of the homology concept across different biological disciplines. It is argued that in its history, the homology concept underwent a sort of adaptive radiation. Once it migrated from comparative anatomy into new biological fields, the homology concept changed in accordance with the theoretical aims and interests of these disciplines. The paper gives a case study of the theoretical role that homology plays in comparative and evolutionary biology, in molecular biology, (...)
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