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  1. Haeckel and du Bois-Reymond: Rival German Darwinists.Gabriel Finkelstein - 2019 - Theory in Biosciences:1-8.
    Ernst Haeckel and Emil du Bois-Reymond were the most prominent champions of Darwin in Germany. This essay compares their contributions to popularizing the theory of evolution, drawing special attention to the neglected figure of du Bois-Reymond as a spokesman for a world devoid of natural purpose. It suggests that the historiography of the German reception of Darwin’s theory needs to be reassessed in the light of du Bois-Reymond’s Lucretian outlook.
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  • From Cells to Structures to Evolutionary Novelties: Creating a Continuum.Catherine Anne Boisvert - 2013 - Biological Theory 8 (3):211-220.
    This thematic issue addresses questions of constraints on the evolution of form—physical, biological, and technical. Here, form is defined as an embodiment of a specific structure, which can be hierarchically different yet emerge from the same processes. The focus of this contribution is about how developmental biology and paleontology can be better integrated and compared in order to produce hypotheses about the evolution of form. The constraints on current EvoDevo research stem from the disconnect in the focus of study for (...)
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  • (1 other version)The return of ontogeny: conflicting ideals of natural order in recent evolutionary biology.Gustavo Caponi - 2007 - Scientiae Studia 5 (1):9-34.
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  • Evolution Born of Moisture: Analogies and Parallels Between Anaximander’s Ideas on Origin of Life and Man and Later Pre-Darwinian and Darwinian Evolutionary Concepts.Radim Kočandrle & Karel Kleisner - 2013 - Journal of the History of Biology 46 (1):103-124.
    This study focuses on the origin of life as presented in the thought of Anaximander of Miletus but also points to some parallel motifs found in much later conceptions of both the pre-Darwinian German romantic science and post-Darwinian biology. According to Anaximander, life originated in the moisture associated with earth (mud). This moist environment hosted the first living creatures that later populated the dry land. In these descriptions, one can trace the earliest hints of the notion of environmental adaptation. The (...)
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  • The return of the embryo.Alan C. Love - 2005 - Biology and Philosophy 20 (2-3):567-584.
    Review by Alan Love of "Keywords & Concepts in Evolutionary Developmental Biology." Hall, Brian K. and Wendy M. Olson (Eds), Cambridge, Harvard University Press. Hb. 476+xvi pp.
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  • Alexei Sewertzoff and Adolf Naef: revising Haeckel’s biogenetic law.Georgy S. Levit, Uwe Hossfeld & Lennart Olsson - 2015 - History and Philosophy of the Life Sciences 36 (3):357-370.
    Ernst Haeckel formulated his biogenetic law, famously stating that ontogeny recapitulates phylogeny, in 1872. The Russian evolutionist Alexei Sewertzoff, and the Swiss-born zoologist Adolf Naef were among those who revised Haeckel’s law, thus changing the course of evolutionary theory and of developmental biology. Although Sewertzoff and Naef approached the problem in a similar way and formulated similar hypotheses at a purely descriptive level, their theoretical viewpoints were crucially different. While Sewertzoff laid the foundations for a Darwinian evolutionary morphology and is (...)
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  • The First Brazilian Thesis of Evolution: Haeckel's Recapitulation Theory and Its Relations with the Idea of Progress.Ricardo Francisco Waizbort, Maurício Roberto Motta Pinto da Luz, Flavio Coelho Edler & Helio Ricardo da Silva - 2021 - Journal of the History of Biology 54 (3):447-481.
    The aim of this work is to present the thesis “On the Ontogenetic Evolution of the Human Embryo in its Relations with Phylogenesis,” by Affonso Regulo de Oliveira Fausto, published in Brazil in 1890. To our knowledge, it was one of the first Brazilian academic works focused specifically on evolution. It was also the first doctoral thesis that addressed the topic of recapitulation in order to analyze what was then called the progressive evolution of the human species in tandem with (...)
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  • The formation of the theory of homology in biological sciences.Karel Kleisner - 2007 - Acta Biotheoretica 55 (4):317-340.
    Homology is among the most important comparative concepts in biology. Today, the evolutionary reinterpretation of homology is usually conceived of as the most important event in the development of the concept. This paradigmatic turning point, however important for the historical explanation of life, is not of crucial importance for the development of the concept of homology itself. In the broadest sense, homology can be understood as sameness in reference to the universal guarantor so that in this sense the different concepts (...)
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