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  1. Between biology and chemistry in the Enlightenment: how nutrition shapes vital organization. Buffon, Bonnet, C.F. Wolff.Cécilia Bognon-Küss - 2019 - History and Philosophy of the Life Sciences 41 (1):11.
    This paper seeks to characterize how the study of nutrition processes contributed to revisit the problem of vital organization in the late eighteenth century. It argues that focusing on nutrition leads to reformulate the problem of the relation between life and organization in terms of processes, rather than static or given structures. This nutrition-centered approach to life amounts to acknowledge the specific strategic role nutrition played in the development of a materialist approach to the generation of vital organization. The paper (...)
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  • Why was there no controversy over Life in the Scientific Revolution?Charles T. Wolfe - 2011 - In Victor Boantza Marcelo Dascal (ed.), Controversies in the Scientific Revolution. John Benjamins.
    Well prior to the invention of the term ‘biology’ in the early 1800s by Lamarck and Treviranus, and also prior to the appearance of terms such as ‘organism’ under the pen of Leibniz in the early 1700s, the question of ‘Life’, that is, the status of living organisms within the broader physico-mechanical universe, agitated different corners of the European intellectual scene. From modern Epicureanism to medical Newtonianism, from Stahlian animism to the discourse on the ‘animal economy’ in vitalist medicine, models (...)
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  • Environmental Ethics.Roberta L. Millstein - 2013 - In Kostas Kampourakis (ed.), The Philosophy of Biology: a Companion for Educators. Dordrecht: Springer.
    A number of areas of biology raise questions about what is of value in the natural environment and how we ought to behave towards it: conservation biology, environmental science, and ecology, to name a few. Based on my experience teaching students from these and similar majors, I argue that the field of environmental ethics has much to teach these students. They come to me with pent-up questions and a feeling that more is needed to fully engage in their subjects, and (...)
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  • Cogito, Ergo Sumus? The Pregnancy Problem in Descartes's Philosophy.Maja Sidzińska - 2023 - Hopos: The Journal of the International Society for the History of Philosophy of Science 13 (2).
    Given Descartes’ metaphysical and natural-philosophic commitments, it is very difficult to theorize the pregnant human being as a human being under his system. Specifically, given (1) Descartes’ account of generation, (2) his commitment to mechanistic explanations where bodies are concerned, (3) his reliance on a subtle individuating principle for human (and animal) bodies, and (4) his metaphysics of human beings, which include minds, bodies, and mind-body unions, there is no available human substance or entity which may clearly be the subject (...)
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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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  • The invention of artificial fertilization in the eighteenth and nineteenth century.Barbara Orland - 2017 - History and Philosophy of the Life Sciences 39 (2):11.
    Artificial insemination and other fertilization techniques are today considered central to the history of reproductive medicine. The medical treatment of infertile couples, however, constitutes just a small part of the whole story of artificial fertilization. Lazzaro Spallanzani in particular, said to have been the inventor of artificial insemination, did not develop this method for medical purposes. He belonged to a generation of naturalists to whom artificial insemination was part of a heterogeneous series of investigations that were undertaken to explore the (...)
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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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  • 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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  • Leibniz, the microscope and the concept of preformation.Alessandro Becchi - 2017 - History and Philosophy of the Life Sciences 39 (1):4.
    In recent years a certain emphasis has been put by some scholars on Leibniz’s concern about empirical sciences and the relations between such concern and the development of his mature metaphysical system. In this paper I focus on Leibniz’s interest for the microscope and the astonishing discoveries that such instrument made possible in the field of the life sciences during the last part of the Seventeenth century. The observation of physical bodies carried out by the “magnifying glasses” revealed a matter (...)
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