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  1. Life: The Communicative Structure.Günther Witzany - 2000 - Norderstedt: Libri Books on Demand.
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  • Friedrich Miescher’s Discovery in the Historiography of Genetics: From Contamination to Confusion, from Nuclein to DNA.Sophie Juliane Veigl, Oren Harman & Ehud Lamm - 2020 - Journal of the History of Biology 53 (3):451-484.
    In 1869, Johann Friedrich Miescher discovered a new substance in the nucleus of living cells. The substance, which he called nuclein, is now known as DNA, yet both Miescher’s name and his theoretical ideas about nuclein are all but forgotten. This paper traces the trajectory of Miescher’s reception in the historiography of genetics. To his critics, Miescher was a “contaminator,” whose preparations were impure. Modern historians portrayed him as a “confuser,” whose misunderstandings delayed the development of molecular biology. Each of (...)
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  • Germs of death: the problem of Genesis in Jacques Derrida.Mauro Senatore - 2018 - [Albany, NY]: SUNY Press.
    An analysis of Derrida’s early work engaging Plato, Hegel, and the life sciences. Germs of Death explores the idea of genesis, or dissemination, in the early work of Jacques Derrida. Looking at Derrida’s published and unpublished work from “Force and Signification” in 1963 to Glas in 1974, Mauro Senatore traces the development of Derrida’s understanding of genesis both linguistically and biologically, and argues that this topic is an overlooked thread that draws together Derrida’s readings of Plato and Hegel. Demonstrating how (...)
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  • Ateleological propagation in Goethe’s Metamorphosis of Plants.Gregory Rupik - 2021 - History and Philosophy of the Life Sciences 43 (1):1-28.
    It was commonly accepted in Goethe’s time that plants were equipped both to propagate themselves and to play a certain role in the natural economy as a result of God’s beneficent and providential design. Goethe’s identification of sexual propagation as the “summit of nature” in The Metamorphosis of Plants (1790) might suggest that he, too, drew strongly from this theological-metaphysical tradition that had given rise to Christian Wolff’s science of teleology. Goethe, however, portrayed nature as inherently active and propagative, itself (...)
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  • Agential Teleosemantics.Tiago Rama - 2022 - Dissertation, Autonomous University of Barcelona
    The field of the philosophy of biology is flourishing in its aim to evaluate and rethink the view inherited from the previous century ---the Modern Synthesis. Different research areas and theories have come to the fore in the last decades in order to account for different biological phenomena that, in the first instance, fall beyond the explanatory scope of the Modern Synthesis. This thesis is anchored and motivated by this revolt in the philosophy of biology. -/- The central target in (...)
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  • Portfolios of Worth: Capitalizing on Basic and Clinical Problems in Biomedical Research Groups.Sarah de Rijcke, Thomas Franssen & Alexander Rushforth - 2019 - Science, Technology, and Human Values 44 (2):209-236.
    How are “interesting” research problems identified and made durable by academic researchers, particularly in situations defined by multiple evaluation principles? Building on two case studies of research groups working on rare diseases in academic biomedicine, we explore how group leaders arrange their groups to encompass research problems that latch onto distinct evaluation principles by dividing and combining work into “basic-oriented” and “clinical-oriented” spheres of inquiry. Following recent developments in the sociology of valuation comparing academics to capitalist entrepreneurs in pursuit of (...)
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  • Le realisme contextuel en physique.Francois-Igor Pris - 2019 - Al Mukhatabat 30:177-201.
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  • Is the Cell Really a Machine?Daniel J. Nicholson - 2019 - Journal of Theoretical Biology 477:108–126.
    It has become customary to conceptualize the living cell as an intricate piece of machinery, different to a man-made machine only in terms of its superior complexity. This familiar understanding grounds the conviction that a cell's organization can be explained reductionistically, as well as the idea that its molecular pathways can be construed as deterministic circuits. The machine conception of the cell owes a great deal of its success to the methods traditionally used in molecular biology. However, the recent introduction (...)
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  • Multistability and Derrida’s Différance: Investigating the Relations Between Postphenomenology and Stiegler’s General Organology.Marco Pavanini - 2022 - Philosophy and Technology 35 (1):1-22.
    In this paper, in the first place, I aim to enquire into Bernard Stiegler’s critical appropriation of his mentor Jacques Derrida’s notion of différance, emphasizing how Stiegler’s philosophy of technology stems from an original interpretation of the main tenets of deconstruction. From this perspective, I will investigate Stiegler’s definition of technology as tertiary retention, i.e., exosomatized, artificial memory interrelating with biological memory, testing its hermeneutic strengths as well as possible weaknesses. In the second place, I aim to contrast Stiegler’s understanding (...)
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  • The Problem of the Body in Deleuze and Guattari, Or, What Can a Body Do?Ian Buchanan - 1997 - Body and Society 3 (3):73-91.
    You never reach the Body without Organs, you can't reach it, you are forever attaining it, it is a limit. People ask, So what is this BwO? - But you're already on it, scurrying like vermin, grouping like a blind person, or running like a lunatic: desert traveller and nomad of the steppes. On it we sleep, live our waking lives, fight - fight and are fought - seek our place, experience untold happiness and fabulous defeats; on it we penetrate (...)
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  • Proteins, the chaperone function and heredity.Valeria Mosini - 2013 - Biology and Philosophy 28 (1):53-74.
    In this paper I use a case study—the discovery of the chaperon function exerted by proteins in the various steps of the hereditary process—to re-discuss the question whether the nucleic acids are the sole repositories of relevant information as assumed in the information theory of heredity. The evidence I here present of a crucial role for molecular chaperones in the folding of nascent proteins, as well as in DNA duplication, RNA folding and gene control, suggests that the family of proteins (...)
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  • New perspectives in the history of twentieth-century life sciences: historical, historiographical and epistemological themes.Robert Meunier & Kärin Nickelsen - 2018 - History and Philosophy of the Life Sciences 40 (1):19.
    The history of twentieth-century life sciences is not exactly a new topic. However, in view of the increasingly rapid development of the life sciences themselves over the past decades, some of the well-established narratives are worth revisiting. Taking stock of where we stand on these issues was the aim of a conference in 2015, entitled “Perspectives for the History of Life Sciences”. The papers in this topical collection are based on work presented and discussed at and around this meeting. Just (...)
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