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How objective are biological functions?

Synthese 194 (12):4741-4755 (2017)

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  1. Teleological functional explanations: a new naturalist synthesis.Mihnea Capraru - forthcoming - Acta Biotheoretica.
    The etiological account of teleological function is beset by several difficulties, which I propose to solve by grafting onto the etiological theory a subordinated goal-contribution clause. This approach enables us to ascribe neither too many teleofunctions nor too few; to give a unitary, one-clause analysis that works just as well for teleological functions derived from Darwinian evolution, as for those derived from human intention; and finally, to save the etiological theory from falsification, by explaining how, in spite of appearances, the (...)
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  • Minimal logical teleology in artifacts and biology connects the two domains and frames mechanisms via epistemic circularity.José Antonio Pérez-Escobar - 2024 - Studies in History and Philosophy of Science Part A 104 (C):23-37.
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  • Coherent Causal Control: A New Distinction within Causation.Marcel Weber - 2022 - European Journal for Philosophy of Science 12 (4):69.
    The recent literature on causality has seen the introduction of several distinctions within causality, which are thought to be important for understanding the widespread scientific practice of focusing causal explanations on a subset of the factors that are causally relevant for a phenomenon. Concepts used to draw such distinctions include, among others, stability, specificity, proportionality, or actual-difference making. In this contribution, I propose a new distinction that picks out an explanatorily salient class of causes in biological systems. Some select causes (...)
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  • Mechanistic Explanations and Teleological Functions.Andrew Rubner - forthcoming - British Journal for the Philosophy of Science.
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  • A relic of design: against proper functions in biology.Emanuele Ratti & Pierre-Luc Germain - 2022 - Biology and Philosophy 37 (4):1-28.
    The notion of biological function is fraught with difficulties—intrinsically and irremediably so, we argue. The physiological practice of functional ascription originates from a time when organisms were thought to be designed and remained largely unchanged since. In a secularized worldview, this creates a paradox which accounts of functions as selected effect attempt to resolve. This attempt, we argue, misses its target in physiology and it brings problems of its own. Instead, we propose that a better solution to the conundrum of (...)
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  • Towards the Phenomenology of Hybrids as Regenerative Design and Use -A Post-Heideggerian Account.Magdalena Hoły-Łuczaj & Vincent Blok - 2022 - Environmental Values 1 (4):469-491.
    Grasping the identity of hybrids, that is beings which cross the binarism of nature and technology (e.g. genetically-modified organisms (GMOs), syn-bio inventions, biomimetic projects), is problematic since it is still guided by self-evident dualistic categories, either as artefacts or as natural entities. To move beyond the limitations of such a one-sided understanding of hybrids, we suggest turning towards the categories of affordances and the juxtaposition of needs and patterns of proper use, as inspired by the Heideggerian version of phenomenology. Drawing (...)
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  • Standard Aberration: Cancer Biology and the Modeling Account of Normal Function.Seth Goldwasser - 2023 - Biology and Philosophy 38 (1):(4) 1-33.
    Cancer biology features the ascription of normal functions to parts of cancers. At least some ascriptions of function in cancer biology track local normality of parts within the global abnormality of the aberration to which those parts belong. That is, cancer biologists identify as functions activities that, in some sense, parts of cancers are supposed to perform, despite cancers themselves having no purpose. The present paper provides a theory to accommodate these normal function ascriptions—I call it the Modeling Account of (...)
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  • Finding Normality in Abnormality: On the Ascription of Normal Functions to Cancer.Seth Goldwasser - 2023 - Philosophy of Science:1-14.
    Cancer biologists ascribe normal functions to parts of cancer. Normal functions are activities that parts of systems are in some minimal sense supposed to perform. Cancer biologists’ finding normality within the abnormality of cancer pose difficulties for two main approaches to normal function. One approach claims that normal functions are activities that parts are selected for. However, some parts of cancers that have normal functions aren’t selected to perform them. The other approach claims that normal functions are part-activities typical for (...)
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  • Causal Selection versus Causal Parity in Biology: Relevant Counterfactuals and Biologically Normal Interventions.Marcel Weber - forthcoming - In Brian J. Hanley & C. Kenneth Waters (eds.), Philosophical Perspectives on Causal Reasoning in Biology. Minnesota Studies in Philosophy of Science. Vol. XXI. Minneapolis: University of Minnesota Press.
    Causal selection is the task of picking out, from a field of known causally relevant factors, some factors as elements of an explanation. The Causal Parity Thesis in the philosophy of biology challenges the usual ways of making such selections among different causes operating in a developing organism. The main target of this thesis is usually gene centrism, the doctrine that genes play some special role in ontogeny, which is often described in terms of information-bearing or programming. This paper is (...)
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  • The challenges of purely mechanistic models in biology and the minimum need for a 'mechanism-plus-X' framework.Sepehr Ehsani - 2018 - Dissertation, University College London
    Ever since the advent of molecular biology in the 1970s, mechanical models have become the dogma in the field, where a "true" understanding of any subject is equated to a mechanistic description. This has been to the detriment of the biomedical sciences, where, barring some exceptions, notable new feats of understanding have arguably not been achieved in normal and disease biology, including neurodegenerative disease and cancer pathobiology. I argue for a "mechanism-plus-X" paradigm, where mainstay elements of mechanistic models such as (...)
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