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Problems of Life

Science and Society 18 (3):269-270 (1952)

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  1. The Ethics and Ontology of Synthetic Biology: a Neo-Aristotelian Perspective.Lewis Coyne - 2020 - NanoEthics 14 (1):43-55.
    This article is concerned with two interrelated questions: what, if anything, distinguishes synthetic from natural organisms, and to what extent, if any, creating the former is of moral significance. These are ontological and ethical questions, respectively. As the title indicates, I address both from a broadly neo-Aristotelian perspective, i.e. a teleological philosophy of life and virtue ethics. For brevity’s sake, I shall not argue for either philosophical position at length, but instead hope to demonstrate their legitimacy through their explanatory power. (...)
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  • Realization in biology?Sergio Balari & Guillermo Lorenzo - 2019 - History and Philosophy of the Life Sciences 41 (1):5.
    It is widely assumed that functional and dispositional properties are not identical to their physical base, but that there is some kind of asymmetrical ontological dependence between them. In this regard, a popular idea is that the former are realized by the latter, which, under the non-identity assumption, is generally understood to be a non-causal, constitutive relation. In this paper we examine two of the most widely accepted approaches to realization, the so-called ‘flat view’ and the ‘dimensioned view’, and we (...)
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  • The Principle of Dynamic Holism: Guiding Methodology for Investigating Cognition in Nonneuronal Organisms.Matthew Sims - 2023 - Philosophy of Science 91 (2):430 - 448.
    Basal cognition investigates cognition working upward from nonneuronal organisms. Because basal cognition is committed to empirically testable hypotheses, a methodological challenge arises: how can experiments avoid using zoocentric assumptions that ignore the ecological contexts that might elicit cognitively driven behavior in nonneuronal organisms? To meet this challenge, I articulate the principle of dynamic holism (PDH), a methodological principle for guiding research on nonneuronal cognition. I describe PDH’s relation to holistic research programs in human-focused cognitive science and psychology then present an (...)
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  • Genidentity and Biological Processes.Thomas Pradeu - 2018 - In Daniel J. Nicholson & John Dupré (eds.), Everything Flows: Towards a Processual Philosophy of Biology. Oxford, United Kingdom: Oxford University Press.
    A crucial question for a process view of life is how to identify a process and how to follow it through time. The genidentity view can contribute decisively to this project. It says that the identity through time of an entity X is given by a well-identified series of continuous states of affairs. Genidentity helps address the problem of diachronic identity in the living world. This chapter describes the centrality of the concept of genidentity for David Hull and proposes an (...)
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  • Reconceptualizing the Organism: From Complex Machine to Flowing Stream.Daniel J. Nicholson - 2018 - In Daniel J. Nicholson & John Dupré (eds.), Everything Flows: Towards a Processual Philosophy of Biology. Oxford, United Kingdom: Oxford University Press.
    This chapter draws on insights from non-equilibrium thermodynamics to demonstrate the ontological inadequacy of the machine conception of the organism. The thermodynamic character of living systems underlies the importance of metabolism and calls for the adoption of a processual view, exemplified by the Heraclitean metaphor of the stream of life. This alternative conception is explored in its various historical formulations and the extent to which it captures the nature of living systems is examined. Following this, the chapter considers the metaphysical (...)
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  • A Manifesto for a Processual Philosophy of Biology.John A. Dupre & Daniel J. Nicholson - 2018 - In Daniel J. Nicholson & John Dupré (eds.), Everything Flows: Towards a Processual Philosophy of Biology. Oxford, United Kingdom: Oxford University Press.
    This chapter argues that scientific and philosophical progress in our understanding of the living world requires that we abandon a metaphysics of things in favour of one centred on processes. We identify three main empirical motivations for adopting a process ontology in biology: metabolic turnover, life cycles, and ecological interdependence. We show how taking a processual stance in the philosophy of biology enables us to ground existing critiques of essentialism, reductionism, and mechanicism, all of which have traditionally been associated with (...)
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  • Reciprocal Linkage between Self-organizing Processes is Sufficient for Self-reproduction and Evolvability.Terrence W. Deacon - 2006 - Biological Theory 1 (2):136-149.
    A simple molecular system is described consisting of the reciprocal linkage between an autocatalytic cycle and a self-assembling encapsulation process where the molecular constituents for the capsule are products of the autocatalysis. In a molecular environment sufficiently rich in the substrates, capsule growth will also occur with high predictability. Growth to closure will be most probable in the vicinity of the most prolific autocatalysis and will thus tend to spontaneously enclose supportive catalysts within the capsule interior. If subsequently disrupted in (...)
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  • Elementary biological functions and the concept of living matter.Eduardo H. Rapoport & Osvaldo Rapoport - 1958 - Acta Biotheoretica 13 (1):1-28.
  • Stem cells as probabilistic self‐producing entities.Miguel Ramalho-Santos - 2004 - Bioessays 26 (9):1013-1016.
    Stem cells have the capacity both to self‐renew and to give rise to differentiated progeny, and are vital to the organization of multicellular organisms. Stem cells raise a number of fundamental questions regarding lineage restriction and cellular differentiation, and they hold enormous promise for cell‐based therapies. Here I propose a theoretical framework for stem cell biology based on the concepts of autopoiesis (self‐production) and complementarity. I argue that stem cells are pivotal in the self‐production of the organism and that we (...)
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  • Societal evolution: A process without random variation.Nicholas Paritsis - 1993 - World Futures 37 (4):173-178.
  • Neither Logical Empiricism nor Vitalism, but Organicism: What the Philosophy of Biology Was.Daniel J. Nicholson & Richard Gawne - 2015 - History and Philosophy of the Life Sciences 37 (4):345-381.
    Philosophy of biology is often said to have emerged in the last third of the twentieth century. Prior to this time, it has been alleged that the only authors who engaged philosophically with the life sciences were either logical empiricists who sought to impose the explanatory ideals of the physical sciences onto biology, or vitalists who invoked mystical agencies in an attempt to ward off the threat of physicochemical reduction. These schools paid little attention to actual biological science, and as (...)
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  • Conserving Functions across Generations: Heredity in Light of Biological Organization.Matteo Mossio & Gaëlle Pontarotti - 2022 - British Journal for the Philosophy of Science 73 (1):249-278.
    We develop a conceptual framework that connects biological heredity and organization. We refer to heredity as the cross-generation conservation of functional elements, defined as constraints subject to organizational closure. While hereditary objects are functional constituents of biological systems, any other entity that is stable across generations—and possibly involved in the recurrence of phenotypes—belongs to their environment. The central outcome of the organizational perspective consists in extending the scope of heredity beyond the genetic domain without merging it with the broad category (...)
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  • Darwin and Darwin Studies, 1959–63.Bert James Loewenberg - 1965 - History of Science 4 (1):15.
  • Some methodology problems in a holistic approach to functional morphology.P. Dullemeijer - 1968 - Acta Biotheoretica 18 (1-4):203-214.
    An initial investigation of controversies and differences in opinion in the various schools of functional anatomy is presented by listing the methodology problems.The possibilities and limitations of functional anatomy are derived from the successive steps in the procedure in a functional anatomical investigation.Starting from the holistic approach as introduced byVan der Klaauw, the main problems of defining the term functional component and the applied methods are discussed.Two principal methods are presented, of which the limitations are considered. The various aspects where (...)
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  • Functional morphology and evolutionary biology.P. Dullemeijer - 1980 - Acta Biotheoretica 29 (3-4):151-250.
    In this study the relationship between functional morpholoy and evolutionary biology is analysed by confronting the main concepts in both disciplines.Rather than only discussing this connection theoretically, the analysis is carried out by introducing important practical and experimental studies, which use aspects from both disciplines. The mentioned investigations are methodologically analysed and the consequences for extensions of the relationship are worked out. It can be shown that both disciplines have a large domain of their own and also share a large (...)
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  • Re-forming Morphology: Two Attempts to Rehabilitate the Problem of Form in the First Half of the Twentieth Century.Max Dresow - 2020 - Journal of the History of Biology 53 (2):231-248.
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  • Organismo y organización en la biología teórica¿ Vuelta al organicismo.Arantza Etxeberria & Jon Umerez - 2006 - Ludus Vitalis 14 (26):3-38.
    ABSTRACT. This paper contemplates Organicism and its relation with molecular and evolutionary biology. We explore whether twentieth-first century biology is returning to positions held at the beginning of the twentieth century and then abandoned. The guiding line is a history of theoretical biology in which we distinguish three periods: 1. The 20s-30s, and the Theoretical Biology Club (Needham, Woodger, and Waddington, among others); 2. An intermediate period in the 60s-70s, in which, in spite of the eclosion of the molecular and (...)
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  • A hierarchical architecture for nano-scale science and technology: taking stock of the claims about science made by advocates of NBIC convergence.George Khushf - 2004 - In Baird D. (ed.), Discovering the Nanoscale. Ios. pp. 21--33.
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