Results for 'Living organism'

969 found
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  1. The wholeness of the living organism.W. E. Agar - 1948 - Philosophy of Science 15 (3):179-191.
    The idea of organism, which of recent years has bulked so largely in scientific, and especially in biological, theory has been developed mainly in reference to living organisms, and has been extended to cover such systems as human societies, crystals, molecules and atoms—and indeed the whole universe has been interpreted as an organism. This use of the term, however, includes different ways in which parts may be together in a system. The belief that the principle of (...) has been wrongly extended to explain certain co-ordinations of vital processes which require a different type of explanation is the reason for this addition to the immense literature on the subject of organism. (shrink)
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  2.  33
    Rediscovering the “Living Organism” in Order to Conceive of an “Informed Universe”.Fabio Burigana - 2016 - World Futures 72 (1-2):69-75.
    This article examines the comparison between a reductionist mechanistic paradigm and the Goethean paradigm, that provides a vision of an informed universe.
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  3.  27
    Schrödinger’s microbe: implications of coercing a living organism into a coherent quantum mechanical state.J. W. Bull & A. Gordon - 2015 - Biology and Philosophy 30 (6):845-856.
    Consideration of the experimental activities carried out in one discipline, through the lens of another, can lead to novel insights. Here, we comment from a biological perspective upon experiments in quantum mechanics proposed by physicists that are likely to feasible in the near future. In these experiments, an entire living organism would be knowingly placed into a coherent quantum state for the first time, i.e. would be coerced into demonstrating quantum phenomena. The implications of the proposed experiment for (...)
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  4.  16
    Finding or Creating a Living Organism? Past and Future Thought Experiments in Astrobiology Applied to Artificial Intelligence.Daniel S. Helman - 2022 - Acta Biotheoretica 70 (2):1-24.
    This is a digest of how various researchers in biology and astrobiology have explored questions of what defines living organisms—definitions based on functions or structures observed in organisms, or on systems terms, or on mathematical conceptions like closure, chirality, quantum mechanics and thermodynamics, or on biosemiotics, or on Darwinian evolution—to clarify the field and make it easier for endeavors in artificial intelligence to make progress. Current ideas are described to promote work between astrobiologists and computer scientists, each concerned with (...)
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  5.  54
    The indigenous community as “living organism”: José Carlos Mariátegui, Romantic Marxism, and extractive capitalism in the Andes.Jeffery R. Webber - 2015 - Theory and Society 44 (6):575-598.
  6.  47
    A contribution to the theory of the living organism.Wilfred Eade Agar - 1943 - Melbourne,: Melbourne University Press in association with Oxford University Press.
    Originally published in 1913. Author: Henri Lichtenberger Language: English Keywords: History Many of the earliest books, particularly those dating back to the 1900s and before, are now extremely scarce and increasingly expensive. Obscure Press are republishing these classic works in affordable, high quality, modern editions, using the original text and artwork.Keywords: English Keywords 1900s Language English Artwork.
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  7. The City as a Living Organism: Aristotle’s Naturalness Thesis Reconsidered.Xinkai Hu - 2020 - History of Political Thought 41 (4):517-537.
    In this paper, I wish to defend Aristotle’s naturalness thesis. First, I argue against the claim that the city fails to meet the criteria (e.g. separability, continuity, etc.) Aristotle sets for substantiality in the Metaphysics. Second, I examine the problem of the Principle of Transitivity of End in Aristotle’s telic argument for the naturalness of the city. I argue that the city exists for its own end. Finally, I discuss the problem of the legislator in the genesis of the city. (...)
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  8. A Contribution to the Theory of the Living Organism.W. E. Agar - 1945 - Philosophy 20 (77):265-267.
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  9.  42
    A Contribution to the Theory of the Living Organism.James W. Papez & W. E. Agar - 1945 - Philosophical Review 54 (3):274.
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  10.  40
    Between 'Biosphere' and 'Gaia'. Earth as a Living Organism in Soviet Geo-Ecology.Giulia Rispoli - 2014 - Cosmos and History 10 (2):78-91.
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  11.  37
    Perceive, Co-opt, Modify, and Live! Organism as a Centre of Experience.Karel Kleisner - 2011 - Biosemiotics 4 (2):223-241.
    Organic appearances are largely neglected by contemporary biology; partly because they are regarded as superficial effects of causes concealed beneath the surface. The persuasion that everything what does exist is existent for some immediately non-apparent reasons belongs to a general belief of modern science. All organisms are of the same evolutionary origin and of the same world wherein appearance coincides with existence. In this study, living beings are approached as appearing centers of experience that reflects their evolutionary history. From (...)
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  12.  64
    Representation of Reality: Humans, Other Living Organism and Intelligent Machines.Gordana Dodig-Crnkovic & Raffaela Giovagnoli (eds.) - 2017 - Heidelberg: Springer.
    In this book the editors invited prominent researchers with different perspectives and deep insights into the various facets of the relationship between reality and representation in the following three classes of agent: in humans, in other living beings, and in machines. -/- The book enriches our views on representation and deepens our understanding of its different aspects, a question that connects philosophy, computer science, logic, anthropology, psychology, sociology, neuroscience, linguistics, information and communication science, systems theory and engineering, computability, cybernetics, (...)
  13.  45
    A Contribution to the Theory of the Living Organism[REVIEW]E. N. - 1945 - Journal of Philosophy 42 (4):110.
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  14.  24
    A Contribution to the Theory of the Living Organism. By W. E. Agar, F.R.S. (Melbourne University Press in association with Oxford University Press. 1943. Pp. 207. Price 12s. 6d.). [REVIEW]J. H. Woodger - 1945 - Philosophy 20 (77):265-.
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  15. The Self-Construction of a Living Organism.María Cerezo & Natalia López Moratalla - 2011 - In George Terzis & Robert Arp (eds.), Information and Living Systems: Philosophical and Scientific Perspectives. Bradford. pp. 177-204.
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  16.  33
    The Paradox of the Living: Jonas and Schelling on the Organism’s Autonomy.Francesca Michelini - 2020 - Rivista di Estetica 74:139-157.
    After preliminarily pointing to the undeniable differences between Jonas’ philosophical biology and Schelling’s philosophy of nature, I contend that, besides their divergencies, the two philosophers agree on several important points. I then show to what extent, based on these elements of convergence, their two approaches could even be taken as complementary. In the core of my paper I lay emphasis on what I believe to be the main ground for the complementarity of the two philosophical inquiries, that is to say, (...)
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  17.  13
    A Contribution to the Theory of the Living Organism[REVIEW]Alice R. Walker - 1943 - Australasian Journal of Philosophy 21 (2-3):152.
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  18. "The Living Body: Organism and Value." Whitehead and the Interpretation of Value Experience.Strachan Donnelley - 1977 - Dissertation, New School for Social Research
     
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  19.  71
    The Organism is dead. Long live the organism!Manfred D. Laubichler - 2000 - Perspectives on Science 8 (3):286-315.
  20.  51
    Philosophy of nature and organism’s autonomy: on Hegel, Plessner and Jonas’ theories of living beings.Francesca Michelini, Matthias Wunsch & Dirk Stederoth - 2018 - History and Philosophy of the Life Sciences 40 (3):56.
    Following the revival in the last decades of the concept of “organism”, scholarly literature in philosophy of science has shown growing historical interest in the theory of Immanuel Kant, one of the “fathers” of the concept of self-organisation. Yet some recent theoretical developments suggest that self-organisation alone cannot fully account for the all-important dimension of autonomy of the living. Autonomy appears to also have a genuine “interactive” dimension, which concerns the organism’s functional interactions with the environment and (...)
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  21. We are live creatures: embodiment, American pragmatism, and the cognitive organism.Mark Johnson & Tim Rohrer - 2017 - In Embodied Mind, Meaning, and Reason: How Our Bodies Give Rise to Understanding. Chicago: University of Chicago Press.
     
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  22.  48
    Organism, machine, artifact: The conceptual and normative challenges of synthetic biology.Sune Holm & Russell Powell - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4):627-631.
    Synthetic biology is an emerging discipline that aims to apply rational engineering principles in the design and creation of organisms that are exquisitely tailored to human ends. The creation of artificial life raises conceptual, methodological and normative challenges that are ripe for philosophical investigation. This special issue examines the defining concepts and methods of synthetic biology, details the contours of the organism–artifact distinction, situates the products of synthetic biology vis-à-vis this conceptual typology and against historical human manipulation of the (...)
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  23. The World of the Living Present and the Constitution of the Surrounding World External to the Organism.Edmund Husserl - 1981 - In Peter McCormick & Frederick A. Elliston (eds.), Husserl, Shorter Works. University of Notre Dame Press. pp. 238-250.
  24. Perceive, co-opt, modify, and live! Towards an understanding of organism as a centre of experience.Karel Kleisner - forthcoming - Biosemiotics. Dordrecht: Springer. Forthcoming.
     
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  25.  18
    The Organism.Kurt Goldstein - 1995 - Princeton University Press.
    Foreword by Oliver Sacks Kurt Goldstein (1878-1965) was already an established neuropsychologist when he emigrated from Germany to the United States in the 1930s. This book, his magnum opus and widely regarded as a modern classic in psychology and biology, grew out of his dissatisfaction with traditional natural science techniques for analyzing living beings. It offers a broad introduction to the sources and ranges of application of the "holistic" or "organismic" research program that has since become a standard part (...)
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  26. The Self as an Evolved Organism that Lives in a Pragmatically Defined World / David L. Thompson - 11. Is Experience Subjective or Objective, or Both, or Neither?John Shook - 2014 - In John R. Shook & Tibor Solymosi (eds.), Pragmatist Neurophilosophy: American Philosophy and the Brain. New York: Bloomsbury Academic.
  27.  47
    Organism and artifact: Proper functions in Paley organisms.Sune Holm - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4b):706-713.
    In this paper I assess the explanatory powers of theories of function in the context of products that may result from synthetic biology. The aim is not to develop a new theory of functions, but to assess existing theories of function in relation to a new kind of biological and artifactual entity that might be produced in the not-too-distant future by means of synthetic biology. The paper thus investigates how to conceive of the functional nature of living systems that (...)
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  28.  3
    Living control systems.Warren Mansell (ed.) - 2020 - San Diego, CA: Academic Press.
    The Interdisciplinary Handbook of Perceptual Control Theory brings together the latest research, theory, and applications from W. T. Powers' Perceptual Control Theory (PCT) that proposes that the behavior of a living organism lies in the control of perceived aspects of both itself and its environment. Sections cover theory, the application of PCT to a broad range of disciplines, why perceptual control is fundamental to understanding human nature, a new way to do research on brain processes and behavior, how (...)
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  29. Empirical Vitalism – Observing an Organism’s Formative Power within an Active and Co-Constitutive Relation between Subject and Object.Christoph J. Hueck - 2025 - History and Philosophy of the Life Sciences 47 (9):1-19.
    This article proposes an empirical approach to understanding the life of an organism that overcomes reductionist and dualist approaches. The approach is based on Immanuel Kant’s analysis of the cognitive conditions required for the recognition of an organism: the concept of teleology and the assumption of a formative power of self-generation. It is analyzed how these two criteria are applied in the cognition of a developing organism. Using the example of a developmental series of a plant leaf, (...)
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  30. The Self as an Evolved Organism that Lives in a Pragmatically Defined World.David L. Thompson - 2014 - In John R. Shook & Tibor Solymosi (eds.), Pragmatist Neurophilosophy: American Philosophy and the Brain. New York: Bloomsbury Academic. pp. 164–189.
     
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  31.  85
    Living systems and non-living systems.Ralph S. Lillie - 1942 - Philosophy of Science 9 (4):307-322.
    Biology is in a unique position among the natural sciences. It is not simply complex physics and chemistry, for living organisms have a psychological as well as a physical side. Even as physical systems their character is highly special, largely because their material substance is continually changing; perhaps it was from them that Heraclitus derived his idea that all is flow. The comparison with vortexes and candle flames is an old one. Wilhelm Ostwald included living organisms in his (...)
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  32.  38
    Reconstructing an incomparable organism: the Chalicothere in nineteenth and early-twentieth century palaeontology.Chris Manias - 2018 - History and Philosophy of the Life Sciences 40 (1):22.
    Palaeontology developed as a field dependent upon comparison. Not only did reconstructing the fragmentary records of fossil organisms and placing them within taxonomic systems and evolutionary lineages require detailed anatomical comparisons with living and fossil animals, but the field also required thinking in terms of behavioural, biological and ecological analogies with modern organisms to understand how prehistoric animals lived and behaved. Yet palaeontological material often worked against making easy linkages, bringing a sense of mystery and doubt. This paper will (...)
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  33.  26
    Life, Time, and the Organism: Temporal Registers in the Construction of Life Forms.Dominic J. Berry & Paolo Palladino - 2019 - Journal of the History of Biology 52 (2):223-243.
    In this paper we articulate how time and temporalities are involved in the making of living things. For these purposes, we draw on an instructive episode concerning Norfolk Horn sheep. We attend to historical debates over the nature of the breed, whether it is extinct or not, and whether presently living exemplars are faithful copies of those that came before. We argue that there are features to these debates that are important to understanding contemporary configurations of life, time, (...)
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  34.  14
    I Act Therefore I Live? Autopoiesis, Sensorimotor Autonomy, and Extended Agency.Barbara Tomczyk - forthcoming - Diametros:1-22.
    This paper aims to determine whether extended human-machine cognitive systems and group systems can be regarded as autonomous agents. For this purpose, I compare two notions of agency: one developed within analytical philosophy of action and based on the concept of intention, and the other introduced by enactivists via the concepts of autopoiesis and sensorimotor autonomy. I argue that only the latter approach can be used to demonstrate autonomous agency in respect of systems that are not humans as such, though (...)
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  35. Stem Cell Lineages: Between Cell and Organism.Melinda Bonnie Fagan - 2017 - Philosophy, Theory, and Practice in Biology 9 (6).
    Ontologies of living things are increasingly grounded on the concepts and practices of current life science. Biological development is a process, undergone by living things, which begins with a single cell and (in an important class of cases) ends with formation of a multicellular organism. The process of development is thus prima facie central for ideas about biological individuality and organismality. However, recent accounts of these concepts do not engage developmental biology. This paper aims to fill the (...)
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  36.  37
    The triple helix: gene, organism, and environment.Richard C. Lewontin - 2000 - Cambridge: Harvard University Press. Edited by Richard C. Lewontin.
    One of our most brilliant evolutionary biologists, Richard Lewontin has also been a leading critic of those--scientists and non-scientists alike--who would misuse the science to which he has contributed so much. In The Triple Helix, Lewontin the scientist and Lewontin the critic come together to provide a concise, accessible account of what his work has taught him about biology and about its relevance to human affairs. In the process, he exposes some of the common and troubling misconceptions that misdirect and (...)
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  37.  58
    Information in the Universe and in the Organism.Ervin Laszlo - 2016 - World Futures 72 (3-4):101-106.
    There is a branch of modern medicine that relies on information rather than on biochemical substances to maintain health and cure disease. Known as information medicine, it offers an important complement to the dominant biochemical approach of mainstream medicine. This note offers a few reflections on the potentials of information medicine in reference to what is currently known regarding the role of information in the universe, and in the living organism.
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  38. The psychic factor in living organisms.Ralph S. Lillie - 1943 - Philosophy of Science 10 (4):262-270.
    In my recent paper on Living Systems and Non-living Systems I considered briefly the question of the special rôle assignable to the psychic, as natural factor associated with yet different from the physical, in the activities of living organisms. The general conclusion was reached that this rôle is primarily integrative, in correspondence with the integrative character which is the essential distinguishing feature of the psychic in our experience. As integrative, the psychic factor has a special relation to (...)
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  39. 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 (...)
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  40.  45
    Human Distributed Cognition from an Organism-in-Its-Environment Perspective.Jaime F. Cárdenas-García & Tim Ireland - 2017 - Biosemiotics 10 (2):265-278.
    The organism-in-its-environment is recognized as the basic unit of analysis when dealing with living beings. This paper seeks to define the fundamental implications of the concept of the organism-in-its-environment in terms of the biosemiotic concept of human distributed cognition. Human distributed cognition in a biosemiotic context is defined as the ability of a self-referencing organism-in-its-environment to interact with its environment to satisfy its physiological and social needs to survive and sustain itself. The ontogenetic development of the (...)
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  41. Towards a Hierarchical Definition of Life, the Organism, and Death.Gerard A. J. M. Jagers op Akkerhuis - 2010 - Foundations of Science 15 (3):245-262.
    Despite hundreds of definitions, no consensus exists on a definition of life or on the closely related and problematic definitions of the organism and death. These problems retard practical and theoretical development in, for example, exobiology, artificial life, biology and evolution. This paper suggests improving this situation by basing definitions on a theory of a generalized particle hierarchy. This theory uses the common denominator of the “operator” for a unified ranking of both particles and organisms, from elementary particles to (...)
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  42.  40
    The Diffuse Organism as the First Biological System.Nikolay P. Kolomiytsev & Nadezhda Ya Poddubnaya - 2010 - Biological Theory 5 (1):67-78.
    This article presents a new hypothesis on the origin of life on Earth. According to this hypothesis, life arose within the limits of a particular material system representing a set of specific local environments integrated by a common circulating liquid medium where relatively short RNA molecules, viroid-like particles, are replicated with great accuracy. In each of the local environments, the synthesis of certain substances that are required for accurate replication and survival of the RNAs is carried out. The system, which (...)
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  43. The Machine Conception of the Organism in Development and Evolution: A Critical Analysis.Daniel J. Nicholson - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 48:162-174.
    This article critically examines one of the most prevalent metaphors in modern biology, namely the machine conception of the organism (MCO). Although the fundamental differences between organisms and machines make the MCO an inadequate metaphor for conceptualizing living systems, many biologists and philosophers continue to draw upon the MCO or tacitly accept it as the standard model of the organism. This paper analyses the specific difficulties that arise when the MCO is invoked in the study of development (...)
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  44. The theory of the organism-environment system: III. Role of efferent influences on receptors in the formation of knowledge.Timo Jarvilehto - 1999 - Integrative Physiological and Behavioral Science 34 (2):90-100.
    The present article is an attempt to give - in the frame of the theory of the organism - environment system - a new interpretation to the role of efferent influences on receptor activity and to the functions of senses in the formation of knowledge. It is argued, on the basis of experimental evidence and theoretical considerations, that the senses are not transmitters of environmental information, but they create a direct connection between the organism and the environment, which (...)
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  45. Is the Neo-Aristotelian Concept of Organism Presupposed in Biology?Parisa Moosavi - 2020 - In Hähnel Martin (ed.), Aristotelian Naturalism: A Research Companion. Springer.
    According to neo-Aristotelian ethical naturalism, moral goodness is an instance of natural goodness, a kind of normativity supposedly already present in nature in the biological realm of non-human living things. Proponents of this view appeal to Michael Thompson’s conception of a life-form--the form of a living organism--to give an account of natural goodness. However, although neo-Aristotelians call themselves naturalists, they hardly ever consult the science of biology to defend their commitments regarding biological organisms. This has led many (...)
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  46. No organism is an island: the philosophical context regarding life and environment.Louis Caruana - 2022 - In Jacquineau Azetsop & Paolo Conversi (eds.), Foundations of Integral Ecology. G&B Press. pp. 197-220.
    Many commentators have analyzed the Papal Encyclical on the care of the environment entitled “Laudato Si’” from various angles but relatively few have written on the philosophical presuppositions that inform the overall stance of the encyclical. It is becoming increasingly evident that, to appreciate the full impact of this work, we need to uncover its ontological and epistemological commitments. This paper makes a contribution in this neglected area by focusing on the nature of life. Two main points are explored: the (...)
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  47.  55
    Towards a definition of living systems: A theory of ecological support for behavior.Edward S. Reed & Rebecca K. Jones - 1977 - Acta Biotheoretica 26 (3):153-163.
    It is proposed that the Darwinian theoretical approach and account of living systems has not yet been clearly given. A first approximation to this is attempted, focussing on behavior in evolving environments. A theoretical terminology is defined emphasizing the mutuality of organism and environment and the existence of biologically theoretical entities.
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  48. Organism in Kant.Jennifer Mensch - 2021 - In Julian Wuerth (ed.), The Cambridge Kant Lexicon. New York, NY, USA: Cambridge University Press. pp. 320-322.
    Kant was well versed in many of the debates taking place in the life sciences during his day. One of the more central areas of contention concerned the proper means for discriminating between material bodies composed of organised parts (like clocks or automatons) and living material bodies composed of organised parts (like plants and animals). For many theorists, it seemed clear that the physically organised structure of a body was distinct from any vital forces responsible for the life processes (...)
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  49.  70
    Living Versus Inanimate: The Information Border. [REVIEW]Gérard Battail - 2009 - Biosemiotics 2 (3):321-341.
    The traditional divide between nature and culture restricts to the latter the use of information. Biosemiotics claims instead that the divide between nature and culture is a mere subdivision within the living world but that semiosis is the specific feature which distinguishes the living from the inanimate. The present paper is intended to reformulate this basic tenet in information-theoretic terms, to support it using information-theoretic arguments, and to show that its consequences match reality. It first proposes a ‘receiver-oriented’ (...)
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  50.  22
    Some aspects of element turnover in living organisms.D. H. Spaargaren - 1983 - Acta Biotheoretica 32 (1):13-28.
    The net uptake and loss of any element by a living organism can be described as the quotient of the total amount of the element, present in the organism, and its residence time in the organism. Theoretically it can be derived that the residence time i , equals V i 1–b /k, in which b, the morphometric coefficient, is related to size and shape of the organism (volume V i ); k, the turnover coefficient, is (...)
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