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  1. Food and Medicine: A biosemiotic perspective.Yogi Hale Hendlin & Jonathan Hope (eds.) - 2021 - Berlin: Springer Nature.
    This edited volume provides a biosemiotic analysis of the ecological relationship between food and medicine. Drawing on the origins of semiotics in medicine, this collection proposes innovative ways of considering aliments and treatments. Considering the ever-evolving character of our understanding of meaning-making in biology, and considering the keen popular interest in issues relating to food and medicines - fueled by an increasing body of interdisciplinary knowledge - the contributions here provide diverse insights and arguments into the larger ecology of organisms’ (...)
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  • The Biosemiotic Approach in Biology : Theoretical Bases and Applied Models.Joao Queiroz, Claus Emmeche, Kalevi Kull & Charbel El-Hani - 2011 - In George Terzis & Robert Arp (eds.), Information and Living Systems: Philosophical and Scientific Perspectives. Bradford. pp. 91-130.
    Biosemiotics is a growing fi eld that investigates semiotic processes in the living realm in an attempt to combine the fi ndings of the biological sciences and semiotics. Semiotic processes are more or less what biologists have typically referred to as “ signals, ” “ codes, ”and “ information processing ”in biosystems, but these processes are here understood under the more general notion of semiosis, that is, the production, action, and interpretation of signs. Thus, biosemiotics can be seen as biology (...)
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  • The Grand Narrative of the Age of Re-Embodiments: Beyond Modernism and Postmodernism.Arran Gare - 2013 - Cosmos and History : The Journal of Natural and Social Philosophy 9 (1):327-357.
    The delusory quest for disembodiment, against which the quest for re-embodiment is reacting, is characteristic of macroparasites who live off the work, products and lives of others. The quest for disembodiment that characterizes modernism and postmodernism, it is argued, echoes in a more extreme form the delusions on which medieval civilization was based where the military aristocracy and the clergy, defining themselves through the ideal forms of Neo-Platonic Christianity, despised nature, the peasantry and in the case of the clergy, women. (...)
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  • The Semiotics of Global Warming: Combating Semiotic Corrruption.Arran Gare - 2007 - Theory and Science 9 (2):1-36.
    The central focus of this paper is the disjunction between the findings of climate science in revealing the threat of global warming and the failure to act appropriately to these warnings. The development of climate science can be illuminated through the perspective provided by Peircian semiotics, but efforts to account for its success as a science and its failure to convince people to act accordingly indicate the need to supplement Peirce’s ideas. The more significant gaps, it is argued, call for (...)
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  • Process Philosophy and the Emergent Theory of Mind: Whitehead, Lloyd Morgan and Schelling.Arran Gare - 2002 - Concrescence 3:1-12.
    While some process philosophers have denigrated the emergent theory of mind, what they have denigrated has been ‘materialist’ theories of emergence. My contention is that one of the most important reasons for embracing process philosophy is that it is required to make intelligible the emergence of consciousness. There is evidence that this was a central concern of Whitehead. However, Whitehead acknowledged that his metaphysics was deficient in this regard. In this paper I will argue that to fully understand the emergent (...)
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  • Overcoming the Newtonian Paradigm: The Unfinished Project of Theoretical Biology from a Schellingian Perspective.Arran Gare - 2013 - Progress in Biophysics and Molecular Biology 113:5-24.
    Defending Robert Rosen’s claim that in every confrontation between physics and biology it is physics that has always had to give ground, it is shown that many of the most important advances in mathematics and physics over the last two centuries have followed from Schelling’s demand for a new physics that could make the emergence of life intelligible. Consequently, while reductionism prevails in biology, many biophysicists are resolutely anti-reductionist. This history is used to identify and defend a fragmented but progressive (...)
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  • Toward an Ecological Civilization.Arran Gare - 2010 - Process Studies 39 (1):5-38.
    Chinese environmentalists have called for an ecological civilization. To promote this, ecology is defended as the core science embodying process metaphysics, and it is argued that as such ecology can serve as the foundation of such a civilization. Integrating hierarchy theory and Peircian semiotics into this science, it is shown how “community” and “communities of communities,” in which communities are defined by their organization to promote the common good of their components, have to be recognized as central concepts not only (...)
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  • What you should know to survive in knowledge societies: On a semiotic understanding of ‘knowledge’.Michael H. G. Hoffmann & Wolff-Michael Roth - 2005 - Semiotica 2005 (157):105-142.
    Different situations — like school and workplace — demand different forms of knowledge. Even more important, in particular for lifelong learning, are forms of knowledge we need for managing movements between those situations. To develop a better understanding of how to ‘navigate’ knowledge boundaries, this paper analyzes, firstly, interviews with scientists interpreting familiar and unfamiliar graphs. Our goal is to identify those forms of knowledge that should receive special attention in education. Secondly, the article elaborates — based on Peirce’s semiotics (...)
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  • Natural Signs and the Origin of Language.Anton Sukhoverkhov - 2012 - Biosemiotics 5 (2):153-159.
    This article considers natural signs and their role in the origin of language. Natural signs, sometimes called primary signs, are connected with their signified by causal relationships, concomitance, or likeliness. And their acquisition is directed by both objective reality and past experience (memory). The discovery and use of natural signs is a required prerequisite of existence for any living systems because they are indispensable to movement, the search for food, regulation, communication, and many other information-related activities. It is argued that (...)
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  • Generativity in biology.Ramsey Affifi - 2015 - Phenomenology and the Cognitive Sciences 14 (1):149-162.
    The behavior of an organism, according to Merleau-Ponty, lays out a milieu through which significant phenomena of varying degrees of optimality elicit adjustment. This leads to the dialectical co-emergence of milieu and aptitude that is both the product and the condition of life. What is present as a norm soliciting optimization is species-specific, but it also depends on the needs of the organism and its prior experience. Although a rich entry point into biological phenomenology, Merleau-Ponty’s work does not adequately describe (...)
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  • Mental Structures as Biosemiotic Constraints on the Functions of Non-human (Neuro)Cognitive Systems.Prakash Mondal - 2020 - Biosemiotics 13 (3):385-410.
    This paper approaches the question of how to describe the higher-level internal structures and representations of cognitive systems across various kinds of nonhuman (neuro)cognitive systems. While much research in cognitive (neuro)science and comparative cognition is dedicated to the exploration of the (neuro)cognitive mechanisms and processes with a focus on brain-behavior relations across different non-human species, not much has been done to connect (neuro)cognitive mechanisms and processes and the associated behaviors to plausible higher-level structures and representations of distinct kinds of cognitive (...)
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  • Biosemiotic Questions.Kalevi Kull, Claus Emmeche & Donald Favareau - 2008 - Biosemiotics 1 (1):41-55.
    This paper examines the biosemiotic approach to the study of life processes by fashioning a series of questions that any worthwhile semiotic study of life should ask. These questions can be understood simultaneously as: (1) questions that distinguish a semiotic biology from a non-semiotic (i.e., reductionist–physicalist) one; (2) questions that any student in biosemiotics should ask when doing a case study; and (3) still currently unanswered questions of biosemiotics. In addition, some examples of previously undertaken biosemiotic case studies are examined (...)
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  • In the Case of Protosemiosis: Indexicality vs. Iconicity of Proteins.Dan Faltýnek & Ľudmila Lacková - 2021 - Biosemiotics 14 (1):209-226.
    The concept of protosemiosis or semiosis at the lower levels of the living goes back to Giorgio Prodi, Thomas A. Sebeok and others. More recently, a typology of proto-signs was introduced by Sharov and Vehkavaara. Kull uses the term of vegetative semiosis, defined by iconicity, when referring to plants and lower organism semiosis. The criteria for the typology of proto-signs by Sharov and Vehkavaara are mostly based on two important presuppositions: agency and a lack of representation in low-level semiosis. We (...)
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  • Learning Plants: Semiosis Between the Parts and the Whole. [REVIEW]Ramsey Affifi - 2013 - Biosemiotics 6 (3):547-559.
    In this article, I explore plant semiosis with a focus on plant learning. I distinguish between the scales and levels of learning conceivable in phytosemiosis, and identify organism-scale learning as the distinguishing question for plant semiosis. Since organism-scale learning depends on organism-scale semiosis, I critically review the arguments regarding whole-plant functional cycles. I conclude that they have largely relied on Uexküllian biases that have prevented an adequate interpretation of modern plant neurobiology. Through an examination of trophic growth in plant roots, (...)
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  • A-life, organism and body: The semiotics of emergent levels.Claus Emmeche - manuscript
    1Center for the Philosophy of Nature and Science Studies, Blegdamsvej 17, DK-2100 Copenhagen, Denmark. Published pp. 117-124 in: Mark Bedeau, Phil Husbands, Tim Hutton, Sanjev Kumar and Hideaki Suzuki : Workshop and Tutorial Proceedings. Ninth International Conference on the Simulation and Synthesis of Living Systems.
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