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  1. C. S. Peirce and Intersemiotic Translation.Joao Queiroz & Daniella Aguiar - 2015 - In Peter Pericles Trifonas (ed.), International Handbook of Semiotics. Dordrecht: Springer. pp. 201-215.
    Intersemiotic translation (IT) was defined by Roman Jakobson (The Translation Studies Reader, Routledge, London, p. 114, 2000) as “transmutation of signs”—“an interpretation of verbal signs by means of signs of nonverbal sign systems.” Despite its theoretical relevance, and in spite of the frequency in which it is practiced, the phenomenon remains virtually unexplored in terms of conceptual modeling, especially from a semiotic perspective. Our approach is based on two premises: (i) IT is fundamentally a semiotic operation process (semiosis) and (ii) (...)
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  • Steps to a Semiotics of Being.Morten Tønnessen - 2010 - Biosemiotics 3 (3):375-392.
    The following points, which represent a path to a semiotics of being, are pertinent to various sub-fields at the conjunction of semiotics of nature (biosemiotics, ecosemiotics, zoosemiotics) and semiotics of culture—semioethics and existential semiotics included. 1) Semiotics of being entails inquiry at all levels of biological organization, albeit, wherever there are individuals, with emphasis on the living qua individuals (integrated biological individualism). 2) An Umwelt is the public aspect (cf. the Innenwelt, the private aspect) of a phenomenal/experienced world that is (...)
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  • A Biosemiotic and Ecoacoustic History of Bird-Scaring.Jacob Smith - 2022 - Biosemiotics 15 (1):67-83.
    Timo Maran has defined “biosemiotic criticism” as the study of human culture with an emphasis on the recognition that all forms of life are organized by sign processes. That approach guides this investigation of the sonic devices and practices that have been used in encounters between birds and humans in agricultural spaces. “Bird-scaring” has been a long-standing component of the semiotic relationship between humans and birds in what I am calling the agricultural semiosphere. The struggle between humans and “pest” species (...)
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  • Principles of Information Processing and Natural Learning in Biological Systems.Predrag Slijepcevic - 2021 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (2):227-245.
    The key assumption behind evolutionary epistemology is that animals are active learners or ‘knowers’. In the present study, I updated the concept of natural learning, developed by Henry Plotkin and John Odling-Smee, by expanding it from the animal-only territory to the biosphere-as-a-whole territory. In the new interpretation of natural learning the concept of biological information, guided by Peter Corning’s concept of “control information”, becomes the ‘glue’ holding the organism–environment interactions together. The control information guides biological systems, from bacteria to ecosystems, (...)
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  • Ontography and Maieutics, or Speculative Notes on an Ethos for Umwelt Theory.Silver Rattasepp - 2022 - Biosemiotics 15 (2):357-372.
    There is renewed interest in questions of ontology in various fields, as there has been in biosemiotics. But for umwelt theory, ontology needs to be approached in particular ways, in order to avoid it from being yet another “philosophy of access”, part and parcel of the epistemology-ontology dyad, where “ontology” is the leftover of epistemology, or any sort of subjective constitution of things. The article engages in philosophical considerations about what kinds of assumptions and preliminary considerations should be made for (...)
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  • Response by H. H. Pattee to Jon Umerez’s Paper: “Where Does Pattee’s “How Does a Molecule Become a Message?” Belong in the History of Biosemiotics?”. [REVIEW]H. H. Pattee - 2009 - Biosemiotics 2 (3):291-302.
    Umerez’s analysis made me aware of the fundamental differences in the culture of physics and molecular biology and the culture of semiotics from which the new field of biosemiotics arose. These cultures also view histories differently. Considering the evolutionary span and the many hierarchical levels of organization that their models must cover, models at different levels will require different observables and different meanings for common words, like symbol, interpretation, and language. These models as well as their histories should be viewed (...)
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  • Epistemic, Evolutionary, and Physical Conditions for Biological Information.H. H. Pattee - 2013 - Biosemiotics 6 (1):9-31.
    The necessary but not sufficient conditions for biological informational concepts like signs, symbols, memories, instructions, and messages are (1) an object or referent that the information is about, (2) a physical embodiment or vehicle that stands for what the information is about (the object), and (3) an interpreter or agent that separates the referent information from the vehicle’s material structure, and that establishes the stands-for relation. This separation is named the epistemic cut, and explaining clearly how the stands-for relation is (...)
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  • A biosemiotic conversation.Howard H. Pattee & Kalevi Kull - 2009 - Sign Systems Studies 37 (1-2):311-330.
    In this dialogue, we discuss the contrast between inexorable physical laws and the semiotic freedom of life. We agree that material and symbolic structures require complementary descriptions, as do the many hierarchical levels of their organizations. We try to clarify our concepts of laws, constraints, rules, symbols, memory, interpreters, and semiotic control. We briefly describe our different personal backgrounds that led us to a biosemiotic approach, and we speculate on the future directions of biosemiotics.
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  • The First Decade of Biosemiotics.Timo Maran, Alexei Sharov & Morten Tønnessen - 2017 - Biosemiotics 10 (3):315-318.
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  • John Maynard Smith’s typology of animal signals.Timo Maran - 2009 - Sign Systems Studies 37 (3-4):477-495.
    Approaches to animal communication have for the most part been quite different in semiotics and evolutionary biology. In this context the writings of a leading evolutionary biologist who has also been attracted to semiotics — John Maynard Smith — are an interesting exception and object of study. The present article focuses on the use and adaptation of semiotic terminology in Maynard Smith’s works with reference to general theoretical premises both in semiotics and evolutionary biology. In developing a typology of animal (...)
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  • Theses on Biosemiotics: Prolegomena to a Theoretical Biology.Kalevi Kull, Terrence Deacon, Claus Emmeche, Jesper Hoffmeyer & Frederik Stjernfelt - 2009 - Biological Theory 4 (2):167-173.
    Theses on the semiotic study of life as presented here provide a collectively formulated set of statements on what biology needs to be focused on in order to describe life as a process based on semiosis, or sign action. An aim of the biosemiotic approach is to explain how life evolves through all varieties of forms of communication and signification (including cellular adaptive behavior, animal communication, and human intellect) and to provide tools for grounding sign theories. We introduce the concept (...)
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  • Theory and Empiricism of Religious Evolution (THERE): Foundation of a Research Program (Part 2).Volkhard Krech - 2018 - Zeitschrift für Religionswissenschaft 26 (2):215-263.
    This two-part article presents the research program for a theory and empirical analysis of religious evolution. It is assumed that religion isprimarilya co-evolution to societal evolution, which in turn is a co-evolution to mental, organic, and physical evolution. The theory of evolution is triangulated with the systems theory and the semiotically informed theory of communication, so that knowledge can be gained that would not be acquired by only one of the three theories: The differentiation between religion and its environment can (...)
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  • The Biosemiotic Glossary Project: The Semiotic Threshold.Claudio Julio Rodríguez Higuera & Kalevi Kull - 2017 - Biosemiotics 10 (1):109-126.
    The present article is framed within the biosemiotic glossary project as a way to address common terminology within biosemiotic research. The glossary integrates the view of the members of the biosemiotic community through a standard survey and a literature review. The concept of ‘semiotic threshold’ was first introduced by Umberto Eco, defining it as a boundary between semiotic and non-semiotic areas. We review here the concept of ‘semiotic threshold’, first describing its denotation within semiotics via an examination on the history (...)
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  • Taking the Relational Turn: Biosemiotics and Some New Trends in Biology. [REVIEW]Eliseo Fernández - 2010 - Biosemiotics 3 (2):147-156.
    A cluster of similar trends emerging in separate fields of science and philosophy points to new opportunities to apply biosemiotic ideas as tools for conceptual integration in theoretical biology. I characterize these developments as the outcome of a “relational turn” in these disciplines. They signal a shift of attention away from objects and things and towards relational structures and processes. Increasingly sophisticated research technologies of molecular biology have generated an enormous quantity of experimental data, sparking a need for relational approaches (...)
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  • The Deconstructive Turn.Timothy Clark - 2013 - Symploke 21 (1-2):11.
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  • The Biosynthesis of Proteins for Nano Engines as a Normative Process.Wim Beekman & Henk Jochemsen - 2023 - Biosemiotics 16 (3):441-455.
    In this article two questions are discussed with regard to semiosis in protein biosynthesis for nano engines. (1) What kind of semiosis is involved in the construction of these proteins? and (2) How can we explain the semiotic process observed? With regard to the first issue we draw attention to comparisons between semiosis in protein biosynthesis and human natural language. The notion of normativity appears to be of great importance for both. A comparison also demonstrates differences. Nevertheless, because of the (...)
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  • Why Explicit Semiotic Grounding Is Essential to Biology as a Science? The Point of View of Biosemiotics.Elena Pagni - 2016 - Humana Mente (16):52-72.
    A common approach in biosemiotics suggests that semiosis (any activity or process that involves signs) is a natural process embedded in evolution, which entails the production of meaningful processes. As Pattee has argued, a closer look at living systems shows that semiosis is closely related to a very specific and highly functional context of selected constraints. Symbolic control consists in 1) instituting a friction on the novelty, variability and randomness of life processes 2) allowing survival value at all levels of (...)
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  • Biosemiotics and Applied Evolutionary Epistemology: A Comparison.Nathalie Gontier & M. Facoetti - 2021 - In In: Pagni E., Theisen Simanke R. (eds) Biosemiotics and Evolution. Interdisciplinary Evolution Research, vol 6. Springer, Cham. Cham: pp. 175-199.
    Both biosemiotics and evolutionary epistemology are concerned with how knowledge evolves. (Applied) Evolutionary Epistemology thereby focuses on identifying the units, levels, and mechanisms or processes that underlie the evolutionary development of knowing and knowledge, while biosemiotics places emphasis on the study of how signs underlie the development of meaning. We compare the two schools of thought and analyze how in delineating their research program, biosemiotics runs into several problems that are overcome by evolutionary epistemologists. For one, by emphasizing signs, biosemiotics (...)
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  • Biosemiotics: To know, what life knows.Kalevi Kull - 2009 - Cybernetics and Human Knowing 16 (3/4):81-88.
    The field of semiotics is described as a general study of knowing. Knowing in a broad sense as a process that assumes (and includes) at least memory (together with heredity), anticipation, communication, meaningful information, and needs, is a distinctive feature of living systems. Sciences are distinguished accordingly into 'phi-sciences' (that use physicalist methodology) and 'sigma-sciences' (that use semiotic methodology). Jesper Hoffmeyer’s book Biosemiotics is viewed as an inquiry into the sigma-scientific approach to living systems.
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  • Evolutionary epistemology: Reviewing and reviving with new data the research programme for distributed biological intelligence.Predrag Slijepcevic - 2018 - Biosystems 163:23-35.
    Numerous studies in microbiology, eukaryotic cell biology, plant biology, biomimetics, synthetic biology, and philosophy of science appear to support the principles of the epistemological theory inspired by evolution, also known as “Evolutionary Epistemology”, or EE. However, that none of the studies acknowledged EE suggests that its principles have not been formulated with sufficient clarity and depth to resonate with the interests of the empirical research community. In this paper I review evidence in favor of EE, and also reformulate EE principles (...)
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  • Three levels of semiosis: Three kinds of kinds.F. Alrøe Hugo - 2016 - Cybernetics and Human Knowing 23 (2):23-38.
    In philosophy, there is an as yet unresolved discussion on whether there are different kinds of kinds and what those kinds are. In particular, there is a distinction between indifferent kinds, which are unaffected by observation and representation, and interactive kinds, which respond to being studied in ways that alter the very kinds under study. This is in essence a discussion on ontologies and, I argue, more precisely about ontological levels. The discussion of kinds of kinds can be resolved by (...)
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