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  1. natural intelligence and anthropic reasoning.Predrag Slijepcevic - 2020 - Biosemiotics 13 (tba):1-23.
    This paper aims to justify the concept of natural intelligence in the biosemiotic context. I will argue that the process of life is (i) a cognitive/semiotic process and (ii) that organisms, from bacteria to animals, are cognitive or semiotic agents. To justify these arguments, the neural-type intelligence represented by the form of reasoning known as anthropic reasoning will be compared and contrasted with types of intelligence explicated by four disciplines of biology – relational biology, evolutionary epistemology, biosemiotics and the systems (...)
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  • Is a Cognitive Revolution in Theoretical Biology Underway?Tiago Rama - forthcoming - Foundations of Science.
    The foundations of biology have been a topic of debate for the past few decades. The traditional perspective of the Modern Synthesis, which portrays organisms as passive entities with limited role in evolutionary theory, is giving way to a new paradigm where organisms are recognized as active agents, actively shaping their own phenotypic traits for adaptive purposes. Within this context, this article raises the question of whether contemporary biological theory is undergoing a cognitive revolution. This inquiry can be approached in (...)
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  • From cell-surface receptors to higher learning: A whole world of experience.Karola Stotz & Colin Allen - 2012 - In Karola Stotz & Colin Allen (eds.), Philosophy of Behavioral Biology, eds, Katie Plaisance and Thomas Reydon. Boston: Springer. pp. 85-123.
    In the last decade it has become en vogue for cognitive comparative psychologists to study animal behavior in an ‘integrated’ fashion to account for both the ‘innate’ and the ‘acquired’. We will argue that these studies, instead of really integrating the concepts of ‘nature’ and ‘nurture’, rather cement this old dichotomy. They combine empty nativist interpretation of behavior systems with blatantly environmentalist explanations of learning. We identify the main culprit as the failure to take development seriously. While in some areas (...)
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  • Who are the users of synthetic DNA? Using metaphors to activate microorganisms at the center of synthetic biology.Erika Amethyst Szymanski - 2018 - Life Sciences, Society and Policy 14 (1):1-16.
    Synthetic biology, a multidisciplinary field involving designing and building with DNA, often designs and builds in microorganisms. The role of these microorganisms tends to be understood through metaphors making the microbial cell like a machine and emphasizing its passivity: cells are described as platforms, chassis, and computers. Here, I point to the efficacy of such metaphors in enacting the microorganism as a particular kind of participant in the research process, and I suggest the utility of employing metaphors that make microorganisms (...)
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  • Is free-energy minimisation the mark of the cognitive?Matt Sims & Julian Kiverstein - 2021 - Biology and Philosophy 36 (2):1-27.
    A mark of the cognitive should allow us to specify theoretical principles for demarcating cognitive from non-cognitive causes of behaviour in organisms. Specific criteria are required to settle the question of when in the evolution of life cognition first emerged. An answer to this question should however avoid two pitfalls. It should avoid overintellectualising the minds of other organisms, ascribing to them cognitive capacities for which they have no need given the lives they lead within the niches they inhabit. But (...)
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  • Against the mind package view of minds: Comments on Carrie Figdor's Pieces of mind.Eric Schwitzgebel - 2020 - Mind and Language 35 (5):671-676.
    Carrie Figdor's Pieces of mind lays the groundwork for critiquing the mind package view of minds. According to the mind package view, psychological properties travel in groups, such that an entity either has the whole mind package or lacks mentality altogether. Implicit commitment to the mind package view makes it seem absurd to attribute some psychological properties (e.g., preferences) to entities that lack other psychological properties (e.g., feelings). Contra the mind package view, we are psychologically continuous with plants, worms, and (...)
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  • “Protoplasm Feels”: The Role of Physiology in Charles Sanders Peirce’s Evolutionary Metaphysics.Trevor Pearce - 2018 - Hopos: The Journal of the International Society for the History of Philosophy of Science 8 (1):28-61.
    This essay is an attempt to explain why Charles Sanders Peirce’s evolutionary metaphysics would not have seemed strange to its original 1890s audience. Building on the pioneering work of Andrew Reynolds, I will excavate the scientific context of Peirce’s Monist articles—in particular “The Law of Mind” and “Man’s Glassy Essence,” both published in 1892—focusing on the relationship between protoplasm, evolution, and consciousness. I argue that Peirce’s discussions should be understood in the context of contemporary evolutionary and physiological speculations, many of (...)
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  • Philosophy and the microbe: a balancing act. [REVIEW]Maureen A. O’Malley - 2013 - Biology and Philosophy 28 (2):153-159.
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  • The question of questions: What is a Gene? Comments on Rolston and Griffths & Stotz. [REVIEW]Lenny Moss - 2006 - Theoretical Medicine and Bioethics 27 (6):523-534.
    If the question ``What is a gene?'' proves to be worth asking it must be able to elicit an answer which both recognizes and address the reasons why the concept of the gene ever seemed to be something worth getting excited about in the first place as well analyzing and evaluating the latest develops in the molecular biology of DNA. Each of the preceding papers fails to do one of these and sufferrs the consequences. Where Rolston responds to the apparent (...)
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  • From quorum to cooperation: lessons from bacterial sociality for evolutionary theory.Pamela Lyon - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):820-833.
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  • From quorum to cooperation: lessons from bacterial sociality for evolutionary theory.Pamela Lyon - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):820-833.
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  • From quorum to cooperation: Lessons from bacterial sociality for evolutionary theory.Pamela Lyon - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):820-833.
    Copyright © 2007 Elsevier Ltd All rights reserved.
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  • Environmental complexity, adaptability and bacterial cognition: Godfrey-Smith’s hypothesis under the microscope.Pamela Lyon - 2017 - Biology and Philosophy 32 (3):443-465.
    The paper presents evidence in bacteria for the utility of Godfrey-Smith’s environmental complexity thesis, using certain kinds of signal transduction systems as proxies for cognitive/behavioral complexity. Microbiologists already accept that the number of signal transduction proteins in a bacterial genome indicates the level of ecological complexity to which the organism is subject: the more signalling proteins, the greater the complexity. Sheer numbers are not always a reliable indicator of behavioral complexity, however. The paper proposes a new, ECT-based procedure for identifying, (...)
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  • What is cognitive about ‘plant cognition’?Jonny Lee - 2023 - Biology and Philosophy 38 (3):1-21.
    There is growing evidence that plants possess abilities associated with cognition, such as decision-making, anticipation and learning. And yet, the cognitive status of plants continues to be contested. Among the threats to plant cognitive status is the ‘Representation Demarcation Challenge’ which points to the absence of a seemingly defining aspect of cognition, namely, computation over representation with non-derived content. Defenders of plant cognition may appeal to post-cognitivist perspectives, such as enactivism, which challenge the assumptions of the Representation Demarcation Challenge. This (...)
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  • Natural Agency: The Case of Bacterial Cognition.Fermin Fulda - 2017 - Journal of the American Philosophical Association 3 (1):69-90.
    ABSTRACT:I contrast an ecological account of natural agency with the traditional Cartesian conception using recent research in bacterial cognition and cellular decision making as a test case. I argue that the Cartesian conception—namely, the view that agency presupposes cognition—generates a dilemma between mechanism, the view that bacteria are mere automata, and intellectualism, the view that they exhibit full-blown cognition. Unicellular organisms, however, occupy a middle ground between these two extremes. On the one hand, their capacities and activities are too adaptive (...)
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  • Autopoietic enactivism, phenomenology and the deep continuity between life and mind.Paulo De Jesus - 2016 - Phenomenology and the Cognitive Sciences 15 (2):265-289.
    In their recent book Radicalizing Enactivism. Basic minds without content, Dan Hutto and Erik Myin make two important criticisms of what they call autopoietic enactivism. These two criticisms are that AE harbours tacit representationalists commitments and that it has too liberal a conception of cognition. Taking the latter claim as its main focus, this paper explores the theoretical underpinnings of AE in order to tease out how it might respond to H&M. In so doing it uncovers some reasons which not (...)
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  • Conditions for minimal intelligence across eukaryota: a cognitive science perspective.Paco Calvo & František Baluška - 2015 - Frontiers in Psychology 6.
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  • Investigating neural representations: the tale of place cells.William Bechtel - 2016 - Synthese 193 (5):1287-1321.
    While neuroscientists often characterize brain activity as representational, many philosophers have construed these accounts as just theorists’ glosses on the mechanism. Moreover, philosophical discussions commonly focus on finished accounts of explanation, not research in progress. I adopt a different perspective, considering how characterizations of neural activity as representational contributes to the development of mechanistic accounts, guiding the investigations neuroscientists pursue as they work from an initial proposal to a more detailed understanding of a mechanism. I develop one illustrative example involving (...)
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  • Normativity, agency, and life.James Barham - 2012 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 43 (1):92-103.
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  • principles of cognitive biology and the concept of biocivilisations.Predrag Slijepcevic - 2024 - Biosystems 235.
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  • Conference Souvenir: 'Science and Scientist - 2013'.Ph D. Sripad Bhakti Madhava Puri Maharaja - 2013 - Sri Chaitanya Saraswat Institute.
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  • The Epistemology of Geometry I: the Problem of Exactness.Anne Newstead & Franklin James - 2010 - Proceedings of the Australasian Society for Cognitive Science 2009.
    We show how an epistemology informed by cognitive science promises to shed light on an ancient problem in the philosophy of mathematics: the problem of exactness. The problem of exactness arises because geometrical knowledge is thought to concern perfect geometrical forms, whereas the embodiment of such forms in the natural world may be imperfect. There thus arises an apparent mismatch between mathematical concepts and physical reality. We propose that the problem can be solved by emphasizing the ways in which the (...)
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  • Why Biology is Beyond Physical Sciences?Bhakti Niskama Shanta & Bhakti Vijnana Muni - 2016 - Advances in Life Sciences 6 (1):13-30.
    In the framework of materialism, the major attention is to find general organizational laws stimulated by physical sciences, ignoring the uniqueness of Life. The main goal of materialism is to reduce consciousness to natural processes, which in turn can be translated into the language of math, physics and chemistry. Following this approach, scientists have made several attempts to deny the living organism of its veracity as an immortal soul, in favor of genes, molecules, atoms and so on. However, advancement in (...)
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  • Do we have a Theory of Evolution?Bhakti Madhava Puri - 2009 - Darwin Under Siege.
    The neo-Darwinian theory of genetic random mutation and Natural Selection, does nothing to explain speciation. Thus, what has been called "natural selection" has come under much scrutiny and critique in recent times. The problem is that natural selection requires the existence of a stable array of species from which selection can be made. So natural selection does not perform the speciation, only the selection after speciation has occurred. The activity of creating new species must therefore lie in the random mutations (...)
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  • Eukaryogenesis: how special, really?Austin Booth & W. Ford Doolittle - 2015 - Proceedings of the National Academy of Sciences of the United States of America:1-8.
    Eukaryogenesis is widely viewed as an improbable evolutionary transition uniquely affecting the evolution of life on this planet. However, scientific and popular rhetoric extolling this event as a singularity lacks rigorous evidential and statistical support. Here, we question several of the usual claims about the specialness of eukaryogenesis, focusing on both eukaryogenesis as a process and its outcome, the eukaryotic cell. We argue in favor of four ideas. First, the criteria by which we judge eukaryogenesis to have required a genuinely (...)
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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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  • Introduction: Key Levels of Biocommunication of Bacteria.Guenther Witzany - 2011 - In Witzany (ed.), Biocommunication in Soil Microorganisms. Springer. pp. 1--34.
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  • Quantum Resonance & Consciousness.Contzen Pereira - 2015 - Journal of Metaphysics and Connected Consciousness 2.
    Resonance can trigger of a series of quantum events and therefore induce several changes related to consciousness at micro as well as macro level within a living system. Therapeutic effects have been observed in several religious meditative and healing practices, which use resonance in the form of chanting and prayers. A living system may have many resonant frequencies due to their degrees of freedom, where each can vibrate as a harmonic oscillator supporting the progression of vibrations as waves that moves (...)
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