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  1. What Animals Can Do: Agency, Mutuality, and Adaptation.Catherine Read & Agnes Szokolszky - 2024 - Biological Theory 19 (3):198-208.
    The endeavor to naturalize the philosophy of biology brings the problem of agency to the forefront, along with renewed attention to the organism and organicism. In this article, we argue for a mutualist approach to agency that starts to unravel layers of this complex issue by focusing on perception and action at the core of all biological agency. The mutuality of animals and their surroundings is seen as distinct from the typical concepts of organism, preexisting environment, and their interactions. Mutuality (...)
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  • Integrating Multicellular Systems: Physiological Control and Degrees of Biological Individuality.Leonardo Bich - 2023 - Acta Biotheoretica 72 (1):1-22.
    This paper focuses on physiological integration in multicellular systems, a notion often associated with biological individuality, but which has not received enough attention and needs a thorough theoretical treatment. Broadly speaking, physiological integration consists in how different components come together into a cohesive unit in which they are dependent on one another for their existence and activity. This paper argues that physiological integration can be understood by considering how the components of a biological multicellular system are controlled and coordinated in (...)
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  • Thought experiments, sentience, and animalism.Margarida Hermida - 2023 - Synthese 202 (5):148.
    Animalism is prima facie the most plausible view about what we are; it aligns better with science and common sense, and is metaphysically more parsimonious. Thought experiments involving the brain, however, tend to elicit intuitions contrary to animalism. In this paper, I examine two classical thought experiments from the literature, brain transplant and cerebrum transplant, and a new one, cerebrum regeneration. I argue that they are theoretically possible, but that a scientifically informed account of what would actually happen shows that (...)
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  • Defending the Pathological Complexity Thesis.Walter Veit - 2023 - Biological Theory 18 (3):200-209.
    In this article, I respond to commentaries by Eva Jablonka and Simona Ginsburg and by David Spurrett on my target article “Complexity and the Evolution of Consciousness,” in which I have offered the first extended articulation of my pathological complexity thesis as a hypothesis about the evolutionary origins and function of consciousness. My reply is structured by the arguments raised rather than by author and will offer a more detailed explication of some aspects of the pathological complexity thesis.
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  • Complexity and the Evolution of Consciousness.Walter Veit - 2023 - Biological Theory 18 (3):175-190.
    This article introduces and defends the “pathological complexity thesis” as a hypothesis about the evolutionary origins of minimal consciousness, or sentience, that connects the study of animal consciousness closely with work in behavioral ecology and evolutionary biology. I argue that consciousness is an adaptive solution to a design problem that led to the extinction of complex multicellular animal life following the Avalon explosion and that was subsequently solved during the Cambrian explosion. This is the economic trade-off problem of having to (...)
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  • Cognitive functions are not reducible to biological ones: the case of minimal visual perception.Argyris Arnellos & Alvaro Moreno - 2022 - Biology and Philosophy 37 (4):1-25.
    We argue that cognitive functions are not reducible to biological functionality. Since only neural animals can develop complex forms of agency, we assume that genuinely cognitive processes are deeply related with the activity of the nervous system. We first analyze the significance of the appearance of the nervous system in certain multicellular organisms, arguing that it has changed the logic of their biological organization. Then, we focus on the appearance of specifically cognitive capacities within the nervous system. Considering a case (...)
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  • Understanding Multicellularity: The Functional Organization of the Intercellular Space.Leonardo Bich, Thomas Pradeu & Jean-Francois Moreau - 2019 - Frontiers in Physiology 10.
    The aim of this paper is to provide a theoretical framework to understand how multicellular systems realize functionally integrated physiological entities by organizing their intercellular space. From a perspective centered on physiology and integration, biological systems are often characterized as organized in such a way that they realize metabolic self-production and self-maintenance. The existence and activity of their components rely on the network they realize and on the continuous management of the exchange of matter and energy with their environment. One (...)
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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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  • Embodied Cognition: Looking Inward.Przemysław Nowakowski - 2017 - Hybris. Internetowy Magazyn Filozoficzny 38:74-97.
    The body is a highly complex, coordinated system engaged in coping with many environmental problems. It can be considered as some sort of opportunity or obstacle, with which internal processing must deal. Internal processing must take into account the possibilities and limitations of the particular body. In other words, even if the body is not involved in the realization of some cognitive explicit task, it is not a neutral factor of our understanding of why a system solves a task in (...)
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  • Cognitive confinement: theoretical considerations on the construction of a cognitive niche, and on how it can go wrong.Konrad Werner - 2019 - Synthese 198 (7):6297-6328.
    This paper aims to elucidate a kind of ignorance that is more fundamental than a momentary lack of information, but also not a kind of ignorance that is built into the subject’s cognitive apparatus such that the subject can’t do anything about it. The paper sets forth the notion of cognitive confinement, which is a contingent, yet relatively stable state of being structurally or systematically unable to gain information from an environment, determined by patterns of interaction between the subject and (...)
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  • Solipsistic sentience.Jordan C. V. Taylor - 2022 - Mind and Language 37 (4):734-750.
    This article examines the nature of affective states across biological taxa. It argues that affect constitutes a primary form of consciousness. Creatures capable of affect are sentient of their bodily states and can behave in ways intended to maintain or restore them to a homeostatic range. After reviewing and critiquing neurobiological and philosophical theories of the evolution of consciousness, this article argues that some possible creatures are limited to self‐directed affective states, even if those creatures are capable of exteroception. Such (...)
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  • Complexity revisited.Peter Godfrey-Smith - 2017 - Biology and Philosophy 32 (3):467-479.
    I look back at my 1996 book Complexity and the Function of Mind in Nature, responding to papers by Pamela Lyon, Fred Keijzer and Argyris Arnellos, and Matt Grove.
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  • Revisiting Burr and Northrop’s “The Electro-Dynamic Theory of Life”.Michael Levin - 2020 - Biological Theory 15 (2):83-90.
    Harold Saxton Burr was a biologist working throughout the 1930s–1950s on an important set of problems related to biological organization and the origin of complex living forms. He was a profound thinker, suggesting a complementary focus on field concepts in addition to the emphasis on particle models and integrating concepts from physics and philosophy in his work. He developed innovations in electrophysiological technique and used them to perform a wide experimental survey of bioelectricity in normal and pathological growth. Here, I (...)
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