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  1. Intentionality and communication theory.K. M. Sayre - 1986 - Behavioral and Brain Sciences 9 (1):155-165.
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  • Intentionality and information processing: An alternative model for cognitive science.Kenneth M. Sayre - 1986 - Behavioral and Brain Sciences 9 (1):121-38.
    This article responds to two unresolved and crucial problems of cognitive science: (1) What is actually accomplished by functions of the nervous system that we ordinarily describe in the intentional idiom? and (2) What makes the information processing involved in these functions semantic? It is argued that, contrary to the assumptions of many cognitive theorists, the computational approach does not provide coherent answers to these problems, and that a more promising start would be to fall back on mathematical communication theory (...)
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  • Imaginative Resistance in Science.Valentina Savojardo - forthcoming - Foundations of Science:1-19.
    The paper addresses the problem of imaginative resistance in science, that is, why and under what circumstances imagination sometimes resists certain scenarios. In the first part, the paper presents and discusses two accounts concerning the problem and relevant for the main thesis of this study. The first position is that of Gendler, The Architecture of the Imagination: New essays on pretence, possibility and fiction, Oxford University Press, New York, 2006a), The routledge companion to philosophy of literature, Routledge, New York, 2016), (...)
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  • Synergies: Stabilities, instabilities, and modes.E. Saltzman & J. A. S. Kelso - 1985 - Behavioral and Brain Sciences 8 (1):161-163.
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  • A non‐representational approach to imagined action.Iris Rooij, Raoul M. Bongers & F. G. Haselager - 2002 - Cognitive Science 26 (3):345-375.
    This study addresses the dynamical nature of a “representation‐hungry” cognitive task involving an imagined action. In our experiment, participants were handed rods that systematically increased or decreased in length on subsequent trials. Participants were asked to judge whether or not they thought they could reach for a distant object with the hand‐held rod. The results are in agreement with a dynamical model, extended from Tuller, Case, Ding, and Kelso (1994). The dynamical effects observed in this study suggest that predictive judgments (...)
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  • Ecological-enactive scientific cognition: modeling and material engagement.Giovanni Rolla & Felipe Novaes - 2022 - Phenomenology and the Cognitive Sciences 21 (3):625-643.
    Ecological-enactive approaches to cognition aim to explain cognition in terms of the dynamic coupling between agent and environment. Accordingly, cognition of one’s immediate environment depends on enaction and the picking up of affordances. However, ecological-enactive views supposedly fail to account for what is sometimes called “higher” cognition, i.e., cognition about potentially absent targets, which therefore can only be explained by postulating representational content. This challenge levelled against ecological-enactive approaches highlights a putative explanatory gap between basic and higher cognition. In this (...)
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  • Gallistel's metatheory of action.H. L. Roitblat - 1981 - Behavioral and Brain Sciences 4 (4):637-638.
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  • Torque and sway.T. D. M. Roberts - 1985 - Behavioral and Brain Sciences 8 (1):160-161.
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  • Faculties, modules, and computers.Daniel N. Robinson - 1985 - Behavioral and Brain Sciences 8 (1):28-29.
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  • A maze in graphs.Christopher K. Riesbeck - 1982 - Behavioral and Brain Sciences 5 (4):648-648.
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  • Quinity, isotropy, and Wagnerian rapture.Georges Rey - 1985 - Behavioral and Brain Sciences 8 (1):27-28.
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  • Behavior ignored.Peter C. Reynolds - 1981 - Behavioral and Brain Sciences 4 (4):637-637.
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  • Two theories of the intentionality of perceiving.Edward S. Reed - 1983 - Synthese 54 (January):85-94.
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  • James J. Gibson's revolution in perceptual psychology: A case study of the transformation of scientific ideas.Edward S. Reed - 1986 - Studies in History and Philosophy of Science Part A 17 (1):65-98.
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  • Can mental representations cause behavior?Edward S. Reed - 1981 - Behavioral and Brain Sciences 4 (4):635-636.
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  • Areas of ignorance and confusion in color science.Adam Reeves - 1992 - Behavioral and Brain Sciences 15 (1):49-50.
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  • Cultural Affordances: Scaffolding Local Worlds Through Shared Intentionality and Regimes of Attention.Maxwell J. D. Ramstead, Samuel P. L. Veissière & Laurence J. Kirmayer - 2016 - Frontiers in Psychology 7.
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  • Tolerant enactivist cognitive science.Thomas Raleigh - 2018 - Philosophical Explorations 21 (2):226-244.
    Enactivist (Embodied, Embedded, etc.) approaches in cognitive science and philosophy of mind are sometimes, though not always, conjoined with an anti-representational commitment. A weaker anti-representational claim is that ascribing representational content to internal/sub-personal processes is not compulsory when giving psychological explanations. A stronger anti-representational claim is that the very idea of ascribing representational content to internal/sub-personal processes is a theoretical confusion. This paper criticises some of the arguments made by Hutto & Myin (2013, 2017) for the stronger anti-representational claim and (...)
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  • Resonance and radical embodiment.Vicente Raja - 2020 - Synthese 199 (Suppl 1):113-141.
    One big challenge faced by cognitive science is the development of a unified theory that integrates disparate scales of analysis of cognitive phenomena. In this paper, I offer a unified framework that provides a way to integrate neural and behavioral scales of analysis of cognitive phenomena—typically addressed by neuroscience and experimental psychology, respectively. The framework is based on the concept of resonance originated in ecological psychology and aims to be the foundation for a unified theory for radical embodiment; that is, (...)
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  • Embodiment and cognitive neuroscience: the forgotten tales.Vicente Raja - 2022 - Phenomenology and the Cognitive Sciences 21 (3):603-623.
    In this paper, I suggest that some tales (or narratives) developed in the literature of embodied and radical embodied cognitive science can contribute to the solution of two longstanding issues in the cognitive neuroscience of perception and action. The two issues are (i) the fundamental problem of perception, or how to bridge the gap between sensations and the environment, and (ii) the fundamental problem of motor control, or how to better characterize the relationship between brain activity and behavior. In both (...)
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  • A Theory of Resonance: Towards an Ecological Cognitive Architecture.Vicente Raja - 2018 - Minds and Machines 28 (1):29-51.
    This paper presents a blueprint for an ecological cognitive architecture. Ecological psychology, I contend, must be complemented with a story about the role of the CNS in perception, action, and cognition. To arrive at such a story while staying true to the tenets of ecological psychology, it will be necessary to flesh out the central metaphor according to which the animal perceives its environment by ‘resonating’ to information in energy patterns: what is needed is a theory of resonance. I offer (...)
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  • Directed action and animal communication.Daisie Radner - 1993 - Ration 6 (2):135-54.
    Human action theory, with its emphasis on intentions and reasons, does little to enhance our understanding of the actions of nonhuman animals. Many animal (and human) actions are directed to objects in the world, including other animals. The notion of directedness can be analysed without attributing intentions or reasons to the agent. An action is directed to object X if and only if: (1) the agent singles out X, either by orientation or by selective performance of the action in the (...)
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  • Directed Action and Animal Communication.Daisie Radner - 1993 - Ratio 6 (2):135-154.
    Human action theory, with its emphasis on intentions and reasons, does little to enhance our understanding of the actions of nonhuman animals. Many animal (and human) actions are directed to objects in the world, including other animals. The notion of directedness can be analysed without attributing intentions or reasons to the agent. An action is directed to object X if and only if: (1) the agent singles out X, either by orientation or by selective performance of the action in the (...)
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  • Giving behavior to psychology.Robert R. Provine - 1981 - Behavioral and Brain Sciences 4 (4):635-635.
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  • Intentionality: No mystery.William T. Powers - 1986 - Behavioral and Brain Sciences 9 (1):152-153.
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  • The special nature of spatial information.Michael Potegal - 1982 - Behavioral and Brain Sciences 5 (4):647-648.
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  • Enactivism and Ecological Psychology: The Role of Bodily Experience in Agency.Yanna B. Popova & Joanna Rączaszek-Leonardi - 2020 - Frontiers in Psychology 11:539841.
    This paper considers some foundational concepts in ecological psychology and in enactivism., and traces their developments from their historical roots to current preoccupations. Important differences stem, we claim, from dissimilarities in how embodied experience has been understood by the ancestors, founders and followers of ecological psychology and enactivism, respectively. Rather than pointing to differences in domains of interest for the respective approaches, and restating possible divisions of labor between them in research in the cognitive and psychological sciences, we call for (...)
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  • Suggestions for extending the domain of the Nashner–McCollum theory.Barry W. Peterson - 1985 - Behavioral and Brain Sciences 8 (1):160-160.
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  • Intentionality as internality.Don Perlis & Rosalie Hall - 1986 - Behavioral and Brain Sciences 9 (1):151-152.
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  • What spaces? What subjects?Jean Pailhous & Patrick Peruch - 1982 - Behavioral and Brain Sciences 5 (4):646-647.
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  • Search Strategies in the Perceptual-Motor Workspace and the Acquisition of Coordination, Control, and Skill.Matheus M. Pacheco, Charley W. Lafe & Karl M. Newell - 2019 - Frontiers in Psychology 10.
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  • A sensorimotor account of vision and visual consciousness.J. Kevin O’Regan & Alva Noë - 2001 - Behavioral and Brain Sciences 24 (5):883-917.
    Many current neurophysiological, psychophysical, and psychological approaches to vision rest on the idea that when we see, the brain produces an internal representation of the world. The activation of this internal representation is assumed to give rise to the experience of seeing. The problem with this kind of approach is that it leaves unexplained how the existence of such a detailed internal representation might produce visual consciousness. An alternative proposal is made here. We propose that seeing is a way of (...)
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  • Behavioral flexibility and the organization of action.David S. Olton - 1981 - Behavioral and Brain Sciences 4 (4):634-635.
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  • A basis for action.Allen Newell - 1981 - Behavioral and Brain Sciences 4 (4):633-634.
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  • On perceived colors.Christa Neumeyer - 1992 - Behavioral and Brain Sciences 15 (1):49-49.
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  • The organization of human postural movements: a formal basis and experimental synthesis.Lewis M. Nashner & Gin McCollum - 1985 - Behavioral and Brain Sciences 8 (1):135-150.
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  • Hierarchical structures in the organization of motor behaviors.Lewis M. Nashner - 1981 - Behavioral and Brain Sciences 4 (4):633-633.
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  • Elements of a sensorimotor theory compatible with experiments.Lewis M. Nashner & Gin McCollum - 1985 - Behavioral and Brain Sciences 8 (1):167-172.
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  • Word frequency effects found in free recall are rather due to Bayesian surprise.Serban C. Musca & Anthony Chemero - 2022 - Frontiers in Psychology 13.
    The inconsistent relation between word frequency and free recall performance and the non-monotonic relation found between the two cannot all be explained by current theories. We propose a theoretical framework that can explain all extant results. Based on an ecological psychology analysis of the free recall situation in terms of environmental and informational resources available to the participants, we propose that because participants’ cognitive system has been shaped by their native language, free recall performance is best understood as the end (...)
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  • Too little and latent.John Morton - 1985 - Behavioral and Brain Sciences 8 (1):26-27.
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  • A total process approach to perception.Maxine Morphis - 1986 - Behavioral and Brain Sciences 9 (1):150-151.
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  • Computational Hullianism.John W. Moore - 1982 - Behavioral and Brain Sciences 5 (4):646-646.
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  • The affective and normative intentionality of skilled performance: a radical embodied approach.Laura Mojica & Melina Gastelum Vargas - 2021 - Synthese 199 (3-4):8205-8230.
    In this paper, we argue that the intentionality at play in skilled performance is not only inherently normative but also inherently affective. We take a radically embodied approach to the mind in which we conceive of cognitive agents as sensorimotor systems moved to maintain their biological and sociocultural identity, whose perception is direct and occurs in terms of affordances. Within this framework, we define skilled performance as the enactment of action and perception patterns in which the agent is intentionally oriented (...)
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  • A small fly in some beneficial ointment.P. M. Milner - 1981 - Behavioral and Brain Sciences 4 (4):632-633.
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  • Enacting a social ecology: radically embodied intersubjectivity.Marek McGann - 2014 - Frontiers in Psychology 5.
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  • Colors really are only in the head.James A. McGilvray - 1992 - Behavioral and Brain Sciences 15 (1):48-49.
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  • Convergently Emergent: Ecological and Enactive Approaches to the Texture of Agency.Marek McGann - 2020 - Frontiers in Psychology 11.
    Enactive and ecological approaches to cognitive science both claim a “mutuality” between agents and their environments – that they have a complementary nature and should be addressed as a single whole system. Despite this apparent agreement, each offers criticisms of the other on precisely this point – enactivists claiming that ecological psychologists over-emphasise the environment, while the complementary criticism, of agent-centred constructivism, is levelled by ecological psychologists at enactivists. In this paper I suggest that underlying the confusion between the two (...)
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  • On possible perceptual worlds and how they shape their environments.Rainer J. Mausfeld, Reinhard M. Niederée & K. Dieter Heyer - 1992 - Behavioral and Brain Sciences 15 (1):47-48.
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  • Vertically unparalleled.Ignatius G. Mattingly & Alvin M. Liberman - 1985 - Behavioral and Brain Sciences 8 (1):24-26.
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  • Color vision: Content versus experience.Mohan Matthen - 1992 - Behavioral and Brain Sciences 15 (1):46-47.
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