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  1. A theory of direct visual perception.James J. Gibson - 2002 - In Alva Noe & Evan Thompson (eds.), Vision and Mind: Selected Readings in the Philosophy of Perception. MIT Press. pp. 77--89.
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  • Whatever next? Predictive brains, situated agents, and the future of cognitive science.Andy Clark - 2013 - Behavioral and Brain Sciences 36 (3):181-204.
    Brains, it has recently been argued, are essentially prediction machines. They are bundles of cells that support perception and action by constantly attempting to match incoming sensory inputs with top-down expectations or predictions. This is achieved using a hierarchical generative model that aims to minimize prediction error within a bidirectional cascade of cortical processing. Such accounts offer a unifying model of perception and action, illuminate the functional role of attention, and may neatly capture the special contribution of cortical processing to (...)
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  • Is the mind really modular?Jesse J. Prinz - 2006 - In Robert J. Stainton (ed.), Contemporary Debates in Cognitive Science. Oxford: Wiley-Blackwell. pp. 22--36.
    When Fodor titled his (1983) book the _Modularity of Mind_, he overstated his position. His actual view is that the mind divides into systems some of which are modular and others of which are not. The book would have been more aptly, if less provocatively, called _The Modularity of Low-Level Peripheral Systems_. High-level perception and cognitive systems are non-modular on Fodor’s theory. In recent years, modularity has found more zealous defenders, who claim that the entire mind divides into highly specialized (...)
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  • The Varieties of Reference.Gareth Evans & John Mcdowell - 1986 - Philosophy 61 (238):534-538.
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  • Iconicity and the Format of Perception.Jake Quilty-Dunn - 2016 - Journal of Consciousness Studies 23 (3-4):255-263.
    According to one important proposal, the difference between perception and cognition consists in the representational formats used in the two systems (Carey, 2009; Burge, 2010; Block, 2014). In particular, it is claimed that perceptual representations are iconic, or image-like, while cognitive representations are discursive, or language-like. Taking object perception as a test case, this paper argues on empirical grounds that it requires discursive label-like representations. These representations segment the perceptual field, continuously pick out objects despite changes in their features, and (...)
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  • Is vision continuous with cognition?: The case for cognitive impenetrability of visual perception.Zenon Pylyshyn - 1999 - Behavioral and Brain Sciences 22 (3):341-365.
    Although the study of visual perception has made more progress in the past 40 years than any other area of cognitive science, there remain major disagreements as to how closely vision is tied to general cognition. This paper sets out some of the arguments for both sides and defends the position that an important part of visual perception, which may be called early vision or just vision, is prohibited from accessing relevant expectations, knowledge and utilities - in other words it (...)
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  • The Shifting Border Between Perception and Cognition.Ben Phillips - 2017 - Noûs 53 (2):316-346.
    The distinction between perception and cognition has always had a firm footing in both cognitive science and folk psychology. However, there is little agreement as to how the distinction should be drawn. In fact, a number of theorists have recently argued that, given the ubiquity of top-down influences, we should jettison the distinction altogether. I reject this approach, and defend a pluralist account of the distinction. At the heart of my account is the claim that each legitimate way of marking (...)
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  • Predictions penetrate perception: Converging insights from brain, behaviour and disorder.Claire O’Callaghan, Kestutis Kveraga, James M. Shine, Reginald B. Adams & Moshe Bar - 2017 - Consciousness and Cognition 47:63-74.
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  • The cultural evolution of prosocial religions.Ara Norenzayan, Azim F. Shariff, Will M. Gervais, Aiyana K. Willard, Rita A. McNamara, Edward Slingerland & Joseph Henrich - 2016 - Behavioral and Brain Sciences 39:e1.
    We develop a cultural evolutionary theory of the origins of prosocial religions and apply it to resolve two puzzles in human psychology and cultural history: (1) the rise of large-scale cooperation among strangers and, simultaneously, (2) the spread of prosocial religions in the last 10–12 millennia. We argue that these two developments were importantly linked and mutually energizing. We explain how a package of culturally evolved religious beliefs and practices characterized by increasingly potent, moralizing, supernatural agents, credible displays of faith, (...)
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  • Perception and imagination: amodal perception as mental imagery.Bence Nanay - 2010 - Philosophical Studies 150 (2):239-254.
    When we see an object, we also represent those parts of it that are not visible. The question is how we represent them: this is the problem of amodal perception. I will consider three possible accounts: (a) we see them, (b) we have non-perceptual beliefs about them and (c) we have immediate perceptual access to them, and point out that all of these views face both empirical and conceptual objections. I suggest and defend a fourth account, according to which we (...)
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  • Cognitive Penetrability of Perception in the Age of Prediction: Predictive Systems are Penetrable Systems.Gary Lupyan - 2015 - Review of Philosophy and Psychology 6 (4):547-569.
    The goal of perceptual systems is to allow organisms to adaptively respond to ecologically relevant stimuli. Because all perceptual inputs are ambiguous, perception needs to rely on prior knowledge accumulated over evolutionary and developmental time to turn sensory energy into information useful for guiding behavior. It remains controversial whether the guidance of perception extends to cognitive states or is locked up in a “cognitively impenetrable” part of perception. I argue that expectations, knowledge, and task demands can shape perception at multiple (...)
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  • De re senses.John Mcdowell - 1984 - Philosophical Quarterly 34 (136):283-294.
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  • Seeing and Conceptualizing: Modularity and the Shallow Contents of Perception.Eric Mandelbaum - 2017 - Philosophy and Phenomenological Research 97 (2):267-283.
    After presenting evidence about categorization behavior, this paper argues for the following theses: 1) that there is a border between perception and cognition; 2) that the border is to be characterized by perception being modular (and cognition not being so); 3) that perception outputs conceptualized representations, so views that posit that the output of perception is solely non-conceptual are false; and 4) that perceptual content consists of basic-level categories and not richer contents.
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  • The free-energy principle: a rough guide to the brain?Karl Friston - 2009 - Trends in Cognitive Sciences 13 (7):293-301.
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  • Cognition does not affect perception: Evaluating the evidence for “top-down” effects.Chaz Firestone & Brian J. Scholl - 2016 - Behavioral and Brain Sciences 39:1-72.
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  • The Modularity of Mind.Robert Cummins & Jerry Fodor - 1983 - Philosophical Review 94 (1):101.
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  • Perceptual Demonstrative Thought: A Property-Dependent Theory.Sean Crawford - 2020 - Topoi 39 (2):439-457.
    The paper presents a new theory of perceptual demonstrative thought, the property-dependent theory. It argues that the theory is superior to both the object-dependent theory (Evans, McDowell) and the object-independent theory (Burge).
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  • Perceptual plasticity and theoretical neutrality: A reply to Jerry Fodor.Paul M. Churchland - 1988 - Philosophy of Science 55 (June):167-87.
    The doctrine that the character of our perceptual knowledge is plastic, and can vary substantially with the theories embraced by the perceiver, has been criticized in a recent paper by Fodor. His arguments are based on certain experimental facts and theoretical approaches in cognitive psychology. My aim in this paper is threefold: to show that Fodor's views on the impenetrability of perceptual processing do not secure a theory-neutral foundation for knowledge; to show that his views on impenetrability are almost certainly (...)
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  • The cognitive penetrability of perception: A blocked debate and a tentative solution.Sergio Cermeño-Aínsa - 2020 - Consciousness and Cognition 77:102838.
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  • Reply to Block: Adaptation and the Upper Border of Perception.Tyler Burge - 2014 - Philosophy and Phenomenological Research 89 (3):573-583.
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  • Origins of Objectivity.Tyler Burge - 2010 - Oxford, GB: Oxford University Press.
    Tyler Burge presents an original study of the most primitive ways in which individuals represent the physical world. By reflecting on the science of perception and related psychological and biological sciences, he gives an account of constitutive conditions for perceiving the physical world, and thus aims to locate origins of representational mind.
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  • Mental imagery and the varieties of amodal perception.Robert Eamon Briscoe - 2011 - Pacific Philosophical Quarterly 92 (2):153-173.
    The problem of amodal perception is the problem of how we represent features of perceived objects that are occluded or otherwise hidden from us. Bence Nanay (2010) has recently proposed that we amodally perceive an object's occluded features by imaginatively projecting them into the relevant regions of visual egocentric space. In this paper, I argue that amodal perception is not a single, unitary capacity. Drawing appropriate distinctions reveals amodal perception to be characterized not only by mental imagery, as Nanay suggests, (...)
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  • Seeing‐As in the Light of Vision Science.Ned Block - 2014 - Philosophy and Phenomenological Research 89 (1):560-572.
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  • Marking the Perception–Cognition Boundary: The Criterion of Stimulus-Dependence.Jacob Beck - 2018 - Australasian Journal of Philosophy 96 (2):319-334.
    Philosophy, scientific psychology, and common sense all distinguish perception from cognition. While there is little agreement about how the perception–cognition boundary ought to be drawn, one prominent idea is that perceptual states are dependent on a stimulus, or stimulus-dependent, in a way that cognitive states are not. This paper seeks to develop this idea in a way that can accommodate two apparent counterexamples: hallucinations, which are prima facie perceptual yet stimulus-independent; and demonstrative thoughts, which are prima facie cognitive yet stimulus-dependent. (...)
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  • The Predictive Mind.Jakob Hohwy - 2013 - Oxford, GB: Oxford University Press UK.
    A new theory is taking hold in neuroscience. It is the theory that the brain is essentially a hypothesis-testing mechanism, one that attempts to minimise the error of its predictions about the sensory input it receives from the world. It is an attractive theory because powerful theoretical arguments support it, and yet it is at heart stunningly simple. Jakob Hohwy explains and explores this theory from the perspective of cognitive science and philosophy. The key argument throughout The Predictive Mind is (...)
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  • Cognition and Perception: How Do Psychology and Neural Science Inform Philosophy?Athanassios Raftopoulos - 2009 - MIT Press.
    An argument that there are perceptual mechanisms that retrieve information in cognitively and conceptually unmediated ways and that this sheds light on various ...
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  • The origin of concepts.Susan Carey - 2009 - New York: Oxford University Press.
    Only human beings have a rich conceptual repertoire with concepts like tort, entropy, Abelian group, mannerism, icon and deconstruction. How have humans constructed these concepts? And once they have been constructed by adults, how do children acquire them? While primarily focusing on the second question, in The Origin of Concepts , Susan Carey shows that the answers to both overlap substantially. Carey begins by characterizing the innate starting point for conceptual development, namely systems of core cognition. Representations of core cognition (...)
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  • The perception of phantom Limbs: The D. O. Hebb lecture.Vilayanur S. Ramachandran & William Hirstein - 1998 - Brain 121:1603-1630.
    Almost everyone who has a limb amputated will experience a phantom limb--the vivid impression that the limb is not only still present, but in some cases, painful. There is now a wealth of empirical evidence demonstrating changes in cortical topography in primates following deafferentation or amputation, and this review will attempt to relate these in a systematic way to the clinical phenomenology of phantom limbs. With the advent of non-invasive imaging techniques such as MEG (magnetoencephalogram) and functional MRI, topographical reorganization (...)
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