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  1. Large number discrimination in 6-month-old infants.Fei Xu & Elizabeth S. Spelke - 2000 - Cognition 74 (1):1-11.
    Six-month-old infants discriminate between large sets of objects on the basis of numerosity when other extraneous variables are controlled, provided that the sets to be discriminated differ by a large ratio (8 vs. 16 but not 8 vs. 12). The capacities to represent approximate numerosity found in adult animals and humans evidently develop in human infants prior to language and symbolic counting.
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  • Principles of object perception.Elizabeth S. Spelke - 1990 - Cognitive Science 14 (1):29--56.
    Research on human infants has begun to shed light on early-developing processes for segmenting perceptual arrays into objects. Infants appear to perceive objects by analyzing three-dimensional surface arrangements and motions. Their perception does not accord with a general tendency to maximize figural goodness or to attend to nonaccidental geometric relations in visual arrays. Object perception does accord with principles governing the motions of material bodies: Infants divide perceptual arrays into units that move as connected wholes, that move separately from one (...)
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  • After-effects and the reach of perceptual content.Joulia Smortchkova - 2020 - Synthese 198 (8):7871-7890.
    In this paper, I discuss the use of after-effects as a criterion for showing that we can perceive high-level properties. According to this criterion, if a high-level property is susceptible to after-effects, this suggests that the property can be perceived, rather than cognized. The defenders of the criterion claim that, since after-effects are also present for low-level, uncontroversially perceptual properties, we can safely infer that high-level after-effects are perceptual as well. The critics of the criterion, on the other hand, assimilate (...)
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  • Increasing entropy reduces perceived numerosity throughout the lifespan.Chuyan Qu, Nicholas K. DeWind & Elizabeth M. Brannon - 2022 - Cognition 225 (C):105096.
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  • Visual adaptation and the purpose of perception.Ian Phillips & Chaz Firestone - 2023 - Analysis 83 (3):555-575.
    What is the purpose of perception? And how might the answer to this question help distinguish perception from other mental processes? Block’s landmark book, The.
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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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  • Visual indeterminacy and the puzzle of the speckled hen.Jessie Munton - 2021 - Mind and Language 36 (5):643-663.
    I identify three aspects to the puzzle of the speckled hen: A general puzzle, an epistemic puzzle, and a puzzle for the representationalist. These puzzles rely on an underlying “pictorialist” assumption, that we visually perceive general, determinable properties only in virtue of determinate properties or more specific, local features of our visual experience. This assumption is mistaken: Visual perception frequently starts from a position of uncertainty, and is routinely able to acquire information about general properties in the absence of more (...)
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  • From “sense of number” to “sense of magnitude”: The role of continuous magnitudes in numerical cognition.Tali Leibovich, Naama Katzin, Maayan Harel & Avishai Henik - 2017 - Behavioral and Brain Sciences 40.
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  • Retinotopic adaptation reveals distinct categories of causal perception.Jonathan F. Kominsky & Brian J. Scholl - 2020 - Cognition 203 (C):104339.
    We can perceive not only low-level features of events such as color and motion, but also seemingly higher-level properties such as causality. A prototypical example of causal perception is the ”launching effect’: one object moves toward a stationary second object until they are adjacent, at which point A stops and B starts moving in the same direction. Beyond these motions themselves --- and regardless of any higher-level beliefs --- this display induces a vivid visual impression of causality, wherein A is (...)
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  • Recent Issues in High-Level Perception.Grace Helton - 2016 - Philosophy Compass 11 (12):851-862.
    Recently, several theorists have proposed that we can perceive a range of high-level features, including natural kind features (e.g., being a lemur), artifactual features (e.g., being a mandolin), and the emotional features of others (e.g., being surprised). I clarify the claim that we perceive high-level features and suggest one overlooked reason this claim matters: it would dramatically expand the range of actions perception-based theories of action might explain. I then describe the influential phenomenal contrast method of arguing for high-level perception (...)
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  • Number estimation relies on a set of segmented objects.S. L. Franconeri, D. K. Bemis & G. A. Alvarez - 2009 - Cognition 113 (1):1-13.
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  • Adaptation to number operates on perceived rather than physical numerosity.M. Fornaciai, G. M. Cicchini & D. C. Burr - 2016 - Cognition 151 (C):63-67.
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  • Towards a rich view of auditory experience.Elvira Di Bona - 2017 - Philosophical Studies 174 (11):2629-2643.
    In this paper I will argue that the gender properties expressed by human voices are part of auditory phenomenology. I will support this claim by investigating auditory adaptational effects on such properties and contrasting auditory experiences, before and after the adaptational effects take place. In light of this investigation, I will conclude that auditory experience is not limited to low-level properties. Perception appears to be much more informative about the auditory landscape than is commonly thought.
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  • The Waterfall Illusion.Tim Crane - 1988 - Analysis 48 (June):142-47.
    If you stare for a period of time at a scene which contains movement in one direction, and then turn your attention to an object in a scene which contains no movement, this object will appear to move in the opposite direction to that of the original movement. The effect can be easily achieved by attaching a piece of paper with a spiral drawn on it to the spinning turntable of a record player, and then turning the turntable off while (...)
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  • The number sense represents (rational) numbers.Sam Clarke & Jacob Beck - 2021 - Behavioral and Brain Sciences 44:1-57.
    On a now orthodox view, humans and many other animals possess a “number sense,” or approximate number system, that represents number. Recently, this orthodox view has been subject to numerous critiques that question whether the ANS genuinely represents number. We distinguish three lines of critique – the arguments from congruency, confounds, and imprecision – and show that none succeed. We then provide positive reasons to think that the ANS genuinely represents numbers, and not just non-numerical confounds or exotic substitutes for (...)
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  • Border Disputes: Recent Debates along the Perception–Cognition Border.Sam Clarke & Jacob Beck - 2023 - Philosophy Compass 18 (8):e12936.
    The distinction between perception and cognition frames countless debates in philosophy and cognitive science. But what, if anything, does this distinction actually amount to? In this introductory article, we summarize recent work on this question. We first briefly consider the possibility that a perception-cognition border should be eliminated from our scientific ontology, and then introduce and critically examine five positive approaches to marking a perception–cognition border, framed in terms of phenomenology, revisability, modularity, format, and stimulus-dependence.
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  • Evidence for a number sense.David C. Burr - 2017 - Behavioral and Brain Sciences 40.
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  • Spatiotemporal priority as a fundamental principle of object persistence.Jonathan I. Flombaum, Brian J. Scholl & Laurie R. Santos - 2009 - In Bruce M. Hood & Laurie Santos (eds.), The origins of object knowledge. Oxford: Oxford University Press. pp. 135--164.
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  • The Border Between Seeing and Thinking.Ned Block - 2023 - New York, US: OUP Usa.
    This book argues that there is a joint in nature between seeing and thinking, perception, and cognition. Perception is constitutively iconic, nonconceptual, and nonpropositional, whereas cognition does not have these properties constitutively. The book does not appeal to “intuitions,” as is common in philosophy, but to empirical evidence, including experiments in neuroscience and psychology. The book argues that cognition affects perception, i.e., that perception is cognitively penetrable, but that this does not impugn the joint in nature. A key part of (...)
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  • The Unity of Consciousness.Tim Bayne - 2010 - Oxford, GB: Oxford University Press UK.
    Tim Bayne draws on philosophy, psychology, and neuroscience in defence of the claim that consciousness is unified. He develops an account of what it means to say that consciousness is unified, and then applies this account to a variety of cases - drawn from both normal and pathological forms of experience - in which the unity of consciousness is said to break down. He goes on to explore the implications of the unity of consciousness for theories of consciousness, for the (...)
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