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  1. Perception needs modular stimulus-control.Anders Nes - 2023 - Synthese 201 (6):1-30.
    Perceptual processes differ from cognitive, this paper argues, in functioning to be causally controlled by proximal stimuli, and being modular, at least in a modest sense that excludes their being isotropic in Jerry Fodor's sense. This claim agrees with such theorists as Jacob Beck and Ben Phillips that a function of stimulus-control is needed for perceptual status. In support of this necessity claim, I argue, inter alia, that E.J. Green's recent architectural account misclassifies processes deploying knowledge of grammar as perceptual. (...)
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  • Perceiving properties versus perceiving objects.Boyd Millar - 2022 - Analytic Philosophy 63 (2):99-117.
    The fact that you see some particular object seems to be due to the causal relation between your visual experience and that object, rather than to your experiences’ phenomenal character. On the one hand, whenever some phenomenal element of your experience stands in the right sort of causal relation to some object, your experience presents that object (your experience’s phenomenology doesn’t need to match that object). On the other hand, you can’t have a perceptual experience that presents some object unless (...)
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  • Learning to see.Boyd Millar - 2019 - Mind and Language 35 (5):601-620.
    The reports of individuals who have had their vision restored after a long period of blindness suggest that, immediately after regaining their vision, such individuals are not able to recognize shapes by vision alone. It is often assumed that the empirical literature on sight restoration tells us something important about the relationship between visual and tactile representations of shape. However, I maintain that, immediately after having their sight restored, at least some newly sighted individuals undergo visual experiences that instantiate basic (...)
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  • Brain-Machine Interfaces to Assist the Blind.Maurice Ptito, Maxime Bleau, Ismaël Djerourou, Samuel Paré, Fabien C. Schneider & Daniel-Robert Chebat - 2021 - Frontiers in Human Neuroscience 15:638887.
    The loss or absence of vision is probably one of the most incapacitating events that can befall a human being. The importance of vision for humans is also reflected in brain anatomy as approximately one third of the human brain is devoted to vision. It is therefore unsurprising that throughout history many attempts have been undertaken to develop devices aiming at substituting for a missing visual capacity. In this review, we present two concepts that have been prevalent over the last (...)
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  • Sensory Substitution is Substitution.Jean-Rémy Martin & François Le Corre - 2015 - Mind and Language 30 (2):209-233.
    Sensory substitution devices make use of one substituting modality to get access to environmental information normally accessed through another modality . Based on behavioural and neuroimaging data, some authors have claimed that using a vision-substituting device results in visual perception. Reviewing these data, we contend that this claim is untenable. We argue that the kind of information processed by a SSD is metamodal, so that it can be accessed through any sensory modality and that the phenomenology associated with the use (...)
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  • Perception With Compensatory Devices: From Sensory Substitution to Sensorimotor Extension.Malika Auvray & Erik Myin - 2009 - Cognitive Science 33 (6):1036–1058.
    Sensory substitution devices provide through an unusual sensory modality (the substituting modality, e.g., audition) access to features of the world that are normally accessed through another sensory modality (the substituted modality, e.g., vision). In this article, we address the question of which sensory modality the acquired perception belongs to. We have recourse to the four traditional criteria that have been used to define sensory modalities: sensory organ, stimuli, properties, and qualitative experience (Grice, 1962), to which we have added the criteria (...)
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