Results for 'visual localization'

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  1.  14
    An experimental study concerning visual localization in the horizontal plane.W. L. Sharp - 1934 - Journal of Experimental Psychology 17 (6):787.
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  2.  25
    Magnitude of gravitoinertial force, an independent variable in egocentric visual localization of the horizontal.Earl F. Miller & Ashton Graybiel - 1966 - Journal of Experimental Psychology 71 (3):452.
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  3.  36
    Sound localization with conflicting visual and auditory cues.H. A. Witkin, S. Wapner & T. Leventhal - 1952 - Journal of Experimental Psychology 43 (1):58.
  4.  22
    Early visual deprivation prompts the use of body-centered frames of reference for auditory localization.Tiziana Vercillo, Alessia Tonelli & Monica Gori - 2018 - Cognition 170 (C):263-269.
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  5. Source localization of brain electric field frequency bands during conscious, spontaneous visual imagery and abstract thought.Daniel Lehmann, B. Henggler, M. Koukkan & M. Michel - 1993 - Cognitive Brain Research 1:203-20.
  6. The cerebral localization of visual imagery: Evidence from emission computerized tomography of cerebral blood flow.George Goldenberg, Ivo Podreka & Margarete Steiner - 1990 - In P. J. Hampson, D. F. Marks & Janet Richardson (eds.), Imagery: Current Developments. Routledge.
     
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  7.  46
    The role of head movements and vestibular and visual cues in sound localization.H. Wallach - 1940 - Journal of Experimental Psychology 27 (4):339.
  8.  38
    Frequency of seeing and radial localization of single and multiple visual stimuli.H. W. Leibowitz, Nancy A. Myers & D. A. Grant - 1955 - Journal of Experimental Psychology 50 (6):369.
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  9. A sensorimotor account of vision and visual consciousness-Open Peer Commentary-The sensorimotor contingency of multisensory localization correlates with the conscious percept of spatial unity.G. E. Roberson, M. T. Wallace & J. A. Schirillo - 2001 - Behavioral and Brain Sciences 24 (5):1001-1001.
  10.  17
    Where are emotions in words? Functional localization of valence effects in visual word recognition.Marina Palazova - 2014 - Frontiers in Psychology 5.
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  11.  10
    Notes toward a motor theory of visual egocentric localization.Jan H. Bruell & George W. Albee - 1955 - Psychological Review 62 (5):391-400.
  12.  4
    Localization of beta power decrease as measure for lateralization in pre-surgical language mapping with magnetoencephalography, compared with functional magnetic resonance imaging and validated by Wada test.Kirsten Herfurth, Yuval Harpaz, Julie Roesch, Nadine Mueller, Katrin Walther, Martin Kaltenhaeuser, Elisabeth Pauli, Abraham Goldstein, Hajo Hamer, Michael Buchfelder, Arnd Doerfler, Julian Prell & Stefan Rampp - 2022 - Frontiers in Human Neuroscience 16:996989.
    Objective: Atypical patterns of language lateralization due to early reorganizational processes constitute a challenge in the pre-surgical evaluation of patients with pharmaco-resistant epilepsy. There is no consensus on an optimal analysis method used for the identification of language dominance in MEG. This study examines the concordance between MEG source localization of beta power desynchronization and fMRI with regard to lateralization and localization of expressive and receptive language areas using a visual verb generation task.Methods: Twenty-five patients with pharmaco-resistant (...)
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  13. Localization and globalization in conscious vision.Semir Zeki - 2001 - Annual Review of Neuroscience 24:57-86.
  14.  97
    Reid’s Account of Localization.Lorne Falkenstein - 2000 - Philosophy and Phenomenological Research 61 (2):305-328.
    This paper contrasts three different positions taken by 18th century British scholars on how sensations, particularly sensations of colour and touch, come to be localized in space: Berkeley’s view that we learn to localize ideas of colour by associating certain purely qualitative features of those ideas with ideas of touch and motion, Hume’s view that visual and tangible impressions are originally disposed in space, and Reid’s view that we are innately disposed to refer appearances of colour to the end (...)
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  15.  47
    Visual Working Memory Resources Are Best Characterized as Dynamic, Quantifiable Mnemonic Traces.Bella Z. Veksler, Rachel Boyd, Christopher W. Myers, Glenn Gunzelmann, Hansjörg Neth & Wayne D. Gray - 2017 - Topics in Cognitive Science 9 (1):83-101.
    Visual working memory is a construct hypothesized to store a small amount of accurate perceptual information that can be brought to bear on a task. Much research concerns the construct's capacity and the precision of the information stored. Two prominent theories of VWM representation have emerged: slot-based and continuous-resource mechanisms. Prior modeling work suggests that a continuous resource that varies over trials with variable capacity and a potential to make localization errors best accounts for the empirical data. Questions (...)
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  16.  9
    Humanoid Robot Navigation: Getting Localization Information from Vision.Fabien Moutarde, Arnaud de La Fortelle, Silvère Bonnabel & Emilie Wirbel - 2014 - Journal of Intelligent Systems 23 (2):113-132.
    In this article, we present our work to provide a navigation and localization system on a constrained humanoid platform, the NAO robot, without modifying the robot sensors. First, we tried to implement a simple and light version of classic monocular Simultaneous Localization and Mapping algorithms, while adapting to the CPU and camera quality, which turned out to be insufficient on the platform for the moment. From our work on keypoints tracking, we identified that some keypoints can be still (...)
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  17. Visual Endurance and Auditory Perdurance.Błażej Skrzypulec - 2020 - Erkenntnis 85 (2):467-488.
    Philosophers often state that the persistence of objects in vision is experienced differently than the persistence of sounds in audition. This difference is expressed by using metaphors from the metaphysical endurantism/perdurantism debate. For instance, it is claimed that only sounds are perceived as “temporally extended”. The paper investigates whether it is justified to characterize visually experienced objects and auditorily experienced sounds as different types of entities: endurants and perdurants respectively. This issue is analyzed from the perspective of major specifications of (...)
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  18.  12
    Research on the localization of lotus patterns from the perspective of the philosophy of design.Jinbo Wan - 2022 - Философия И Культура 1:26-35.
    Art design is a visual form and spiritual bearer of culture that ensures universal language for communication between civilizations of the world. Competitiveness of the nation is not only a reflection of its economic power, but what is more important, recognition of its culture. Chinese patterns were used throughout the development of Chinese nation and imparted with spiritual connotations, forming a unique Chinese “culture of ornaments”, which is also an artistic sublimation of Chinese national culture. Lotus pattern is one (...)
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  19.  17
    Processing of tactual and visual point stimuli sequentially presented at high rates.John W. Hill - 1971 - Journal of Experimental Psychology 88 (3):340.
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  20.  12
    Auditory Image: Phenomenological Localization of the Problem.Anastasia Medova - 2023 - HORIZON. Studies in Phenomenology 12 (2):531-553.
    The article aims to concretize the phenomenological account concerning the problem of an auditory image. The author considers auditory imagery as a scientific object and compares different treatments of the problem to fix the potential and advantages of its phenomenological interpretation. In the first stage of the study, the author distinguishes the key characteristics of the image by means the lexical analysis. This is the perceptual (predominantly visual) nature of an image, integrality, and essentiality (image as an idea). In (...)
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  21.  7
    Visual Performance of Psychological Factors in Interior Design Under the Background of Artificial Intelligence.Yunkai Xu & TianTian Yu - 2022 - Frontiers in Psychology 13.
    Sensation is the reflection of the brain on the individual attributes of objective things that directly act on the sense organs. Feeling is the most elementary cognitive process and the simplest psychological phenomenon. Vision is a kind of sense, and sense is produced by objective things acting on the sense organs. But at present, it is rare to analyze interior design exhibition from the perspective of visual psychology, an emerging science, as an interdisciplinary attempt, only in interior design research. (...)
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  22.  30
    No Mental Life after Brain Death: The Argument from the Neural Localization of Mental Functions.Gualtiero Piccinini & Sonya Bahar - 2015 - In Keith Augustine & Michael Martin (eds.), The Myth of an Afterlife: The Case against Life After Death. Rowman & Littlefield. pp. 135-170.
    This paper samples the large body of neuroscientific evidence suggesting that each mental function takes place within specific neural structures. For instance, vision appears to occur in the visual cortex, motor control in the motor cortex, spatial memory in the hippocampus, and cognitive control in the prefrontal cortex. Evidence comes from neuroanatomy, neurophysiology, neurochemistry, brain stimulation, neuroimaging, lesion studies, and behavioral genetics. If mental functions take place within neural structures, mental functions cannot survive brain death. Therefore, there is no (...)
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  23.  16
    Accuracy of visual interpolation between circular scale markers as a function of the separation between markers.M. Leyzorek - 1949 - Journal of Experimental Psychology 39 (2):270.
  24.  13
    A Light Visual Mapping and Navigation Framework for Low-Cost Robots.David Filliat, Emmanuel Battesti & Stephane Bazeille - 2015 - Journal of Intelligent Systems 24 (4):505-524.
    We address the problems of localization, mapping, and guidance for robots with limited computational resources by combining vision with the metrical information given by the robot odometry. We propose in this article a novel light and robust topometric simultaneous localization and mapping framework using appearance-based visual loop-closure detection enhanced with the odometry. The main advantage of this combination is that the odometry makes the loop-closure detection more accurate and reactive, while the loop-closure detection enables the long-term use (...)
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  25. Localisation of "unseen" visual stimuli: Blindsight in normal observers?Heinz Schärli, P. Brugger, M. Regard, C. Mohr & Th Landis - 2003 - Swiss Journal of Psychology - Schweizerische Zeitschrift Für Psychologie - Revue Suisse de Psychologie 62 (3):159-165.
     
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  26.  47
    Explicit mechanisms do not account for implicit localization and identification of change: An empirical reply to Mitroff et al (2000).Diego Fernandez-Duque & Ian Thornton - 2003 - Journal of Experimental Psychology 29 (5).
    Several recent findings support the notion that changes in the environment can be implicitly represented by the visual system. S. R. Mitroff, D. J. Simons, and S. L. Franconeri (2002) challenged this view and proposed alternative interpretations based on explicit strategies. Across 4 experiments, the current study finds no empirical support for such alternative proposals. Experiment 1 shows that subjects do not rely on unchanged items when locating an unaware change. Experiments 2 and 3 show that unaware changes affect (...)
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  27.  5
    Deep CNN and Deep GAN in Computational Visual Perception-Driven Image Analysis.R. Nandhini Abirami, P. M. Durai Raj Vincent, Kathiravan Srinivasan, Usman Tariq & Chuan-Yu Chang - 2021 - Complexity 2021:1-30.
    Computational visual perception, also known as computer vision, is a field of artificial intelligence that enables computers to process digital images and videos in a similar way as biological vision does. It involves methods to be developed to replicate the capabilities of biological vision. The computer vision’s goal is to surpass the capabilities of biological vision in extracting useful information from visual data. The massive data generated today is one of the driving factors for the tremendous growth of (...)
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  28.  33
    Lithium-Ion Battery Capacity Estimation: A Method Based on Visual Cognition.Yujie Cheng, Laifa Tao & Chao Yang - 2017 - Complexity:1-13.
    This study introduces visual cognition into Lithium-ion battery capacity estimation. The proposed method consists of four steps. First, the acquired charging current or discharge voltage data in each cycle are arranged to form a two-dimensional image. Second, the generated image is decomposed into multiple spatial-frequency channels with a set of orientation subbands by using non-subsampled contourlet transform. NSCT imitates the multichannel characteristic of the human visual system that provides multiresolution, localization, directionality, and shift invariance. Third, several time-domain (...)
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  29. Spatial localisation: Interpolation of first-order and second-order visual structure.P. McGraw, D. R. Badcock, J. McArthur & R. I. Bridle - 2004 - In Robert Schwartz (ed.), Perception. Malden Ma: Blackwell. pp. 175-175.
     
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  30.  6
    Amnesia I: Neuroanatomicand clinical issues.Localization Of Memory - 2000 - In Martha J. Farah & Todd E. Feinberg (eds.), Patient-Based Approaches to Cognitive Neuroscience. MIT Press.
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  31. Imaging the Brain, Picturing the Mind: Visual Representation in the Practice of Science.Pauline Sargent - 1997 - Dissertation, University of Minnesota
    Philosophy of science has characterized scientific knowledge as fundamentally propositional . This account leads to an inability to recognize and articulate the significant role of non-propositional, visual representation in the practice of science. Toward the development of a more productive framework for understanding visual representation in science, the present study critiques the standard philosophical view, reviews the literature on visual representation in science, and examines the scientific case of neuroscience. Specifically, the study looks at current research known (...)
     
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  32. Conscious visual perceptual awareness vs non-conscious visual spatial localisation examined with normal subjects using possible analogues of blindsight and neglect.R. E. Graves & B. S. Jones - 1992 - Cognitive Neuropsychology 9:487-508.
  33.  23
    Search via Recursive Rejection (SRR): Evidence with Normal and Neurological Subjects.Visual Grouping - 1998 - In Richard D. Wright (ed.), Visual Attention. Oxford University Press. pp. 8--389.
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  34.  46
    Should we agree to disagree? Pragmatism and peer disagreement.Susan Dieleman & Steven W. Visual Analogies and Arguments - unknown
    In this paper, I take up the conciliatory-steadfast debate occurring within social epistemology in regards to the phenomenon of peer disagreement. I will argue, because the conciliatory perspective al-lows us to understand argumentation pragmatically—as a method of problem-solving within a community rather than as a method for obtaining the truth—that in most cases, we should not simply agree to disagree.
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  35.  17
    Does Facial Identity and Facial Expression Recognition Involve.Separate Visual Routes - 2011 - In Andy Calder, Gillian Rhodes, Mark Johnson & Jim Haxby (eds.), Oxford Handbook of Face Perception. Oxford University Press.
  36. Systemic Localisation of the Subject in Psychological Research: Structural and Ontological Visualisation.Vitalii Shymko - 2016 - Bulletin of Kiev Taras Shevchenko University (Military-Special Sciences) 34 (1):47-51.
    The article proposes systematisation and development of the discourse of the East European methodological traditions regarding application of the systematic approach as a way of subject localisation in psychological research. In particular, the author’s version of systematic localisation of psychological research subjects by means of structural and ontological visualisations has been developed. The procedure proposed for systematic localisation of the researched subject includes four subsequent stages: 1) fixation of the borders and structure of the ontological field which is being studied; (...)
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  37. Berkeley on Situation and Inversion.Lorne Falkenstein - 2015 - In Patricia Easton (ed.), The Battle of the Gods and Giands Redux: Papers Presented to Thomas M. Lennon. Leiden: Brill. pp. 300-23.
    Over _Principles_ 42-43, Berkeley worried that we might "in truth" see things existing at a distance from us, in which case they could not plausibly be supposed to exist independently of being perceived. He went on to say that he had developed his new theory of vision to address this worry. This paper argues that the worry is serious and that Berkeley was right to think that it would take nothing less than a theory of vision to address it. The (...)
     
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  38.  17
    Latency of locating lights and sounds.W. E. Simpson - 1972 - Journal of Experimental Psychology 93 (1):169.
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  39.  91
    Spatial aspects of bodily self-consciousness.Bigna Lenggenhager, Michael Mouthon & Olaf Blanke - 2009 - Consciousness and Cognition 18 (1):110-117.
    Visual, somatosensory, and perspectival cues normally provide congruent information about where the self is experienced. Separating those cues by virtual reality techniques, recent studies found that self-location was systematically biased to where a visual–tactile event was seen. Here we developed a novel, repeatable and implicit measure of self-location to compare and extend previous protocols. We investigated illusory self-location and associated phenomenological aspects in a lying body position that facilitates clinically observed abnormal self-location . The results confirm that the (...)
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  40.  23
    Perceptual load influences auditory space perception in the ventriloquist aftereffect.Ranmalee Eramudugolla, Marc R. Kamke, Salvador Soto-Faraco & Jason B. Mattingley - 2011 - Cognition 118 (1):62-74.
    A period of exposure to trains of simultaneous but spatially offset auditory and visual stimuli can induce a temporary shift in the perception of sound location. This phenomenon, known as the 'ventriloquist aftereffect', reflects a realignment of auditory and visual spatial representations such that they approach perceptual alignment despite their physical spatial discordance. Such dynamic changes to sensory representations are likely to underlie the brain's ability to accommodate inter-sensory discordance produced by sensory errors (particularly in sound localization) (...)
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  41.  11
    An enactive approach to fictive motion.Aurélie Barnabé - 2021 - Corela. Cognition, Représentation, Langage 19.
    The linguistic path has been explored through several works. The present paper investigates a path underlain by the fictive motion phenomenon: The plateau goes east along the river. This itinerary, here called the ‘localization path’ discloses the FM of an item along a trajectory to highlight its immobility in space. This linguistic path is here inspected through a corpus-based analysis displaying the verbs come and go. If experiencing language is first vocal, this process also implies kinetic, non-verbal modalities. The (...)
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  42.  41
    The representation of egocentric space in the posterior parietal cortex.J. F. Stein - 1992 - Behavioral and Brain Sciences 15 (4):691-700.
    The posterior parietal cortex (PPC) is the most likely site where egocentric spatial relationships are represented in the brain. PPC cells receive visual, auditory, somaesthetic, and vestibular sensory inputs; oculomotor, head, limb, and body motor signals; and strong motivational projections from the limbic system. Their discharge increases not only when an animal moves towards a sensory target, but also when it directs its attention to it. PPC lesions have the opposite effect: sensory inattention and neglect. The PPC does not (...)
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  43. Akinetopsia, achromatopsia and blindsight: Recent studies on perception without awareness.Lucia M. Vaina - 1995 - Synthese 105 (3):253-271.
    The neural substrate of early visual processing in the macaque is used as a framework to discuss recent progress towards a precise anatomical localization and understanding of the functional implications of the syndromes of blindsight, achromatopsia and akinetopsia in humans. This review is mainly concerned with how these syndromes support the principles of organization of the visual system into parallel pathways and the functional hierarchy of visual mechanisms.
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  44.  97
    Why Red Doesn't Sound Like a Bell: Understanding the Feel of Consciousness.J. K. O'Regan - 2011 - Oxford University Press.
    The catastrophe of the eye -- A new view of seeing -- Applying the new view of seeing -- The illusion of seeing everything -- Some contentious points -- Towards consciousness -- Types of consciousness -- Phenomenal consciousness, raw feel, and why they're hard -- Squeeze a sponge, drive a porsche : a sensorimotor account of feel -- Consciously experiencing a feel -- The sensorimotor approach to color -- Sensory substitution -- The localization of touch -- The phenomenality plot (...)
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  45.  50
    Neuroethology of releasing mechanisms: Prey-catching in toads.Jörg-Peter Ewert - 1987 - Behavioral and Brain Sciences 10 (3):337-368.
    Abstract“Sign stimuli” elicit specific patterns of behavior when an organism's motivation is appropriate. In the toad, visually released prey-catching involves orienting toward the prey, approaching, fixating, and snapping. For these action patterns to be selected and released, the prey must be recognized and localized in space. Toads discriminate prey from nonprey by certain spatiotemporal stimulus features. The stimulus-response relations are mediated by innate releasing mechanisms (RMs) with recognition properties partly modifiable by experience. Striato-pretecto-tectal connectivity determines the RM's recognition and (...) properties, whereas medialpallio-thalamo-tectal circuitry makes the system sensitive to changes in internal state and to prior history of exposure to stimuli. RMs encode the diverse stimulus conditions referring to the same prey object through different combinations of “specialized” tectal neurons, involving cells selectively tuned to prey features. The prey-selective neurons express the outcome of information processing in functional units consisting of interconnected cells. Excitatory and inhibitory interactions among feature-sensitive tectal and pretectal neurons specify the perceptual operations involved in distinguishing the prey from its background, selecting its features, and discriminating it from predators. Other connections indicate stimulus location. The results of these analyses are transmitted by specialized neurons projecting from the tectum to bulbar/spinal motor systems, providing a sensorimotor interface. Specific combinations of such projective neurons – mediating feature- and space-related messages – form “command releasing systems” that activate corresponding motor pattern generators for appropriate prey-catching action patterns. (shrink)
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  46. Bodily Action and Distal Attribution in Sensory Substitution.Robert Briscoe - 2019 - In Fiona Macpherson (ed.), Sensory Substitution and Augmentation. Oxford: Proceedings of the British Academy. pp. 173-186.
    According to proponents of the sensorimotor contingency theory of perception (Hurley & Noë 2003, Noë 2004, O’Regan 2011), active control of camera movement is necessary for the emergence of distal attribution in tactile-visual sensory substitution (TVSS) because it enables the subject to acquire knowledge of the way stimulation in the substituting modality varies as a function of self-initiated, bodily action. This chapter, by contrast, approaches distal attribution as a solution to a causal inference problem faced by the subject’s perceptual (...)
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  47.  96
    The P3 component of the ERP reflects conscious perception, not confidence.Moti Salti, Yair Bar-Haim & Dominique Lamy - 2012 - Consciousness and Cognition 21 (2):961-968.
    Consistent with numerous electrophysiological studies, we recently reported that conscious perception is associated with a widely distributed modulation of the P3 component . We also showed that correct objective performance in the absence of subjective awareness is associated with a spatially more restricted modulation of the P3. The relatively late occurrence of the P3 along with lack of control for post-perceptual processes suggests that this component might reflect processes related to stimulus evaluation or confidence rather than to visual awareness (...)
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  48.  28
    Sonic Environments as Systems of Places: A Critical Reading of Husserl’s Thing and Space.Martin Nitsche - 2021 - Open Philosophy 4 (1):136-148.
    This article offers a thorough and critical reading of Husserl’s Thing and Space. This reading is principally motivated by the effort to methodologically design a phenomenological–topological approach to the research of lived sonic environments. In this book, Husserl lays foundations of phenomenological topology by understanding perceptions as places and defining, consequently, the space as a system of places. The critical reading starts with pointing out the ambiguity of location in Thing and Space, which consists mainly in the insufficient implementation of (...)
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  49.  31
    Internal Perception: The Role of Bodily Information in Concepts and Word Mastery.Luigi Pastore & Sara Dellantonio - 2017 - Berlin, Heidelberg: Springer Berlin Heidelberg. Edited by Luigi Pastore.
    Chapter 1 First Person Access to Mental States. Mind Science and Subjective Qualities -/- Abstract. The philosophy of mind as we know it today starts with Ryle. What defines and at the same time differentiates it from the previous tradition of study on mind is the persuasion that any rigorous approach to mental phenomena must conform to the criteria of scientificity applied by the natural sciences, i.e. its investigations and results must be intersubjectively and publicly controllable. In Ryle’s view, philosophy (...)
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  50.  46
    Neuropsychological inference with an interactive brain: A critique of the “locality” assumption.Martha J. Farah - 1994 - Behavioral and Brain Sciences 17 (1):43-61.
    When cognitive neuropsychologists make inferences about the functional architecture of the normal mind from selective cognitive impairments they generally assume that the effects of brain damage are local, that is, that the nondamaged components of the architecture continue to function as they did before the damage. This assumption follows from the view that the components of the functional architecture are modular, in the sense of being informationally encapsulated. In this target article it is argued that this “locality” assumption is probably (...)
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