Results for 'Extrastriate cortex'

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  1. Binocular rivalry and visual awareness in human extrastriate cortex.Frank Tong, K. Nakayama, J. T. Vaughan & Nancy Kanwisher - 1998 - Neuron 21:753-59.
  2.  59
    Extrastriate visual cortex reorganizes despite sequential bilateral occipital stroke: implications for vision recovery.Amy Brodtmann, Aina Puce, David Darby & Geoffrey Donnan - 2015 - Frontiers in Human Neuroscience 9.
  3.  98
    Striate cortex (v1) activity Gates awareness of motion.Juha Silvanto, Alan Cowey, Nilli Lavie & Vincent Walsh - 2005 - Nature Neuroscience 8 (2):143-144.
    A key question in understanding visual awareness is whether any single cortical area is indispensable. In a transcranial magnetic stimulation experiment, we show that observers' awareness of activity in extrastriate area VS depends on the amount of activity in striate cortex (Vl). From the timing and pattern of effects, we infer that back-projections from extrastriate cortex influence information content in Vl, but it is Vl that determines whether that information reaches awareness.
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  4.  23
    Extrastriate activity reflects the absence of local retinal input.Poutasi W. B. Urale, Lydia Zhu, Roberta Gough, Derek Arnold & Dietrich Samuel Schwarzkopf - 2023 - Consciousness and Cognition 114 (C):103566.
    The physiological blind spot corresponds to the optic disc where the retina contains no light-detecting photoreceptor cells. Our perception seemingly fills in this gap in input. Here we suggest that rather than an active process, such perceptual filling-in could instead be a consequence of the integration of visual inputs at higher stages of processing discounting the local absence of retinal input. Using functional brain imaging, we resolved the retinotopic representation of the physiological blind spot in early human visual cortex (...)
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  5.  72
    Mechanisms of Visual Perceptual Learning in Macaque Visual Cortex.Rufin Vogels - 2010 - Topics in Cognitive Science 2 (2):239-250.
    The neural mechanisms underlying behavioral improvement in the detection or discrimination of visual stimuli following learning are still ill understood. Studies in nonhuman primates have shown relatively small and, across studies, variable effects of fine discrimination learning in primary visual cortex when tested outside the context of the learned task. At later stages, such as extrastriate area V4, extensive practice in fine discrimination produces more consistent effects upon responses and neural tuning. In V1 and V4, the effects of (...)
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  6.  14
    Manipulating perceptual decisions by microstimulation of extrastriate visual cortex.William T. Newsome, C. Daniel Salzman, Chieko M. Murasugi & Kenneth H. Britten - 1991 - In Andrei Gorea (ed.), Representations of Vision: Trends and Tacit Assumptions in Vision Research. Cambridge University Press.
  7. Phase Locking of Single Neuron Activity to Theta Oscillations during Working Memory in Monkey Extrastriate Visual Cortex.Han Lee & Gregory V. Simpson - 2005 - Neuron 45:147-156.
    activity” has been considered to play a major role in the short-term maintenance of memories. Many studies since then have provided support for this view and greatly advanced our knowledge of the effects of stimulus type and modality on delay activity and its temporal dynamics. In humans, working memory has also been a subject of intense investigation using scalp and intracranial electroencephalography as well as magnetoencephalography, which provide estimates of local population activity. The published findings include reports of systematic changes (...)
     
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  8.  44
    Sustained extrastriate cortical activation without visual awareness revealed by fMRI studies in hemianopic patients.Rainer Goebel, Lars Muckli, Friedhelm E. Zanella, Wolf Singer & Petra Stoerig - 2001 - Vision Research 41 (10):1459-1474.
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  9.  57
    Transcranial magnetic stimulation of early visual cortex interferes with subjective visual awareness and objective forced-choice performance.Mika Koivisto, Henry Railo & Niina Salminen-Vaparanta - 2011 - Consciousness and Cognition 20 (2):288-298.
    In order to study whether there exist a period of activity in the human early visual cortex that contributes exclusively to visual awareness, we applied transcranial magnetic stimulation over the early visual cortex and measured subjective visual awareness during visual forced-choice symbol or orientation discrimination tasks. TMS produced one dip in awareness 60–120 ms after stimulus onset, while forced-choice orientation discrimination was suppressed between 60 and 90 ms and symbol discrimination between 60 and 120 ms. Thus, a time (...)
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  10.  61
    Doing it . . . wild? On the role of the cerebral cortex in human sexual activity.Janniko R. Georgiadis - 2012 - Socioaffective Neuroscience and Psychology 2.
    Background: We like to think about sexual activity as something fixed, basic and primal. However, this does not seem to fully capture reality. Even when we relish sex, we may be capable of mentalizing, talking, voluntarily postponing orgasm, and much more. This might indicate that the central control mechanisms of sexual activity are quite flexible and susceptible to learning mechanisms, and that cortical brain areas play a critical part. Objective: This study aimed to identify those cortical areas and mechanisms most (...)
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  11.  68
    Visually Driven Activation in Macaque Areas V2 and V3 without Input from the Primary Visual Cortex.Michael C. Schmid & Mark A. Augath - unknown
    Creating focal lesions in primary visual cortex (V1) provides an opportunity to study the role of extra-geniculo-striate pathways for activating extrastriate visual cortex. Previous studies have shown that more than 95% of neurons in macaque area V2 and V3 stop firing after reversibly cooling V1 [1,2,3]. However, no studies on long term recovery in areas V2, V3 following permanent V1 lesions have been reported in the macaque. Here we use macaque fMRI to study area V2, V3 activity (...)
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  12.  16
    Visually driven functional MRI techniques for characterization of optic neuropathy.Sujeevini Sujanthan, Amir Shmuel & Janine Dale Mendola - 2022 - Frontiers in Human Neuroscience 16:943603.
    Optic neuropathies are conditions that cause disease to the optic nerve, and can result in loss of visual acuity and/or visual field defects. An improved understanding of how these conditions affect the entire visual system is warranted, to better predict and/or restore the visual loss. In this article, we review visually-driven functional magnetic resonance imaging (fMRI) studies of optic neuropathies, including glaucoma and optic neuritis (ON); we also discuss traumatic optic neuropathy (TON). Optic neuropathy-related vision loss results in fMRI deficit (...)
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  13. Conscious awareness of retrieval: An exploration of the cortical connectivity.Rajendra D. Badgaiyan - 2005 - International Journal of Psychophysiology 55 (2):257-262.
    A review of the patterns of brain activation observed in implicit and explicit memory tasks indicates that during conscious retrieval studied items are first retrieved nonconsciously and are retained in a buffer at the extrastriate cortex. It also indicates that the awareness of the retrieved item is made possible by the activation of a reentrant signaling loop between the extrastriate and left prefrontal cortices.
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  14.  46
    Neural correlates of subliminal and supraliminal letter processing—An event-related fMRI study.A. Heinzel, H. Hautzel, T. D. Poeppel, F. Boers, M. Beu & H. -W. Mueller - 2008 - Consciousness and Cognition 17 (3):699-713.
    One problem of interpreting research on subconscious processing is the possibility that participants are weakly conscious of the stimuli. Here, we compared the fMRI BOLD response in healthy adults to clearly visible single letters with the response to letters presented in the absence of any behavioural evidence of visibility . No letter catch trials served as a control condition. Forced-choice responses did not differ from chance when letter-to-background contrast was low, whereas they were almost 100% correct when contrast was high. (...)
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  15.  69
    Four frames suffice: A provisional model of vision and space.Jerome A. Feldman - 1985 - Behavioral and Brain Sciences 8 (2):265-289.
    This paper presents a general computational treatment of how mammals are able to deal with visual objects and environments. The model tries to cover the entire range from behavior and phenomenological experience to detailed neural encodings in crude but computationally plausible reductive steps. The problems addressed include perceptual constancies, eye movements and the stable visual world, object descriptions, perceptual generalizations, and the representation of extrapersonal space.The entire development is based on an action-oriented notion of perception. The observer is assumed to (...)
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  16.  52
    Spontaneous and Training‐Induced Visual Learning in Cortical Blindness: Characteristics and Neural Substrates.Tim Martin & Krystel R. Huxlin - 2010 - Topics in Cognitive Science 2 (2):306-319.
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  17. Color experience in blindsight?Berit Brogaard - 2011 - Philosophical Psychology 24 (6):767-786.
    Blindsight, the ability to blindly discriminate wavelength and other aspects of stimuli in a blind field, sometimes occurs in people with lesions to striate (V1) cortex. There is currently no consensus on whether qualitative color information of the sort that is normally computed by double opponent cells in striate cortex is indeed computed in blindsight but doesn’t reach awareness, perhaps owing to abnormal neuron responsiveness in striate or extra-striate cortical areas, or is not computed at all. The existence (...)
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  18. The distributed human neural system for face perception.Elizabeth A. Hoffman, M. Ida Gobbini & James V. Haxby - 2000 - Trends in Cognitive Sciences 4 (6):223-233.
    Face perception, perhaps the most highly developed visual skill in humans, is mediated by a distributed neural system in humans that is comprised of multiple, bilateral regions. We propose a model for the organization of this system that emphasizes a distinction between the representation of invariant and changeable aspects of faces. The representation of invariant aspects of faces underlies the recognition of individuals, whereas the representation of changeable aspects of faces, such as eye gaze, expression, and lip movement, underlies the (...)
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  19. By.Christof Koch - unknown
    What is the relationship between a visual percept and the underlying neuronal activity in parts of the brain? This manifesto reviews the theoretical framework of Crick and Kochfor answering these questions based on the neuroanatomy and physiology of mammalian cortex and associated subcortical structures. This evidence suggests that primates are not directly aware of neural activity in primary visual cortex, although they may be aware of such activity in extrastriate cortical areas. Psychophysical evidence in humans supporting this (...)
     
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  20.  42
    The left inferior parietal lobe represents stored hand-postures for object use and action prediction.Michiel van Elk - 2014 - Frontiers in Psychology 5:89785.
    Action semantics enables us to plan actions with objects and to predict others' object-directed actions as well. Previous studies have suggested that action semantics are represented in a fronto-parietal action network that has also been implicated to play a role in action observation. In the present fMRI study it was investigated how activity within this network changes as a function of the predictability of an action involving multiple objects and requiring the use of action semantics. Participants performed an action prediction (...)
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  21.  38
    Précis of Images of Mind.Michael I. Posner & Marcus E. Raichle - 1995 - Behavioral and Brain Sciences 18 (2):327-339.
    This volume explores how functional brain imaging techniques like positron emission tomography have influenced cognitive studies. The first chapter outlines efforts to relate human thought and cognition in terms of great books from the late 1800s through the present. Chapter 2 describes mental operations as they are measured in cognitive science studies. It develops a framework for relating mental operations to activity in nerve cells. In Chapter 3, the PET method is reviewed and studies are presented that use PET to (...)
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  22.  33
    Sequential resolution of fragmented visual percepts: Experimental investigation of a subject’s perceptual experience after a right medial temporal stroke.Rodger A. Weddell - 2007 - Consciousness and Cognition 16 (2):551-576.
    This report concerns the fragmented visual percepts in a woman, TR, following a right entorhinal–perirhinal infarct. In a previous report, Weddell [Weddell, R. A. . A visual disorder producing highly selective deletion of recurring letters. Cortex, 41, 471–485] linked TR’s highly selective tendency to delete recurrent letters with her fragmented percepts. The conflation of same-identity form elements was attributed to anterior extrastriate damage, which reduced the amount of information sustainable in fully resolved visual percepts, and the present experimental (...)
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  23.  73
    Perception and action in depth.D. P. Carey, H. Chris Dijkerman & A. David Milner - 1998 - Consciousness and Cognition 7 (3):438-453.
    Little is known about distance processing in patients with posterior brain damage. Although many investigators have claimed that distance estimates are normal or abnormal in some of these patients, many of these observations were made informally and the examiners often asked for relative, and not absolute, distance estimates. The present investigation served two purposes. First, we wanted to contrast the use of distance information in peripersonal space for perceptual report as opposed to visuomotor control in our visual form agnosic patient, (...)
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  24.  18
    The Structured Event Complex and the Human.Prefrontal Cortex - 2002 - In Donald T. Stuss & Robert T. Knight (eds.), Principles of Frontal Lobe Function. Oxford University Press. pp. 292.
  25. Richard A. Andersen David zipser.Parietal Cortex - 1990 - In J. McGaugh, Jerry Weinberger & G. Lynch (eds.), Brain Organization and Memory: Cells, Systems, and Circuits. Guilford Press. pp. 271.
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  26.  12
    Perirhinal cortex area 35 controls the functional link between the perirhinal and entorhinal‐hippocampal circuitry.Riichi Kajiwara & Takashi Tominaga - 2021 - Bioessays 43 (3):2000084.
    In several experimental conditions, neuronal excitation at the perirhinal cortex (PC) does not propagate to the entorhinal cortex (EC) due to a “wall” of inhibition, which may help to create functional coupling and un‐coupling of the PC and EC in the medial temporal lobe. However, little is known regarding the coupling control process. Herein, we propose that the deep layer of area 35 in the PC plays a pivotal role in opening the gate for coupling, thus allowing the (...)
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  27. Consciousness without a cerbral cortex: A challenge for neuroscience and medicine.Bjorn Merker - 2007 - Behavioral and Brain Sciences 30 (1):63-81.
    A broad range of evidence regarding the functional organization of the vertebrate brain – spanning from comparative neurology to experimental psychology and neurophysiology to clinical data – is reviewed for its bearing on conceptions of the neural organization of consciousness. A novel principle relating target selection, action selection, and motivation to one another, as a means to optimize integration for action in real time, is introduced. With its help, the principal macrosystems of the vertebrate brain can be seen to form (...)
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  28.  35
    Damage to ventromedial prefrontal cortex impairs judgment of harmful intent.Liane Young, Antoine Bechara, Daniel Tranel, Hanna Damasio, Marc Hauser & Antonio Damasio - 2010 - Neuron 65 (6):845-851.
    Moral judgments, whether delivered in ordinary experience or in the courtroom, depend on our ability to infer intentions. We forgive unintentional or accidental harms and condemn failed attempts to harm. Prior work demonstrates that patients with damage to the ventromedial prefrontal cortex deliver abnormal judgments in response to moral dilemmas and that these patients are especially impaired in triggering emotional responses to inferred or abstract events, as opposed to real or actual outcomes. We therefore predicted that VMPC patients would (...)
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  29. Does the prefrontal cortex play an essential role in consciousness? Insights from intracranial electrical stimulation of the human brain.Omri Raccah, Ned Block & Kieran C. R. Fox - 2021 - Journal of Neuroscience 1 (41):2076-2087.
    A central debate in philosophy and neuroscience pertains to whether PFC activity plays an essential role in the neural basis of consciousness. Neuroimaging and electrophysiology studies have revealed that the contents of conscious perceptual experience can be successfully decoded from PFC activity, but these findings might be confounded by post- perceptual cognitive processes, such as thinking, reasoning, and decision-making, that are not necessary for con- sciousness. To clarify the involvement of the PFC in consciousness, we present a synthesis of research (...)
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  30.  38
    Temporal Cortex Activation to Audiovisual Speech in Normal-Hearing and Cochlear Implant Users Measured with Functional Near-Infrared Spectroscopy.Luuk P. H. van de Rijt, A. John van Opstal, Emmanuel A. M. Mylanus, Louise V. Straatman, Hai Yin Hu, Ad F. M. Snik & Marc M. van Wanrooij - 2016 - Frontiers in Human Neuroscience 10:173204.
    Background Speech understanding may rely not only on auditory, but also on visual information. Non-invasive functional neuroimaging techniques can expose the neural processes underlying the integration of multisensory processes required for speech understanding in humans. Nevertheless, noise (from fMRI) limits the usefulness in auditory experiments, and electromagnetic artefacts caused by electronic implants worn by subjects can severely distort the scans (EEG, fMRI). Therefore, we assessed audio-visual activation of temporal cortex with a silent, optical neuroimaging technique: functional near-infrared spectroscopy (fNIRS). (...)
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  31.  39
    Sensory cortex and the mind-brain problem.Roland Puccetti & Robert W. Dykes - 1978 - Behavioral and Brain Sciences 1 (3):337-344.
  32.  92
    Cortex functional connectivity as a neurophysiological correlate of hypnosis: An EEG case study.Andrew A. Fingelkurts, Alexander A. Fingelkurts, Sakari Kallio & Antti Revonsuo - 2007 - Neuropsychologia 45 (7):14521462.
    Cortex functional connectivity associated with hypnosis was investigated in a single highly hypnotizable subject in a normal baseline condition and under neutral hypnosis during two sessions separated by a year. After the hypnotic induction, but without further suggestions as compared to the baseline condition, all studied parameters of local and remote functional connectivity were significantly changed. The significant differences between hypnosis and the baseline condition were observable (to different extent) in five studied independent frequency bands (delta, theta, alpha, beta, (...)
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  33.  37
    Perirhinal cortex: Lost in space?David K. Bilkey - 1999 - Behavioral and Brain Sciences 22 (3):444-445.
    Aggleton & Brown argue that the function of the hippocampus and perirhinal cortex can be dissociated along a spatial/nonspatial dimension. They further suggest that this division corresponds to a distinction between episodic and recognition memory. An analysis of the data, however, fails to support the underlying dissociation.
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  34. Cortex and mind.Percival Bailey - 1962 - In Jordan M. Scher (ed.), Theories Of The Mind. New York,: Free Press Of Glencoe.
  35.  21
    Prefrontal Cortex and Amygdala Subregion Morphology Are Associated With Obesity and Dietary Self-control in Children and Adolescents.Mimi S. Kim, Shan Luo, Anisa Azad, Claire E. Campbell, Kimberly Felix, Ryan P. Cabeen, Britni R. Belcher, Robert Kim, Monica Serrano-Gonzalez & Megan M. Herting - 2020 - Frontiers in Human Neuroscience 14.
    A prefrontal control system that is less mature than the limbic reward system in adolescence is thought to impede self-regulatory abilities, which could contribute to poor dietary choices and obesity. We, therefore, aimed to examine whether structural morphology of the prefrontal cortex and the amygdala are associated with dietary decisions and obesity in children and adolescents. Seventy-one individuals between the ages of 8–22 years participated in this study; each participant completed a computer-based food choice task and a T1- and (...)
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  36. Damage to the prefrontal cortex increases utilitarian moral judgements.Michael Koenigs, Liane Young, Ralph Adolphs, Daniel Tranel, Fiery Cushman, Marc Hauser & Antonio Damasio - 2007 - Nature 446 (7138):908-911.
    The psychological and neurobiological processes underlying moral judgement have been the focus of many recent empirical studies1–11. Of central interest is whether emotions play a causal role in moral judgement, and, in parallel, how emotion-related areas of the brain contribute to moral judgement. Here we show that six patients with focal bilateral damage to the ventromedial prefrontal cortex (VMPC), a brain region necessary for the normal generation of emotions and, in particular, social emotions12–14, produce an abnor- mally ‘utilitarian’ pattern (...)
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  37.  62
    Pain, cortex, and consciousness.Marshall Devor - 2007 - Behavioral and Brain Sciences 30 (1):89-90.
    Painful stimuli evoke functional activations in the cortex, but electrical stimulation of these areas does not evoke pain sensation, nor does widespread epileptic discharge. Likewise, cortical lesions do not eliminate pain sensation. Although the cortex may contribute to pain modulation, the planning of escape responses, and learning, the network activity that constitutes the actual experience of pain probably occurs subcortically. (Published Online May 1 2007).
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  38.  54
    The functional organization of posterior parietal association cortex.James C. Lynch - 1980 - Behavioral and Brain Sciences 3 (4):485-499.
    Posterior parietal cortex has traditionally been considered to be a sensory association area in which higher-order processing and intermodal integration of incoming sensory information occurs. In this paper, evidence from clinical reports and from lesion and behavioral-electrophysiological experiments using monkeys is reviewed and discussed in relation to the overall functional organization of posterior parietal association cortex, and particularly with respect to a proposed posterior parietal mechanism concerned with the initiation and control of certain classes of eye and limb (...)
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  39.  37
    Activation of sensory cortex by imagined genital stimulation: an fMRI analysis.Nan J. Wise, Eleni Frangos & Barry R. Komisaruk - 2016 - Socioaffective Neuroscience and Psychology 6.
    BackgroundDuring the course of a previous study, our laboratory made a serendipitous finding that just thinking about genital stimulation resulted in brain activations that overlapped with, and differed from, those generated by physical genital stimulation.ObjectiveThis study extends our previous findings by further characterizing how the brain differentially processes physical ‘touch’ stimulation and ‘imagined’ stimulation.DesignEleven healthy women participated in an fMRI study of the brain response to imagined or actual tactile stimulation of the nipple and clitoris. Two additional conditions – imagined (...)
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  40.  62
    The anterior cingulate cortex, akinetic mutism, and human volition.Paul E. Tibbetts - 2001 - Brain and Mind 2 (3):323-341.
    The anterior cingulate cortex (ACC)has been identified as part of a supervisoryattentional network for selecting alternativemotor programs in response to top-down corticalprocessing, particularly in situationsinvolving conflicting cognitive tasks.Bilateral lesions to the ACC may be causallyassociated with akinetic mutism, where patientsare unable to voluntarily initiate responses.The clinical and neuroanatomical evidence forthis presumed causal association is examined atlength. However, given the many reciprocalprojections between cerebral, motor, limbic andparalimbic structures within the executivesupervisory network, the association ofvoluntary behavior with a particular structure(the ACC) (...)
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  41.  30
    Stimulating the Dorsolateral Prefrontal Cortex Decreases the Asset Bubble: A tDCS Study.Xuejun Jin, Cheng Chen, Xue Zhou & Xiaolan Yang - 2019 - Frontiers in Psychology 10:436402.
    Many studies have discussed the neural basis of asset bubbles. They found that the dorsolateral prefrontal cortex (DLPFC) played an important role in bubble formation, but whether a causal relationship exists and the mechanism of the effect of the DLPFC on bubbles remains unsettled. Using transcranial direct current stimulation (tDCS), we modulated the activity of the DLPFC and investigated the causal relationship between the DLPFC and the asset bubble in the classical learning-to-forecast experiment. 126 subjects were randomly divided into (...)
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  42.  37
    Models of the Visual Cortex.David Rose & Vernon G. Dobson (eds.) - 1985 - New York: Wiley.
    A comprehensive and stimulating study which presents the views of 71 leading theorists on the underlying mechanisms and functions of the primary visual cortex.
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  43.  39
    Perirhinal cortex and hippocampus mediate parallel processing of object and spatial location information.Raymond P. Kesner - 1999 - Behavioral and Brain Sciences 22 (3):455-455.
    An alternative to Aggleton & Brown's interpretation is presented suggesting that the perirhinal cortex and hippocampus mediate different attribute information, but use the same processes, supporting the idea of parallel processing based on attribute (visual object and spatial location) rather than process characteristics (item recognition and familiarity).
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  44.  19
    Motor Cortex Response to Pleasant Odor Perception and Imagery: The Differential Role of Personality Dimensions and Imagery Ability.Carmenrita Infortuna, Francesca Gualano, David Freedberg, Sapan P. Patel, Asad M. Sheikh, Maria Rosaria Anna Muscatello, Antonio Bruno, Carmela Mento, Eileen Chusid, Zhiyong Han, Florian P. Thomas & Fortunato Battaglia - 2022 - Frontiers in Human Neuroscience 16.
    BackgroundNeuroimaging studies have shown a complex pattern of brain activation during perception of a pleasant odor and during its olfactory imagery. To date, little is known regarding changes in motor cortex excitability during these tasks. Bergamot essential oil is extensively used in perfumes and cosmetics for its pleasantness. Therefore, to further our understanding of the human sense of smell, this study aimed to investigate the effect of perception and imagery of a pleasant odor on motor cortex using Transcranial (...)
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  45. Cerebral cortex as model builder.H. B. Barlow - 1985 - In David Rose & Vernon G. Dobson (eds.), Models of the Visual Cortex. New York: Wiley. pp. 37--46.
  46. Frontal cortex.Donald T. Stuss & Darlene Floden - 2003 - In L. Nadel (ed.), Encyclopedia of Cognitive Science. Nature Publishing Group.
     
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  47.  54
    Context, cortex, and dopamine: A connectionist approach to behavior and biology in schizophrenia.Jonathan D. Cohen & David Servan-Schreiber - 1992 - Psychological Review 99 (1):45-77.
  48.  20
    Prefrontal Cortex Activation During Motor Sequence Learning Under Interleaved and Repetitive Practice: A Two-Channel Near-Infrared Spectroscopy Study.Maarten A. Immink, Monique Pointon, David L. Wright & Frank E. Marino - 2021 - Frontiers in Human Neuroscience 15.
    Training under high interference conditions through interleaved practice results in performance suppression during training but enhances long-term performance relative to repetitive practice involving low interference. Previous neuroimaging work addressing this contextual interference effect of motor learning has relied heavily on the blood-oxygen-level-dependent response using functional magnetic resonance imaging methodology resulting in mixed reports of prefrontal cortex recruitment under IP and RP conditions. We sought to clarify these equivocal findings by imaging bilateral PFC recruitment using functional near-infrared spectroscopy while discrete (...)
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  49. Adrenal Cortex.Elaine P. Ralli - 1955 - Philosophy of Science 22 (3):237-237.
  50.  83
    Fables of the prefrontal cortex.Jordan Grafman, Arnaud Partiot & Caroline Hollnagel - 1995 - Behavioral and Brain Sciences 18 (2):349-358.
    On the basis of neuroiinaging studies, Posner & Raichle summarily report that the prefrontal cortex is involved in executive functioning and attention. In contrast to that superficial view, we briefly describe a testable model of the kinds of representations that are stored in prefrontal cortex, which, when activated, are expressed via plans, actions, thematic knowledge, and schemas.
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