Results for 'steady-state visual evoked potential'

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  1.  7
    The steady state visual evoked potential (SSVEP) tracks “sticky” thinking, but not more general mind-wandering.Hang Yang, Ken A. Paller & Marieke van Vugt - 2022 - Frontiers in Human Neuroscience 16.
    For a large proportion of our daily lives, spontaneously occurring thoughts tend to disengage our minds from goal-directed thinking. Previous studies showed that EEG features such as the P3 and alpha oscillations can predict mind-wandering to some extent, but only with accuracies of around 60%. A potential candidate for improving prediction accuracy is the Steady-State Visual Evoked Potential, which is used frequently in single-trial contexts such as brain-computer interfaces as a marker of the direction (...)
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  2.  72
    Assessing the quality of steady-state visual-evoked potentials for moving humans using a mobile electroencephalogram headset.Yuan-Pin Lin, Yijun Wang, Chun-Shu Wei & Tzyy-Ping Jung - 2014 - Frontiers in Human Neuroscience 8:74478.
    Recent advances in mobile electroencephalogram (EEG) systems, featuring non-prep dry electrodes and wireless telemetry, have urged the needs of mobile brain-computer interfaces (BCIs) for applications in our daily life. Since the brain may behave differently while people are actively situated in ecologically-valid environments versus highly-controlled laboratory environments, it remains unclear how well the current laboratory-oriented BCI demonstrations can be translated into operational BCIs for users with naturalistic movements. Understanding inherent links between natural human behaviors and brain activities is the key (...)
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  3.  11
    Exploring the effects of head movements and accompanying gaze fixation switch on steady-state visual evoked potential.Junyi Duan, Songwei Li, Li Ling, Ning Zhang & Jianjun Meng - 2022 - Frontiers in Human Neuroscience 16:943070.
    In a realistic steady-state visual evoked potential (SSVEP) based brain-computer interface (BCI) application like driving a car or controlling a quadrotor, observing the surrounding environment while simultaneously gazing at the stimulus is necessary. This kind of application inevitably could cause head movements and variation of the accompanying gaze fixation point, which might affect the SSVEP and BCI’s performance. However, few papers studied the effects of head movements and gaze fixation switch on SSVEP response, and the (...)
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  4.  5
    The Influence of the Stimulus Design on the Harmonic Components of the Steady-State Visual Evoked Potential.Benjamin Solf, Stefan Schramm, Maren-Christina Blum & Sascha Klee - 2020 - Frontiers in Human Neuroscience 14.
    Steady-state visual evoked potentials are commonly used for functional objective diagnostics. In general, the main response at the stimulation frequency is used. However, some studies reported the main response at the second harmonic of the stimulation frequency. The aim of our study was to analyze the influence of the stimulus design on the harmonic components of ssVEPs. We studied 22 subjects using a circular layout. At a given eccentricity, the stimulus was presented according to a 7.5 (...)
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  5.  10
    The Influence of the Modulation Index on Frequency-Modulated Steady-State Visual Evoked Potentials.Alexander M. Dreyer, Benjamin L. A. Heikkinen & Christoph S. Herrmann - 2022 - Frontiers in Human Neuroscience 16.
    Based on increased user experience during stimulation, frequency-modulated steady-state visual evoked potentials have been suggested as an improved stimulation method for brain-computer interfaces. Adapting such a novel stimulation paradigm requires in-depth analyses of all different stimulation parameters and their influence on brain responses as well as the user experience during the stimulation. In the current manuscript, we assess the influence of different values for the modulation index, which determine the spectral distribution in the stimulation signal on (...)
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  6.  24
    The Time Course of Inhibition of Return: Evidence from Steady-State Visual Evoked Potentials.Ai-Su Li, Gong-Liang Zhang, Cheng-Guo Miao, Shuang Wang, Ming Zhang & Yang Zhang - 2017 - Frontiers in Psychology 8.
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  7.  18
    Tradeoff between User Experience and BCI Classification Accuracy with Frequency Modulated Steady-State Visual Evoked Potentials.Alexander M. Dreyer, Christoph S. Herrmann & Jochem W. Rieger - 2017 - Frontiers in Human Neuroscience 11.
  8.  20
    Neural Correlates of Visuospatial Attention to Unseen Stimuli in Hemianopic Patients. A Steady-State Visual Evoked Potential Study.Javier Sanchez-Lopez, Silvia Savazzi, Caterina Annalaura Pedersini, Nicolò Cardobi & Carlo Alberto Marzi - 2019 - Frontiers in Psychology 10.
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  9.  3
    Corrigendum: The Influence of the Stimulus Design on the Harmonic Components of the Steady-State Visual Evoked Potential.Benjamin Solf, Stefan Schramm, Maren-Christina Blum & Sascha Klee - 2021 - Frontiers in Human Neuroscience 14.
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  10.  17
    Assessment of Top-Down Attention for a Closed-Loop Performance Enhancement System Using High-Frequency Steady-State Visually Evoked Potentials and Eye Tracking.Matthew Pava, Walker Alexander, Gabriel Collins, Brad Galego, Jon Russo, Assaf Harel, Olivia Fox, Natalie Hansen & Bartlett Russell - 2018 - Frontiers in Human Neuroscience 12.
  11.  6
    Individual Optimal Attentional Strategy in Motor Learning Tasks Characterized by Steady-State Somatosensory and Visual Evoked Potentials.Takeshi Sakurada, Masataka Yoshida & Kiyoshi Nagai - 2022 - Frontiers in Human Neuroscience 15.
    Focus of attention is one of the most influential factors facilitating motor performance. Previous evidence supports that the external focus strategy, which directs attention to movement outcomes, is associated with better motor performance than the internal focus strategy, which directs attention to body movements. However, recent studies have reported that the EF strategy is not effective for some individuals. Furthermore, neuroimaging studies have demonstrated that the frontal and parietal areas characterize individual optimal attentional strategies for motor tasks. However, whether the (...)
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  12.  20
    A Radial Zoom Motion-Based Paradigm for Steady State Motion Visual Evoked Potentials.Xiaoke Chai, Zhimin Zhang, Kai Guan, Guitong Liu & Haijun Niu - 2019 - Frontiers in Human Neuroscience 13.
  13.  11
    A Hybrid Brain-Computer Interface Based on Visual Evoked Potential and Pupillary Response.Lu Jiang, Xiaoyang Li, Weihua Pei, Xiaorong Gao & Yijun Wang - 2022 - Frontiers in Human Neuroscience 16.
    Brain-computer interface based on steady-state visual evoked potential has been widely studied due to the high information transfer rate, little user training, and wide subject applicability. However, there are also disadvantages such as visual discomfort and “BCI illiteracy.” To address these problems, this study proposes to use low-frequency stimulations, which can simultaneously elicit visual evoked potential and pupillary response to construct a hybrid BCI system. Classification accuracy was calculated using supervised and (...)
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  14.  44
    Steady-State Somatosensory Evoked Potential for Brain-Computer Interface—Present and Future.Sangtae Ahn, Kiwoong Kim & Sung Chan Jun - 2015 - Frontiers in Human Neuroscience 9.
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  15.  5
    Resting State EEG Related to Mathematical Improvement After Spatial Training in Children.Da-Wei Zhang, Anna Zaphf & Torkel Klingberg - 2021 - Frontiers in Human Neuroscience 15.
    Spatial cognitive abilities, including mental rotation and visuo-spatial working memory are correlated with mathematical performance, and several studies have shown that training of these abilities can enhance mathematical performance. Here, we investigated the behavioral and neural correlates of MR and vsWM training combined with number line training. Fifty-seven children, aged 6–7, performed 25 days of NL training combined with either vsWM or MR and participated in an Electroencephalography -session in school to measure resting state activity and steady-state (...)
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  16.  8
    Ssvep bci and eye tracking use by individuAlS with late-stage AlS and visual impairments.Betts Peters, Steven Bedrick, Shiran Dudy, Brandon Eddy, Matt Higger, Michelle Kinsella, Deirdre McLaughlin, Tab Memmott, Barry Oken, Fernando Quivira, Scott Spaulding, Deniz Erdogmus & Melanie Fried-Oken - 2020 - Frontiers in Human Neuroscience 14.
    Access to communication is critical for individuals with late-stage amyotrophic lateral sclerosis and minimal volitional movement, but they sometimes present with concomitant visual or ocular motility impairments that affect their performance with eye tracking or visual brain-computer interface systems. In this study, we explored the use of modified eye tracking and steady state visual evoked potential BCI, in combination with the Shuffle Speller typing interface, for this population. Two participants with late-stage ALS, (...) impairments, and minimal volitional movement completed a single-case experimental research design comparing copy-spelling performance with three different typing systems: commercially available eye tracking communication software, Shuffle Speller with modified eye tracking, and Shuffle Speller with SSVEP BCI. Participant 1 was unable to type any correct characters with the commercial system, but achieved accuracies of up to 50% with Shuffle Speller eye tracking and 89% with Shuffle Speller BCI. Participant 2 also had higher maximum accuracies with Shuffle Speller, typing with up to 63% accuracy with eye tracking and 100% accuracy with BCI. However, participants’ typing accuracy for both Shuffle Speller conditions was highly variable, particularly in the BCI condition. Both the Shuffle Speller interface and SSVEP BCI input show promise for improving typing performance for people with late-stage ALS. Further development of innovative BCI systems for this population is needed. (shrink)
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  17.  31
    Absence of Evidence or Evidence of Absence? Commentary: Captured by the pain: Pain steady-state evoked potentials are not modulated by selective spatial attention.Elisabeth Colon & André Mouraux - 2016 - Frontiers in Human Neuroscience 10.
  18.  8
    Humanoid Robot Walking in Maze Controlled by SSVEP-BCI Based on Augmented Reality Stimulus.Shangen Zhang, Xiaorong Gao & Xiaogang Chen - 2022 - Frontiers in Human Neuroscience 16.
    The application study of robot control based brain-computer interface not only helps to promote the practicality of BCI but also helps to promote the advancement of robot technology, which is of great significance. Among the many obstacles, the importability of the stimulator brings much inconvenience to the robot control task. In this study, augmented reality technology was employed as the visual stimulator of steady-state visual evoked potential -BCI and the robot walking experiment in the (...)
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  19.  7
    Application of virtual simulation situational model in Russian spatial preposition teaching.Yanrong Gao, R. T. Kassymova & Yong Luo - 2022 - Frontiers in Psychology 13.
    The purpose is to improve the teaching quality of Russian spatial prepositions in colleges. This work takes teaching Russian spatial prepositions as an example to study the key technologies in 3D Virtual Simulation teaching. 3D VS situational teaching is a high-end visual teaching technology. VS situation construction focuses on Human-Computer Interaction to explore and present a realistic language teaching scene. Here, the Steady State Visual Evoked Potential is used to control Brain-Computer Interface. An SSVEP-BCI (...)
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  20.  9
    A Zero-Padding Frequency Domain Convolutional Neural Network for SSVEP Classification.Dongrui Gao, Wenyin Zheng, Manqing Wang, Lutao Wang, Yi Xiao & Yongqing Zhang - 2022 - Frontiers in Human Neuroscience 16.
    The brain-computer interface of steady-state visual evoked potential is one of the fundamental ways of human-computer communication. The main challenge is that there may be a nonlinear relationship between different SSVEP in other states. For improving the performance of SSVEP BCI, a novel CNN algorithm model is proposed in this study. Based on the discrete Fourier transform to calculate the signal's power spectral density, we perform zero-padding in the signal's time domain to improve its performance (...)
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  21.  7
    Repeated Contrast Adaptation Does Not Cause Habituation of the Adapter.Xue Dong, Xinxin Du & Min Bao - 2020 - Frontiers in Human Neuroscience 14.
    Adaptation can optimize information processing by allowing the visual system to always adjust to the environment. However, only a few studies have investigated how the visual system makes adjustments to repeatedly occurring changes in the input, still less about the related neural mechanism. Our previous study found that contrast adaptation attenuated after multiple daily sessions of repeated adaptation, which was explained by the habituation of either the adapter’s effective strength or the adaptation mechanisms. To examine the former hypothesis, (...)
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  22.  31
    Visual evoked potential correlates of early neural filtering during selective attention.Robert G. Eason - 1981 - Bulletin of the Psychonomic Society 18 (4):203-206.
  23. A visual evoked potential (VEP) study of hemispheric specialisation in the processing of spatial information.C. Bernard, M. Rebai & J. Lannou - 1996 - In Enrique Villanueva (ed.), Perception. Ridgeview. pp. 81-81.
     
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  24.  34
    Distinct Visual Evoked Potential Morphological Patterns for Apparent Motion Processing in School-Aged Children.Julia Campbell & Anu Sharma - 2016 - Frontiers in Human Neuroscience 10.
  25. Disruption of visual evoked potentials following a v1 lesion: Implications for blindsight.Anling Rao, Anna C. Nobre & Alan Cowey - 2001 - In Beatrice De Gelder, Edward H. F. De Haan & Charles A. Heywood (eds.), Out of Mind: Varieties of Unconscious Processes. Oxford University Press. pp. 69-86.
     
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  26.  14
    Correlation between Habituation of Visual Evoked Potentials and Magnetophosphene thresholds in migraine.Ambrosini Anna, Kisialiou Aliaksei, Iezzi Ennio, Perrotta Armando, Nardella Andrea, Berardelli Alfredo, Pierelli Francesco & Schoenen Jean - 2014 - Frontiers in Human Neuroscience 8.
  27. A correlation study of visual evoked-potential components.Jg May & Wp Dunlap - 1990 - Bulletin of the Psychonomic Society 28 (6):497-497.
     
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  28. Spatial-frequency-dependent visual-evoked-potential gender differences in children.S. Nozawa - 2004 - In Robert Schwartz (ed.), Perception. Malden Ma: Blackwell. pp. 69-69.
     
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  29.  12
    Blindness, visual cortex, and visually evoked potentials.R. Spehlmann - 1983 - Behavioral and Brain Sciences 6 (3):461.
  30.  16
    Recognition of Visual Evoked Potential Responses Containing Cognitive Component (P300) using Reflex Fuzzy Min-Max Neural Network.S. V. Bonde & A. V. Nandedkar - 2009 - Journal of Intelligent Systems 18 (3):247-264.
  31. Estimating chromatic contrast thresholds from the transient visual evoked potential.M. Boon & C. M. Suttle - 2004 - In Robert Schwartz (ed.), Perception. Malden Ma: Blackwell. pp. 58-58.
  32.  38
    Long-Term Visuo-Gustatory Appetitive and Aversive Conditioning Potentiate Human Visual Evoked Potentials.Gert R. J. Christoffersen, Jakob L. Laugesen, Per Møller, Wender L. P. Bredie, Todd R. Schachtman, Christina Liljendahl & Ida Viemose - 2017 - Frontiers in Human Neuroscience 11.
  33.  20
    Paying attention to orthography: a visual evoked potential study.Anthony T. Herdman & Osamu Takai - 2013 - Frontiers in Human Neuroscience 7.
  34.  25
    Effect of memory set size on visual evoked potential for digit and figure stimuli.Mariko Osaka & Naoyuki Osaka - 1983 - Bulletin of the Psychonomic Society 21 (4):275-277.
  35.  9
    Visual evoked and emitted potentials and stimulus significance.D. S. Ruchkin & S. Sutton - 1973 - Bulletin of the Psychonomic Society 2 (3):144-146.
  36. Comparing multifocal frequency-doubling illusion, visual evoked potentials, and automated perimetry in normal and optic neuritis patients.R. Ruseckaite, T. Maddess & A. C. James - 2004 - In Robert Schwartz (ed.), Perception. Malden Ma: Blackwell. pp. 128-128.
     
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  37.  30
    Visual and Auditory Evoked Potentials in migraine: sensitivity and specificity as diagnostic tools.Ambrosini Anna, Kisialiou Aliaksei, Finos Livio, Afra Judit, Coppola Gianluca, Di Clemente Laura, Iezzi Ennio, Magis Delphine, Sandor Peter, Sasso D'Elia Tullia, Viganò Alessandro, Fataki Michel, Pierelli Francesco & Schoenen Jean - 2014 - Frontiers in Human Neuroscience 8.
  38.  96
    Electrophysiological correlates of visual consciousness and selective attention.Mika Koivisto & Antti Revonsuo - 2007 - Neuroreport 18 (8):753-756.
  39.  11
    Free will strikes back: Steady-state movement-related cortical potentials are modulated by cognitive control.Hein Thomas van Schie, Ivaylo Borislavov Iotchev & Félix René Compen - 2022 - Consciousness and Cognition 104 (C):103382.
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  40. Role of the frontal cortical areas in the analysis of visual stimuli at conscious and unconscious levels.T. G. Beteleva & D. A. Farber - 2002 - Human Physiology 28 (5):511-519.
  41.  13
    Oscillatory characteristics of the visual mismatch negativity: what evoked potentials aren't telling us.George Stothart & Nina Kazanina - 2013 - Frontiers in Human Neuroscience 7.
  42.  9
    Contact Heat Evoked Potentials in China: Normal Values and Reproducibility.Bo Sun, Hongfen Wang, Zhaohui Chen, Fang Cui, Fei Yang & Xusheng Huang - 2022 - Frontiers in Human Neuroscience 15.
    Background: Contact heat evoked potentials is used to diagnose small fiber neuropathy. We established the normal values of CHEPs parameters in Chinese adults, optimized the test technique, and determined its reproducibility.Methods: We recruited 151 healthy adults. CHEPs was performed on the right forearm to determine the optimal number of stimuli, and then conducted at different sites to establish normal values, determine the effects of demographic characteristics and baseline temperature, and assess the short- and long-term reproducibility. N2 latency/height varied with (...)
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  43.  11
    Effect of Non-invasive Vagus Nerve Stimulation on Resting-State Electroencephalography and Laser-Evoked Potentials in Migraine Patients: Mechanistic Insights.Eleonora Vecchio, Iege Bassez, Katia Ricci, Cristina Tassorelli, Eric Liebler & Marina de Tommaso - 2018 - Frontiers in Human Neuroscience 12.
  44.  5
    The aestheticization of history and the Butterfly Effect: visual arts series.Nancy Wellington Bookhart (ed.) - 2023 - Wilmington, Delaware: Vernon Press.
    'The Aestheticization of History and the Butterfly Effect: Visual Arts Series' introduces the audience to philosophical concepts that broach the beginning of the history of Western thought in Plato and Aristotle to that of more modern thought in the theoretician Jacques Rancière in which the main conceptual framework of this anthology is predicated. The introduction is mainly concerned with Rancière's concept of the distribution of the sensible, which is the arrangement of things accessible to our senses, what we experience (...)
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  45.  6
    Influence of Controlled Stomatognathic Motor Activity on Sway, Control and Stability of the Center of Mass During Dynamic Steady-State Balance—An Uncontrolled Manifold Analysis.Cagla Fadillioglu, Lisa Kanus, Felix Möhler, Steffen Ringhof, Daniel Hellmann & Thorsten Stein - 2022 - Frontiers in Human Neuroscience 16:868828.
    Multiple sensory signals from visual, somatosensory and vestibular systems are used for human postural control. To maintain postural stability, the central nervous system keeps the center of mass (CoM) within the base of support. The influence of the stomatognathic motor system on postural control has been established under static conditions, but it has not yet been investigated during dynamic steady-state balance. The purpose of the study was to investigate the effects of controlled stomatognathic motor activity on the (...)
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  46.  20
    Age-Related Differences in Early Cortical Representations of Target Speech Masked by Either Steady-State Noise or Competing Speech.Bruce A. Schneider, Cristina Rabaglia, Meital Avivi-Reich, Dena Krieger, Stephen R. Arnott & Claude Alain - 2022 - Frontiers in Psychology 13.
    Word in noise identification is facilitated by acoustic differences between target and competing sounds and temporal separation between the onset of the masker and that of the target. Younger and older adults are able to take advantage of onset delay when the masker is dissimilar to the target word, but only younger adults are able to do so when the masker is similar. We examined the neural underpinning of this age difference using cortical evoked responses to words masked by (...)
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  47.  24
    Visual awareness of low-contrast stimuli is reflected in event-related brain potentials.Ville Ojanen, Antti Revonsuo & Mikko Sams - 2003 - Psychophysiology 40 (2):192-197.
  48.  8
    The Tactile-Visual Conflict Processing and Its Modulation by Tactile-Induced Emotional States: An Event-Related Potential Study.Chengyao Guo, Nicolas Dupuis-Roy, Jun Jiang, Miaomiao Xu & Xiao Xiao - 2021 - Frontiers in Psychology 12.
    This experiment used event-related potentials to study the tactile-visual information conflict processing in a tactile-visual pairing task and its modulation by tactile-induced emotional states. Eighteen participants were asked to indicate whether the tactile sensation on their body matched or did not match the expected tactile sensation associated with the object depicted in an image. The type of tactile-visual stimuli and the valence of tactile-induced emotional states were manipulated following a 2 × 2 factorial design. Electrophysiological analyses revealed (...)
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  49.  7
    Event-Related Brain Potentials Associated With the Olfactory-Visual Stroop Effect and Its Modulation by Olfactory-Induced Emotional States.Miaomiao Xu, Nicolas Dupuis-Roy, Jun Jiang, Chengyao Guo & Xiao Xiao - 2020 - Frontiers in Psychology 11.
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  50.  11
    Long-Term Potentiation-Like Visual Synaptic Plasticity Is Negatively Associated With Self-Reported Symptoms of Depression and Stress in Healthy Adults.Trine Waage Rygvold, Christoffer Hatlestad-Hall, Torbjørn Elvsåshagen, Torgeir Moberget & Stein Andersson - 2022 - Frontiers in Human Neuroscience 16.
    Long-term potentiation is one of the most extensively studied forms of neuroplasticity and is considered the strongest candidate mechanism for memory and learning. The use of event-related potentials and sensory stimulation paradigms has allowed for the translation from animal studies to non-invasive studies of LTP-like synaptic plasticity in humans. Accumulating evidence suggests that synaptic plasticity as measured by stimulus-specific response modulation is reduced in neuropsychiatric disorders such as major depressive disorder, bipolar disorders and schizophrenia, suggesting that impaired synaptic plasticity plays (...)
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