Results for 'primary somatosensory cortex'

1000+ found
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  1.  8
    Disinhibition of Human Primary Somatosensory Cortex After Median Nerve Transection and Reinnervation.Per F. Nordmark & Roland S. Johansson - 2020 - Frontiers in Human Neuroscience 14.
  2.  6
    Effect of whole-hand water flow stimulation on the neural balance between excitation and inhibition in the primary somatosensory cortex.Dat Le Cong, Daisuke Sato, Koyuki Ikarashi, Tomomi Fujimoto, Genta Ochi & Koya Yamashiro - 2022 - Frontiers in Human Neuroscience 16:962936.
    Sustained peripheral somatosensory stimulations, such as high-frequency repetitive somatosensory stimulation (HF-RSS) and vibrated stimulation, are effective in altering the balance between excitation and inhibition in the somatosensory cortex (S1) and motor cortex (M1). A recent study reported that whole-hand water flow (WF) stimulation induced neural disinhibition in the M1. Based on previous results, we hypothesized that whole-hand WF stimulation would lead to neural disinhibition in the S1 because there is a strong neural connection between M1 (...)
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  3.  12
    Polarity-Specific Cortical Effects of Transcranial Direct Current Stimulation in Primary Somatosensory Cortex of Healthy Humans.Robert Rehmann, Matthias Sczesny-Kaiser, Melanie Lenz, Tomasz Gucia, Annika Schliesing, Peter Schwenkreis, Martin Tegenthoff & Oliver Höffken - 2016 - Frontiers in Human Neuroscience 10.
  4.  17
    Individual fMRI maps of all phalanges and digit bases of all fingers in human primary somatosensory cortex.Meike A. Schweisfurth, Jens Frahm & Renate Schweizer - 2014 - Frontiers in Human Neuroscience 8.
  5.  23
    Repetitive Passive Finger Movement Modulates Primary Somatosensory Cortex Excitability.Ryoki Sasaki, Shota Tsuiki, Shota Miyaguchi, Sho Kojima, Kei Saito, Yasuto Inukai, Naofumi Otsuru & Hideaki Onishi - 2018 - Frontiers in Human Neuroscience 12.
  6.  12
    Comparison of fMRI Digit Representations of the Dominant and Non-dominant Hand in the Human Primary Somatosensory Cortex.Meike A. Schweisfurth, Jens Frahm, Dario Farina & Renate Schweizer - 2018 - Frontiers in Human Neuroscience 12.
  7.  36
    Weak but Critical Links between Primary Somatosensory Centers and Motor Cortex during Movement.Pengxu Wei, Ruixue Bao, Zeping Lv & Bin Jing - 2018 - Frontiers in Human Neuroscience 12.
  8.  29
    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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  9.  9
    Magnetoencephalography Responses to Unpredictable and Predictable Rare Somatosensory Stimuli in Healthy Adult Humans.Qianru Xu, Chaoxiong Ye, Jarmo A. Hämäläinen, Elisa M. Ruohonen, Xueqiao Li & Piia Astikainen - 2021 - Frontiers in Human Neuroscience 15.
    Mismatch brain responses to unpredicted rare stimuli are suggested to be a neural indicator of prediction error, but this has rarely been studied in the somatosensory modality. Here, we investigated how the brain responds to unpredictable and predictable rare events. Magnetoencephalography responses were measured in adults frequently presented with somatosensory stimuli that were occasionally replaced by two consecutively presented rare stimuli [unpredictable rare stimulus and predictable rare stimulus ; p = 0.1 for each]. The FRE and PR were (...)
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  10.  19
    The cortical sensory representation of genitalia in women and men: a systematic review.Fadwa Cazala, Nicolas Vienney & Serge Stoléru - 2015 - Socioaffective Neuroscience and Psychology 5.
    Background. Although genital sensations are an essential aspect of sexual behavior, the cortical somatosensory representation of genitalia in women and men remain poorly known and contradictory results have been reported. Objective. To conduct a systematic review of studies based on electrophysiological and functional neuroimaging studies, with the aim to identify insights brought by modern methods since the early descriptions of the sensory homunculus in the primary somatosensory cortex . Results. The review supports the interpretation that there (...)
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  11.  12
    Revisiting parallel and serial processing in the somatosensory system.Preston E. Garraghty - 2007 - Behavioral and Brain Sciences 30 (2):208-209.
    The issue of whether information is processed in parallel or in series in the somatosensory system is complicated by a number of factors. Included among these is the failure on the part of the scientific community to reach a consensus as to what actually constitutes the primary somatosensory cortex (SI) in higher primates. A second, related issue is the marked difference in the organization of the cortical areas subserving somatosensation across species.
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  12.  26
    Divisions within the posterior parietal cortex help touch meet vision.Catherine L. Reed - 2007 - Behavioral and Brain Sciences 30 (2):218-218.
    The parietal cortex is divided into two major functional regions: the anterior parietal cortex that includes primary somatosensory cortex, and the posterior parietal cortex (PPC) that includes the rest of the parietal lobe. The PPC contains multiple representations of space. In Dijkerman & de Haan's (D&dH's) model, higher spatial representations are separate from PPC functions. This model should be developed further so that the functions of the somatosensory system are integrated with specific functions (...)
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  13.  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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  14. Primary visual cortex and visual awareness.Frank Tong - 2003 - Nature Reviews Neuroscience 4 (3):219-229.
  15.  10
    Primary Motor Cortex Activation during Action Observation of Tasks at Different Video Speeds Is Dependent on Movement Task and Muscle Properties.Takefumi Moriuchi, Daiki Matsuda, Jirou Nakamura, Takashi Matsuo, Akira Nakashima, Keita Nishi, Kengo Fujiwara, Naoki Iso, Hideyuki Nakane & Toshio Higashi - 2017 - Frontiers in Human Neuroscience 11.
  16.  25
    Primary motor cortex mapping in brain-lesioned patients using MEG resting-state functional connectivity.Coquelet Nicolas, Wens Vincent, Bourguignon Mathieu, Carrette Evelien, Op De Beeck Marc, Marty Brice, Van Bogaert Patrick, Goldman Serge & De Tiège Xavier - 2014 - Frontiers in Human Neuroscience 8.
  17.  38
    Role of secondary somatosensory cortex in haptic change detection: a MEG study.Vaulet Thibaut, Naeije Gilles, Op De Beek Marc, Wens Vincent, Marty Brice, Goldman Serge & De Tiège Xavier - 2014 - Frontiers in Human Neuroscience 8.
  18.  51
    The role of primary visual cortex (v1) in visual awareness.Victor A. F. Lamme, H. Landman Super, P. R. R. Roelfsema & H. Spekreijse - 2000 - Vision Research 40 (10):1507-21.
  19.  13
    Effects of three-dimension movie visual fatigue on cognitive performance and brain activity.Ryota Akagi, Hiroki Sato, Tatsuya Hirayama, Kosuke Hirata, Masahiro Kokubu & Soichi Ando - 2022 - Frontiers in Human Neuroscience 16:974406.
    To further develop three-dimensional (3D) applications, it is important to elucidate the negative effects of 3D applications on the human body and mind. Thus, this study investigated differences in the effects of visual fatigue on cognition and brain activity using visual and auditory tasks induced by watching a 1-h movie in two dimensions (2D) and 3D. Eighteen young men participated in this study. Two conditions were randomly performed for each participant on different days, namely, watching the 1-h movie on television (...)
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  20.  8
    Feeling Touched: Empathy Is Associated With Performance in a Tactile Acuity Task.Michael Schaefer, Marcel Joch & Nikolas Rother - 2021 - Frontiers in Human Neuroscience 15.
    The concept of empathy describes our capacity to understand the emotions and intentions of others and to relate to our conspecifics. Numerous studies investigated empathy as a state as well as a stable personality trait. For example, recent studies in neuroscience suggest, among other brain areas such as the insula or the ACC, a role of the somatosensory cortices for empathy. Since the classic understanding of the primary somatosensory cortex is to represent touch on the body (...)
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  21.  97
    Are we aware of neural activity in primary visual cortex.Francis Crick & Christof Koch - 1995 - Nature 375:121-23.
  22.  16
    Beyond the Peak – Tactile Temporal Discrimination Does Not Correlate with Individual Peak Frequencies in Somatosensory Cortex.J. Baumgarten Thomas, Schnitzler Alfons & Lange Joachim - 2017 - Frontiers in Psychology 8.
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  23.  8
    Spontaneous Activity in Primary Visual Cortex Relates to Visual Creativity.Yibo Wang, Junchao Li, Zengjian Wang, Bishan Liang, Bingqing Jiao, Peng Zhang, Yingying Huang, Hui Yang, Rengui Yu, Sifang Yu, Delong Zhang & Ming Liu - 2021 - Frontiers in Human Neuroscience 15.
    Cognitive and neural processes underlying visual creativity have attracted substantial attention. The current research uses a critical time point analysis to examine how spontaneous activity in the primary visual area is related to visual creativity. We acquired the functional magnetic resonance imaging data of 16 participants at the resting state and during performing a visual creative synthesis task. According to the CTPA, we then classified spontaneous activity in the PVA into critical time points, which reflect the most useful and (...)
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  24.  56
    Maps of surface distributions of electrical activity in spectrally derived receptive fields of the rat's somatosensory cortex.S. King Joseph, Xie Mix, Zheng Bibo & H. Pribram Karl - 2000 - Brain and Mind 1 (3):327-349.
    This study describes the results of experiments motivated by an attempt to understand spectral processing in the cerebral cortex (DeValois and DeValois, 1988; Pribram, 1971, 1991). This level of inquiry concerns processing within a restricted cortical area rather than that by which spatially separate circuits become synchronized during certain behavioral and experiential processes. We recorded neural responses for 55 locations in the somatosensory (barrel) cortex of the rat to various combinations of spatial frequency (texture) and temporal frequency (...)
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  25.  11
    Stimulation over primary motor cortex during action observation impairs effector recognition.Katherine R. Naish, Brittany Barnes & Sukhvinder S. Obhi - 2016 - Cognition 149 (C):84-94.
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  26.  14
    Meditation reduces pain-related neural activity in the anterior cingulate cortex, insula, secondary somatosensory cortex, and thalamus.Hiroki Nakata, Kiwako Sakamoto & Ryusuke Kakigi - 2014 - Frontiers in Psychology 5.
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  27.  23
    Asymmetric Functional Connectivity of the Contra- and Ipsilateral Secondary Somatosensory Cortex during Tactile Object Recognition.Yinghua Yu, Jiajia Yang, Yoshimichi Ejima, Hidenao Fukuyama & Jinglong Wu - 2018 - Frontiers in Human Neuroscience 11.
  28.  24
    Modified action as a determinant of adult and age-related sensorimotor integration: Where does it begin?Hubert R. Dinse - 2001 - Behavioral and Brain Sciences 24 (5):885-886.
    Modified action, either artificially induced or occurring naturally during life-span, alters organization and processing of primary somatosensory cortex, thereby serving as a predictor of age-related changes. These findings, together with the interconnectedness between motor-sensory systems and temporally-distributed processing across hierarchical levels, throws into question a sharp division between early perception and cognition, and suggest that composite codes of perception and action might not be limited to higher areas.
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  29.  28
    Involvement of primary motor cortex in motor imagery and mental practice.Mark Hallett, Jordan Fieldman, Leonardo G. Cohen, Norihiro Sadato & Alvaro Pascual-Leone - 1994 - Behavioral and Brain Sciences 17 (2):210-210.
  30.  5
    20 Hz Steady-State Response in Somatosensory Cortex During Induction of Tactile Perceptual Learning Through LTP-Like Sensory Stimulation.Marion Brickwedde, Marie D. Schmidt, Marie C. Krüger & Hubert R. Dinse - 2020 - Frontiers in Human Neuroscience 14.
  31.  11
    Low test–retest reliability of a protocol for assessing somatosensory cortex excitability generated from sensory nerves of the lower back.Katja Ehrenbrusthoff, Cormac G. Ryan, Denis J. Martin, Volker Milnik, Hubert R. Dinse & Christian Grüneberg - 2022 - Frontiers in Human Neuroscience 16.
    In people with chronic low back pain, maladaptive structural and functional changes on a cortical level have been identified. On a functional level, somatosensory cortical excitability has been shown to be reduced in chronic pain conditions, resulting in cortical disinhibition. The occurrence of structural and/or functional maladaptive cortical changes in people with CLBP could play a role in maintaining the pain. There is currently no measurement protocol for cortical excitability that employs stimulation directly to the lower back. We developed (...)
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  32.  6
    Spared Primary Motor Cortex and The Presence of MEP in Cerebral Palsy Dictate the Responsiveness to tDCS during Gait Training.Luanda A. Collange Grecco, Claudia Santos Oliveira, Manuela Galli, Camila Cosmo, Natália de Almeida Carvalho Duarte, Nelci Zanon, Dylan J. Edwards & Felipe Fregni - 2016 - Frontiers in Human Neuroscience 10.
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  33.  88
    Parietal somatosensory association cortex mediates affective blindsight.Silke Anders, Niels Birbaumer, Bettina Sadowski, Michael Erb, Irina Mader, Wolfgang Grodd & Martin Lotze - 2004 - Nature Neuroscience 7 (4):339-340.
  34.  12
    Long-interval intracortical inhibition in primary motor cortex related to working memory in middle-aged adults.María Redondo-Camós, Gabriele Cattaneo, Vanessa Alviarez-Schulze, Selma Delgado-Gallén, Goretti España-Irla, Javier Solana-Sanchez, Ruben Perellón-Alfonso, Sergiu Albu, José M. Tormos, Alvaro Pascual-Leone & David Bartres-Faz - 2022 - Frontiers in Psychology 13.
    IntroductionExcitability of the primary motor cortex measured with TMS has been associated with cognitive dysfunctions in patient populations. However, only a few studies have explored this relationship in healthy adults, and even fewer have considered the role of biological sex.MethodsNinety-seven healthy middle-aged adults completed a TMS protocol and a neuropsychological assessment. Resting Motor Threshold and Long-Interval Intracortical Inhibition were assessed in the left motor cortex and related to attention, episodic memory, working memory, reasoning, and global cognition composite (...)
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  35.  7
    Empathy-Related Brain Activity in Somatosensory Cortex Protects From Tactile Priming Effects: A Pilot Study.Michael Schaefer, Lillia Cherkasskiy, Claudia Denke, Claudia Spies, Hyunjin Song, Sean Malahy, Andreas Heinz, Andreas Ströhle, Michael Schäfer, Nadine Mianroudi & John A. Bargh - 2020 - Frontiers in Human Neuroscience 14.
  36.  66
    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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  37.  6
    Competition, Conflict and Change of Mind: A Role of GABAergic Inhibition in the Primary Motor Cortex.Bastien Ribot, Aymar de Rugy, Nicolas Langbour, Anne Duron, Michel Goillandeau & Thomas Michelet - 2022 - Frontiers in Human Neuroscience 15.
    Deciding between different voluntary movements implies a continuous control of the competition between potential actions. Many theories postulate a leading role of prefrontal cortices in this executive function, but strong evidence exists that a motor region like the primary motor cortex is also involved, possibly via inhibitory mechanisms. This was already shown during the pre-movement decision period, but not after movement onset. For this pilot experiment we designed a new task compatible with the dynamics of post-onset control to (...)
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  38. The cutaneous rabbit illusion affects human primary sensory cortex somatotopically.F. Blankenburg, C. C. Ruff, R. Deichmann, G. Rees & J. Driver - 2006 - PLoS Biology 4 (3):e69.
  39.  27
    Blindsight in rodents: The use of a "high-level" distance cue in gerbils with lesions of primary visual cortex.D. P. Carey, Melvyn A. Goodale & E. G. Sprowl - 1990 - Behavioural Brain Research 38:283-289.
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  40.  35
    Low-level phenomenal vision despite unilateral destruction of primary visual cortex.Petra Stoerig & Erhardt Barth - 2001 - Consciousness and Cognition 10 (4):574-587.
    GY, an extensively studied human hemianope, is aware of salient visual events in his cortically blind field but does not call this ''vision.'' To learn whether he has low-level conscious visual sensations or whether instead he has gained conscious knowledge about, or access to, visual information that does not produce a conscious phenomenal sensation, we attempted to image process a stimulus s presented to the impaired field so that when the transformed stimulus T(s) was presented to the normal hemifield it (...)
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  41.  14
    Excitability of the Ipsilateral Primary Motor Cortex During Unilateral Goal-Directed Movement.Takuya Matsumoto, Tatsunori Watanabe, Takayuki Kuwabara, Keisuke Yunoki, Xiaoxiao Chen, Nami Kubo & Hikari Kirimoto - 2021 - Frontiers in Human Neuroscience 15.
    IntroductionPrevious transcranial magnetic stimulation studies have revealed that the activity of the primary motor cortex ipsilateral to an active hand plays an important role in motor control. The aim of this study was to investigate whether the ipsi-M1 excitability would be influenced by goal-directed movement and laterality during unilateral finger movements.MethodTen healthy right-handed subjects performed four finger tapping tasks with the index finger: simple tapping task, Real-word task, Pseudoword task, and Visually guided tapping task. In the Tap task, (...)
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  42.  5
    Semantic Grounding of Novel Spoken Words in the Primary Visual Cortex.Max Garagnani, Evgeniya Kirilina & Friedemann Pulvermüller - 2021 - Frontiers in Human Neuroscience 15.
    Embodied theories of grounded semantics postulate that, when word meaning is first acquired, a link is established between symbol and corresponding semantic information present in modality-specific—including primary—sensorimotor cortices of the brain. Direct experimental evidence documenting the emergence of such a link, however, is still missing. Here, we present new neuroimaging results that provide such evidence. We taught participants aspects of the referential meaning of previously unknown, senseless novel spoken words by associating them with either a familiar action or a (...)
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  43.  4
    Effects of Transcranial Direct Current Stimulation Over the Left Primary Motor Cortex on Verbal Intelligence.Yifan Huang, Yinling Zhang, Yizhe Zhang & Xiaoqin Mai - 2022 - Frontiers in Human Neuroscience 16.
    Previous studies have shown that changes in gray matter density and volume in the left primary motor cortex are significantly associated with changes in individuals’ verbal intelligence quotient, but not with their performance intelligence quotient. In the present study, we examined the effects of transcranial direct current stimulation over the left primary motor cortex on performance in intelligence tests. We chose four subtests of the Wechsler Adult Intelligence Scale-Chinese Revised version and randomized participants into anodal, cathodal, (...)
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  44.  42
    Unconscious inference and conscious representation: Why primary visual cortex (v1) is directly involved in visual awareness.Zhicheng Lin - 2008 - Behavioral and Brain Sciences 31 (2):209-210.
    The extent to which visual processing can proceed in the visual hierarchy without awareness determines the magnitude of perceptual delay. Increasing data demonstrate that primary visual cortex (V1) is involved in consciousness, constraining the magnitude of visual delay. This makes it possible that visual delay is actually within the optimal lengths to allow sufficient computation; thus it might be unnecessary to compensate for visual delay.
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  45.  53
    On the relationship between interocular suppression in the primary visual cortex and binocular rivalry.Sengpiel Frank, Bonhoeffer Tobias, C. B. Freeman Tobe & Blakemore Colin - 2001 - Brain and Mind 2 (1):39-54.
    Both classical psychophysical work and recentfunctional imaging studies have suggested acritical role for the primary visual cortex(V1) in resolving the perceptual ambiguitiesexperienced during binocular rivalry. Here weexamine, by means of single-cell recordings andoptical imaging of intrinsic signals, thespatial characteristics of suppression elicitedby rival stimuli in cat V1. We find that the interocular suppression field of V1 neuronsis centred on the same position in space and isslightly larger (by a factor of 1.3) than theminimum response field, measured through thesame (...)
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  46.  40
    Why is “blindsight” blind? A new perspective on primary visual cortex, recurrent activity and visual awareness.Juha Silvanto - 2015 - Consciousness and Cognition 32:15-32.
  47.  15
    Investigating the Role of the Primary Motor Cortex in Musical Creativity: A Transcranial Direct Current Stimulation Study.Aydin Anic, Kirk N. Olsen & William Forde Thompson - 2018 - Frontiers in Psychology 9.
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  48.  5
    Reconstructing Tone Sequences from Functional Magnetic Resonance Imaging Blood-Oxygen Level Dependent Responses within Human Primary Auditory Cortex.Kelly H. Chang, Jessica M. Thomas, Geoffrey M. Boynton & Ione Fine - 2017 - Frontiers in Psychology 8.
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  49.  35
    Enhanced peripheral visual processing in congenitally deaf humans is supported by multiple brain regions, including primary auditory cortex.Gregory D. Scott, Christina M. Karns, Mark W. Dow, Courtney Stevens & Helen J. Neville - 2014 - Frontiers in Human Neuroscience 8.
  50.  32
    Presence and Absence of Muscle Contraction Elicited by Peripheral Nerve Electrical Stimulation Differentially Modulate Primary Motor Cortex Excitability.Ryoki Sasaki, Shinichi Kotan, Masaki Nakagawa, Shota Miyaguchi, Sho Kojima, Kei Saito, Yasuto Inukai & Hideaki Onishi - 2017 - Frontiers in Human Neuroscience 11.
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