human | Q5 |
P496 | ORCID iD | 0000-0003-2421-9106 |
P1153 | Scopus author ID | 7201953206 |
P108 | employer | Stanford University | Q41506 |
P735 | given name | Takako | Q7677098 |
Takako | Q7677098 | ||
P106 | occupation | researcher | Q1650915 |
P21 | sex or gender | female | Q6581072 |
Q35990578 | 40-Hz oscillations underlying perceptual binding in young and older adults |
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Q30543653 | Auditory processing indexed by stimulus-induced alpha desynchronization in children. |
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Q30544969 | Beta and gamma rhythms in human auditory cortex during musical beat processing. |
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Q47957200 | Beta-band oscillations during passive listening to metronome sounds reflect improved timing representation after short-term musical training in healthy older adults. |
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Q30415855 | Changes in neuromagnetic beta-band oscillation after music-supported stroke rehabilitation. |
Q43473356 | Comparison of artifact correction methods for infant EEG applied to extraction of event-related potential signals. |
Q48633682 | Cortical oscillations related to processing congruent and incongruent grapheme-phoneme pairs |
Q91034759 | Delayed feedback embedded in perception-action coordination cycles results in anticipation behavior during synchronized rhythmic action: A dynamical systems approach |
Q30398495 | Development of auditory-specific brain rhythm in infants. |
Q60956804 | Effects of Visual Predictive Information and Sequential Context on Neural Processing of Musical Syntax |
Q92906798 | Endogenous Expectations for Sequence Continuation after Auditory Beat Accelerations and Decelerations Revealed by P3a and Induced Beta-Band Responses |
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Q30562207 | Human cortical responses to slow and fast binaural beats reveal multiple mechanisms of binaural hearing |
Q90118040 | Induced Beta Power Modulations during Isochronous Auditory Beats Reflect Intentional Anticipation before Gradual Tempo Changes |
Q48775676 | Interference in dichotic listening: the effect of contralateral noise on oscillatory brain networks |
Q48677364 | Internalized timing of isochronous sounds is represented in neuromagnetic β oscillations. |
Q48452193 | Introduction to The neurosciences and music IV: learning and memory |
Q91081087 | Musical Role Asymmetries in Piano Duet Performance Influence Alpha-Band Neural Oscillation and Behavioral Synchronization |
Q30342539 | Musical training enhances automatic encoding of melodic contour and interval structure. |
Q30368976 | Neural correlates of intentional switching from ternary to binary meter in a musical hemiola pattern. |
Q47911350 | Neural coupling between contralesional motor and frontoparietal networks correlates with motor ability in individuals with chronic stroke. |
Q30396280 | Neural representation of a melodic motif: Effects of polyphonic contexts |
Q33492936 | Neural representation of transposed melody in infants at 6 months of age. |
Q30356238 | Neuromagnetic beta and gamma oscillations in the somatosensory cortex after music training in healthy older adults and a chronic stroke patient. |
Q30356699 | One year of musical training affects development of auditory cortical-evoked fields in young children. |
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Q63444471 | Reply to Repp's (2012) Commentary on “The Effects of Stimulus Rate and Tapping Rate on Tapping Performance” |
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Q48240991 | Tonotopic representation of missing fundamental complex sounds in the human auditory cortex |
Q55364262 | Variability in stroke motor outcome is explained by structural and functional integrity of the motor system. |
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