Area of research
Cognitive Neuroscience · Statistics and Probability
Research interest
Research interests include Neuroscience, Visual cortex, Receptive field, Numerosity adaptation effect, Sensory system, and Visual field.
Numerosity tuning in human association cortices and local image contrast representations in early visual cortex
Visual timing-tuned responses in human association cortices and response dynamics in early visual cortex
Auditory timing-tuned neural responses in the human auditory cortices
Topographic numerosity maps cover subitizing and estimation ranges
The role of neural tuning in quantity perception
Adaptation to visual numerosity changes neural numerosity selectivity
Simultaneous changes in visual acuity, cortical population receptive field size, visual field map size, and retinal thickness in healthy human aging
Topographic maps representing haptic numerosity reveals distinct sensory representations in supramodal networks
Size constancy affects the perception and parietal neural representation of object size
A Network of Topographic Maps in Human Association Cortex Hierarchically Transforms Visual Timing-Selective Responses
Temporal Characteristics of Priming of Attention Shifts Are Mirrored by BOLD Response Patterns in the Frontoparietal Attention Network
A network of topographic numerosity maps in human association cortex
Radial asymmetries in population receptive field size and cortical magnification factor in early visual cortex
Can responses to basic non-numerical visual features explain neural numerosity responses?
Comparing Parietal Quantity-Processing Mechanisms between Humans and Macaques
In vivo evidence of functional and anatomical stripe-based subdivisions in human V2 and V3
Topographic representations of object size and relationships with numerosity reveal generalized quantity processing in human parietal cortex
Action Preparation Shapes Processing in Early Visual Cortex
Transformation from a Retinal to a Cyclopean Representation in Human Visual Cortex
Visual motion transforms visual space representations similarly throughout the human visual hierarchy
Attraction of Position Preference by Spatial Attention throughout Human Visual Cortex
Measurement of population receptive fields in human early visual cortex using back-projection tomography
Cortical connective field estimates from resting state fMRI activity
Topographic Representation of Numerosity in the Human Parietal Cortex
Modeling center-surround configurations in population receptive fields using fMRI
Connective field modeling
Frequency specific spatial interactions in human electrocorticography: V1 alpha oscillations reflect surround suppression