Area of research
Cellular and Molecular Neuroscience · Cognitive Neuroscience
Research interest
Research interests include Neural dynamics and brain function, Neuroscience and Neuropharmacology Research, Neuroscience and Neural Engineering, and Advanced Memory and Neural Computing.
Distinct laminar origins of sensory-evoked high-gamma and low-frequency ECoG signals revealed by optogenetics.
Reward history guides focal attention in whisker somatosensory cortex.
Molecular states underlying neuronal cell type development and plasticity in the postnatal whisker cortex.
Physiological and molecular impairment of PV circuit homeostasis in mouse models of autism
Multiscale Investigations of Cortical Processing by Integrating Laminar Polytrodes and Optogenetics with Micro Electrocorticography in Rodents
Distinct laminar origins of high-gamma and low-frequency ECoG signals revealed by optogenetics
Degraded sensory coding in a mouse model of
<i>Scn2a-</i>
related disorder and its rescue by CRISPRa gene activation
A fast and responsive voltage indicator with enhanced sensitivity for unitary synaptic events
Degraded tactile coding in the Cntnap2 mouse model of autism
Improving positively tuned voltage indicators for faster kinetics and higher contrast
Molecular states underlying neuronal cell type development and plasticity in the whisker cortex
Reward history guides focal attention in whisker somatosensory cortex
VIP interneurons in sensory cortex encode sensory and action signals but not direct reward signals
Degraded tactile coding in the Cntnap2 mouse model of autism
Tuning instability of non-columnar neurons in the salt-and-pepper whisker map in somatosensory cortex.
VIP interneurons in mouse whisker S1 exhibit sensory and action-related signals during goal-directed behavior
Elementary motion sequence detectors in whisker somatosensory cortex.
Enrichment drives emergence of functional columns and improves sensory coding in the whisker map in L2/3 of mouse S1.
Decision letter: Pathway-, layer- and cell-type-specific thalamic input to mouse barrel cortex
Author response: Enrichment drives emergence of functional columns and improves sensory coding in the whisker map in L2/3 of mouse S1
Structured networks support sparse traveling waves in rodent somatosensory cortex
Integrating Hebbian and homeostatic plasticity: the current state of the field and future research directions
Rapid homeostasis by disinhibition during whisker map plasticity