Area of research
Cognitive Neuroscience · Cellular and Molecular Neuroscience
Research interest
Research interests include EEG and Brain-Computer Interfaces, Neuroscience and Neural Engineering, Neural dynamics and brain function, and Advanced Memory and Neural Computing.
Combing Multiple Visual Stimuli to Enhance the Performance of VEP-Based Biometrics
A Canonical Correlation Analysis-Based Transfer Learning Framework for Enhancing the Performance of SSVEP-Based BCIs
A high-frequency SSVEP-BCI system based on a 360 Hz refresh rate
SERPINB5 is a novel serum diagnostic biomarker for gastric high-grade intraepithelial neoplasia and plays a role in regulation of macrophage phenotypes
An Ultrasensitive Contact Lens Sensor Based On Self‐Assembly Graphene For Continuous Intraocular Pressure Monitoring
A Training Data-Driven Canonical Correlation Analysis Algorithm for Designing Spatial Filters to Enhance Performance of SSVEP-Based BCIs
Application of graphene nanowalls in an intraocular pressure sensor
Adsorption of cationic dye from water using an iron oxide/activated carbon magnetic composites prepared from sugarcane bagasse by microwave method
Air‐stable zirconium (IV)‐salophen perfluorooctanesulfonate as a highly efficient and reusable catalyst for the synthesis of 3,4‐dihydropyrimidin‐2‐(1H)‐ones/thiones under solvent‐free conditions
Maximum Signal Fraction Analysis for Enhancing Signal-to-Noise Ratio of EEG Signals in SSVEP-Based BCIs
Alterations in Brain Network Topology and Structural-Functional Connectome Coupling Relate to Cognitive Impairment
A Novel c-VEP BCI Paradigm for Increasing the Number of Stimulus Targets Based on Grouping Modulation With Different Codes
Enhancing Detection of SSVEPs for a High-Speed Brain Speller Using Task-Related Component Analysis
Two Independent Frontal Midline Theta Oscillations during Conflict Detection and Adaptation in a Simon-Type Manual Reaching Task
Detecting Glaucoma With a Portable Brain-Computer Interface for Objective Assessment of Visual Function Loss
A Benchmark Dataset for SSVEP-Based Brain–Computer Interfaces
An Online Brain-Computer Interface Based on SSVEPs Measured From Non-Hair-Bearing Areas
High-speed spelling with a noninvasive brain–computer interface
Filter bank canonical correlation analysis for implementing a high-speed SSVEP-based brain–computer interface
A Comparison Study of Canonical Correlation Analysis Based Methods for Detecting Steady-State Visual Evoked Potentials
Enhancing performances of SSVEP-based brain–computer interfaces via exploiting inter-subject information
A HIGH-SPEED BRAIN SPELLER USING STEADY-STATE VISUAL EVOKED POTENTIALS
Generating Visual Flickers for Eliciting Robust Steady-State Visual Evoked Potentials at Flexible Frequencies Using Monitor Refresh Rate
Hybrid frequency and phase coding for a high-speed SSVEP-based BCI speller
A Practical Mobile Dry EEG System for Human Computer Interfaces