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 Muscle activation and electromyography studies.
Pseudo-linear summation explains neural geometry of multi-finger movements in human premotor cortex
Gesture encoding in human left precentral gyrus neuronal ensembles
Mapping the computational similarity of individual neurons within large-scale ensemble recordings using the SIMNETS analysis framework
Multi-gesture drag-and-drop decoding in a 2D iBCI control task
Neural signal analysis in chronic stroke: advancing intracortical brain-computer interface design
Measuring instability in chronic human intracortical neural recordings towards stable, long-term brain-computer interfaces
Gesture encoding in human left precentral gyrus neuronal ensembles
Measuring instability in chronic human intracortical neural recordings towards stable, long-term brain-computer interfaces
Multi-gesture drag-and-drop decoding in a 2D iBCI control task
Pseudo-linear Summation explains Neural Geometry of Multi-finger Movements in Human Premotor Cortex
Universals for coding action in motor cortical networks: conserved neural ensemble latent space geometry for reach and grasp tasks
Auditory cues reveal intended movement information in middle frontal gyrus neuronal ensemble activity of a person with tetraplegia
The Neural Representation of Force across Grasp Types in Motor Cortex of Humans with Tetraplegia
Neural Representation of Observed, Imagined, and Attempted Grasping Force in Motor Cortex of Individuals with Chronic Tetraplegia
The neural representation of force across grasp types in motor cortex of humans with tetraplegia
Rapid calibration of an intracortical brain–computer interface for people with tetraplegia
Watch, Imagine, Attempt: Motor Cortex Single-Unit Activity Reveals Context-Dependent Movement Encoding in Humans With Tetraplegia
Mapping the Computational Similarity of Individual Neurons within Large-scale Ensemble Recordings using the SIMNETS analysis framework
Failure mode analysis of silicon-based intracortical microelectrode arrays in non-human primates