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.
Dopamine D1 receptor activation in the striatum is sufficient to drive reinforcement of anteceding cortical patterns
Left hemisphere dominance for bilateral kinematic encoding in the human brain
A neural model of proximity to reward
Recommendations for Responsible Development and Application of Neurotechnologies
Invariant neural dynamics drive commands to control different movements
Diverse operant control of different motor cortex populations during learning
A wireless millimetre-scale implantable neural stimulator with ultrasonically powered bidirectional communication
A wireless millimetre-scale implantable neural stimulator with ultrasonically powered bidirectional communication.
Hybrid dedicated and distributed coding in PMd/M1 provides separation and interaction of bilateral arm signals
A Sub-mm<sup>3</sup> Ultrasonic Free-Floating Implant for Multi-Mote Neural Recording
A Sub-mm<sup>3</sup> Ultrasonic Free-Floating Implant for Multi-Mote Neural Recording
Evidence for a neural law of effect
Four ethical priorities for neurotechnologies and AI
Emergence of Coordinated Neural Dynamics Underlies Neuroprosthetic Learning and Skillful Control
A silicon carbide array for electrocorticography and peripheral nerve recording
Robust Brain-Machine Interface Design Using Optimal Feedback Control Modeling and Adaptive Point Process Filtering
Representation of Muscle Synergies in the Primate Brain
A Minimally Invasive 64-Channel Wireless μECoG Implant
Closed-Loop Decoder Adaptation Shapes Neural Plasticity for Skillful Neuroprosthetic Control
Miniature implantable and wearable on-body antennas: towards the new era of wireless body-centric systems [antenna applications corner]
Physical principles for scalable neural recording
Microstimulation Activates a Handful of Muscle Synergies
Task-Dependent Changes in Cross-Level Coupling between Single Neurons and Oscillatory Activity in Multiscale Networks