Area of research
Cognitive Neuroscience · Electrical and Electronic Engineering
Research interest
Research interests include Neural dynamics and brain function, Optical Wireless Communication Technologies, Laser-Plasma Interactions and Diagnostics, and Photoreceptor and optogenetics research.
A bioluminescent activity dependent platform, BLADe, for converting intracellular activity to photoreceptor activation
CaBLAM: a high-contrast bioluminescent Ca2+ indicator derived from an engineered Oplophorus gracilirostris luciferase
Control of Synaptic Communication through Molecularly Engineered Bioluminescence Light Emission and Sensing
Deviance detection via competitive inhibition between local neocortical ensembles
Efficient opto- and chemogenetic control in a single molecule driven by FRET-modified bioluminescence
Engineering luminopsins with improved coupling efficiencies
Neocortical inhibitory imbalance predicts successful sensory detection
Toward a brighter constellation: multiorgan neuroimaging of neural and vascular dynamics in the spinal cord and brain
Magnify is a universal molecular anchoring strategy for expansion microscopy
Choroid plexus-targeted NKCC1 overexpression to treat post-hemorrhagic hydrocephalus
Near-lifespan longitudinal tracking of brain microvascular morphology, topology, and flow in male mice
CaBLAM! A high-contrast bioluminescent Ca <sup>2+</sup> indicator derived from an engineered <i>Oplophorus gracilirostris</i> luciferase
A New Highly Efficient Molecule for Both Optogenetic and Chemogenetic Control Driven by FRET Amplification of BioLuminescence
A Bioluminescent Activity Dependent Platform, BLADe, for Converting Intracellular Activity to Photoreceptor Activation
Engineering luminopsins with improved coupling efficiencies
Towards a Brighter Constellation: Multi-Organ Neuroimaging of Neural and Vascular Dynamics in the Spinal Cord and Brain
A call for more clarity around causality in neuroscience
Selective control of synaptically-connected circuit elements by all-optical synapses
Nanoscale Imaging of Biomolecules Using Molecule Anchorable Gel-enabled Nanoscale In-situ Fluorescence Microscopy
Wave-like dopamine dynamics as a mechanism for spatiotemporal credit assignment
Selective postnatal excitation of neocortical pyramidal neurons results in distinctive behavioral and circuit deficits in adulthood
Bioluminescent optogenetic (BL-OG) activation of neurons during mouse postnatal brain development
Selective Control of Synaptically-Connected Circuit Elements by All-Optical Synapses
Developing biolight-based molecular technologies for simultaneous mapping, imaging, and controlling neural activity
Dysfunction of cortical GABAergic neurons leads to sensory hyper-reactivity in a Shank3 mouse model of ASD
Human Neocortical Neurosolver (HNN), a new software tool for interpreting the cellular and network origin of human MEG/EEG data
Tracking Calcium Dynamics and Immune Surveillance at the Choroid Plexus Blood-Cerebrospinal Fluid Interface
Layer 6 ensembles can selectively regulate the behavioral impact and layer-specific representation of sensory deviants
Miniaturized Devices for Bioluminescence Imaging in Freely Behaving Animals
Selective Postnatal Excitation of Neocortical Pyramidal Neurons Results in Distinctive Behavioral and Circuit Deficits in Adulthood
Conference: 4th NeuroNex Investigator Meeting: Beyond Neurons
NeuroNex Technology Hub: Bioluminescence for Optimal Brain Control and Imaging
CRCNS Research Proposal: Contributions of the Thalamus and Basal Ganglia to Neocortical Beta Oscillation: A Novel Computational Hypothesis
Collaborative Research: The Hemo-Neural Hypothesis
SGER: Collaborative Research: Cognitive Rhythms Collaborative, A Discovery Network
Neural Correlates of Vibrissa Resonance