Area of research
Biophysics · Cellular and Molecular Neuroscience
Research interest
Research interests include Photoreceptor and optogenetics research, Advanced Fluorescence Microscopy Techniques, Neural dynamics and brain function, and Zebrafish Biomedical Research Applications.
Sensitivity optimization of a rhodopsin-based fluorescent voltage indicator
TEMPO enables sequential genetic labeling and manipulation of vertebrate cell lineages
In vivo glucose imaging in multiple model organisms with an engineered single-wavelength sensor
Sensitivity optimization of a rhodopsin-based fluorescent voltage indicator
A general approach to engineer positive-going eFRET voltage indicators
Rational Design of Bioavailable Photosensitizers for Manipulation and Imaging of Biological Systems
A programmable sequence of reporters for lineage analysis
Bright and photostable chemigenetic indicators for extended in vivo voltage imaging
Dynamic super-resolution structured illumination imaging in the living brain
Single-Cell Reconstruction of Emerging Population Activity in an Entire Developing Circuit
Chronology-based architecture of descending circuits that underlie the development of locomotor repertoire after birth
Unlimited Genetic Switches for Cell-Type-Specific Manipulation
Observing the cell in its native state: Imaging subcellular dynamics in multicellular organisms
A genetically encoded Ca2+ indicator based on circularly permutated sea anemone red fluorescent protein eqFP578
Brain-wide circuit interrogation at the cellular level guided by online analysis of neuronal function
50 Hz volumetric functional imaging with continuously adjustable depth of focus
Video-rate volumetric functional imaging of the brain at synaptic resolution
Visualizing long-term single-molecule dynamics in vivo by stochastic protein labeling
A circuit motif in the zebrafish hindbrain for a two alternative behavioral choice to turn left or right