Area of research
Biomedical Engineering · Biophysics
Research interest
Research interests include Advanced Fluorescence Microscopy Techniques, Optical Coherence Tomography Applications, Photoacoustic and Ultrasonic Imaging, and Digital Holography and Microscopy.
Superresolution imaging of live samples by centroid reassignment microscopy
Large-scale deep tissue voltage imaging with targeted-illumination confocal microscopy
Sensitivity optimization of a rhodopsin-based fluorescent voltage indicator
Resolution enhancement with deblurring by pixel reassignment
High-speed multiplane confocal microscopy for voltage imaging in densely labeled neuronal populations
Theta and gamma rhythmic coding through two spike output modes in the hippocampus during spatial navigation
High-throughput deep tissue two-photon microscopy at kilohertz frame rates
Roadmap on wavefront shaping and deep imaging in complex media
Large-scale voltage imaging in behaving mice using targeted illumination
Fast, multiplane line-scan confocal microscopy using axially distributed slits
Sensitivity optimization of a rhodopsin-based fluorescent voltage indicator
Simultaneous multiplane imaging with reverberation two-photon microscopy
High-contrast multifocus microscopy with a single camera and z-splitter prism
Development of a beam propagation method to simulate the point spread function degradation in scattering media
Video-rate volumetric neuronal imaging using 3D targeted illumination
Axial localization with modulated-illumination extended-depth-of-field microscopy
Extended depth-of-field microscopy with a high-speed deformable mirror
Dual-modality endomicroscopy with co-registered fluorescence and phase contrast
High-throughput imaging of self-luminous objects through a single optical fibre
Phase-gradient microscopy in thick tissue with oblique back-illumination
Pyramidal cells accumulate chloride at seizure onset
Quantitative phase imaging using a partitioned detection aperture
Fast optically sectioned fluorescence HiLo endomicroscopy