Area of research
Biophysics · Analytical Chemistry
Research interest
Research interests include Spectroscopy Techniques in Biomedical and Chemical Research, Spectroscopy and Chemometric Analyses, Optical Imaging and Spectroscopy Techniques, and Photodynamic Therapy Research Studies.
Spatially selective multiphoton photothermolysis guided by reflectance confocal microscopy for precise vessel closure in the mouse eye limbus.
Motion-tolerant 3D volumetric multimodality microscopy imaging of human skin with subcellular resolution and extended field-of-view.
Autofluorescence Imaging of Parathyroid and Thyroid Under Visible and Near-IR Light Excitation.
Enhancing <i>in vivo</i> morphological assessment of skin conditions using a four-state polarized multispectral imaging system.
Single source CARS-based multimodal microscopy system for biological tissue imaging [Invited].
Studying on the in vivo pathological evolution of spinal cord injury with the rat model by the method of integrated multispectral imaging and Raman spectroscopy
<i>In vivo</i> micro-Raman spectroscopy from an arbitrary-shaped region of interest under simultaneous reflectance confocal imaging guidance
Precise Serial Microregistration Enables Quantitative Microscopy Imaging Tracking of Human Skin Cells In Vivo.
Evaluation of Minimum-to-Severe Global and Macrovesicular Steatosis in Human Liver Specimens: A Portable Ambient Light-Compatible Spectroscopic Probe.
Evaluation of minimum-to-severe global and macrovesicular steatosis in human liver specimens: a portable ambient light-compatible spectroscopic probe
Cutaneous Porphyrin Exhibits Anti-Stokes Fluorescence Emission Under Continuous Wave Laser Excitation
Collision Enhanced Raman Scattering (CERS): An Ultra-High Efficient Raman Enhancement Technique for Hollow Core Photonic Crystal Fiber Based Raman Spectroscopy Gas Analyzer.
A New Gas Analysis Method Based on Single-Beam Excitation Stimulated Raman Scattering in Hollow Core Photonic Crystal Fiber Enhanced Raman Spectroscopy.
Microscopic Raman illustrating antitumor enhancement effects by the combination drugs of γ-secretase inhibitor and cisplatin on osteosarcoma cells.
Blood plasma resonance Raman spectroscopy combined with multivariate analysis for esophageal cancer detection.
A Side-Viewing Endoscopic Probe With Distal Micro Rotary Scanner for Multimodal Luminal Imaging and Analysis
Unveiling dose- and time-dependent osteosarcoma cell responses to the γ-secretase inhibitor, DAPT, by confocal Raman microscopy.
Label-free liquid biopsy based on blood circulating DNA detection using SERS-based nanotechnology for nasopharyngeal cancer screening.
Incorporating patient demographics into Raman spectroscopy algorithm improves in vivo skin cancer diagnostic specificity
Assessment of treatment efficacy using surface-enhanced Raman spectroscopy analysis of urine in rats with kidney transplantation or kidney disease.
Precise closure of single blood vessels via multiphoton absorption-based photothermolysis.
Precise in vivo tissue micro-Raman spectroscopy with simultaneous reflectance confocal microscopy monitoring using a single laser.
Site-specific variations in cutaneous autofluorescence revealed by excitation-emission matrix spectroscopy.
Monte Carlo simulation of<i>in vivo</i>Raman spectral Measurements of human skin with a multi‐layered tissue optical model
Real-time Raman Spectroscopy for <i>In Vivo</i> Skin Cancer Diagnosis