Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include Nanoplatforms for cancer theranostics, Nanoparticle-Based Drug Delivery, Photoacoustic and Ultrasonic Imaging, and Gold and Silver Nanoparticles Synthesis and Applications.
Dual Modality Shortwave Infrared Fluorescence and Photoacoutic Imaging of Radiation-Induced Vascular Damage in Stereotactic Ablative Radiation Therapy
Synthesis, Characterization, and Biomedical Applications of a Targeted Dual-Modal Near-Infrared-II Fluorescence and Photoacoustic Imaging Nanoprobe
Generalized Adaptive Gaussian Markov Random Field for X-Ray Luminescence Computed Tomography
Hybrid anisotropic nanostructures for dual-modal cancer imaging and image-guided chemo-thermo therapies
Dual-Modal NIR-II Fluorescence and Photoacoustic Imaging of Thyroid Carcinoma Using EGFR-targeted Donor-Acceptor Chromophore Based Nanoprobes
2016cited by 2position: first
Self-assembled NIR-II dye conjugated small peptides for bone imaging
2016cited by 0position: middle
A small-molecule dye for NIR-II imaging
Engineering Melanin Nanoparticles as an Efficient Drug–Delivery System for Imaging‐Guided Chemotherapy
Photoacoustic Imaging: Perylene‐Diimide‐Based Nanoparticles as Highly Efficient Photoacoustic Agents for Deep Brain Tumor Imaging in Living Mice (Adv. Mater. 5/2015)
Drug Delivery: Engineering Melanin Nanoparticles as an Efficient Drug–Delivery System for Imaging‐Guided Chemotherapy (Adv. Mater. 34/2015)
Perylene‐Diimide‐Based Nanoparticles as Highly Efficient Photoacoustic Agents for Deep Brain Tumor Imaging in Living Mice
Hybrid Nanotrimers for Dual <i>T</i><sub>1</sub> and <i>T</i><sub>2</sub>-Weighted Magnetic Resonance Imaging
In Vitro and In Vivo Uncaging and Bioluminescence Imaging by Using Photocaged Upconversion Nanoparticles
In Vitro and In Vivo Uncaging and Bioluminescence Imaging by Using Photocaged Upconversion Nanoparticles