Search Results - zijun+zhang

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Method for 3D Nonlinear Structured Illumination Super-resolution Imaging
Researchers at the University of Arizona have developed a super-resolution microscopy method that is faster, easier to use, and has less artifacts than current super-resolution methods. The result is a 3D dual-color stimulated emission depletion (STED) nonlinear structured illumination (NL-SIM) microscope. Using a combination of low coherent light and...
Published: 4/3/2023   |   Inventor(s): Leilei Peng, Yu Li, Han Zhang
Keywords(s):  
Category(s): Technology Classifications > Imaging & Optics, Technology Classifications > Imaging & Optics > Medical Imaging, Technology Classifications > Imaging & Optics > Microscopy, Spectroscopy, Polarimetry
Microscopy for the Identification of Oxyhemoglobin Species in Red Blood Cells
This novel invention combines a Solid Immersion Lens (SIL) microscope with the Surface Plasmon Resonance (SPR) effect to achieve precise measurement of refractive index of a target, with high spatial resolution. When used to examine Red Blood Cells (RBC) at multiple wavelengths, the refractive index measurement yields the variation in oxygen content...
Published: 4/3/2023   |   Inventor(s): Thomas Milster, Kurt Denninghoff, Pramod Khulbe, Jun Zhang
Keywords(s):  
Category(s): Technology Classifications > Imaging & Optics > Medical Imaging, Technology Classifications > Imaging & Optics
Charge Ahead: Scale-Ready Pt₃Ni Nano-Octahedra Boost ORR Speeds and Use Far Less Platinum
Title: Charge Ahead: Scale-Ready Pt₃Ni Nano-Octahedra Boost ORR Speeds and Use Far Less Platinum This invention introduces a scalable wet-chemical process to produce Pt₃Ni nano-octahedra with {111} facets, delivering up to 6x higher oxygen reduction reaction activity while cutting platinum usage. Background: Fuel cell performance is limited by the...
Published: 9/3/2025   |   Inventor(s): Jiye Fang, Jun Zhang
Keywords(s): #SUNYresearch, CleanTech, Technologies
Category(s): Technology Classifications > Nanotechnology, Campus > Binghamton University
DARTS: Deep Learning Augmented RNA-seq Analysis of Transcript Splicing
SummaryResearchers led by Yi Xing have developed a novel deep learning algorithm to detect alternative splicing patterns in RNA-seq dataBackgroundDevelopment of genetic sequencing tools like RNA-seq has ushered in an age of big data in genomics and transcriptomics. Collective efforts like ENCODE and the Roadmap Epigenomics Project (REP) have accelerated...
Published: 7/17/2025   |   Inventor(s): Yi Xing, Zijun Zhang
Keywords(s): Life Science Research Tools, Nucleic Acid Platform Systems, Research Methods, Software, Targets And Assays, Therapeutics & Vaccines
Category(s): Life Science Research Tools, Life Science Research Tools > Research Methods, Diagnostic Markers > Targets And Assays, Platforms > Drug Delivery > Nucleic Acid Platform Systems, Therapeutics, Software & Algorithms > Programs