Search Results - kenneth+liechty

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Human Skin-on-a-Chip for Modeling Pressure-Induced Injury and Quantitative Immune Responses for Pre-Clinical Safety
This invention is a full-thickness, immune-responsive human skin-on-a-chip platform designed to model pressure-induced injury and quantitatively assess inflammatory toxicity, barrier dysfunction, and immunogenic response. The platform will function as a next-generation New Approach Method (NAM) supporting pre-clinical safety decision-making and reducing...
Published: 5/18/2026   |   Updated: 5/18/2026   |   Inventor(s): Carlos Zgheib, Kenneth Liechty, Melisa Kafali
Keywords(s):  
Category(s): Technology Classifications > Healthcare Portfolios > Immunology, Autoimmune & Inflammation, Technology Classifications > Life Sciences, Technology Classifications > Medical Devices, Technology Classifications > Research Tools > Simulators and Modeling Tools
Distributed Feedback Fiber Laser Pumped by Multimode Diode Lasers
Researchers at the University of Arizona College of Optical Sciences and Canada's Carleton University recently succeeded in fabricating high reflectivity (>99%) Fiber Bragg Gratings (FBGs) into phosphate glass fibers using UV light and a phase mask technique. With this new manufacturing technique, fiber lasers can be created as single monolithic...
Published: 4/3/2023   |   Updated: 11/30/2014   |   Inventor(s): Nasser Peyghambarian, Axel Schülzgen, Li Li, Jacques Albert
Keywords(s):  
Category(s): Technology Classifications > Imaging & Optics, Technology Classifications > Imaging & Optics > Lasers & Other Sources
All-Fiber Multicore Fiber Laser Devices
Researchers at the University of Arizona have developed a compact, power-scalable, alignment-free fiber laser that takes a new approach to stabilizing phase-locked operation of multi-core fiber lasers by completely removing all free space optical components. This high-brightness, all-fiber laser package uses passive optical fiber spliced at both ends...
Published: 4/3/2023   |   Updated: 1/31/2014   |   Inventor(s): Nasser Peyghambarian, Axel Schülzgen, Li Li
Keywords(s):  
Category(s): Technology Classifications > Imaging & Optics, Technology Classifications > Imaging & Optics > Fiber Optics, Technology Classifications > Imaging & Optics > Lasers & Other Sources