Showing results (11-20 of 36) with videos related to
Sort By:
Pageof 4
Instrumentation Science & Technology|March 29, 2019
Real-time, label-free characterization of oligosaccharide-binding proteins using carbohydrate microarrays and an ellipsometry-based biosensorYung-Shin Sun, X D ZhuMaterials (Basel, Switzerland)|January 16, 2020
Correction: Lin. et al. Effects of Substrate-Coating Materials on the Wound-Healing Process. Materials 2019, 12, 2775Jin-Young Lin, Kai-Yin Lo, Yung-Shin SunMaterials (Basel, Switzerland)|September 1, 2019
Effects of Substrate-Coating Materials on the Wound-Healing ProcessJin-Young Lin, Kai-Yin Lo, Yung-Shin SunSensors (Basel, Switzerland)|January 3, 2017
Integration of Curved D-Type Optical Fiber Sensor with Microfluidic ChipYung-Shin Sun, Chang-Jyun Li, Jin-Cherng HsuInstrumentation Science & Technology|March 26, 2019
Evaluation of Kinetics Using Label-Free Optical BiosensorsYung-Shin Sun, James P Landry, X D ZhuBiomicrofluidics|September 7, 2013
In vitro electrical-stimulated wound-healing chip for studying electric field-assisted wound-healing processYung-Shin Sun, Shih-Wei Peng, Ji-Yen ChengBMC Systems Biology|March 18, 2017
Quantifying the roles of random motility and directed motility using advection-diffusion theory for a 3T3 fibroblast cell migration assay stimulated with an electric fieldMatthew J Simpson, Kai-Yin Lo, Yung-Shin SunScientific Reports|December 29, 2019
A microfluidics-based wound-healing assay for studying the effects of shear stresses, wound widths, and chemicals on the wound-healing processJin-Young Lin, Kai-Yin Lo, Yung-Shin SunBiomicrofluidics|January 8, 2014
Effects of shear stresses and antioxidant concentrations on the production of reactive oxygen species in lung cancer cellsKai-Yin Lo, Yun Zhu, Hsieh-Fu Tsai, et al.International Journal of Molecular Sciences|September 25, 2019
Use Microfluidic Chips to Study the Phototaxis of Lung Cancer CellsFong-Yi Lin, Jin-Young Lin, Kai-Yin Lo, et al.Pageof 4