Area of research
Molecular Biology · Physiology
Research interest
Research interests include CRISPR and Genetic Engineering, Alzheimer's disease research and treatments, Pluripotent Stem Cells Research, and Prostate Cancer Treatment and Research.
CRISPR–Cas9 delivery strategies for the modulation of immune and non-immune cells
Genome expansion by a CRISPR trimmer-integrase
Gain of toxic apolipoprotein E4 effects in human iPSC-derived neurons is ameliorated by a small-molecule structure corrector
Direct Reprogramming of Mouse and Human Fibroblasts into Multipotent Neural Stem Cells with a Single Factor
EPSCoR Research Fellows: NSF: Building a Reliable and Transparent Predictive Condition Monitoring System for Distributed Wind Energy in Rural Areas with Permissioned Blockchain
NRT-AI: Harnessing AI for Inverse Design Training in Advanced and Sustainable Composites (IDeAS Composites)
Collaborative Research: Developing Advanced Magnesium Electrolytes Toward Low Cost, High Energy Density Mg Batteries
Collaborative Research: SHINE: What is Causing the Deficit of High-Energy Solar Particles in Cycle 24?
Seismic Documentation of Subsurface Damage Zones of the M7.2 Darfield and M6.3 Christchurch Earthquake Sequence in New Zealand Using Fault-Zone Trapped Waves
RAPID: Recording Fault-Zone Trapped Waves from Aftershocks of the M6.3 Christchurch Earthquake Sequence in New Zealand to Document the Subsurface Damage Zones
CAREER: Multiscale Thermomechanical Analysis of Nanomaterials and Nanostructures
Collaborative Research: SHINE--Observations and Modeling of Energetic Particles Associated with Corotating Interaction Regions During Solar Cycles 23 and 24
CAREER: Transport of Ions and Electrons in Solar Energetic Particle Events -- Towards an Integrated Space Weather Model
Study of Coseismic Damage and Post-mainshock Healing on the Longmen-Shan Fault Ruptured in the 2008 M8 Wenchuan Earthquake in China
Multiscale Computational Analysis of Nanoelectromechanical Systems (NEMS)
Collaborative Research: Integrating Observations of Low-Velocity Fault Zones With Models of Spontaneous Dynamic Earthquake Rupture
Collaborative Research: Understanding Fault Zone Compliance by Seismic Probing of InSAR Anomalies
Seismic Characterization of Core Structure of the San Andreas Fault at Parkfield, California Using Fault-Zone Guided Waves
Collaborative Research (USC/UCLA/UCR/SDSU): Continuing Study of Internal Structure, Dynamic Rupture, and Post-Earthquake Healing of the Hector Mine Rupture Zone
Characterization of the San Andreas Fault at Parkfield by Fault-Zone Trapped Waves: A SAFOD Pre-EarthScope Activity
Continuing Study of the Post-Seismic Fault Healing of the 1992 M7.5 Landers, California, Earthquake
Study of the Internal Structure, Dynamic Rupture, and Post-Earthquake Healing of the Hector Mine Earthquake Rupture Zone Using Fault-Zone Trapped Waves
Continuing Studies of the Strengthening of the Fault Zone Ruptured in the 1992 Landers, California Earthquake by Monitoring Fault Zone Waves
Investigation of the 3-D Fine Structure of the Fault Zone Ruptured in the M6.9 Kobe, Japan Earthquake of 1995 Using Fault Zone Trapped Waves
Study of the Healing of the Fault Zone Ruptured in the 1992 Landers, California Earthquake by Monitoring Fault Zone Trapped Waves