Area of research
Nuclear and High Energy Physics · Geophysics
Research interest
Research interests include NMR spectroscopy and applications, Geophysical and Geoelectrical Methods, Geophysical Methods and Applications, and Advanced MRI Techniques and Applications.
Effects of iron oxide nanocoatings on the seed germination, seedling growth, and antioxidant response of aromatic rice grown in the presence of different concentrations of rice straw extracts
Role of P-glycoprotein in Regulating the Efficacy, Toxicity and Pharmacokinetics of Yunaconitine
Enhanced humidity sensing properties of interstitial B-doped TiO2 nanofibers
Clinical poisoning events involving yunaconitine may be highly correlated with metabolism-based interactions: A critical role of CYP3A4
A potent PGK1 antagonist reveals PGK1 regulates the production of IL-1β and IL-6
Neoline, fuziline, songorine and 10-OH mesaconitine are potential quality markers of Fuzi: In vitro and in vivo explorations as well as pharmacokinetics, efficacy and toxicity evaluations
Three-dimensional forward modeling and characterization of the responses of the ground-airborne frequency-domain electromagnetic method
Progressive Study on the Non-thermal Effects of Magnetic Field Therapy in Oncology
A review of Air-Core coil sensors in surface geophysical exploration
High depth resolution design of small diameter nuclear magnetic resonance logging probe based on compensating magnets for soil moisture measurement in situ
Low-Frequency Magnetic Fields (LF-MFs) Inhibit Proliferation by Triggering Apoptosis and Altering Cell Cycle Distribution in Breast Cancer Cells
Semiconductor Metal Oxides as Chemoresistive Sensors for Detecting Volatile Organic Compounds
Application of magnetic resonance sounding to tunnels for advanced detection of water-related disasters: A case study in the Dadushan Tunnel, Guizhou, China
The Morphologies of the Semiconductor Oxides and Their Gas-Sensing Properties
Neolignans from <i>Aristolochia fordiana</i> Prevent Oxidative Stress-Induced Neuronal Death through Maintaining the Nrf2/HO-1 Pathway in HT22 Cells