Area of research
Cellular and Molecular Neuroscience · Physiology
Research interest
Research focused on Neuroscience and Dopamine, with related work in Morris water navigation task, Prefrontal cortex, Nanomedicine. Notable publications include 'Distinct and Dynamic ON and OFF Neural Ensembles in the Prefrontal Cortex Code Social Exploration', 'Traditional herbal medicine and nanomedicine: Converging disciplines to improve therapeutic efficacy and human health', and 'Serotonin and dopamine transporter PET changes in the premotor phase of LRRK2 parkinsonism: cross-sectional studies'.
METTL5 regulates SEPHS2-mediated selenoprotein synthesis to promote multiple myeloma survival and progression
<scp>SYHA1813</scp> , A <scp>VEGFR</scp> and <scp>CSF1R</scp> Inhibitor, in Patients With Recurrent High‐Grade Gliomas: A Multicenter, Open‐Label Phase I Study
LBA60 Phase III study of SHR-1701 versus placebo in combination with chemo as first-line (1L) therapy for HER2-negative gastric/gastroesophageal junction adenocarcinoma (G/GEJA)
High-Throughput, Quantitative Screening of Quorum-Sensing Inhibitors Based on a Bacterial Biosensor
Whole-brain mapping reveals the divergent impact of ketamine on the dopamine system
Coral Reefs of the Western Pacific Ocean in a Changing Anthropocene
Knockdown of circ_0001679 alleviates lipopolysaccharide-induced MLE-12 lung cell injury by regulating the miR-338-3p/ mitogen-activated protein kinase 1 axis
Traditional herbal medicine and nanomedicine: Converging disciplines to improve therapeutic efficacy and human health
Ferulic acid exerts Nrf2-dependent protection against prenatal lead exposure-induced cognitive impairment in offspring mice
Methylation of <i>MdMYB1</i> locus mediated by RdDM pathway regulates anthocyanin biosynthesis in apple
Distinct and Dynamic ON and OFF Neural Ensembles in the Prefrontal Cortex Code Social Exploration
Serotonin and dopamine transporter PET changes in the premotor phase of LRRK2 parkinsonism: cross-sectional studies
Bisphenol A and estrogen induce proliferation of human thyroid tumor cells via an estrogen-receptor-dependent pathway
Role of dendritic cells in pathogenesis and treatment of multiple sclerosis
APOE4 enhances age-dependent decline in cognitive function by down-regulating an NMDA receptor pathway in EFAD-Tg mice