Area of research
Cellular and Molecular Neuroscience · Cognitive Neuroscience
Research interest
Research interests include Neuroscience and Neuropharmacology Research, Memory and Neural Mechanisms, Neurogenesis and neuroplasticity mechanisms, and Neuroinflammation and Neurodegeneration Mechanisms.
Monolithic three-dimensional neural probes from deterministic rolling of soft electronics
Long-term calorie restriction reduces oxidative DNA damage to oligodendroglia and promotes homeostatic microglia in the aging monkey brain
Mesenchymal-derived extracellular vesicles enhance microglia-mediated synapse remodeling after cortical injury in aging Rhesus monkeys
Neuronal properties of pyramidal cells in lateral prefrontal cortex of the aging rhesus monkey brain are associated with performance deficits on spatial working memory but not executive function
Immune proteins C1q and CD47 may contribute to aberrant microglia-mediated synapse loss in the aging monkey brain that is associated with cognitive impairment
Aging compromises oligodendrocyte precursor cell maturation and efficient remyelination in the monkey brain
Vascular Collagen Type-IV in Hypertension and Cerebral Small Vessel Disease
Gut-licensed IFNγ+ NK cells drive LAMP1+TRAIL+ anti-inflammatory astrocytes
Barcoded viral tracing of single-cell interactions in central nervous system inflammation
Exosomes derived from bone marrow mesenchymal stromal cells promote remyelination and reduce neuroinflammation in the demyelinating central nervous system
T Cells Actively Infiltrate the White Matter of the Aging Monkey Brain in Relation to Increased Microglial Reactivity and Cognitive Decline
Quantitative birefringence microscopy for imaging the structural integrity of CNS myelin following circumscribed cortical injury in the rhesus monkey
Sex differences in recovery of motor function in a rhesus monkey model of cortical injury
Sequence diversity analyses of an improved rhesus macaque genome enhance its biomedical utility
Treatment with Mesenchymal-Derived Extracellular Vesicles Reduces Injury-Related Pathology in Pyramidal Neurons of Monkey Perilesional Ventral Premotor Cortex
Extracellular vesicles derived from bone marrow mesenchymal stem cells enhance myelin maintenance after cortical injury in aged rhesus monkeys
Distribution and overlap of entorhinal, premotor, and amygdalar connections in the monkey anterior cingulate cortex
Copy number variants and fixed duplications among 198 rhesus macaques (Macaca mulatta)
MRI-based Parcellation and Morphometry of the Individual Rhesus Monkey Brain: the macaque Harvard-Oxford Atlas (mHOA), a translational system referencing a standardized ontology
White matter hyperintensities in vascular contributions to cognitive impairment and dementia (VCID): Knowledge gaps and opportunities
Extracellular vesicles from mesenchymal stem cells reduce microglial-mediated neuroinflammation after cortical injury in aged Rhesus monkeys
A Mutation in <i>Hnrnph1</i> That Decreases Methamphetamine-Induced Reinforcement, Reward, and Dopamine Release and Increases Synaptosomal hnRNP H and Mitochondrial Proteins
Mesenchymal derived exosomes enhance recovery of motor function in a monkey model of cortical injury
Cell based therapy reduces secondary damage and increases extent of microglial activation following cortical injury
Lifespan Trajectories of White Matter Changes in Rhesus Monkeys
Cell based therapy enhances activation of ventral premotor cortex to improve recovery following primary motor cortex injury
The aged rhesus macaque manifests Braak stage III/IV Alzheimer's‐like pathology
Microglia activation and phagocytosis: relationship with aging and cognitive impairment in the rhesus monkey
Evaluation of Long-Term Cryostorage of Brain Tissue Sections for Quantitative Histochemistry
Chronic curcumin treatment improves spatial working memory but not recognition memory in middle-aged rhesus monkeys