Area of research
Cellular and Molecular Neuroscience · Molecular Biology
Research interest
Research interests include Neuroscience and Neuropharmacology Research, Ion channel regulation and function, Neural dynamics and brain function, and Neuroscience and Neural Engineering.
Pitolisant alleviates brain network dysfunction and cognitive deficits in a mouse model of Alzheimer’s disease
Glutamate indicators with increased sensitivity and tailored deactivation rates
A parallel tonotopically arranged thalamocortical circuit for sound processing
Amyloid β–dependent neuronal silencing through synaptic decoupling
Glutamate indicators with increased sensitivity and tailored deactivation rates
Glutamate indicators with improved activation kinetics and localization for imaging synaptic transmission
REM sleep-active hypothalamic neurons may contribute to hippocampal social-memory consolidation
Fear learning induces α7-nicotinic acetylcholine receptor-mediated astrocytic responsiveness that is required for memory persistence
Single-neuron representation of learned complex sounds in the auditory cortex
High-performance calcium sensors for imaging activity in neuronal populations and microcompartments
Cell-type-specific profiling of brain mitochondria reveals functional and molecular diversity
In Vivo Functional Mapping of a Cortical Column at Single-Neuron Resolution
Two types of functionally distinct Ca2+ stores in hippocampal neurons
MATRIEX imaging: multiarea two-photon real-time in vivo explorer
Abolishing cAMP sensitivity in HCN2 pacemaker channels induces generalized seizures
BACE inhibition-dependent repair of Alzheimer’s pathophysiology
η-Secretase processing of APP inhibits neuronal activity in the hippocampus
Rescue of long-range circuit dysfunction in Alzheimer's disease models
Decreased amyloid-β and increased neuronal hyperactivity by immunotherapy in Alzheimer's models
Dendritic function in vivo
Making Waves: Initiation and Propagation of Corticothalamic Ca2+ Waves In Vivo