Area of research
Sensory Systems · Endocrine and Autonomic Systems
Research interest
Research interests include Hearing, Cochlea, Tinnitus, Genetics, Neuroscience of respiration and sleep, Adenosine and Purinergic Signaling, and Hearing Loss and Rehabilitation.
Onset of hippocampal network aberration and memory deficits in P301S tau mice are associated with an early gene signature
Tau exacerbates excitotoxic brain damage in an animal model of stroke
Cellular mechanisms of noise-induced hearing loss
Type II spiral ganglion afferent neurons drive medial olivocochlear reflex suppression of the cochlear amplifier
Mutation of the ATP-gated P2X <sub>2</sub> receptor leads to progressive hearing loss and increased susceptibility to noise
Glial Promoter Selectivity following AAV-Delivery to the Immature Brain
ATP-gated ion channels mediate adaptation to elevated sound levels
Transient receptor potential canonical type 3 channels facilitate endothelium-derived hyperpolarization-mediated resistance artery vasodilator activity
Differential actions of isoflurane and ketamine-based anaesthetics on cochlear function in the mouse