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Science Translational Medicine|January 5, 2018
Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humansKendra L Marks, David T Martel, Calvin Wu, et al.Neuron|July 5, 2019
Mechanisms of Noise-Induced Tinnitus: Insights from Cellular StudiesSusan E Shore, Calvin WuThe Journal of Physiology|October 26, 2020
Inhibitory interneurons in a brainstem circuit adjust their inhibitory motifs to process multimodal inputCalvin Wu, Susan E ShoreThe Journal of Physiology|August 4, 2018
Multisensory activation of ventral cochlear nucleus D-stellate cells modulates dorsal cochlear nucleus principal cell spatial codingCalvin Wu, Susan E ShoreHearing Research|March 4, 2006
Somatosensory influence on the cochlear nucleus and beyondSusan E Shore, Jianxun ZhouJAMA Network Open|June 2, 2023
Reversing Synchronized Brain Circuits Using Targeted Auditory-Somatosensory Stimulation to Treat Phantom Percepts: A Randomized Clinical TrialGerilyn R Jones, David T Martel, Travis L Riffle, et al.Plos One|March 26, 2013
Stimulus-timing dependent multisensory plasticity in the guinea pig dorsal cochlear nucleusSeth D Koehler, Susan E ShoreJournal of Neurophysiology|December 23, 2016
Muscarinic acetylcholine receptors control baseline activity and Hebbian stimulus timing-dependent plasticity in fusiform cells of the dorsal cochlear nucleusRoxana A Stefanescu, Susan E ShoreFrontiers in Neural Circuits|December 2, 2015
NMDA Receptors Mediate Stimulus-Timing-Dependent Plasticity and Neural Synchrony in the Dorsal Cochlear NucleusRoxana A Stefanescu, Susan E ShoreThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 17, 2013
Stimulus timing-dependent plasticity in dorsal cochlear nucleus is altered in tinnitusSeth D Koehler, Susan E ShorePageof 4