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Hearing Research|April 16, 2014
Selective attention reduces physiological noise in the external ear canals of humans. II: visual attentionKyle P Walsh, Edward G Pasanen, Dennis McFaddenHearing Research|May 1, 2010
Overshoot measured physiologically and psychophysically in the same human earsKyle P Walsh, Edward G Pasanen, Dennis McFaddenHearing Research|April 16, 2014
Selective attention reduces physiological noise in the external ear canals of humans. I: auditory attentionKyle P Walsh, Edward G Pasanen, Dennis McFaddenThe Journal of the Acoustical Society of America|February 9, 2010
Properties of a nonlinear version of the stimulus-frequency otoacoustic emissionKyle P Walsh, Edward G Pasanen, Dennis McFaddenThe Journal of the Acoustical Society of America|May 22, 2015
Changes in otoacoustic emissions during selective auditory and visual attentionKyle P Walsh, Edward G Pasanen, Dennis McFaddenThe Journal of the Acoustical Society of America|October 26, 2010
Overshoot using very short signal delaysDennis McFadden, Kyle P Walsh, Edward G Pasanen, et al.Neurobiology of Learning and Memory|August 13, 2019
Cerebellar D1DR-expressing neurons modulate the frontal cortex during timing tasksJonah Heskje, Kelsey Heslin, Benjamin J De Corte, et al.Cerebellum (London, England)|January 2, 2024
Knockdown of the Non-canonical Wnt Gene Prickle2 Leads to Cerebellar Purkinje Cell Abnormalities While Cerebellar-Mediated Behaviors Remain IntactParker W Abbott, Jason B Hardie, Kyle P Walsh, et al.Pageof 1