Katrin Krumbholz

Affiliations: 
Institute of Hearing Research University of Nottingham, Nottingham, England, United Kingdom 
Area:
human auditory processing
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"Katrin Krumbholz"
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Publications

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Nuttall HE, Moore DR, Barry JG, et al. (2015) The influence of cochlear spectral processing on the timing and amplitude of the speech-evoked auditory brain stem response. Journal of Neurophysiology. 113: 3683-91
Gilbert HJ, Shackleton TM, Krumbholz K, et al. (2015) The neural substrate for binaural masking level differences in the auditory cortex. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 209-20
Fletcher M, de Boer J, Krumbholz K. (2015) Is off-frequency overshoot caused by adaptation of suppression? Journal of the Association For Research in Otolaryngology : Jaro. 16: 241-53
Langers DR, Krumbholz K, Bowtell RW, et al. (2014) Neuroimaging paradigms for tonotopic mapping (I): the influence of sound stimulus type. Neuroimage. 100: 650-62
Langers DR, Sanchez-Panchuelo RM, Francis ST, et al. (2014) Neuroimaging paradigms for tonotopic mapping (II): the influence of acquisition protocol. Neuroimage. 100: 663-75
Schönwiesner M, Dechent P, Voit D, et al. (2014) Parcellation of Human and Monkey Core Auditory Cortex with fMRI Pattern Classification and Objective Detection of Tonotopic Gradient Reversals. Cerebral Cortex (New York, N.Y. : 1991)
Edmonds BA, Krumbholz K. (2014) Are interaural time and level differences represented by independent or integrated codes in the human auditory cortex? Journal of the Association For Research in Otolaryngology : Jaro. 15: 103-14
Briley PM, Krumbholz K. (2013) The specificity of stimulus-specific adaptation in human auditory cortex increases with repeated exposure to the adapting stimulus. Journal of Neurophysiology. 110: 2679-88
Lanting CP, Briley PM, Sumner CJ, et al. (2013) Mechanisms of adaptation in human auditory cortex. Journal of Neurophysiology. 110: 973-83
Fletcher M, de Boer J, Krumbholz K. (2013) Is overshoot caused by an efferent reduction in cochlear gain? Advances in Experimental Medicine and Biology. 787: 65-72
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