Philip H. Smith, PhD

Affiliations: 
Anatomy University of Wisconsin, Madison, Madison, WI 
Area:
Auditory neuroscience
Google:
"Philip Smith"
Mean distance: 16.41 (cluster 17)
 
Cross-listing: CSD Tree

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Publications

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Franken TP, Joris PX, Smith PH. (2018) Principal cells of the brainstem's interaural sound level detector are temporal differentiators rather than integrators. Elife. 7
Franken TP, Smith PH, Joris PX. (2016) In vivo Whole-Cell Recordings Combined with Electron Microscopy Reveal Unexpected Morphological and Physiological Properties in the Lateral Nucleus of the Trapezoid Body in the Auditory Brainstem. Frontiers in Neural Circuits. 10: 69
Krause BM, Raz A, Uhlrich DJ, et al. (2014) Spiking in auditory cortex following thalamic stimulation is dominated by cortical network activity. Frontiers in Systems Neuroscience. 8: 170
Smith PH, Uhlrich DJ, Manning KA, et al. (2012) Thalamocortical projections to rat auditory cortex from the ventral and dorsal divisions of the medial geniculate nucleus. The Journal of Comparative Neurology. 520: 34-51
Banks MI, Uhlrich DJ, Smith PH, et al. (2011) Descending projections from extrastriate visual cortex modulate responses of cells in primary auditory cortex. Cerebral Cortex (New York, N.Y. : 1991). 21: 2620-38
Karino S, Smith PH, Yin TC, et al. (2011) Axonal branching patterns as sources of delay in the mammalian auditory brainstem: a re-examination. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 31: 3016-31
Banks MI, Smith PH. (2011) Thalamocortical relations The Auditory Cortex. 75-97
Smith PH, Manning KA, Uhlrich DJ. (2010) Evaluation of inputs to rat primary auditory cortex from the suprageniculate nucleus and extrastriate visual cortex. The Journal of Comparative Neurology. 518: 3679-700
Joris PX, Smith PH. (2008) The volley theory and the spherical cell puzzle. Neuroscience. 154: 65-76
Smith PH, Bartlett EL, Kowalkowski A. (2007) Cortical and collicular inputs to cells in the rat paralaminar thalamic nuclei adjacent to the medial geniculate body. Journal of Neurophysiology. 98: 681-95
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