Justin S. Cetas, Ph.D.
Affiliations: | 2000 | University of Arizona, Tucson, AZ |
Area:
Neuroscience Biology, AudiologyGoogle:
"Justin Cetas"Mean distance: 53433
Parents
Sign in to add mentorNathaniel T. McMullen | grad student | 2000 | University of Arizona | |
(Neuronal architecture and functional organization of the rabbit auditory thalamus.) |
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Publications
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Ciporen JN, Lucke-Wold B, Dogan A, et al. (2017) Endoscopic Endonasal Transclival Approach versus Dual Transorbital Port Technique for Clip Application to the Posterior Circulation: A Cadaveric Anatomical and Cerebral Circulation Simulation Study. Journal of Neurological Surgery. Part B, Skull Base. 78: 235-244 |
Carlson JD, Cleary DR, Cetas JS, et al. (2010) Deep brain stimulation does not silence neurons in subthalamic nucleus in Parkinson's patients. Journal of Neurophysiology. 103: 962-7 |
Close LN, Cetas JS, Heinricher MM, et al. (2009) Purinergic receptor immunoreactivity in the rostral ventromedial medulla. Neuroscience. 158: 915-21 |
Cetas JS, Price RO, Crowe J, et al. (2003) Dendritic orientation and laminar architecture in the rabbit auditory thalamus. The Journal of Comparative Neurology. 458: 307-17 |
Velenovsky DS, Cetas JS, Price RO, et al. (2003) Functional subregions in primary auditory cortex defined by thalamocortical terminal arbors: an electrophysiological and anterograde labeling study. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 23: 308-16 |
Cetas JS, Price RO, Velenovsky DS, et al. (2002) Cell types and response properties of neurons in the ventral division of the medial geniculate body of the rabbit. The Journal of Comparative Neurology. 445: 78-96 |
Cetas JS, Price RO, Velenovsky DS, et al. (2001) Frequency organization and cellular lamination in the medial geniculate body of the rabbit. Hearing Research. 155: 113-23 |
Cetas JS, de Venecia RK, McMullen NT. (1999) Thalamocortical afferents of Lorente de Nó: medial geniculate axons that project to primary auditory cortex have collateral branches to layer I. Brain Research. 830: 203-8 |