All Relations between Deafness and cochlear nuclei

Publication Sentence Publish Date Extraction Date Species
Ch Kuhlmann, W Scheidemann, M Bachmann, G F Schusse. [Brainstem auditory evoked responses in horses with hearing loss and during general anesthesia]. Schweizer Archiv fur Tierheilkunde. vol 166. issue 7. 2024-07-08. PMID:38975650. horses with right sided external otitis: right moderate to severe conductive hearing loss (significantly prolonged latencies of i, iii, v and interpeak latencies i-iii, i-v, iii-v; thresholds of hearing levels 60 to 80 db right); horses with left sided external otitis: left severe conductive hearing loss (no correct identification of baer peaks, latencies not measurable, 80 db); horse with left sided head trauma: severe left sided conductive hearing loss (blood in the left external ear canal, no visible tympanic membrane, no correct identification of baer peaks, latencies not measurable, 80 db); horses with head shaking: mild sensorineural hearing loss on both sides (on both sides osseous parts ii/iii with keratin scales of the junction, visible tympanic membranes, significantly prolonged v, i-iii, i-v, 40 db); moderate to severe skittish horses with chronic eye disease (mostly left sided equine recurrent uveitis): moderate sensorineural hearing loss on both sides (normal otoscopical findings, significantly prolonged latencies and interpeak latencies left; i-v, iii-v right, 60 db, pathological involvement in the auditory pathway of the brainstem between the cochlear nucleus and colliculus caudalis); horse with a tinnitus on both sides: mild sensorineural hearing loss on both sides (normal otoscopical findings, prolonged v, i-iii, i-v, iii-v, 40 db, pathology of auditory nerve, cochlear nucleus and above the level of this nucleus); american paint horses: sensorineurale deafness on both sides (normal otoscopical findings, absent baer peaks, isoelectric lines and 80 db on both sides). 2024-07-08 2024-07-11 Not clear
Briana J Carroll, Richard L Hyso. A role for inhibition in deafness-induced plasticity of the avian auditory brainstem. Neuroscience. vol 327. 2017-08-31. PMID:27095711. in the avian cochlear nucleus, nucleus magnocellularis (nm), deprivation of excitatory input induced by deafness triggers neuronal death. 2017-08-31 2023-08-13 Not clear
Till F Jakob, Nicole Rosskothen-Kuhl, Robert-Benjamin Illin. Induction of single-sided deafness in the newborn rat and its consequence for cochlear nucleus volume development. Hearing research. vol 333. 2016-12-13. PMID:26386286. induction of single-sided deafness in the newborn rat and its consequence for cochlear nucleus volume development. 2016-12-13 2023-08-13 rat
Craig A Atencio, Jonathan Y Shih, Christoph E Schreiner, Steven W Cheun. Primary auditory cortical responses to electrical stimulation of the thalamus. Journal of neurophysiology. vol 111. issue 5. 2014-10-30. PMID:24335216. electrical stimulation of the cochlear nucleus and midbrain in humans has delivered encouraging clinical outcomes, buttressing the promise of central auditory prostheses to mitigate deafness in those who are not candidates for cochlear implantation. 2014-10-30 2023-08-12 Not clear
Chunhua Zeng, Ziheng Yang, Lauren Shreve, Sanford Bledsoe, Susan Shor. Somatosensory projections to cochlear nucleus are upregulated after unilateral deafness. The Journal of neuroscience : the official journal of the Society for Neuroscience. vol 32. issue 45. 2013-01-23. PMID:23136418. somatosensory projections to cochlear nucleus are upregulated after unilateral deafness. 2013-01-23 2023-08-12 Not clear
Olga Stakhovskaya, Gary T Hradek, Russell L Snyder, Patricia A Leak. Effects of age at onset of deafness and electrical stimulation on the developing cochlear nucleus in cats. Hearing research. vol 243. issue 1-2. 2008-11-13. PMID:18590947. effects of age at onset of deafness and electrical stimulation on the developing cochlear nucleus in cats. 2008-11-13 2023-08-12 Not clear
Patricia A Leake, Gary T Hradek, Ben H Bonham, Russell L Snyde. Topography of auditory nerve projections to the cochlear nucleus in cats after neonatal deafness and electrical stimulation by a cochlear implant. Journal of the Association for Research in Otolaryngology : JARO. vol 9. issue 3. 2008-10-17. PMID:18574634. topography of auditory nerve projections to the cochlear nucleus in cats after neonatal deafness and electrical stimulation by a cochlear implant. 2008-10-17 2023-08-12 human
Angela L Bush, Richard L Hyso. Effects of lithium and deafferentation on expression of glycogen synthase kinase-3beta, NFkappaB, beta-catenin and pCreb in the chick cochlear nucleus. Brain research. vol 1203. 2008-08-01. PMID:18313644. approximately 20-30% of neurons in the avian cochlear nucleus, nucleus magnocellularis (nm) die following deafferentation (i.e., deafness produced by cochlea removal). 2008-08-01 2023-08-12 chicken
Y Seki, N Samejima, A Komatsuzak. Auditory brainstem implants: current state and future directions with special reference to the subtonsillar approach for implantation. Acta neurochirurgica. Supplement. vol 97. issue Pt 2. 2007-09-26. PMID:17691332. the ci restores hearing by stimulating the cochlear nerve in the cochlea in patients whose deafness has been caused by inner ear disease; the abi restores hearing by stimulating the cochlear nucleus of the brainstem in patients who are deaf because of bilateral cochlear nerve dysfunction. 2007-09-26 2023-08-12 Not clear
Avril Genene Holt, Mikiya Asako, R Keith Duncan, Catherine A Lomax, Jose M Juiz, Richard A Altschule. Deafness associated changes in expression of two-pore domain potassium channels in the rat cochlear nucleus. Hearing research. vol 216-217. 2007-06-21. PMID:16650703. to determine whether these channels contribute to activity-dependent plasticity following deafness, we used quantitative real-time pcr to examine the expression of 10 k(2pd)+ subunits in the rat cochlear nucleus at 3 days, 3 weeks and 3 months after bilateral cochlear ablation. 2007-06-21 2023-08-12 rat
Avril Genene Holt, Mikiya Asako, R Keith Duncan, Catherine A Lomax, Jose M Juiz, Richard A Altschule. Deafness associated changes in expression of two-pore domain potassium channels in the rat cochlear nucleus. Hearing research. vol 216-217. 2007-06-21. PMID:16650703. deafness associated changes in expression of two-pore domain potassium channels in the rat cochlear nucleus. 2007-06-21 2023-08-12 rat
Yojiro Sek. [Restoration of hearing--comparing auditory brainstem implant to cochlear implant]. Brain and nerve = Shinkei kenkyu no shinpo. vol 59. issue 4. 2007-05-17. PMID:17447518. ci restores hearing by stimulating the cochlear nerve in the cochlea for patients whose deafness has been caused by inner ear disease; abi does it by stimulating the cochlear nucleus of the brainstem for those deaf due to bilateral cochlear nerve dysfunction. 2007-05-17 2023-08-12 Not clear
Patricia A Leake, Gary T Hradek, Leila Chair, Russell L Snyde. Neonatal deafness results in degraded topographic specificity of auditory nerve projections to the cochlear nucleus in cats. The Journal of comparative neurology. vol 497. issue 1. 2006-07-26. PMID:16680765. neonatal deafness results in degraded topographic specificity of auditory nerve projections to the cochlear nucleus in cats. 2006-07-26 2023-08-12 cat
Mikiya Asako, Avril G Holt, Ronald D Griffith, Eric D Buras, Richard A Altschule. Deafness-related decreases in glycine-immunoreactive labeling in the rat cochlear nucleus. Journal of neuroscience research. vol 81. issue 1. 2005-11-03. PMID:15929063. these results suggest that decreased inhibition reported in cochlear nucleus after deafness may be due to decreases in glycine. 2005-11-03 2023-08-12 rat
Daniel J Lee, Hugh B Cahill, David K Ryug. Effects of congenital deafness in the cochlear nuclei of Shaker-2 mice: an ultrastructural analysis of synapse morphology in the endbulbs of Held. Journal of neurocytology. vol 32. issue 3. 2004-04-16. PMID:14724386. effects of congenital deafness in the cochlear nuclei of shaker-2 mice: an ultrastructural analysis of synapse morphology in the endbulbs of held. 2004-04-16 2023-08-12 mouse
Ting Kuang Chao, Barbara J Burgess, Donald K Eddington, Joseph B Nado. Morphometric changes in the cochlear nucleus in patients who had undergone cochlear implantation for bilateral profound deafness. Hearing research. vol 174. issue 1-2. 2003-05-02. PMID:12433410. we have investigated the morphometric changes in the cochlear nucleus of patients who had undergone cochlear implantation following profound deafness. 2003-05-02 2023-08-12 Not clear
Ting Kuang Chao, Barbara J Burgess, Donald K Eddington, Joseph B Nado. Morphometric changes in the cochlear nucleus in patients who had undergone cochlear implantation for bilateral profound deafness. Hearing research. vol 174. issue 1-2. 2003-05-02. PMID:12433410. morphometric changes in the cochlear nucleus in patients who had undergone cochlear implantation for bilateral profound deafness. 2003-05-02 2023-08-12 Not clear
T Yamasoba, S Kikuchi, R Hig. Deafness associated with vertebrobasilar insufficiency. Journal of the neurological sciences. vol 187. issue 1-2. 2001-09-06. PMID:11440747. audiological examinations confirmed the development of unilateral deafness in 15 (21%) patients, involving the cochlea in 14 and cochlear nuclei in one. 2001-09-06 2023-08-12 Not clear
R Vautrin, P Mertens, N Streichenberger, P Ceruse, E Tru. [Oto-neuro-surgical approach and accessibility to the cochlear nuclei. Significance in auditory brain stem implant]. Revue de laryngologie - otologie - rhinologie. vol 119. issue 3. 1998-12-23. PMID:9770063. only electrical stimulation of the cochlear nucleus complex, in the lateral recess of the fourth ventricle, can achieve auditory rehabilitation of these profound bilateral retrocochlear deafness. 1998-12-23 2023-08-12 Not clear
J K Niparko, P A Finge. Cochlear nucleus cell size changes in the dalmatian: model of congenital deafness. Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery. vol 117. issue 3 Pt 1. 1997-11-13. PMID:9334770. we assessed cellular changes in one population of neurons of the cochlear nucleus associated with a form of genetic deafness in deaf dalmatians. 1997-11-13 2023-08-12 Not clear