Cant NB, Benson CG (2003) Parallel auditory pathways: projection patterns of the different neuronal populations in the dorsal and ventral cochlear nuclei. Brain Res Bullet 60(5–6):457–474
Doucet JR, Ryugo DK (2006) Structural and functional classes of multipolar cells in the ventral cochlear nucleus. Anat Rec A Discov Mol Cell Evol Biol 288(4):331–344
Article PubMed PubMed Central Google Scholar
Young ED, Sachs M (2008) Auditory nerve inputs to cochlear nucleus neurons studied with cross-correlation. Neuroscience 154(1):127–138
Article CAS PubMed Google Scholar
Typlt M, Englitz B, Sonntag M, Dehmel S, Kopp-Scheinpflug C, Ruebsamen R (2012) Multidimensional characterization and differentiation of neurons in the anteroventral cochlear nucleus. PLoS ONE 7(1):29965
Campagnola L, Manis PB (2014) A map of functional synaptic connectivity in the mouse anteroventral cochlear nucleus. J Neurosci 34(6):2214–2230
Article CAS PubMed PubMed Central Google Scholar
Manis PB, Kasten MR, Xie R (2019) Classification of neurons in the adult mouse cochlear nucleus: linear discriminant analysis. PLoS ONE 14(10):0223137
Oertel D, Wright S, Cao X-J, Ferragamo M, Bal R (2011) The multiple functions of t stellate/multipolar/chopper cells in the ventral cochlear nucleus. Hearing Res 276(1–2):61–69
Joris PX, Smith PH, Yin TCT (1998) Coincidence detection in the auditory system: 50 years after Jeffress. Neuron 21(6):1235–1238
Article CAS PubMed Google Scholar
Grothe B, Pecka M, McAlpine D (2010) Mechanisms of sound localization in mammals. Physiological Rev 90(3):983–1012
Oertel D (1983) Synaptic responses and electrical properties of cells in brain slices of the mouse anteroventral cochlear nucleus. J Neurosci 3(10):2043–2053
Article CAS PubMed PubMed Central Google Scholar
Rhode WS (2008) Response patterns to sound associated with labeled globular/bushy cells in cat. Neuroscience 154(1):87–98
Article CAS PubMed Google Scholar
Smith PH, Joris PX, Yin TCT (1993) Projections of physiologically characterized spherical bushy cell axons from the cochlear nucleus of the cat: evidence for delay lines to the medial superior olive. J Comparative Neurol 331(2):245–260
Spirou G, Rager J, Manis P (2005) Convergence of auditory-nerve fiber projections onto globular bushy cells. Neuroscience 136(3):843–863
Article CAS PubMed Google Scholar
Cao X-J, Oertel D (2010) Auditory nerve fibers excite targets through synapses that vary in convergence, strength, and short-term plasticity. J Neurophysiol 104(5):2308–2320
Article PubMed PubMed Central Google Scholar
Johnson DH (1980) The relationship between spike rate and synchrony in responses of auditory-nerve fibers to single tones. J Acoustical Soc Am 68(4):1115–1122
Joris PX, Carney LH, Smith PH, Yin TCT (1994) Enhancement of neural synchronization in the anteroventral cochlear nucleus. I. responses to tones at the characteristic frequency. J Neurophysiol 71(3):1022–1036
Joris PX, Smith PH (2008) The volley theory and the spherical cell puzzle. Neuroscience 154(1):65–76
Article CAS PubMed Google Scholar
Dehmel S, Kopp-Scheinpflug C, Weick M, Dörrscheidt GJ, Rübsamen R (2010) Transmission of phase-coupling accuracy from the auditory nerve to spherical bushy cells in the Mongolian gerbil. Hearing Res 268(1–2):234–249
Wei L, Karino S, Verschooten E, Joris PX (2017) Enhancement of phase-locking in rodents. I. An axonal recording study in gerbil. J Neurophysiol 118(4):2009–2023
Rothman JS, Young ED (1996) Enhancement of neural synchronization in computational models of ventral cochlear nucleus bushy cells. Auditory Neurosci 2:47–62
Rudnicki M, Hemmert W (2017) High entrainment constrains synaptic depression levels of an in vivo globular bushy cell model. Front Computat Neurosci 11:16
Rothman JS, Manis PB (2003) The roles potassium currents play in regulating the electrical activity of ventral cochlear nucleus neurons. J Neurophysiol 89(6):3097–3113
Article CAS PubMed Google Scholar
Ashida G, Heinermann HT, Kretzberg J (2019) Neuronal population model of globular bushy cells covering unit-to-unit variability. PLoS Computat Biol 15(12):1007563
Kuenzel T, Nerlich J, Wagner H, Rübsamen R, Milenkovic I (2015) Inhibitory properties underlying non-monotonic input-output relationship in low-frequency spherical bushy neurons of the gerbil. Front Neural Circuits 9:14
Article PubMed PubMed Central Google Scholar
Koert E, Kuenzel T (2021) Small dendritic synapses enhance temporal coding in a model of cochlear nucleus bushy cells. J Neurophysiol 125(3):915–937
Article CAS PubMed Google Scholar
Xie R, Manis PB (2013) Target-specific IPSC kinetics promote temporal processing in auditory parallel pathways. J Neurosci 33(4):1598–1614
Article CAS PubMed PubMed Central Google Scholar
Gómez-Nieto R, Rubio ME (2009) A bushy cell network in the rat ventral cochlear nucleus. J Comparative Neurol 516(4):241–263
Gómez-Nieto R, Rubio M (2011) Ultrastructure, synaptic organization, and molecular components of bushy cell networks in the anteroventral cochlear nucleus of the rhesus monkey. Neuroscience 179:188–207
Rubio M, Nagy J (2015) Connexin36 expression in major centers of the auditory system in the CNS of mouse and rat: evidence for neurons forming purely electrical synapses and morphologically mixed synapses. Neuroscience 303:604–629
Article CAS PubMed Google Scholar
Fukuda T, Kosaka T (2000) Gap junctions linking the dendritic network of GABAergic interneurons in the hippocampus. J Neurosci 20(4):1519–1528
Article CAS PubMed PubMed Central Google Scholar
Migliore M, Hines ML, Shepherd GM (2005) The role of distal dendritic gap junctions in synchronization of mitral cell axonal output. J Computat Neurosci 18:151–161
Curti S, Hoge G, Nagy JI, Pereda AE (2012) Synergy between electrical coupling and membrane properties promotes strong synchronization of neurons of the mesencephalic trigeminal nucleus. J Neurosci 32(13):4341–4359
Article CAS PubMed PubMed Central Google Scholar
Devor A, Yarom Y (2002) Electrotonic coupling in the inferior olivary nucleus revealed by simultaneous double patch recordings. J Neurophysiol 87(6):3048–3058
Yaeger DB, Trussell LO (2016) Auditory Golgi cells are interconnected predominantly by electrical synapses. J Neurophysiol 116(2):540–551
Article CAS PubMed PubMed Central Google Scholar
Mercer A, Bannister AP, Thomson AM (2006) Electrical coupling between pyramidal cells in adult cortical regions. Brain Cell Biol 35:13–27
Liberman MC (1991) Central projections of auditory-nerve fibers of differing spontaneous rate. I. Anteroventral cochlear nucleus. J Comparative Neurol 313(2):240–258
Spirou GA, Kersting M, Carr S, Razzaq B, Pinto CYA, Dawson M, Ellisman MH, Manis PB (2023) High-resolution volumetric imaging constrains compartmental models to explore synaptic integration and temporal processing by cochlear nucleus globular bushy cells. eLife 12:83393
Manis PB, Campagnola L (2018) A biophysical modelling platform of the cochlear nucleus and other auditory circuits: from channels to networks. Hearing Res 360:76–91
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