Legends: | Link to a Model | Reference cited by multiple papers |
References and models cited by this paper | References and models that cite this paper | |||||||
Bell C, Bodznick D, Montgomery J, Bastian J (1997) The generation and subtraction of sensory expectations within cerebellum-like structures. Brain Behav Evol 50 Suppl 1:17-31 [Journal] [PubMed] Beroukha A, Gruen E, Woody CD (1998) Facilitation of acoustic responses of cartwheel neurons of the cat dorsal cochlear nucleus. Neuroreport 9:3457-61 [PubMed] Berrebi AS, Mugnaini E (1991) Distribution and targets of the cartwheel cell axon in the dorsal cochlear nucleus of the guinea pig. Anat Embryol (Berl) 183:427-54 [PubMed] Blackstad TW, Osen KK, Mugnaini E (1984) Pyramidal neurones of the dorsal cochlear nucleus: a Golgi and computer reconstruction study in cat. Neuroscience 13:827-54 [PubMed] Bower JM, Woolston DC (1983) Congruence of spatial organization of tactile projections to granule cell and Purkinje cell layers of cerebellar hemispheres of the albino rat: vertical organization of cerebellar cortex. J Neurophysiol 49:745-66 [Journal] [PubMed] Brown MC, Berglund AM, Kiang NY, Ryugo DK (1988) Central trajectories of type II spiral ganglion neurons. J Comp Neurol 278:581-90 [Journal] [PubMed] Caicedo A, Herbert H (1993) Topography of descending projections from the inferior colliculus to auditory brainstem nuclei in the rat. J Comp Neurol 328:377-92 [Journal] [PubMed] Caspary DM, Hughes LF, Schatteman TA, Turner JG (2007) Age-related changes in the response properties of cartwheel cells in rat dorsal cochlear nucleus. Hear Res 216-217:207-15 Cohen D, Yarom Y (1998) Patches of synchronized activity in the cerebellar cortex evoked by mossy-fiber stimulation: questioning the role of parallel fibers. Proc Natl Acad Sci U S A 95:15032-6 [PubMed] Davis KA, Miller RL, Young ED (1996) Effects of somatosensory and parallel-fiber stimulation on neurons in dorsal cochlear nucleus. J Neurophysiol 76:3012-24 [Journal] [PubMed] Davis KA, Voigt HF (1997) Evidence of stimulus-dependent correlated activity in the dorsal cochlear nucleus of decerebrate gerbils. J Neurophysiol 78:229-47 [Journal] [PubMed] Davis KA, Young ED (1997) Granule cell activation of complex-spiking neurons in dorsal cochlear nucleus. J Neurosci 17:6798-806 [PubMed] Destexhe A, Mainen Z, Sejnowski TJ (1994) An efficient method for computing synaptic conductances based on a kinetic model of receptor binding Neural Comput 6:14-18 [Journal] Dillon S, Morad M (1981) A new laser scanning system for measuring action potential propagation in the heart. Science 214:453-6 [PubMed] Ding J, Benson TE, Voigt HF (1999) Acoustic and current-pulse responses of identified neurons in the dorsal cochlear nucleus of unanesthetized, decerebrate gerbils. J Neurophysiol 82:3434-57 [Journal] [PubMed] Eccles JC, Sabah NH, Schmidt RF, Táboríková H (1972) Integration by Purkyne cells of mossy and climbing fiber inputs from cutaneous mechanoreceptors. Exp Brain Res 15:498-520 [PubMed] Franosch JM, Kempter R, Fastl H, van Hemmen JL (2003) Zwicker tone illusion and noise reduction in the auditory system. Phys Rev Lett 90:178103 [Journal] [PubMed] Frisina RD, Walton JP, Karcich KJ (1994) Dorsal cochlear nucleus single neurons can enhance temporal processing capabilities in background noise. Exp Brain Res 102:160-4 [PubMed] Fujino K, Oertel D (2003) Bidirectional synaptic plasticity in the cerebellum-like mammalian dorsal cochlear nucleus. Proc Natl Acad Sci U S A 100:265-70 [Journal] [PubMed] Golding NL, Oertel D (1996) Context-dependent synaptic action of glycinergic and GABAergic inputs in the dorsal cochlear nucleus. J Neurosci 16:2208-19 [PubMed] Golding NL, Oertel D (1997) Physiological identification of the targets of cartwheel cells in the dorsal cochlear nucleus. J Neurophysiol 78:248-60 [Journal] [PubMed] Golding NL, Robertson D, Oertel D (1995) Recordings from slices indicate that octopus cells of the cochlear nucleus detect coincident firing of auditory nerve fibers with temporal precision. J Neurosci 15:3138-53 [PubMed] Haenggeli CA, Pongstaporn T, Doucet JR, Ryugo DK (2005) Projections from the spinal trigeminal nucleus to the cochlear nucleus in the rat. J Comp Neurol 484:191-205 [Journal] [PubMed] Isope P, Barbour B (2002) Properties of unitary granule cell-->Purkinje cell synapses in adult rat cerebellar slices. J Neurosci 22:9668-78 [PubMed] Izhikevich EM (2003) Simple model of spiking neurons. IEEE Trans Neural Netw 14:1569-72 [Journal] [PubMed]
Izhikevich EM (2007) Dynamical Systems in Neuroscience: The Geometry of Excitability and Bursting [Journal]
Joris PX (1998) Response classes in the dorsal cochlear nucleus and its output tract in the chloralose-anesthetized cat. J Neurosci 18:3955-66 [PubMed] Kaltenbach JA, Meleca RJ, Falzarano PR, Myers SF, Simpson TH (1993) Forward masking properties of neurons in the dorsal cochlear nucleus: possible role in the process of echo suppression. Hear Res 67:35-44 [PubMed] Kim Y, Trussell LO (2007) Ion channels generating complex spikes in cartwheel cells of the dorsal cochlear nucleus. J Neurophysiol 97:1705-25 [Journal] [PubMed] Li H, Mizuno N (1997) Single neurons in the spinal trigeminal and dorsal column nuclei project to both the cochlear nucleus and the inferior colliculus by way of axon collaterals: a fluorescent retrograde double-labeling study in the rat. Neurosci Res 29:135-42 [PubMed] Manis PB, Spirou GA, Wright DD, Paydar S, Ryugo DK (1994) Physiology and morphology of complex spiking neurons in the guinea pig dorsal cochlear nucleus. J Comp Neurol 348:261-76 [Journal] [PubMed] May BJ (2000) Role of the dorsal cochlear nucleus in the sound localization behavior of cats. Hear Res 148:74-87 [PubMed] Merchan MA, Collia FP, Merchan JA, Saldana E (1985) Distribution of primary afferent fibres in the cochlear nuclei. A silver and horseradish peroxidase (HRP) study. J Anat 141:121-30 Oertel D, Young ED (2004) What's a cerebellar circuit doing in the auditory system? Trends Neurosci 27:104-10 [Journal] [PubMed] Ohlrogge M, Doucet JR, Ryugo DK (2001) Projections of the pontine nuclei to the cochlear nucleus in rats. J Comp Neurol 436:290-303 [PubMed] Parham K, Bonaiuto G, Carlson S, Turner JG, D'Angelo WR, Bross LS, Fox A, Willott JF, Kim DO (2000) Purkinje cell degeneration and control mice: responses of single units in the dorsal cochlear nucleus and the acoustic startle response. Hear Res 148:137-52 [PubMed] Parham K, Kim DO (1995) Spontaneous and sound-evoked discharge characteristics of complex-spiking neurons in the dorsal cochlear nucleus of the unanesthetized decerebrate cat. J Neurophysiol 73:550-61 [Journal] [PubMed] Paxinos G, Franklin KBJ (2004) The Mouse Brain in Stereotaxic Coordinates Reiss LA, Young ED (2005) Spectral edge sensitivity in neural circuits of the dorsal cochlear nucleus. J Neurosci 25:3680-91 [Journal] [PubMed] Roberts PD, Bell CC (2000) Computational consequences of temporally asymmetric learning rules: II. Sensory image cancellation. J Comput Neurosci 9:67-83 [PubMed] Roberts PD, Bell CC (2002) Spike timing dependent synaptic plasticity in biological systems. Biol Cybern 87:392-403 [Journal] [PubMed] Roberts PD, Lafferriere G, Sawtell N, Williams A, Bell CC (2006) Dynamic regulation of spike-timing dependent plasticity in electrosensory processing Neurocomputing 69:1195-1198 Roberts PD, Portfors CV, Sawtell N, Felix R (2006) Model of auditory prediction in the dorsal cochlear nucleus via spike-timing dependent plasticity Neurocomputing 69:1191-1194 Rossi DJ, Alford S, Mugnaini E, Slater NT (1995) Properties of transmission at a giant glutamatergic synapse in cerebellum: the mossy fiber-unipolar brush cell synapse. J Neurophysiol 74:24-42 [Journal] [PubMed] Ryugo DK, May SK (1993) The projections of intracellularly labeled auditory nerve fibers to the dorsal cochlear nucleus of cats. J Comp Neurol 329:20-35 [Journal] [PubMed] Schofield BR, Cant NB (1999) Descending auditory pathways: projections from the inferior colliculus contact superior olivary cells that project bilaterally to the cochlear nuclei. J Comp Neurol 409:210-23 [PubMed] Sims RE, Hartell NA (2006) Differential susceptibility to synaptic plasticity reveals a functional specialization of ascending axon and parallel fiber synapses to cerebellar Purkinje cells. J Neurosci 26:5153-9 [Journal] [PubMed] Tzounopoulos T, Kim Y, Oertel D, Trussell LO (2004) Cell-specific, spike timing-dependent plasticities in the dorsal cochlear nucleus. Nat Neurosci 7:719-25 [Journal] [PubMed] Weedman DL, Ryugo DK (1996) Projections from auditory cortex to the cochlear nucleus in rats: synapses on granule cell dendrites. J Comp Neurol 371:311-24 [Journal] [PubMed] Wickesberg RE, Oertel D (1990) Delayed, frequency-specific inhibition in the cochlear nuclei of mice: a mechanism for monaural echo suppression. J Neurosci 10:1762-8 [PubMed] Woody CD, Wang XF, Gruen E, Landeira-Fernandez J (1992) Unit activity to click CS changes in dorsal cochlear nucleus after conditioning. Neuroreport 3:385-8 [PubMed] Young ED, Brownell WE (1976) Responses to tones and noise of single cells in dorsal cochlear nucleus of unanesthetized cats. J Neurophysiol 39:282-300 [Journal] [PubMed] Young ED, Davis KA (2002) Circuitry and function of the dorsal cochlear nucleus Integrative Functions in the Mammalian Auditory Pathway, Oertel D:Fay R:Popper A, ed. pp.160 Young ED, Nelken I, Conley RA (1995) Somatosensory effects on neurons in dorsal cochlear nucleus. J Neurophysiol 73:743-65 [Journal] [PubMed] Zhang S, Oertel D (1993) Tuberculoventral cells of the dorsal cochlear nucleus of mice: intracellular recordings in slices. J Neurophysiol 69:1409-21 [Journal] [PubMed] Zhang S, Oertel D (1993) Cartwheel and superficial stellate cells of the dorsal cochlear nucleus of mice: intracellular recordings in slices. J Neurophysiol 69:1384-97 [Journal] [PubMed] Zheng X, Voigt HF (2006) A modeling study of notch noise responses of type III units in the gerbil dorsal cochlear nucleus. Ann Biomed Eng 34:697-708 Zhou J, Shore S (2004) Projections from the trigeminal nuclear complex to the cochlear nuclei: a retrograde and anterograde tracing study in the guinea pig. J Neurosci Res 78:901-7 [Journal] [PubMed] | Manis PB, Campagnola L (2018) A biophysical modelling platform of the cochlear nucleus and other auditory circuits: From channels to networks. Hear Res 360:76-91 [Journal] [PubMed]
|