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Erschienen in: Brain Structure and Function 5/2014

01.09.2014 | Original Article

A fast cholinergic modulation of the primary acoustic startle circuit in rats

verfasst von: Ricardo Gómez-Nieto, Donal G. Sinex, José de Anchieta C. Horta-Júnior, Orlando Castellano, Javier M. Herrero-Turrión, Dolores E. López

Erschienen in: Brain Structure and Function | Ausgabe 5/2014

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Abstract

Cochlear root neurons (CRNs) are the first brainstem neurons which initiate and participate in the full expression of the acoustic startle reflex. Although it has been suggested that a cholinergic pathway from the ventral nucleus of the trapezoid body (VNTB) conveys auditory prepulses to the CRNs, the neuronal origin of the VNTB–CRNs projection and the role it may play in the cochlear root nucleus remain uncertain. To determine the VNTB neuronal type which projects to CRNs, we performed tract-tracing experiments combined with mechanical lesions, and morphometric analyses. Our results indicate that a subpopulation of non-olivocochlear neurons projects directly and bilaterally to CRNs via the trapezoid body. We also performed a gene expression analysis of muscarinic and nicotinic receptors which indicates that CRNs contain a cholinergic receptor profile sufficient to mediate the modulation of CRN responses. Consequently, we investigated the effects of auditory prepulses on the neuronal activity of CRNs using extracellular recordings in vivo. Our results show that CRN responses are strongly inhibited by auditory prepulses. Unlike other neurons of the cochlear nucleus, the CRNs exhibited inhibition that depended on parameters of the auditory prepulse such as intensity and interstimulus interval, showing their strongest inhibition at short interstimulus intervals. In sum, our study supports the idea that CRNs are involved in the auditory prepulse inhibition of the acoustic startle reflex, and confirms the existence of multiple cholinergic pathways that modulate the primary acoustic startle circuit.
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Literatur
Zurück zum Zitat Acri JB, Morse DE, Popke EJ, Grunberg NE (1994) Nicotine increases sensory gating measured as inhibition of the acoustic startle reflex in rats. Psychopharmacology 114(2):369–374PubMedCrossRef Acri JB, Morse DE, Popke EJ, Grunberg NE (1994) Nicotine increases sensory gating measured as inhibition of the acoustic startle reflex in rats. Psychopharmacology 114(2):369–374PubMedCrossRef
Zurück zum Zitat Beyerl BD (1978) Afferent projections to the central nucleus of the inferior colliculus in the rat. Brain Res 145:209–223PubMedCrossRef Beyerl BD (1978) Afferent projections to the central nucleus of the inferior colliculus in the rat. Brain Res 145:209–223PubMedCrossRef
Zurück zum Zitat Bledsoe SC Jr, Koehler S, Tucci DL, Zhou J, Le Prell C, Shore SE (2009) Ventral cochlear nucleus responses to contralateral sound are mediated by commissural and olivocochlear pathways. J Neurophysiol 102(2):886–900PubMedCentralPubMedCrossRef Bledsoe SC Jr, Koehler S, Tucci DL, Zhou J, Le Prell C, Shore SE (2009) Ventral cochlear nucleus responses to contralateral sound are mediated by commissural and olivocochlear pathways. J Neurophysiol 102(2):886–900PubMedCentralPubMedCrossRef
Zurück zum Zitat Bosch D, Schmid S (2006) Activation of muscarinic cholinergic receptors inhibits giant neurons in the caudal pontine reticular nucleus. Eur J Neurosci 24:1967–1975PubMedCrossRef Bosch D, Schmid S (2006) Activation of muscarinic cholinergic receptors inhibits giant neurons in the caudal pontine reticular nucleus. Eur J Neurosci 24:1967–1975PubMedCrossRef
Zurück zum Zitat Bosch D, Schmid S (2008) Cholinergic mechanism underlying prepulse inhibition of the startle response in rats. Neuroscience 155(1):326–335PubMedCrossRef Bosch D, Schmid S (2008) Cholinergic mechanism underlying prepulse inhibition of the startle response in rats. Neuroscience 155(1):326–335PubMedCrossRef
Zurück zum Zitat Brown MC, Liberman MC, Benson TE, Ryugo DK (1988) Brain stem branches from olivocochlear axons in cats and rodents. J Comp Neurol 278:591–603PubMedCrossRef Brown MC, Liberman MC, Benson TE, Ryugo DK (1988) Brain stem branches from olivocochlear axons in cats and rodents. J Comp Neurol 278:591–603PubMedCrossRef
Zurück zum Zitat Cantos R, López DE, Sala ML, Rueda J (2000) Study of the olivocochlear neurons using two different tracers, fast blue and cholera toxin, in hypothyroid rats. Anat Embryol (Berl) 201:245–257CrossRef Cantos R, López DE, Sala ML, Rueda J (2000) Study of the olivocochlear neurons using two different tracers, fast blue and cholera toxin, in hypothyroid rats. Anat Embryol (Berl) 201:245–257CrossRef
Zurück zum Zitat Cantos R, López DE, Merchán JA, Rueda J (2003) Olivocochlear efferent innervation of the organ of corti in hypothyroid rats. J Comp Neurol 459(4):454–467PubMedCrossRef Cantos R, López DE, Merchán JA, Rueda J (2003) Olivocochlear efferent innervation of the organ of corti in hypothyroid rats. J Comp Neurol 459(4):454–467PubMedCrossRef
Zurück zum Zitat Chen S, Aston-Jones G (1998) Axonal collateral–collateral transport of tract tracers in brain neurons: false anterograde labelling and useful tool. Neuroscience 82:1151–1163PubMedCrossRef Chen S, Aston-Jones G (1998) Axonal collateral–collateral transport of tract tracers in brain neurons: false anterograde labelling and useful tool. Neuroscience 82:1151–1163PubMedCrossRef
Zurück zum Zitat Coleman JR, Clerici WJ (1987) Sources of projections to subdivisions of the inferior colliculus in the rat. J Comp Neurol 262:215–226PubMedCrossRef Coleman JR, Clerici WJ (1987) Sources of projections to subdivisions of the inferior colliculus in the rat. J Comp Neurol 262:215–226PubMedCrossRef
Zurück zum Zitat Doucet JR, Ryugo DK (2003) Axonal pathways to the lateral superior olive labeled with biotinylated dextran amine injections in the dorsal cochlear nucleus of rats. J Comp Neurol 461(4):452–465PubMedCrossRef Doucet JR, Ryugo DK (2003) Axonal pathways to the lateral superior olive labeled with biotinylated dextran amine injections in the dorsal cochlear nucleus of rats. J Comp Neurol 461(4):452–465PubMedCrossRef
Zurück zum Zitat Faye-Lund H (1986) Projection from the inferior colliculus to the superior olivary complex in the albino rat. Anat Embryol 175:35–52PubMedCrossRef Faye-Lund H (1986) Projection from the inferior colliculus to the superior olivary complex in the albino rat. Anat Embryol 175:35–52PubMedCrossRef
Zurück zum Zitat Fendt M, Koch M (1999) Cholinergic modulation of the acoustic startle response in the caudal pontine reticular nucleus of the rat. Eur J Pharmacol 370(2):101–107PubMedCrossRef Fendt M, Koch M (1999) Cholinergic modulation of the acoustic startle response in the caudal pontine reticular nucleus of the rat. Eur J Pharmacol 370(2):101–107PubMedCrossRef
Zurück zum Zitat Fendt M, Li L, Yeomans JS (2001) Brain stem circuits mediating prepulse inhibition of the startle reflex. Psychopharmacology 156:216–224PubMedCrossRef Fendt M, Li L, Yeomans JS (2001) Brain stem circuits mediating prepulse inhibition of the startle reflex. Psychopharmacology 156:216–224PubMedCrossRef
Zurück zum Zitat Fujino K, Oertel D (2001) Cholinergic modulation of stellate cells in the mammalian ventral cochlear nucleus. J Neurosci 21:7372–7383PubMed Fujino K, Oertel D (2001) Cholinergic modulation of stellate cells in the mammalian ventral cochlear nucleus. J Neurosci 21:7372–7383PubMed
Zurück zum Zitat Gómez-Nieto R, Rubio ME, López DE (2008a) Cholinergic input from the ventral nucleus of the trapezoid body to cochlear root neurons in rats. J Comp Neurol 506:452–468PubMedCrossRef Gómez-Nieto R, Rubio ME, López DE (2008a) Cholinergic input from the ventral nucleus of the trapezoid body to cochlear root neurons in rats. J Comp Neurol 506:452–468PubMedCrossRef
Zurück zum Zitat Gómez-Nieto R, Horta-Junior JA, Castellano O, Herrero-Turrión MJ, Rubio ME, López DE (2008b) Neurochemistry of the afferents to the rat cochlear root nucleus: possible synaptic modulation of the acoustic startle. Neuroscience 154:51–64PubMedCentralPubMedCrossRef Gómez-Nieto R, Horta-Junior JA, Castellano O, Herrero-Turrión MJ, Rubio ME, López DE (2008b) Neurochemistry of the afferents to the rat cochlear root nucleus: possible synaptic modulation of the acoustic startle. Neuroscience 154:51–64PubMedCentralPubMedCrossRef
Zurück zum Zitat Gómez-Nieto R, Horta-Junior JA, Castellano O, Sinex DG, López DE (2010) Auditory prepulse inhibition of neuronal activity in the rat cochlear root nucleus. In: Lopez Poveda EA, Palmer AR, Meddis R (eds) The neurophysiological bases of auditory perception. Springer, New York, pp 79–90CrossRef Gómez-Nieto R, Horta-Junior JA, Castellano O, Sinex DG, López DE (2010) Auditory prepulse inhibition of neuronal activity in the rat cochlear root nucleus. In: Lopez Poveda EA, Palmer AR, Meddis R (eds) The neurophysiological bases of auditory perception. Springer, New York, pp 79–90CrossRef
Zurück zum Zitat Hancock MB (1982) DAB-nickel substrate for the differential immunoperoxidase staining of nerve fibers and fiber terminals. J Histochem Cytochem 30(6):578 Hancock MB (1982) DAB-nickel substrate for the differential immunoperoxidase staining of nerve fibers and fiber terminals. J Histochem Cytochem 30(6):578
Zurück zum Zitat Harris DM, Dallos P (1979) Forward masking of auditory nerve fiber responses. J Neurophysiol 42:1083–1107PubMed Harris DM, Dallos P (1979) Forward masking of auditory nerve fiber responses. J Neurophysiol 42:1083–1107PubMed
Zurück zum Zitat Harrison JM, Warr WB, Irving R (1962) Second order neurons in the acoustic nerve. Science 138:893–895PubMedCrossRef Harrison JM, Warr WB, Irving R (1962) Second order neurons in the acoustic nerve. Science 138:893–895PubMedCrossRef
Zurück zum Zitat Hoffman HS, Ison JR (1980) Reflex modification in the domain of startle: I. Some empirical findings and their implications for how the nervous system processes sensory input. Psychol Rev 87:175–189PubMedCrossRef Hoffman HS, Ison JR (1980) Reflex modification in the domain of startle: I. Some empirical findings and their implications for how the nervous system processes sensory input. Psychol Rev 87:175–189PubMedCrossRef
Zurück zum Zitat Horta-Júnior J de A, López DE, Alvarez-Morujo AJ, Bittencourt JC (2008) Direct and indirect connections between cochlear root neurons and facial motor neurons: pathways underlying the acoustic pinna reflex in the albino rat. J Comp Neurol 507:1763–1779CrossRef Horta-Júnior J de A, López DE, Alvarez-Morujo AJ, Bittencourt JC (2008) Direct and indirect connections between cochlear root neurons and facial motor neurons: pathways underlying the acoustic pinna reflex in the albino rat. J Comp Neurol 507:1763–1779CrossRef
Zurück zum Zitat Horváth M, Kraus KS, Illing RB (2000) Olivocochlear neurons sending axon collaterals into the ventral cochlear nucleus of the rat. J Comp Neurol 422(1):95–105PubMedCrossRef Horváth M, Kraus KS, Illing RB (2000) Olivocochlear neurons sending axon collaterals into the ventral cochlear nucleus of the rat. J Comp Neurol 422(1):95–105PubMedCrossRef
Zurück zum Zitat Jones CK, Shannon HE (2000) Effects of scopolamine in comparison with apomorphine and phencyclidine on prepulse inhibition in rats. Eur J Pharmacol 391:105–112PubMedCrossRef Jones CK, Shannon HE (2000) Effects of scopolamine in comparison with apomorphine and phencyclidine on prepulse inhibition in rats. Eur J Pharmacol 391:105–112PubMedCrossRef
Zurück zum Zitat Koch M, Kungel M, Herbert H (1993) Cholinergic neurons in the pedunculopontine tegmental nucleus are involved in the mediation of prepulse inhibition of the acoustic startle response in the rat. Exp Brain Res 97:71–82PubMedCrossRef Koch M, Kungel M, Herbert H (1993) Cholinergic neurons in the pedunculopontine tegmental nucleus are involved in the mediation of prepulse inhibition of the acoustic startle response in the rat. Exp Brain Res 97:71–82PubMedCrossRef
Zurück zum Zitat Lee Y, López DE, Meloni EG, Davis M (1996) A primary acoustic startle pathway: obligatory role of cochlear root neurons and the nucleus reticularis pontis caudalis. J Neurosci 16:3775–3789PubMed Lee Y, López DE, Meloni EG, Davis M (1996) A primary acoustic startle pathway: obligatory role of cochlear root neurons and the nucleus reticularis pontis caudalis. J Neurosci 16:3775–3789PubMed
Zurück zum Zitat Leitner DS, Cohen ME (1985) Role of the inferior colliculus in the inhibition of acoustic startle in the rat. Physiol Behav 34:65–70PubMedCrossRef Leitner DS, Cohen ME (1985) Role of the inferior colliculus in the inhibition of acoustic startle in the rat. Physiol Behav 34:65–70PubMedCrossRef
Zurück zum Zitat Li L, Korngut LM, Frost BJ, Beninger RJ (1998a) Prepulse inhibition following lesions of the inferior colliculus: prepulse intensity functions. Physiol Behav 65:133–139PubMedCrossRef Li L, Korngut LM, Frost BJ, Beninger RJ (1998a) Prepulse inhibition following lesions of the inferior colliculus: prepulse intensity functions. Physiol Behav 65:133–139PubMedCrossRef
Zurück zum Zitat Li L, Priebe RPM, Yeomans JS (1998b) Prepulse inhibition of acoustic or trigeminal startle of rats by unilateral electrical stimulation of the inferior colliculus. Behav Neurosci 112:1187–1198PubMedCrossRef Li L, Priebe RPM, Yeomans JS (1998b) Prepulse inhibition of acoustic or trigeminal startle of rats by unilateral electrical stimulation of the inferior colliculus. Behav Neurosci 112:1187–1198PubMedCrossRef
Zurück zum Zitat Li L, Du Y, Li N, Wu X, Wu Y (2009) Top-down modulation of prepulse inhibition of the startle reflex in humans and rats. Neurosci Biobehav Rev 33(8):1157–1167PubMedCrossRef Li L, Du Y, Li N, Wu X, Wu Y (2009) Top-down modulation of prepulse inhibition of the startle reflex in humans and rats. Neurosci Biobehav Rev 33(8):1157–1167PubMedCrossRef
Zurück zum Zitat Liberman MC (1990) Effects of chronic cochlear de-efferentation on auditory-nerve response. Hear Res 49(1–3):209–223PubMedCrossRef Liberman MC (1990) Effects of chronic cochlear de-efferentation on auditory-nerve response. Hear Res 49(1–3):209–223PubMedCrossRef
Zurück zum Zitat Lingenhöhl K, Friauf E (1992) Giant neurons in the caudal pontine reticular formation receive short latency acoustic input: an intracellular recording and HRP-study in the rat. J Comp Neurol 325:473–492PubMedCrossRef Lingenhöhl K, Friauf E (1992) Giant neurons in the caudal pontine reticular formation receive short latency acoustic input: an intracellular recording and HRP-study in the rat. J Comp Neurol 325:473–492PubMedCrossRef
Zurück zum Zitat Lingenhöhl K, Friauf E (1994) Giant neurons in the rat reticular formation: a sensorimotor interface in the elementary acoustic startle circuit? J Neurosci 14:1176–1194PubMed Lingenhöhl K, Friauf E (1994) Giant neurons in the rat reticular formation: a sensorimotor interface in the elementary acoustic startle circuit? J Neurosci 14:1176–1194PubMed
Zurück zum Zitat López DE, Merchán MA, Bajo VM, Saldaña E (1993) The cochlear root neurons in the rat, mouse and gerbil. In: Merchán MA, Juiz JM, Godfrey DA, Mugnaini E (eds) The mammalian cochlear nuclei: organization and function. Plenum Press, New York, pp 291–301CrossRef López DE, Merchán MA, Bajo VM, Saldaña E (1993) The cochlear root neurons in the rat, mouse and gerbil. In: Merchán MA, Juiz JM, Godfrey DA, Mugnaini E (eds) The mammalian cochlear nuclei: organization and function. Plenum Press, New York, pp 291–301CrossRef
Zurück zum Zitat López DE, Saldaña E, Nodal FR, Merchán MA, Warr WB (1999) Projections of cochlear root neurons, sentinels of the auditory pathway in the rat. J Comp Neurol 415:160–174PubMedCrossRef López DE, Saldaña E, Nodal FR, Merchán MA, Warr WB (1999) Projections of cochlear root neurons, sentinels of the auditory pathway in the rat. J Comp Neurol 415:160–174PubMedCrossRef
Zurück zum Zitat Merchán MA, Collía F, López DE, Saldana E (1988) Morphology of cochlear root neurons in the rat. J Neurocytol 17:711–725PubMedCrossRef Merchán MA, Collía F, López DE, Saldana E (1988) Morphology of cochlear root neurons in the rat. J Neurocytol 17:711–725PubMedCrossRef
Zurück zum Zitat Molina V, Montes C, Tamayo P, Villa R, Isabel Osuna M, Pérez J, Sancho C, López-Albuquerque T, Cardoso A, Castellano O, López DE (2009) Correlation between prepulse inhibition and cortical perfusion during an attentional test in schizophrenia. A pilot study. Prog Neuropsychopharmacol Biol Psychiatry 33(1):53–61PubMedCrossRef Molina V, Montes C, Tamayo P, Villa R, Isabel Osuna M, Pérez J, Sancho C, López-Albuquerque T, Cardoso A, Castellano O, López DE (2009) Correlation between prepulse inhibition and cortical perfusion during an attentional test in schizophrenia. A pilot study. Prog Neuropsychopharmacol Biol Psychiatry 33(1):53–61PubMedCrossRef
Zurück zum Zitat Nodal FR, López DE (2003) Direct input from cochlear root neurons to pontine reticulospinal neurons in albino rat. J Comp Neurol 460:80–93PubMedCrossRef Nodal FR, López DE (2003) Direct input from cochlear root neurons to pontine reticulospinal neurons in albino rat. J Comp Neurol 460:80–93PubMedCrossRef
Zurück zum Zitat Osen KK, Mugnaini E, Dahl AL, Christiansen AH (1984) Histochemical localization of acetylcholinesterase in the cochlear and superior olivary nuclei. A reappraisal with emphasis on the cochlear granule cell system. Arch Ital Biol 122(3):169–212PubMed Osen KK, Mugnaini E, Dahl AL, Christiansen AH (1984) Histochemical localization of acetylcholinesterase in the cochlear and superior olivary nuclei. A reappraisal with emphasis on the cochlear granule cell system. Arch Ital Biol 122(3):169–212PubMed
Zurück zum Zitat Osen KK, López DE, Slyngstad TA, Ottersen OP, Storm-Mathisen J (1991) GABA-like and glycine-like immunoreactivities of the cochlear root nucleus in rat. J Neurocytol 20:17–25PubMedCrossRef Osen KK, López DE, Slyngstad TA, Ottersen OP, Storm-Mathisen J (1991) GABA-like and glycine-like immunoreactivities of the cochlear root nucleus in rat. J Neurocytol 20:17–25PubMedCrossRef
Zurück zum Zitat Paxinos G, Watson C (1998) The rat brain in stereotaxic coordinates. Academic Press, New York Paxinos G, Watson C (1998) The rat brain in stereotaxic coordinates. Academic Press, New York
Zurück zum Zitat Rajakumar N, Elisevich K, Flumerfelt BA (1993) Biotinylated dextran: a versatile anterograde and retrograde neuronal tracer. Brain Res 607:47–53PubMedCrossRef Rajakumar N, Elisevich K, Flumerfelt BA (1993) Biotinylated dextran: a versatile anterograde and retrograde neuronal tracer. Brain Res 607:47–53PubMedCrossRef
Zurück zum Zitat Schreiber R, Dalmus M, DeVry J (2002) Effects of alpha 4/beta 2- and alpha 7-nicotine acetylcholine receptor agonists on prepulse inhibition of the acoustic startle response in rats and mice. Psychopharmacology 159(3):248–257PubMedCrossRef Schreiber R, Dalmus M, DeVry J (2002) Effects of alpha 4/beta 2- and alpha 7-nicotine acetylcholine receptor agonists on prepulse inhibition of the acoustic startle response in rats and mice. Psychopharmacology 159(3):248–257PubMedCrossRef
Zurück zum Zitat Sherriff FE, Henderson Z (1994) Cholinergic neurons in the ventral trapezoid nucleus project to the cochlear nuclei in the rat. Neuroscience 58(3):627–633PubMedCrossRef Sherriff FE, Henderson Z (1994) Cholinergic neurons in the ventral trapezoid nucleus project to the cochlear nuclei in the rat. Neuroscience 58(3):627–633PubMedCrossRef
Zurück zum Zitat Shore SE (1995) Recovery of forward-masked responses in ventral cochlear nucleus neurons. Hear Res 82:31–43PubMedCrossRef Shore SE (1995) Recovery of forward-masked responses in ventral cochlear nucleus neurons. Hear Res 82:31–43PubMedCrossRef
Zurück zum Zitat Sinex DG, López DE, Warr WB (2001) Electrophysiological responses of cochlear root neurons. Hear Res 158:28–38PubMedCrossRef Sinex DG, López DE, Warr WB (2001) Electrophysiological responses of cochlear root neurons. Hear Res 158:28–38PubMedCrossRef
Zurück zum Zitat Suemaru K, Yasuda K, Umeda K, Araki H, Shibata K, Choshi T, Hibino S, Gomita Y (2004) Nicotine blocks apomorphine-induced disruption of prepulse inhibition of the acoustic startle in rats: possible involvement of central nicotinic alpha7 receptors. Br J Pharmacol 142(5):843–850PubMedCentralPubMedCrossRef Suemaru K, Yasuda K, Umeda K, Araki H, Shibata K, Choshi T, Hibino S, Gomita Y (2004) Nicotine blocks apomorphine-induced disruption of prepulse inhibition of the acoustic startle in rats: possible involvement of central nicotinic alpha7 receptors. Br J Pharmacol 142(5):843–850PubMedCentralPubMedCrossRef
Zurück zum Zitat Swerdlow NR, Geyer MA (1998) Using an animal model of deficient sensorimotor gating to study the pathophysiology and new treatments of schizophrenia. Schizophr Bull 24:285–301PubMedCrossRef Swerdlow NR, Geyer MA (1998) Using an animal model of deficient sensorimotor gating to study the pathophysiology and new treatments of schizophrenia. Schizophr Bull 24:285–301PubMedCrossRef
Zurück zum Zitat Swerdlow NR, Geyer MA, Braff DL (2001) Neural circuit regulation of prepulse inhibition of startle in the rat: current knowledge and future challenges. Psychopharmacology 156:194–215PubMedCrossRef Swerdlow NR, Geyer MA, Braff DL (2001) Neural circuit regulation of prepulse inhibition of startle in the rat: current knowledge and future challenges. Psychopharmacology 156:194–215PubMedCrossRef
Zurück zum Zitat Vetter DE, Mugnaini E (1992) Distribution and dendritic features of three groups of rat olivocochlear neurons. A study with two retrograde cholera toxin tracers. Anat Embryol 185:1–16PubMedCrossRef Vetter DE, Mugnaini E (1992) Distribution and dendritic features of three groups of rat olivocochlear neurons. A study with two retrograde cholera toxin tracers. Anat Embryol 185:1–16PubMedCrossRef
Zurück zum Zitat Vetter DE, Adams JC, Mugnaini E (1991) Chemically distinct rat olivocochlear neurons. Synapse 7:21–43PubMedCrossRef Vetter DE, Adams JC, Mugnaini E (1991) Chemically distinct rat olivocochlear neurons. Synapse 7:21–43PubMedCrossRef
Zurück zum Zitat Vetter DE, Cozzari C, Hartman BK, Mugnaini E (1993a) Choline acetyltransferase in the rat cochlear nuclei: immunolocalization with a monoclonal antybody. In: Merchán MA, Juiz JM, Godfrey DA, Mugnaini E (eds) The mammalian cochlear nuclei: organization and function. Plenum, New York, pp 279–290CrossRef Vetter DE, Cozzari C, Hartman BK, Mugnaini E (1993a) Choline acetyltransferase in the rat cochlear nuclei: immunolocalization with a monoclonal antybody. In: Merchán MA, Juiz JM, Godfrey DA, Mugnaini E (eds) The mammalian cochlear nuclei: organization and function. Plenum, New York, pp 279–290CrossRef
Zurück zum Zitat Vetter DE, Saldaña E, Mugnaini E (1993b) Input from the inferior colliculus to medial olivocochlear neurons in the rat: a double label study with PHA-L and cholera toxin. Hear Res 70:173–186PubMedCrossRef Vetter DE, Saldaña E, Mugnaini E (1993b) Input from the inferior colliculus to medial olivocochlear neurons in the rat: a double label study with PHA-L and cholera toxin. Hear Res 70:173–186PubMedCrossRef
Zurück zum Zitat Warr WB, Beck JE (1996) Multiple projections from the ventral nucleus of the trapezoid body in the rat. Hear Res 93:83–101PubMedCrossRef Warr WB, Beck JE (1996) Multiple projections from the ventral nucleus of the trapezoid body in the rat. Hear Res 93:83–101PubMedCrossRef
Zurück zum Zitat Warr WB, Boche JE (2003) Diversity of axonal ramifications belonging to single lateral and medial olivocochlear neurons. Exp Brain Res 153:499–513PubMedCrossRef Warr WB, Boche JE (2003) Diversity of axonal ramifications belonging to single lateral and medial olivocochlear neurons. Exp Brain Res 153:499–513PubMedCrossRef
Zurück zum Zitat White JS, Warr WB (1983) The dual origins of the olivocochlear bundle in the albino rat. J Comp Neurol 219:203–214PubMedCrossRef White JS, Warr WB (1983) The dual origins of the olivocochlear bundle in the albino rat. J Comp Neurol 219:203–214PubMedCrossRef
Zurück zum Zitat Yao W, Godfrey DA (1998) Immunohistochemical evaluation of cholinergic neurons in the rat superior olivary complex. Microsc Res Tech 41:270–283PubMedCrossRef Yao W, Godfrey DA (1998) Immunohistochemical evaluation of cholinergic neurons in the rat superior olivary complex. Microsc Res Tech 41:270–283PubMedCrossRef
Zurück zum Zitat Yao W, Godfrey DA (1999) Vesicular acetylcholine transporter in the rat cochlear nucleus: an immunohistochemical study. J Histochem Cytochem 47:83–90PubMedCrossRef Yao W, Godfrey DA (1999) Vesicular acetylcholine transporter in the rat cochlear nucleus: an immunohistochemical study. J Histochem Cytochem 47:83–90PubMedCrossRef
Zurück zum Zitat Yeomans JS, Lee J, Yeomans MH, Steidl S, Li L (2006) Midbrain pathways for prepulse inhibition and startle activation in rat. Neuroscience 142:921–929PubMedCrossRef Yeomans JS, Lee J, Yeomans MH, Steidl S, Li L (2006) Midbrain pathways for prepulse inhibition and startle activation in rat. Neuroscience 142:921–929PubMedCrossRef
Metadaten
Titel
A fast cholinergic modulation of the primary acoustic startle circuit in rats
verfasst von
Ricardo Gómez-Nieto
Donal G. Sinex
José de Anchieta C. Horta-Júnior
Orlando Castellano
Javier M. Herrero-Turrión
Dolores E. López
Publikationsdatum
01.09.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
Brain Structure and Function / Ausgabe 5/2014
Print ISSN: 1863-2653
Elektronische ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-013-0585-8

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