Pre‐ and postnatal development of efferent connections of the cochlear nucleus in the rat
- 8 February 1993
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 328 (2) , 161-184
- https://doi.org/10.1002/cne.903280202
Abstract
Although the connections of the auditory brainstem nuclei are well described in adult mammals, almost nothing is known concerning how and when these connections develop. The purpose of the present study was to describe the development of the efferent projections of the cochlear nucleus (CN), the first central relay station in the ascending auditory pathway of mammals. We used two tracers in rats aged between embryonic day 15 (E15) and postnatal day 14 (P14; birth in the rat is at E22 = P0). The carbocyanine dye DiI was applied into the CN in aldehyde‐fixed tissue. The second tracer, biocytin, was applied into the ventral acoustic stria in an in vitro slice preparation.The ontogeny of the efferent projections from the CN could be divided into three periods. The first period (E15–E17) is characterized by axonal outgrowth. Axons traverse nuclei in the superior olivary complex and the lateral lemniscus and finally grow up into the inferior colliculus, but axon collaterals do not from during this period. The second period (E18–P5) is marked by pronounced collateral branching of CN fibers in auditory brainstem nuclei. Collateralisation in the contralateral inferior colliculus starts shortly before that in the ipsilateral superior olivary complex. The remaining auditory nuclei become successively innervated, as indicated by collaterals found in them. During the third period (P5–P14) terminal structures mature further, as shown by the morphological changes of the calyces of Held in the medial nucleus of the trapezoid body.In conclusion, our results show that the efferent connections from the cochlear nucleus form over a period of almost two weeks and are laid down without forming aberrant internuclear connections. On a nuclear level, an adult‐like projection pattern is already achieved one week prior to the onset of physiological hearing.Keywords
This publication has 75 references indexed in Scilit:
- Tonotopic Order in the Adult and Developing Auditory System of the Rat as Shown by c‐fos ImmunocytochemistryEuropean Journal of Neuroscience, 1992
- Projections of physiologically characterized globular bushy cell axons from the cochlear nucleus of the catJournal of Comparative Neurology, 1991
- Auditory hair cells in human fetuses: Synaptogenesis and ciliogenesisJournal of Electron Microscopy Technique, 1990
- Cortical axons branch to multiple subcortical targets by interstitial axon budding: Implications for target recognition and “waiting periods”Neuron, 1988
- Prenatal Tetrodotoxin Infusion Blocks Segregation of Retinogeniculate AfferentsScience, 1988
- Correlative development of cochlear action potential sensitivity, latency, and frequency selectivityDevelopmental Brain Research, 1987
- Mode of growth of retinal axons within the tectum of Xenopus tadpoles, and implications in the ordered neuronal connection between the retina and the tectumJournal of Comparative Neurology, 1987
- Development of auditory brainstem response to tone pip stimuli in the ratDevelopmental Brain Research, 1987
- Postnatal development of auditory callosal connections in the kittenJournal of Comparative Neurology, 1983
- Single Auditory Units in the Superior Olivary Complex: II: Locations of Unit Categories and Tonotopic OrganizationInternational Journal of Neuroscience, 1972