Giant neurons in the caudal pontine reticular formation receive short latency acoustic input: An intracellular recording and HRP‐study in the rat
- 22 November 1992
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 325 (4) , 473-492
- https://doi.org/10.1002/cne.903250403
Abstract
The reticular formation is composed of heterogeneous cell populations with multiple functions. Among these multiple functions is the processing of sensory information in the context of behavior. The purpose of the present study was to identify and characterize neurons in the reticular formation of the rat that receive auditory input. In order to do so, we combined intracellular electrophysiology in vivo with intracellular injection of horseradish peroxidase, enabling us to correlate electrophysiology unequivocally with anatomy at the single cell level.We found that many neurons in the caudal pontine reticular nucleus (PnC), which we analyzed intracellularly, responded to acoustic stimuli and were excited at short latency (mean EPSP latency: 2.6 ms; mean spike latency: 5.2 ms). This short latency suggests a direct input from the cochlear nucleus, the first central nucleus of the auditory pathway. The morphology revealed that the acoustically driven PnC neurons have very large somata (mean diameter: 44.0 m̈m). They can therefore be referred to as “giant PnC neurons.” Complex dendritic arbors extended from these neurons into the reticular formation and thus formed a large membrane surface for the integration of multimodal inputs. Most of the giant PnC neurons sent their axons caudally into the medial longitudinal fasciculus and can therefore be regarded as reticulospinal neurons.The results demonstrate that the giant reticulospinal PnC neurons are in a position to transmit acoustic information very quickly to spinal cord neurons and to receive converging input from other parts of the brain. They are thus good candidates for participation in the mediation and modulation of acoustically elicited behaviors, such as the short latency acoustic startle response.Keywords
This publication has 55 references indexed in Scilit:
- GLUTAMATE RECEPTORS MEDIATE ACOUSTIC INPUT TO THE RETICULAR BRAIN STEMNeuroReport, 1992
- Neural organization in the brainstem circuit mediating the primary acoustic head startle: An electrophysiological study in the ratPhysiology & Behavior, 1990
- Double-pulse stimulation of startle-like responses in rats: refractory periods and temporal summationBrain Research, 1989
- Footshock-induced sensitization of electrically elicited startle reflexes.Behavioral Neuroscience, 1989
- Comparative threshold studies of the acoustic pinna, jaw and startle reflex in the ratPhysiology & Behavior, 1988
- Morphology of motoneurons in different subdivisions of the rat facial nucleus stained intracellularly with horseradish peroxidaseJournal of Comparative Neurology, 1986
- Heavy metal intensification of DAB-based HRP reaction product.Journal of Histochemistry & Cytochemistry, 1981
- Cell bodies of origin of reticular projections from the superior colliculus in the cat: An experimental study with the use of horseradish peroxidase as a tracerJournal of Comparative Neurology, 1978
- Superior colliculus connections with the extraocular motor nuclei in the catJournal of Comparative Neurology, 1978
- Single Auditory Units in the Superior Olivary Complex: II: Locations of Unit Categories and Tonotopic OrganizationInternational Journal of Neuroscience, 1972