The accessory optic system ofRana pipiens: Neuroanatomical connections and intrinsic organization
- 20 December 1981
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 203 (4), 595-612
- https://doi.org/10.1002/cne.902030404
Abstract
The accessory optic system of Rana pipiens was investigated by autoradiographic, horseradish peroxidase, and Golgi techniques, revealing a complexity of neuroanatomical organization previously unrecognized. Retinal afferents project to the nucleus of the basal optic root (nBOR) via a primary bundle and more diffuse, medial bundle of optic axons, both of which contain large- and small-diameter fibers. At least six types of retinal ganglion cell contribute to the basal optic root (BOR), including giant ganglion cells, two intermediate-sized ganglion cell types, small ganglion cells, and two types of displaced ganglion cell. The major retinal projection is contralateral, but a small, ipsilateral component also exists. Afferents from neurons which are postsynaptic to the thalamic retinal terminal fields also reach nBOR. Four distinct cell types were identified within the terminal field of nBOR: stellate neurons (63%), amacrine cells (19%), elongate neurons (14%), and large ganglionic neurons (4%). Both stellate and amacrine cells appear to be intrinsic neurons, while elongate and ganglionic neurons constitute the efferent neuron population of nBOR. In addition, cells which lie medial to the terminal field, pyriform and commissural neurons, send dendrites into nBOR. Pyriform neurons project to the nucleus of the medial longitudinal fasciculus (nMLF) and cranial nerve nuclei III and IV, while commissural neurons project to the contralateral nBOR. Large reticular neurons of the nMLF also send dendrites into nBOR. Efferent projections from nBOR were observed in the large-celled pretectal nucleus and in nucleus lateralis profundus. A second major projection originates from the peri-nBOR region and is associated with the oculomotor system and with the nMLF. Efferent projections from the nMLF to the vestibular nuclei and to the rostral spinal cord were also observed, as well as projections which reach the brainstem from the large-celled pretectal nucleus, the posterior thalamic and anterior mesencephalic central gray.This publication has 37 references indexed in Scilit:
- Neurons in the spinal cord of the frog responding to moving visual stimuliNeuroscience Letters, 1980
- Projections of the nucleus of the basal optic root in the pigeon: An autoradiographic and horseradish peroxidase studyJournal of Comparative Neurology, 1980
- Effects of microlesions of dorsal cap of inferior olive of rabbits on optokinetic and vestibuloocular reflexesJournal of Neurophysiology, 1980
- Accessory Optic Projections Upon Oculomotor Nuclei and VestibulocerebellumScience, 1979
- Midbrain unit activity during classical conditioningBrain Research, 1977
- The climbing fiber afferent system of the frogBrain Research, 1977
- Afferents to the vestibulo-cerebellum and the origin of the visual climbing fibers in the rabbitBrain Research, 1975
- Oculomotor areas in the rabbit's midbrain and pretectumJournal of Neurobiology, 1975
- The Optic System of a Teleost: Holocentrus Re-examinedBrain, Behavior and Evolution, 1969
- The subcortical distribution of optic fibers inSaimiri sciureus (Squirrel monkey)Journal of Comparative Neurology, 1967