Literature DB >> 3973086

Projections of medial terminal accessory optic nucleus, ventral tegmental nuclei, and substantia nigra of rabbit and rat as studied by retrograde axonal transport of horseradish peroxidase.

R A Giolli, R H Blanks, Y Torigoe, D D Williams.   

Abstract

Projections of the medial terminal nucleus (MTN) of the accessory optic system, the ventral tegmental area of Tsai, and the substantia nigra of the rabbit and the rat have been studied by the method of retrograde axonal transport of horseradish peroxidase. The data show that MTN projections are remarkably similar in the rabbit and rat. The MTN projects heavily to the ipsilateral nucleus of the optic tract and dorsal terminal nucleus of the accessory optic system and to a portion of the contralateral ventral tegmental area of Tsai that we have termed the visual tegmental relay zone (VTRZ). Further, the MTN sends projections to the ipsilateral mesencephalic (deep mesencephalic nucleus, pars medialis) and pontine (nucleus reticularis pontis oralis) reticular formations; the contralateral dorsolateral division of the basal pontine complex; the superior and lateral vestibular nuclei (contralateral in rat; bilateral in rabbit); and the ipsi- and contralateral interstitial nucleus of Cajal, nucleus of Darkschewitsch, and supraoculomotor-periaqueductal gray. The findings also indicate that the MTN has a small bilateral, but mainly ipsilateral, projection to the dorsal cap, its ventrolateral outgrowth, and the B division of the inferior olivary complex. This study further reveals that ventral tegmental nuclei (n. parabrachialis pigmentosus and n. paranigralis) and subdivisions of the substantia nigra (pars compacta and pars reticulata) project to many brain stem targets of the MTN. Thus, the VTRZ projections are similar to those of the MTN in both distribution and density except that the VTRZ projection to the inferior olive is substantially stronger. The nucleus parabrachialis pigmentosus sends a small contralateral projection to the VTRZ and a moderate-sized bilateral projection to the supraoculomotor-periaqueductal gray. The nucleus paranigralis sends a moderate number of axons to the ipsilateral deep mesencephalic nucleus, pars medialis, and the nucleus reticularis pontis oralis and provides a strong bilateral projection to the supraoculomotor-periaqueductal gray. The pars compacta of the substantia nigra provides a sparse input to the ipsilateral deep mesencephalic nucleus, pars medialis, and nucleus reticularis pontis oralis, and to the contralateral VTRZ and sends a moderate number of axons, bilaterally, to the supraoculomotor-periaqueductal gray. The pars reticulata of the substantia nigra sends an ipsiateral projection of moderate size to the intermediate and deep layers of the superior colliculus, sparse ipsilateral projections to the deep mesencephalic nucleus, pars medialis, and nucleus reticularis pontis oralis, and a sparse bilateral projection to

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Year:  1985        PMID: 3973086     DOI: 10.1002/cne.902320109

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  10 in total

1.  Afferents of the caudal fastigial nucleus in a New World monkey (Cebus apella).

Authors:  A Gonzalo-Ruiz; G R Leichnetz
Journal:  Exp Brain Res       Date:  1990       Impact factor: 1.972

2.  GABAergic neurons comprise a major cell type in rodent visual relay nuclei: an immunocytochemical study of pretectal and accessory optic nuclei.

Authors:  R A Giolli; G M Peterson; C E Ribak; H M McDonald; R H Blanks; J H Fallon
Journal:  Exp Brain Res       Date:  1985       Impact factor: 1.972

3.  Opioid receptors in midbrain dopaminergic regions of the rat. II. Kappa and delta receptor autoradiography.

Authors:  S G Speciale; K F Manaye; M Sadeq; D C German
Journal:  J Neural Transm Gen Sect       Date:  1993

4.  Opioid receptors in midbrain dopaminergic regions of the rat. I. Mu receptor autoradiography.

Authors:  D C German; S G Speciale; K F Manaye; M Sadeq
Journal:  J Neural Transm Gen Sect       Date:  1993

5.  The dendritic architecture of the medial terminal nucleus of the accessory optic system in the rat, rabbit, and cat.

Authors:  K M Gregory; R A Giolli
Journal:  Exp Brain Res       Date:  1985       Impact factor: 1.972

6.  Climbing fiber-evoked Purkinje cell discharge reduces expression of GABA(A) receptor-associated protein and decreases its interaction with GABA(A) receptors.

Authors:  Zuyuan Qian; Vadim Yakhnitsa; Neal H Barmack
Journal:  J Neurochem       Date:  2011-03-08       Impact factor: 5.372

7.  Optic flow input to the hippocampal formation from the accessory optic system.

Authors:  D R Wylie; R G Glover; J D Aitchison
Journal:  J Neurosci       Date:  1999-07-01       Impact factor: 6.167

8.  Genetic access to neurons in the accessory optic system reveals a role for Sema6A in midbrain circuitry mediating motion perception.

Authors:  Brendan N Lilley; Shai Sabbah; John L Hunyara; Katherine D Gribble; Timour Al-Khindi; Jiali Xiong; Zhuhao Wu; David M Berson; Alex L Kolodkin
Journal:  J Comp Neurol       Date:  2018-11-11       Impact factor: 3.215

9.  Activity-dependent expression of acyl-coenzyme a-binding protein in retinal muller glial cells evoked by optokinetic stimulation.

Authors:  Neal H Barmack; Timothy R Bilderback; Henry Liu; Zuyuan Qian; Vadim Yakhnitsa
Journal:  J Neurosci       Date:  2004-02-04       Impact factor: 6.167

10.  Brain anatomy of the 4-day-old European rabbit.

Authors:  Nanette Y Schneider; Frédérique Datiche; Gérard Coureaud
Journal:  J Anat       Date:  2018-02-14       Impact factor: 2.610

  10 in total

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