Literature DB >> 6863598

Extrinsic and intrinsic fiber connections of the telencephalon in a teleost, Sebastiscus marmoratus.

T Murakami, Y Morita, H Ito.   

Abstract

Extrinsic and intrinsic fiber connections of the telencephalic subdivisions of Nieuwenhuys ('62) in a teleost, Sebastiscus marmoratus, were studied by means of horseradish peroxidase (HRP) and Fink-Heimer methods. The olfactory bulb projects bilaterally to area dorsalis pars posterior, area ventralis pars ventralis, pars lateralis, pars posterior, pars intermedia, and the nucleus posterior tuberis of Peter et al. ('75) and receives fibers from ipsilateral area dorsalis pars centralis, pars posterior, area ventralis pars dorsalis, and pars supracommissuralis. Area dorsalis pars posterior sends numerous fibers to the ipsilateral ventral region of area dorsalis pars medialis, from which fibers of the medial forebrain bundle arise and terminate in the inferior lobe and nucleus posterior tuberis. Area dorsalis pars lateralis, pars dorsalis, and the dorsal region of pars medialis are the main targets of extratelencephalic ascending afferents. Area dorsalis pars lateralis receives fibers from the ipsilateral nucleus prethalamicus of Meader ('34), where tectal projections terminate massively. Area dorsalis pars dorsalis and the dorsal region of pars medialis receive afferents from the ipsilateral nucleus preglomerulosus of Schnitzlein ('62), nucleus posterior tuberis, area preoptica pars medialis of Crosby and Showers ('69), and nucleus entopeduncularis of Sheldon ('12). Raphe nuclei and locus ceruleus project bilaterally to area dorsalis pars centralis, pars dorsalis, pars lateralis, and the dorsal region of pars medialis. Area dorsalis pars centralis, pars dorsalis, and the dorsal region of pars medialis are important sources of extratelencephalic efferents. These subdivisions give rise to the lateral forebrain bundle and project to the ipsilateral nucleus prethalamicus, nucleus preglomerulosus, inferior lobe, nucleus paracommissuralis of Ito et al. ('82), optic tectum, torus semicircularis, and the bilateral mesencephalic tegmentum. Within the telencephalon, most of the ventral subdivisions project to ipsilateral area dorsalis pars centralis, pars dorsalis, pars lateralis, and the dorsal region of pars medialis. Area dorsalis pars centralis has reciprocal connections with ipsilateral area dorsalis pars lateralis, pars dorsalis, pars posterior, and the dorsal region of pars medialis. A dorsal part of the anterior commissure is composed of axons of the ventral region of area dorsalis pars medialis destined to the contralateral ventral region of area dorsalis pars medialis. A ventral part of the anterior commissure contains axons of area dorsalis pars centralis destined to contralateral area dorsalis pars lateralis.

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Year:  1983        PMID: 6863598     DOI: 10.1002/cne.902160202

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


  17 in total

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Authors:  C S von Bartheld; D L Meyer
Journal:  Cell Tissue Res       Date:  1986       Impact factor: 5.249

Review 2.  Non-laminar cerebral cortex in teleost fishes?

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Authors:  Sabrina S Burmeister; Rashmi G Munshi; Russell D Fernald
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4.  Central connections of the olfactory bulb in the bichir, Polypterus palmas, reexamined.

Authors:  C S von Bartheld; D L Meyer
Journal:  Cell Tissue Res       Date:  1986       Impact factor: 5.249

5.  The distribution of GABA-immunoreactive neurons in the brain of the silver eel (Anguilla anguilla L.).

Authors:  M Médina; J Repérant; S Dufour; R Ward; N Le Belle; D Miceli
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6.  Projections of the olfactory bulb in an elasmobranch fish, Sphyrna tiburo: segregation of inputs in the telencephalon.

Authors:  L Dryer; P P Graziadei
Journal:  Anat Embryol (Berl)       Date:  1994-12

7.  Cytoarchitectonic study of the brain of a dwarf snakehead, Channa gachua (Ham.). I. The telencephalon.

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8.  Central connections of the olfactory bulb in the goldfish, Carassius auratus.

Authors:  C S von Bartheld; D L Meyer; E Fiebig; S O Ebbesson
Journal:  Cell Tissue Res       Date:  1984       Impact factor: 5.249

9.  Cognitive appraisal in fish: stressor predictability modulates the physiological and neurobehavioural stress response in sea bass.

Authors:  M Cerqueira; S Millot; A Felix; T Silva; G A Oliveira; C C V Oliveira; S Rey; S MacKenzie; R Oliveira
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10.  Sound production evoked by electrical stimulation of the forebrain in the oyster toadfish.

Authors:  M L Fine; M A Perini
Journal:  J Comp Physiol A       Date:  1994-02       Impact factor: 1.836

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