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The retinofugal pathways in a primitive actinopterygian, the chondrostean Acipenser güldenstädti . An experimental study using degeneration, radioautographic and HRP methods

Identifieur interne : 001022 ( Istex/Corpus ); précédent : 001021; suivant : 001023

The retinofugal pathways in a primitive actinopterygian, the chondrostean Acipenser güldenstädti . An experimental study using degeneration, radioautographic and HRP methods

Auteurs : J. Repérant ; N. P. Vesselkin ; T. V. Ermakova ; E. K. Rustamov ; J. P. Rio ; G. K. Palatnikov ; J. Peyrichoux ; R. V. Kasimov

Source :

RBID : ISTEX:F9ECD63D784A175B0CF983EB02D378C8FE6A7C64

English descriptors

Abstract

Abstract: Experimental study of the retinofugal pathways in Acipenser güldenstädti was carried out on 109 specimens using 3 experimental tracing methods: Fink-Heimer (after retinal ablation), radioautography (after intraocular injection of tritiated markers) and HRP (after intraocular injection of HRP or iontophoretic deposit of HRP on the optic nerve). The optic fiber was found to partially decussate at the chiasm and to project to 5 contralateral regions: (1) hypothalamus (area optica hypothalami); (2) thalamus (area optica dorsalis thalami, area optica mediale thalami, nucleus thalamicus tractus optici marginalis, nucleus laminaris ventralis); (3) pretectum (nucleus pretectalis ventralis, nucleus commissurae posterioris, nucleus intercalaris lateralis); (4) optic tectum (superficial layers); and (5) mesencephalic tegmentum (area optica accessoria). The ipsilateral component was well developed and innervated the same regions mentioned above. A few contralateral optic fibers crossed again in the posterior commissure and terminated within ipsilateral visual pretectal structures. Although the architecture of the visual centers was less elaborated in this paleopterygian than in neopterygians (holosteans, teleosteans), we observedthat the general organization of the retinal contralateral projections in this fish was comparable to that of more advanced actinopterygians. Our results indicate that this pattern was probably set at a very early date, perhaps as soon as the emergence of the chondrostean grade at the beginning of the Devonian.

Url:
DOI: 10.1016/0006-8993(82)91269-0

Links to Exploration step

ISTEX:F9ECD63D784A175B0CF983EB02D378C8FE6A7C64

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<p>Abstract: Experimental study of the retinofugal pathways in Acipenser güldenstädti was carried out on 109 specimens using 3 experimental tracing methods: Fink-Heimer (after retinal ablation), radioautography (after intraocular injection of tritiated markers) and HRP (after intraocular injection of HRP or iontophoretic deposit of HRP on the optic nerve). The optic fiber was found to partially decussate at the chiasm and to project to 5 contralateral regions: (1) hypothalamus (area optica hypothalami); (2) thalamus (area optica dorsalis thalami, area optica mediale thalami, nucleus thalamicus tractus optici marginalis, nucleus laminaris ventralis); (3) pretectum (nucleus pretectalis ventralis, nucleus commissurae posterioris, nucleus intercalaris lateralis); (4) optic tectum (superficial layers); and (5) mesencephalic tegmentum (area optica accessoria). The ipsilateral component was well developed and innervated the same regions mentioned above. A few contralateral optic fibers crossed again in the posterior commissure and terminated within ipsilateral visual pretectal structures. Although the architecture of the visual centers was less elaborated in this paleopterygian than in neopterygians (holosteans, teleosteans), we observedthat the general organization of the retinal contralateral projections in this fish was comparable to that of more advanced actinopterygians. Our results indicate that this pattern was probably set at a very early date, perhaps as soon as the emergence of the chondrostean grade at the beginning of the Devonian.</p>
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<head>Keywords</head>
<item>
<term>retinofugal pathways</term>
</item>
<item>
<term>actinopterygian</term>
</item>
<item>
<term>horseradish peroxidase</term>
</item>
<item>
<term>radioautography</term>
</item>
</list>
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<change when="1982">Published</change>
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<jid>BRES</jid>
<aid>82912690</aid>
<ce:pii>0006-8993(82)91269-0</ce:pii>
<ce:doi>10.1016/0006-8993(82)91269-0</ce:doi>
<ce:copyright type="unknown" year="1982">Elsevier Biomedical Press</ce:copyright>
</item-info>
<head>
<ce:title>The retinofugal pathways in a primitive actinopterygian, the chondrostean
<ce:italic>Acipenser güldenstädti</ce:italic>
. An experimental study using degeneration, radioautographic and HRP methods</ce:title>
<ce:author-group>
<ce:author>
<ce:given-name>J.</ce:given-name>
<ce:surname>Repérant</ce:surname>
<ce:cross-ref refid="cor1">
<ce:sup loc="post">*</ce:sup>
</ce:cross-ref>
<ce:cross-ref refid="aff2">
<ce:sup loc="post">b</ce:sup>
</ce:cross-ref>
<ce:cross-ref refid="aff3">
<ce:sup loc="post">c</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>N.P.</ce:given-name>
<ce:surname>Vesselkin</ce:surname>
<ce:cross-ref refid="aff1">
<ce:sup loc="post">a</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>T.V.</ce:given-name>
<ce:surname>Ermakova</ce:surname>
<ce:cross-ref refid="aff1">
<ce:sup loc="post">a</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>E.K.</ce:given-name>
<ce:surname>Rustamov</ce:surname>
<ce:cross-ref refid="aff4">
<ce:sup loc="post">d</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>J.P.</ce:given-name>
<ce:surname>Rio</ce:surname>
<ce:cross-ref refid="aff2">
<ce:sup loc="post">b</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>G.K.</ce:given-name>
<ce:surname>Palatnikov</ce:surname>
<ce:cross-ref refid="aff4">
<ce:sup loc="post">d</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>J.</ce:given-name>
<ce:surname>Peyrichoux</ce:surname>
<ce:cross-ref refid="aff3">
<ce:sup loc="post">c</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>R.V.</ce:given-name>
<ce:surname>Kasimov</ce:surname>
<ce:cross-ref refid="aff4">
<ce:sup loc="post">d</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:affiliation id="aff1">
<ce:label>a</ce:label>
<ce:textfn>Laboratory of Comparative Physiology of the Central Nervous System, Sechenov Institute of Evolutionary Physiology and Biochemistry Academy of Sciences, 44 Thorez Avenue, Leningrad 194223 U.S.S.R.</ce:textfn>
</ce:affiliation>
<ce:affiliation id="aff2">
<ce:label>b</ce:label>
<ce:textfn>Laboratoire de Neuromorphologie, INSERM U-106 Hoˆpital Foch, Suresnes 92.150 U.S.S.R.</ce:textfn>
</ce:affiliation>
<ce:affiliation id="aff3">
<ce:label>c</ce:label>
<ce:textfn>Laboratoire de Psychophysiologie Sensorielle, UniversitéParis VI, Paris 75005 France</ce:textfn>
</ce:affiliation>
<ce:affiliation id="aff4">
<ce:label>d</ce:label>
<ce:textfn>Karaev Institute of Physiology, Academy of Sciences, Azerb. SSR, Baku 370100 U.S.S.R.</ce:textfn>
</ce:affiliation>
<ce:correspondence id="cor1">
<ce:label>*</ce:label>
<ce:text>To whom reprint requests should be addressed at: Laboratoire de Neuromorphologie, INSERM U. 106, 42 rue Desbessayns de Richemont, 92.150 Suresnes, France.</ce:text>
</ce:correspondence>
</ce:author-group>
<ce:date-accepted day="11" month="2" year="1982"></ce:date-accepted>
<ce:abstract id="ab1" class="author" xml:lang="en">
<ce:section-title>Abstract</ce:section-title>
<ce:abstract-sec>
<ce:simple-para view="all" id="simple-para.0010">Experimental study of the retinofugal pathways in
<ce:italic>Acipenser güldenstädti</ce:italic>
was carried out on 109 specimens using 3 experimental tracing methods: Fink-Heimer (after retinal ablation), radioautography (after intraocular injection of tritiated markers) and HRP (after intraocular injection of HRP or iontophoretic deposit of HRP on the optic nerve). The optic fiber was found to partially decussate at the chiasm and to project to 5 contralateral regions: (1) hypothalamus (area optica hypothalami); (2) thalamus (area optica dorsalis thalami, area optica mediale thalami, nucleus thalamicus tractus optici marginalis, nucleus laminaris ventralis); (3) pretectum (nucleus pretectalis ventralis, nucleus commissurae posterioris, nucleus intercalaris lateralis); (4) optic tectum (superficial layers); and (5) mesencephalic tegmentum (area optica accessoria). The ipsilateral component was well developed and innervated the same regions mentioned above. A few contralateral optic fibers crossed again in the posterior commissure and terminated within ipsilateral visual pretectal structures. Although the architecture of the visual centers was less elaborated in this paleopterygian than in neopterygians (holosteans, teleosteans), we observedthat the general organization of the retinal contralateral projections in this fish was comparable to that of more advanced actinopterygians. Our results indicate that this pattern was probably set at a very early date, perhaps as soon as the emergence of the chondrostean grade at the beginning of the Devonian.</ce:simple-para>
</ce:abstract-sec>
</ce:abstract>
<ce:keywords class="keyword" xml:lang="en">
<ce:section-title>Keywords</ce:section-title>
<ce:keyword>
<ce:text>retinofugal pathways</ce:text>
</ce:keyword>
<ce:keyword>
<ce:text>actinopterygian</ce:text>
</ce:keyword>
<ce:keyword>
<ce:text>horseradish peroxidase</ce:text>
</ce:keyword>
<ce:keyword>
<ce:text>radioautography</ce:text>
</ce:keyword>
</ce:keywords>
</head>
<tail view="all">
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<titleInfo lang="en">
<title>The retinofugal pathways in a primitive actinopterygian, the chondrostean Acipenser güldenstädti . An experimental study using degeneration, radioautographic and HRP methods</title>
</titleInfo>
<titleInfo type="alternative" lang="en" contentType="CDATA">
<title>The retinofugal pathways in a primitive actinopterygian, the chondrostean</title>
</titleInfo>
<name type="personal">
<namePart type="given">J.</namePart>
<namePart type="family">Repérant</namePart>
<affiliation>Laboratoire de Neuromorphologie, INSERM U-106 Hoˆpital Foch, Suresnes 92.150 U.S.S.R.</affiliation>
<description>To whom reprint requests should be addressed at: Laboratoire de Neuromorphologie, INSERM U. 106, 42 rue Desbessayns de Richemont, 92.150 Suresnes, France.</description>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">N.P.</namePart>
<namePart type="family">Vesselkin</namePart>
<affiliation>Laboratory of Comparative Physiology of the Central Nervous System, Sechenov Institute of Evolutionary Physiology and Biochemistry Academy of Sciences, 44 Thorez Avenue, Leningrad 194223 U.S.S.R.</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">T.V.</namePart>
<namePart type="family">Ermakova</namePart>
<affiliation>Laboratory of Comparative Physiology of the Central Nervous System, Sechenov Institute of Evolutionary Physiology and Biochemistry Academy of Sciences, 44 Thorez Avenue, Leningrad 194223 U.S.S.R.</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">E.K.</namePart>
<namePart type="family">Rustamov</namePart>
<affiliation>Karaev Institute of Physiology, Academy of Sciences, Azerb. SSR, Baku 370100 U.S.S.R.</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">J.P.</namePart>
<namePart type="family">Rio</namePart>
<affiliation>Laboratoire de Neuromorphologie, INSERM U-106 Hoˆpital Foch, Suresnes 92.150 U.S.S.R.</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">G.K.</namePart>
<namePart type="family">Palatnikov</namePart>
<affiliation>Karaev Institute of Physiology, Academy of Sciences, Azerb. SSR, Baku 370100 U.S.S.R.</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">J.</namePart>
<namePart type="family">Peyrichoux</namePart>
<affiliation>Laboratoire de Psychophysiologie Sensorielle, UniversitéParis VI, Paris 75005 France</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">R.V.</namePart>
<namePart type="family">Kasimov</namePart>
<affiliation>Karaev Institute of Physiology, Academy of Sciences, Azerb. SSR, Baku 370100 U.S.S.R.</affiliation>
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<dateIssued encoding="w3cdtf">1982</dateIssued>
<copyrightDate encoding="w3cdtf">1982</copyrightDate>
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<abstract lang="en">Abstract: Experimental study of the retinofugal pathways in Acipenser güldenstädti was carried out on 109 specimens using 3 experimental tracing methods: Fink-Heimer (after retinal ablation), radioautography (after intraocular injection of tritiated markers) and HRP (after intraocular injection of HRP or iontophoretic deposit of HRP on the optic nerve). The optic fiber was found to partially decussate at the chiasm and to project to 5 contralateral regions: (1) hypothalamus (area optica hypothalami); (2) thalamus (area optica dorsalis thalami, area optica mediale thalami, nucleus thalamicus tractus optici marginalis, nucleus laminaris ventralis); (3) pretectum (nucleus pretectalis ventralis, nucleus commissurae posterioris, nucleus intercalaris lateralis); (4) optic tectum (superficial layers); and (5) mesencephalic tegmentum (area optica accessoria). The ipsilateral component was well developed and innervated the same regions mentioned above. A few contralateral optic fibers crossed again in the posterior commissure and terminated within ipsilateral visual pretectal structures. Although the architecture of the visual centers was less elaborated in this paleopterygian than in neopterygians (holosteans, teleosteans), we observedthat the general organization of the retinal contralateral projections in this fish was comparable to that of more advanced actinopterygians. Our results indicate that this pattern was probably set at a very early date, perhaps as soon as the emergence of the chondrostean grade at the beginning of the Devonian.</abstract>
<subject lang="en">
<genre>Keywords</genre>
<topic>retinofugal pathways</topic>
<topic>actinopterygian</topic>
<topic>horseradish peroxidase</topic>
<topic>radioautography</topic>
</subject>
<relatedItem type="host">
<titleInfo>
<title>Brain Research</title>
</titleInfo>
<titleInfo type="abbreviated">
<title>BRES</title>
</titleInfo>
<genre type="journal">journal</genre>
<originInfo>
<dateIssued encoding="w3cdtf">19821111</dateIssued>
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<identifier type="ISSN">0006-8993</identifier>
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<accessCondition type="use and reproduction" contentType="copyright">©1982 Elsevier Biomedical Press</accessCondition>
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