Morphogenesis of the rat forebrain

BACKGROUND AND PURPOSE: Developmental process that leads to final forebrain shaping is a result of complex histogenetic and morphogenetic events. Comprehensions about brain development are based on observations carried out on onthogenetic successive stages. Microscopic analysis of brain together w...

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發表在:Biomolecules & Biomedicine
Main Authors: Selma Aličelebić, Zakira Mornjaković, Zlata Kundurović
格式: Article
語言:英语
出版: Association of Basic Medical Sciences of Federation of Bosnia and Herzegovina 2004-02-01
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在線閱讀:https://www.bjbms.org/ojs/index.php/bjbms/article/view/3467
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author Selma Aličelebić
Zakira Mornjaković
Zlata Kundurović
author_facet Selma Aličelebić
Zakira Mornjaković
Zlata Kundurović
author_sort Selma Aličelebić
collection DOAJ
container_title Biomolecules & Biomedicine
description BACKGROUND AND PURPOSE: Developmental process that leads to final forebrain shaping is a result of complex histogenetic and morphogenetic events. Comprehensions about brain development are based on observations carried out on onthogenetic successive stages. Microscopic analysis of brain together with analysis of serial sections gives information about shape the of some forebrain parts and basic relations between them. The aim of this study was to analyse morphogenesis in the earliest stages of rat's forebrain development. MATERIAL AND METHODS: Rat brains used in this study were obtained from Fisher inbred rats with accurately timed pregnancies. The investigation was carried out on serial frontal sections of rat embryonic heads from the 12th (E12) to the 16th (E16) day of gestation. Gestation was considered to have begun early in the morning when sperm was found in the vaginal smear. Histological paraffin and plastic sections were systematically inspected with regard to morphogenetic changes of the forebrain parts telencephalon and diencephalon. RESULTS: E12: neural tube is completely closed in its cranial part. Rostral part of forebrain shows telencephalons vesicles origins as slightly paired enlargements of neuroepithelial wall. Between telencephalic vesicles origin and in direction to caudal there is an origin of diencephalon. E13: rostral part of forebrain shows well expressed and divided areas of telencephalons vesicles as basal, basolateral, dorsal and medial telencephalon. Central area between paired vesicles is a telencephalon impar. In diencephalon optic vesicles appeared. Epithalamus, thalamus and hypothalamus origins are slight enlargements of its neuroepithelial wall. E14: telencephalic vesicles spread above telencephalon impar into rostral direction and above diencephalon in rostrodorsal direction. Their basolateral parts of are very thickened and become folded. Sulcus telodiencephalicus appears. E15: the main event is the appearance of the origins of plexus choroideus in the area of telencephalon impar as fingerlike processes. E16: all forebrain parts, especially telencephalic vesicles-origin of brain hemispheres and processes of plexus choroideus, are progressively growing and shaping. CONCLUSIONS: Our morphologic analysis describes significant morphogenetic changes in the forebrain shape. The forebrain changes from a relatively simple tubular structure with thin walls surrounding a large ventricular system to a thick-walled brain with a highly convoluted but reduced ventricular system.
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spelling doaj-art-6b2a7249a650403ebf40679883e67fc82025-08-20T00:53:07ZengAssociation of Basic Medical Sciences of Federation of Bosnia and HerzegovinaBiomolecules & Biomedicine2831-08962831-090X2004-02-014110.17305/bjbms.2004.3467869Morphogenesis of the rat forebrainSelma Aličelebić0Zakira Mornjaković1Zlata Kundurović2Institute of Histology and Embryology, Faculty of MedicineInstitute of Histology and Embryology, Faculty of MedicineInstitute of Histology and Embryology, Faculty of MedicineBACKGROUND AND PURPOSE: Developmental process that leads to final forebrain shaping is a result of complex histogenetic and morphogenetic events. Comprehensions about brain development are based on observations carried out on onthogenetic successive stages. Microscopic analysis of brain together with analysis of serial sections gives information about shape the of some forebrain parts and basic relations between them. The aim of this study was to analyse morphogenesis in the earliest stages of rat's forebrain development. MATERIAL AND METHODS: Rat brains used in this study were obtained from Fisher inbred rats with accurately timed pregnancies. The investigation was carried out on serial frontal sections of rat embryonic heads from the 12th (E12) to the 16th (E16) day of gestation. Gestation was considered to have begun early in the morning when sperm was found in the vaginal smear. Histological paraffin and plastic sections were systematically inspected with regard to morphogenetic changes of the forebrain parts telencephalon and diencephalon. RESULTS: E12: neural tube is completely closed in its cranial part. Rostral part of forebrain shows telencephalons vesicles origins as slightly paired enlargements of neuroepithelial wall. Between telencephalic vesicles origin and in direction to caudal there is an origin of diencephalon. E13: rostral part of forebrain shows well expressed and divided areas of telencephalons vesicles as basal, basolateral, dorsal and medial telencephalon. Central area between paired vesicles is a telencephalon impar. In diencephalon optic vesicles appeared. Epithalamus, thalamus and hypothalamus origins are slight enlargements of its neuroepithelial wall. E14: telencephalic vesicles spread above telencephalon impar into rostral direction and above diencephalon in rostrodorsal direction. Their basolateral parts of are very thickened and become folded. Sulcus telodiencephalicus appears. E15: the main event is the appearance of the origins of plexus choroideus in the area of telencephalon impar as fingerlike processes. E16: all forebrain parts, especially telencephalic vesicles-origin of brain hemispheres and processes of plexus choroideus, are progressively growing and shaping. CONCLUSIONS: Our morphologic analysis describes significant morphogenetic changes in the forebrain shape. The forebrain changes from a relatively simple tubular structure with thin walls surrounding a large ventricular system to a thick-walled brain with a highly convoluted but reduced ventricular system. https://www.bjbms.org/ojs/index.php/bjbms/article/view/3467morphogenesisrat forebrain
spellingShingle Selma Aličelebić
Zakira Mornjaković
Zlata Kundurović
Morphogenesis of the rat forebrain
morphogenesis
rat forebrain
title Morphogenesis of the rat forebrain
title_full Morphogenesis of the rat forebrain
title_fullStr Morphogenesis of the rat forebrain
title_full_unstemmed Morphogenesis of the rat forebrain
title_short Morphogenesis of the rat forebrain
title_sort morphogenesis of the rat forebrain
topic morphogenesis
rat forebrain
url https://www.bjbms.org/ojs/index.php/bjbms/article/view/3467
work_keys_str_mv AT selmaalicelebic morphogenesisoftheratforebrain
AT zakiramornjakovic morphogenesisoftheratforebrain
AT zlatakundurovic morphogenesisoftheratforebrain