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Updated: Jun 9, 2026

A Visual Description of the Dissection of the Cerebral Surface Vasculature and Associated Meninges and the Choroid Plexus from Rat Brain
Published on: November 14, 2012
Human primitive meninges in and around the mesencephalic flexure and particularly their topographical relation to
Kwang Ho Cho1, Jose Francisco Rodríguez-Vázquez, Eui Hyeog Han
1Department of Neurology, Wonkwang University School of Medicine, Institute of Wonkwang Medical Science, 344-2 Sinyong-dong, Iksan, Jeonbuk, Republic of Korea. neurlogy@wonkwang.ac.kr
Abstract:
Development of the meninges in and around the plica ventralis encephali has not been well documented. A distinct mesenchymal structure, the so-called plica ventralis encephali, is sandwiched by the fetal mesencephalic flexure. We histologically examined paraffin-embedded sections from 18 human embryos and fetuses at 6-12 weeks of gestation. In the loose tissues of the plica, the first meninx appeared as a narrow membrane along the oculomotor nerve at 7-8 weeks. Subsequently, the plica ventralis evolved into 3 parts: bilateral lateral mesenchymal condensations and a primitive membranous meninx extending between. Notably, the topographical anatomy of the oculomotor, trochlear and trigeminal nerves did not change: the oculomotor nerve ran along the rostral aspect of the membranous meninx, the trigeminal nerve ran along the caudal side of the lateral mesenchymal condensation, and the trochlear nerve remained embedded in the lateral condensation. Up to 9-10 weeks, the lateral mesenchymal condensations became tongue-like folds; i.e., the primitive form of the tentorium cerebelli, while the membranous meninx became the diaphragma sellae. The falx cerebri seemed to develop from the tongue-like folds. Overall, the final tentorium cerebelli corresponded to the regressed plica ventralis, while the parasellar area originated from the base of the plica and other tissues along the ventral aspects of the basisphenoid and basioccipital.
Insights
The plica ventralis encephali develops into the tentorium cerebelli and diaphragma sellae. This study details the meningeal development around the plica ventralis encephali in early human embryos.
Area of Science:
- Developmental biology
- Neuroanatomy
- Embryology
Background:
- The development of meninges around the plica ventralis encephali is poorly understood.
- The plica ventralis encephali is a mesenchymal structure located within the fetal mesencephalic flexure.
Purpose of the Study:
- To histologically examine the development of the meninges in and around the plica ventralis encephali.
- To document the evolution of the plica ventralis encephali and its relationship with cranial nerves during early human development.
Main Methods:
- Histological examination of paraffin-embedded sections from 18 human embryos and fetuses (6-12 weeks gestation).
- Analysis of the topographical anatomy of the developing meninges and cranial nerves.
Main Results:
- The first meninx appeared along the oculomotor nerve by 7-8 weeks.
- The plica ventralis encephali differentiated into lateral mesenchymal condensations and a membranous meninx.
- Lateral condensations formed the primitive tentorium cerebelli, and the meninx became the diaphragma sellae by 9-10 weeks.
Conclusions:
- The plica ventralis encephali regresses to form the tentorium cerebelli.
- The diaphragma sellae originates from the primitive membranous meninx.
- The parasellar area develops from the plica base and adjacent tissues.
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